Tuesday, January 31, 2012

>>Distribution


Distribution

 small bird withpale belly and breast and patterned wing and head stands on concrete
The range of the House Sparrow has expanded dramatically due to human activities.
Birds live and breed in most terrestrial habitats and on all seven continents, reaching their southern extreme in the Snow Petrel's breeding colonies up to 440 kilometres (270 mi) inland in Antarctica.The highest bird diversity occurs in tropical regions. It was earlier thought that this high diversity was the result of higher speciation rates in the tropics, however recent studies found higher speciation rates in the high latitudes that were offset by greater extinction rates than in the tropics. Several families of birds have adapted to life both on the world's oceans and in them, with some seabird species coming ashore only to breed and some penguins have been recorded diving up to 300 metres (980 ft).
Many bird species have established breeding populations in areas to which they have been introduced by humans. Some of these introductions have been deliberate; the Ring-necked Pheasant, for example, has been introduced around the world as a game bird. Others have been accidental, such as the establishment of wild Monk Parakeets in several North American cities after their escape from captivity.Some species, including Cattle Egret, Yellow-headed Caracara and Galah, have spread naturally far beyond their original ranges as agricultural practices created suitable new habitat.

Anatomy and physiology


External anatomy of a bird (example: Yellow-wattled Lapwing): 1 Beak, 2 Head, 3 Iris, 4 Pupil, 5 Mantle, 6 Lessercoverts, 7 Scapulars, 8 Median coverts, 9 Tertials, 10 Rump, 11 Primaries, 12 Vent, 13 Thigh, 14 Tibio-tarsal articulation, 15 Tarsus, 16 Foot, 17 Tibia, 18 Belly, 19 Flanks, 20 Breast, 21 Throat, 22 Wattle
Compared with other vertebrates, birds have a body plan that shows many unusual adaptations, mostly to facilitate flight.
The skeleton consists of very lightweight bones. They have large air-filled cavities (called pneumatic cavities) which connect with the respiratory system. The skull bones in adults are fused and do not show cranial sutures. The orbits are large and separated by a bony septum. The spine has cervical, thoracic, lumbar and caudal regions with the number of cervical (neck) vertebrae highly variable and especially flexible, but movement is reduced in the anterior thoracic vertebrae and absent in the later vertebrae. The last few are fused with the pelvis to form the synsacrum.The ribs are flattened and the sternum is keeled for the attachment of flight muscles except in the flightless bird orders. The forelimbs are modified into wings.
Like the reptiles, birds are primarily uricotelic, that is, their kidneys extract nitrogenous wastes from their bloodstream and excrete it as uric acid instead of urea or ammonia via the ureters into the intestine. Birds do not have a urinary bladder or external urethral opening and (with exception of the Ostrich) uric acid is excreted along with feces as a semisolid waste. However, birds such as hummingbirds can be facultatively ammonotelic, excreting most of the nitrogenous wastes as ammonia.They also excrete creatine, rather than creatinine like mammals. This material, as well as the output of the intestines, emerges from the bird's cloaca. The cloaca is a multi-purpose opening: waste is expelled through it, birds mate by joining cloaca, and females lay eggs from it. In addition, many species of birds regurgitate pellets. The digestive system of birds is unique, with a crop for storage and a gizzard that contains swallowed stones for grinding food to compensate for the lack of teeth.Most birds are highly adapted for rapid digestion to aid with flight. Some migratory birds have adapted to use protein from many parts of their bodies, including protein from the intestines, as additional energy during migration.
Birds have one of the most complex respiratory systems of all animal groups. Upon inhalation, 75% of the fresh air bypasses the lungs and flows directly into a posterior air sac which extends from the lungs and connects with air spaces in the bones and fills them with air. The other 25% of the air goes directly into the lungs. When the bird exhales, the used air flows out of the lung and the stored fresh air from the posterior air sac is simultaneously forced into the lungs. Thus, a bird's lungs receive a constant supply of fresh air during both inhalation and exhalation. Sound production is achieved using the syrinx, a muscular chamber incorporating multiple tympanic membranes which diverges from the lower end of the trachea; the trachea being elongated in some species, increasing the volume of vocalizations and the perception of the bird's size. The bird's heart has four chambers and the right aortic arch gives rise to systemic circulation (unlike in the mammals where the left arch is involved). The postcava receives blood from the limbs via the renal portal system. Unlike in mammals, the red blood cells in birds have a nucleus.

The nictitating membrane as it covers the eye of a Masked Lapwing
The nervous system is large relative to the bird's size.The most developed part of the brain is the one that controls the flight-related functions, while the cerebellumcoordinates movement and the cerebrum controls behaviour patterns, navigation, mating and nest building. Most birds have a poor sense of smell with notable exceptions including kiwisNew World vultures and tubenoses. The avianvisual system is usually highly developed. Water birds have special flexible lenses, allowing accommodation for vision in air and water.Some species also have dualfovea. Birds are tetrachromatic, possessing ultraviolet (UV) sensitive cone cells in the eye as well as green, red and blue ones. This allows them to perceive ultraviolet light, which is involved in courtship. Many birds show plumage patterns in ultraviolet that are invisible to the human eye; some birds whose sexes appear similar to the naked eye are distinguished by the presence of ultraviolet reflective patches on their feathers. Male Blue Tits have an ultraviolet reflective crown patch which is displayed in courtship by posturing and raising of their nape feathers.Ultraviolet light is also used in foraging—kestrels have been shown to search for prey by detecting the UV reflective urine trail marks left on the ground by rodents. The eyelids of a bird are not used in blinking. Instead the eye is lubricated by the nictitating membrane, a third eyelid that moves horizontally. The nictitating membrane also covers the eye and acts as a contact lens in many aquatic birds. The bird retina has a fan shaped blood supply system called the pecten.Most birds cannot move their eyes, although there are exceptions, such as the Great Cormorant. Birds with eyes on the sides of their heads have a wide visual field, while birds with eyes on the front of their heads, such as owls, have binocular vision and can estimate the depth of field. The avian ear lacks external pinnae but is covered by feathers, although in some birds, such as the AsioBubo and Otus owls, these feathers form tufts which resemble ears. The inner ear has a cochlea, but it is not spiral as in mammals.
A few species are able to use chemical defenses against predators; some Procellariiformes can eject an unpleasant oil against an aggressor, and some species of pitohuis from New Guinea have a powerful neurotoxin in their skin and feathers.

Chromosomes

Birds have two sexes: male and female. The sex of birds is determined by the Z and W sex chromosomes, rather than by the X and Y chromosomes present in mammals. Male birds have two Z chromosomes (ZZ), and female birds have a W chromosome and a Z chromosome (WZ).
In nearly all species of birds, an individual's sex is determined at fertilization. However, one recent study demonstrated temperature-dependent sex determination among Australian Brush-turkeys, for which higher temperatures during incubation resulted in a higher female-to-male sex ratio.

Feathers, plumage, and scales

 Owl with eyes closed in front of similarly coloured tree trunk partly obscured by green leaves
The plumage of the African Scops Owlallows it to blend in with its surroundings.
Feathers are a feature characteristic of birds (though also present in some dinosaurs not currently considered to be true birds). They facilitate flight, provide insulation that aids in thermoregulation, and are used in display, camouflage, and signaling. There are several types of feathers, each serving its own set of purposes. Feathers are epidermal growths attached to the skin and arise only in specific tracts of skin called pterylae. The distribution pattern of these feather tracts (pterylosis) is used in taxonomy and systematics. The arrangement and appearance of feathers on the body, called plumage, may vary within species by age, social status, and sex.
Plumage is regularly moulted; the standard plumage of a bird that has moulted after breeding is known as the "non-breeding" plumage, or—in the Humphrey-Parkes terminology—"basic" plumage; breeding plumages or variations of the basic plumage are known under the Humphrey-Parkes system as "alternate" plumages. Moulting is annual in most species, although some may have two moults a year, and large birds of prey may moult only once every few years. Moulting patterns vary across species. In passerines, flight feathers are replaced one at a time with the innermost primary being the first. When the fifth of sixth primary is replaced, the outermost tertiaries begin to drop. After the innermost tertiaries are moulted, the secondaries starting from the innermost begin to drop and this proceeds to the outer feathers (centrifugal moult). The greater primary coverts are moulted in synchrony with the primary that they overlap. A small number of species, such as ducks and geese, lose all of their flight feathers at once, temporarily becoming flightless. As a general rule, the tail feathers are moulted and replaced starting with the innermost pair.Centripetal moults of tail feathers are however seen in the Phasianidae.The centrifugal moult is modified in the tail feathers ofwoodpeckers and treecreepers, in that it begins with the second innermost pair of feathers and finishes with the central pair of feathers so that the bird maintains a functional climbing tail.The general pattern seen in passerines is that the primaries are replaced outward, secondaries inward, and the tail from center outward. Before nesting, the females of most bird species gain a bare brood patch by losing feathers close to the belly. The skin there is well supplied with blood vessels and helps the bird in incubation.
Red parrot with yellow bill and wing feathers in bill
Red Lory preening
Feathers require maintenance and birds preen or groom them daily, spending an average of around 9% of their daily time on this. The bill is used to brush away foreign particles and to apply waxy secretions from the uropygial gland; these secretions protect the feathers' flexibility and act as an antimicrobial agent, inhibiting the growth of feather-degrading bacteria.This may be supplemented with the secretions offormic acid from ants, which birds receive through a behaviour known as anting, to remove feather parasites.
The scales of birds are composed of the same keratin as beaks, claws, and spurs. They are found mainly on the toes and metatarsus, but may be found further up on the ankle in some birds. Most bird scales do not overlap significantly, except in the cases of kingfishers and woodpeckers. The scales of birds are thought to be homologous to those of reptiles and mammals.

Flight

 Black bird with white chest  in flight with wings facing down and tail fanned and down pointing
Restless Flycatcher in the downstroke of flapping flight
Most birds can fly, which distinguishes them from almost all other vertebrate classes. Flight is the primary means of locomotion for most bird species and is used for breeding, feeding, and predator avoidance and escape. Birds have various adaptations for flight, including a lightweight skeleton, two large flight muscles, the pectoralis (which accounts for 15% of the total mass of the bird) and the supracoracoideus, as well as a modified forelimb (wing) that serves as an aerofoil. Wing shape and size generally determine a bird species' type of flight; many birds combine powered, flapping flight with less energy-intensive soaring flight. About 60 extant bird species are flightless, as were many extinct birds.Flightlessness often arises in birds on isolated islands, probably due to limited resources and the absence of land predators.Though flightless, penguins use similar musculature and movements to "fly" through the water, as do auksshearwaters anddippers.


Behaviour

Most birds are diurnal, but some birds, such as many species of owls and nightjars, are nocturnal or crepuscular (active during twilight hours), and many coastal waders feed when the tides are appropriate, by day or night.[88]

Diet and feeding

 Illustration of the heads of 16 types of birds with different shapes and sizes of beak
Feeding adaptations in beaks
Birds' diets are varied and often include nectar, fruit, plants, seeds, carrion, and various small animals, including other birds.[ Because birds have no teeth, their digestive system is adapted to processunmasticated food items that are swallowed whole.
Birds that employ many strategies to obtain food or feed on a variety of food items are called generalists, while others that concentrate time and effort on specific food items or have a single strategy to obtain food are considered specialists.Birds' feeding strategies vary by species. Many birds glean for insects, invertebrates, fruit, or seeds. Some hunt insects by suddenly attacking from a branch. Those species that seek pest insects are considered beneficial 'biological control agents' and their presence encouraged inbiological pest control programs. Nectar feeders such as hummingbirdssunbirdslories, and lorikeetsamongst others have specially adapted brushy tongues and in many cases bills designed to fit co-adaptedflowers. Kiwis and shorebirds with long bills probe for invertebrates; shorebirds' varied bill lengths and feeding methods result in the separation of ecological niches.Loonsdiving duckspenguins and aukspursue their prey underwater, using their wings or feet for propulsion,while aerial predators such assulidskingfishers and terns plunge dive after their prey. Flamingos, three species of prion, and some ducks are filter feedersGeese and dabbling ducks are primarily grazers.
Some species, including frigatebirdsgulls,and skuas, engage in kleptoparasitism, stealing food items from other birds. Kleptoparasitism is thought to be a supplement to food obtained by hunting, rather than a significant part of any species' diet; a study of Great Frigatebirds stealing from Masked Boobiesestimated that the frigatebirds stole at most 40% of their food and on average stole only 5%. Other birds are scavengers; some of these, like vultures, are specialised carrion eaters, while others, like gulls,corvids, or other birds of prey, are opportunists.

Water and drinking

Water is needed by many birds although their mode of excretion and lack of sweat glands reduces the physiological demands. Some desert birds can obtain their water needs entirely from moisture in their food. They may also have other adaptations such as allowing their body temperature to rise, saving on moisture loss from evaporative cooling or panting. Seabirds can drink seawater and have salt glandsinside the head that eliminate excess salt out of the nostrils.
Most birds scoop water in their beaks and raise their head to let water run down the throat. Some species, especially of arid zones, belonging to the pigeonfinchmousebirdbutton-quail and bustard families are capable of sucking up water without the need to tilt back their heads. Some desert birds depend on water sources and sandgrouse are particularly well known for their daily congregations at waterholes. Nesting sandgrouse and many plovers carry water to their young by wetting their belly feathers. Some birds carry water for chicks at the nest in their crop or regurgitate it along with food. The pigeon family, flamingos and penguins have adaptations to produce a nutritive fluid called crop milk that they provide to their chicks.

Migration

Many bird species migrate to take advantage of global differences of seasonal temperatures, therefore optimising availability of food sources and breeding habitat. These migrations vary among the different groups. Many landbirds, shorebirds, and waterbirds undertake annual long distance migrations, usually triggered by the length of daylight as well as weather conditions. These birds are characterised by a breeding season spent in the temperate or arctic/antarctic regions and a non-breeding season in the tropical regions or opposite hemisphere. Before migration, birds substantially increase body fats and reserves and reduce the size of some of their organs. Migration is highly demanding energetically, particularly as birds need to cross deserts and oceans without refuelling. Landbirds have a flight range of around 2,500 km (1,600 mi) and shorebirds can fly up to 4,000 km (2,500 mi), although the Bar-tailed Godwit is capable of non-stop flights of up to 10,200 km (6,300 mi).Seabirds also undertake long migrations, the longest annual migration being those of Sooty Shearwaters, which nest in New Zealand and Chile and spend the northern summer feeding in the North Pacific off Japan, Alaska and California, an annual round trip of 64,000 km (39,800 mi). Other seabirds disperse after breeding, travelling widely but having no set migration route. Albatrosses nesting in the Southern Ocean often undertake circumpolar trips between breeding seasons.
 A map of the Pacific Ocean with several coloured lines representing bird routes running from New Zealand to Korea
The routes of satellite-tagged Bar-tailed Godwits migrating north from New Zealand. This species has the longest known non-stop migration of any species, up to 10,200 km (6,300 mi).
Some bird species undertake shorter migrations, travelling only as far as is required to avoid bad weather or obtain food. Irruptive species such as the boreal finches are one such group and can commonly be found at a location in one year and absent the next. This type of migration is normally associated with food availability. Species may also travel shorter distances over part of their range, with individuals from higher latitudes travelling into the existing range of conspecifics; others undertake partial migrations, where only a fraction of the population, usually females and subdominant males, migrates.Partial migration can form a large percentage of the migration behaviour of birds in some regions; in Australia, surveys found that 44% of non-passerine birds and 32% of passerines were partially migratory. Altitudinal migration is a form of short distance migration in which birds spend the breeding season at higher altitudes elevations and move to lower ones during suboptimal conditions. It is most often triggered by temperature changes and usually occurs when the normal territories also become inhospitable due to lack of food. Some species may also be nomadic, holding no fixed territory and moving according to weather and food availability. Parrots as a family are overwhelmingly neither migratory nor sedentary but considered to either be dispersive, irruptive, nomadic or undertake small and irregular migrations.
The ability of birds to return to precise locations across vast distances has been known for some time; in an experiment conducted in the 1950s a Manx Shearwater released in Boston returned to its colony in SkomerWales, within 13 days, a distance of 5,150 km (3,200 mi). Birds navigate during migration using a variety of methods. For diurnal migrants, the sun is used to navigate by day, and a stellar compass is used at night. Birds that use the sun compensate for the changing position of the sun during the day by the use of an internal clock. Orientation with the stellar compass depends on the position of the constellations surrounding Polaris.These are backed up in some species by their ability to sense the Earth's geomagnetism through specialised photoreceptors.

Communication

 Large brown patterned ground bird with outstretched wings each with a large spot in the centre
The startling display of the Sunbitternmimics a large predator.
Birds communicate using primarily visual and auditory signals. Signals can be interspecific (between species) and intraspecific (within species).
Birds sometimes use plumage to assess and assert social dominance, to display breeding condition in sexually selected species, or to make threatening displays, as in the Sunbittern's mimicry of a large predator to ward off hawks and protect young chicks. Variation in plumage also allows for the identification of birds, particularly between species. Visual communication among birds may also involve ritualised displays, which have developed from non-signalling actions such as preening, the adjustments of feather position, pecking, or other behaviour. These displays may signal aggression or submission or may contribute to the formation of pair-bonds. The most elaborate displays occur during courtship, where "dances" are often formed from complex combinations of many possible component movements; males' breeding success may depend on the quality of such displays.
Troglodytes aedon.ogg
Call of the House Wren, a common North American songbird
Bird calls and songs, which are produced in the syrinx, are the major means by which birds communicate with sound. This communication can be very complex; some species can operate the two sides of the syrinx independently, allowing the simultaneous production of two different songs.Calls are used for a variety of purposes, including mate attraction, evaluation of potential mates, bond formation, the claiming and maintenance of territories, the identification of other individuals (such as when parents look for chicks in colonies or when mates reunite at the start of breeding season), and the warning of other birds of potential predators, sometimes with specific information about the nature of the threat. Some birds also use mechanical sounds for auditory communication. The Coenocorypha snipes of New Zealand drive air through their feathers, woodpeckers drum territorially, and Palm Cockatoos use tools to drum.
 massive flock of tiny birds seen from distance so that birds appear as specks
Red-billed Queleas, the most numerous species of bird, form enormous flocks—sometimes tens of thousands strong.

Flocking and other associations

While some birds are essentially territorial or live in small family groups, other birds may form large flocks. The principal benefits of flocking are safety in numbers and increased foraging efficiency.Defence against predators is particularly important in closed habitats like forests, where ambush predation is common and multiple eyes can provide a valuable early warning system. This has led to the development of many mixed-species feeding flocks, which are usually composed of small numbers of many species; these flocks provide safety in numbers but reduce potential competition for resources.Costs of flocking include bullying of socially subordinate birds by more dominant birds and the reduction of feeding efficiency in certain cases.
Birds sometimes also form associations with non-avian species. Plunge-diving seabirds associate with dolphins and tuna, which push shoaling fish towards the surface.Hornbills have amutualistic relationship with Dwarf Mongooses, in which they forage together and warn each other of nearby birds of prey and other predators.

Resting and roosting

 Pink flamingo with grey legs and long neck pressed against body and head tucked under wings
Many birds, like this American Flamingo, tuck their head into their back when sleeping
The high metabolic rates of birds during the active part of the day is supplemented by rest at other times. Sleeping birds often use a type of sleep known as vigilant sleep, where periods of rest are interspersed with quick eye-opening "peeks", allowing them to be sensitive to disturbances and enable rapid escape from threats.Swifts are believed to be able to sleep in flight and radar observations suggest that they orient themselves to face the wind in their roosting flight. It has been suggested that there may be certain kinds of sleep which are possible even when in flight. Some birds have also demonstrated the capacity to fall into slow-wave sleep onehemisphere of the brain at a time. The birds tend to exercise this ability depending upon its position relative to the outside of the flock. This may allow the eye opposite the sleeping hemisphere to remain vigilant for predators by viewing the outer margins of the flock. This adaptation is also known from marine mammals.Communal roosting is common because it lowers the loss of body heat and decreases the risks associated with predators. Roosting sites are often chosen with regard to thermoregulation and safety.
Many sleeping birds bend their heads over their backs and tuck their bills in their back feathers, although others place their beaks among their breast feathers. Many birds rest on one leg, while some may pull up their legs into their feathers, especially in cold weather. Perching birdshave a tendon locking mechanism that helps them hold on to the perch when they are asleep. Many ground birds, such as quails and pheasants, roost in trees. A few parrots of the genus Loriculus roost hanging upside down. Some hummingbirds go into a nightly state oftorpor accompanied with a reduction of their metabolic rates.This physiological adaptation shows in nearly a hundred other species, including owlet-nightjarsnightjars, and woodswallows. One species, the Common Poorwill, even enters a state of hibernation. Birds do not have sweat glands, but they may cool themselves by moving to shade, standing in water, panting, increasing their surface area, fluttering their throat or by using special behaviours like urohidrosis to cool themselves.

Breeding

Social systems

 Bird faces up with green face, black breast and pink lower body. Elaborate long feathers on the wings and tail.
Like others of its family the maleRaggiana Bird of Paradise has elaborate breeding plumage used to impress females.
Ninety-five percent of bird species are socially monogamous. These species pair for at least the length of the breeding season or—in some cases—for several years or until the death of one mate. Monogamy allows for biparental care, which is especially important for species in which females require males' assistance for successful brood-rearing. Among many socially monogamous species, extra-pair copulation (infidelity) is common. Such behaviour typically occurs between dominant males and females paired with subordinate males, but may also be the result of forced copulation in ducks and other anatids. For females, possible benefits of extra-pair copulation include getting better genes for her offspring and insuring against the possibility of infertility in her mate.Males of species that engage in extra-pair copulations will closely guard their mates to ensure the parentage of the offspring that they raise.
Other mating systems, including polygynypolyandrypolygamypolygynandry, and promiscuity, also occur. Polygamous breeding systems arise when females are able to raise broods without the help of males. Some species may use more than one system depending on the circumstances.
Breeding usually involves some form of courtship display, typically performed by the male.Most displays are rather simple and involve some type of song. Some displays, however, are quite elaborate. Depending on the species, these may include wing or tail drumming, dancing, aerial flights, or communal lekking. Females are generally the ones that drive partner selection,although in the polyandrous phalaropes, this is reversed: plainer males choose brightly coloured females. Courtship feeding, billing and allopreening are commonly performed between partners, generally after the birds have paired and mated.
Homosexual behaviour has been observed in males or females in numerous species of birds, including copulation, pair-bonding, and joint parenting of chicks.

Territories, nesting and incubation

Many birds actively defend a territory from others of the same species during the breeding season; maintenance of territories protects the food source for their chicks. Species that are unable to defend feeding territories, such as seabirds and swifts, often breed in colonies instead; this is thought to offer protection from predators. Colonial breeders defend small nesting sites, and competition between and within species for nesting sites can be intense.
All birds lay amniotic eggs with hard shells made mostly of calcium carbonate.Hole and burrow nesting species tend to lay white or pale eggs, while open nesters lay camouflaged eggs. There are many exceptions to this pattern, however; the ground-nesting nightjars have pale eggs, and camouflage is instead provided by their plumage. Species that are victims of brood parasites have varying egg colours to improve the chances of spotting a parasite's egg, which forces female parasites to match their eggs to those of their hosts.
 Yellow weaver (bird) with black head hangs an upside-down nest woven out of grass fronds.
Male Golden-backed Weavers construct elaborate suspended nests out of grass
Bird eggs are usually laid in a nest. Most species create somewhat elaborate nests, which can be cups, domes, plates, beds scrapes, mounds, or burrows. Some bird nests, however, are extremely primitive; albatross nests are no more than a scrape on the ground. Most birds build nests in sheltered, hidden areas to avoid predation, but large or colonial birds—which are more capable of defence—may build more open nests. During nest construction, some species seek out plant matter from plants with parasite-reducing toxins to improve chick survival, and feathers are often used for nest insulation.Some bird species have no nests; the cliff-nesting Common Guillemot lays its eggs on bare rock, and male Emperor Penguins keep eggs between their body and feet. The absence of nests is especially prevalent in ground-nesting species where the newly hatched young are precocial.
 Nest made of straw with five white eggs and one grey speckled egg
Nest of an Eastern Phoebe that has been parasitised by a Brown-headed Cowbird
Incubation, which optimises temperature for chick development, usually begins after the last egg has been laid. In monogamous species incubation duties are often shared, whereas in polygamous species one parent is wholly responsible for incubation. Warmth from parents passes to the eggs through brood patches, areas of bare skin on the abdomen or breast of the incubating birds. Incubation can be an energetically demanding process; adult albatrosses, for instance, lose as much as 83 grams (2.9 oz) of body weight per day of incubation. The warmth for the incubation of the eggs of megapodes comes from the sun, decaying vegetation or volcanic sources.Incubation periods range from 10 days (in woodpeckerscuckoos and passerine birds) to over 80 days (in albatrosses and kiwis).

Parental care and fledging

At the time of their hatching, chicks range in development from helpless to independent, depending on their species. Helpless chicks are termed altricial, and tend to be born small, blind, immobile and naked; chicks that are mobile and feathered upon hatching are termed precocial. Altricial chicks need help thermoregulating and must be brooded for longer than precocial chicks. Chicks at neither of these extremes can be semi-precocial or semi-altricial.
 Hummingbird perched on edge of tiny nest places food into mouth of one of two chicks
A female Calliope Hummingbird feeding fully grown chicks
The length and nature of parental care varies widely amongst different orders and species. At one extreme, parental care in megapodes ends at hatching; the newly hatched chick digs itself out of the nest mound without parental assistance and can fend for itself immediately. At the other extreme, many seabirds have extended periods of parental care, the longest being that of theGreat Frigatebird, whose chicks take up to six months to fledge and are fed by the parents for up to an additional 14 months.
In some species, both parents care for nestlings and fledglings; in others, such care is the responsibility of only one sex. In some species, other members of the same species—usually close relatives of the breeding pair, such as offspring from previous broods—will help with the raising of the young. Such alloparenting is particularly common among the Corvida, which includes such birds as the true crowsAustralian Magpie and Fairy-wrens,but has been observed in species as different as the Rifleman and Red Kite. Among most groups of animals, male parental care is rare. In birds, however, it is quite common—more so than in any other vertebrate class. Though territory and nest site defence, incubation, and chick feeding are often shared tasks, there is sometimes a division of labour in which one mate undertakes all or most of a particular duty.
The point at which chicks fledge varies dramatically. The chicks of the Synthliboramphus murrelets, like the Ancient Murrelet, leave the nest the night after they hatch, following their parents out to sea, where they are raised away from terrestrial predators.Some other species, such as ducks, move their chicks away from the nest at an early age. In most species, chicks leave the nest just before, or soon after, they are able to fly. The amount of parental care after fledging varies; albatross chicks leave the nest on their own and receive no further help, while other species continue some supplementary feeding after fledging. Chicks may also follow their parents during their firstmigration.

Brood parasites

Brood parasitism, in which an egg-layer leaves her eggs with another individual's brood, is more common among birds than any other type of organism. After a parasitic bird lays her eggs in another bird's nest, they are often accepted and raised by the host at the expense of the host's own brood. Brood parasites may be either obligate brood parasites, which must lay their eggs in the nests of other species because they are incapable of raising their own young, or non-obligate brood parasites, which sometimes lay eggs in the nests of conspecifics to increase their reproductive output even though they could have raised their own young. One hundred bird species, including honeyguidesicteridsestrildid finches and ducks, are obligate parasites, though the most famous are the cuckoos.Some brood parasites are adapted to hatch before their host's young, which allows them to destroy the host's eggs by pushing them out of the nest or to kill the host's chicks; this ensures that all food brought to the nest will be fed to the parasitic chicks.

Ecology

 Brown gull-like bird on ground with wings outstreched confronts penguin that is leaning towards it with bill wide open
The South Polar Skua (left) is a generalist predator, taking the eggs of other birds, fish, carrion and other animals. This skua is attempting to push an Adelie Penguin (right) off its nest
Birds occupy a wide range of ecological positions. While some birds are generalists, others are highly specialised in their habitat or food requirements. Even within a single habitat, such as a forest, the niches occupied by different species of birds vary, with some species feeding in the forest canopy, others beneath the canopy, and still others on the forest floor. Forest birds may be insectivoresfrugivores, and nectarivores. Aquatic birds generally feed by fishing, plant eating, and piracy or kleptoparasitism. Birds of prey specialise in hunting mammals or other birds, while vultures are specialised scavengersAvivores are animals that are specialized at predating birds.
Some nectar-feeding birds are important pollinators, and many frugivores play a key role in seed dispersal. Plants and pollinating birds often coevolve,and in some cases a flower's primary pollinator is the only species capable of reaching its nectar.
Birds are often important to island ecology. Birds have frequently reached islands that mammals have not; on those islands, birds may fulfill ecological roles typically played by larger animals. For example, in New Zealand the moas were important browsers, as are the Kereru and Kokako today. Today the plants of New Zealand retain the defensive adaptations evolved to protect them from the extinct moa. Nesting seabirds may also affect the ecology of islands and surrounding seas, principally through the concentration of large quantities of guano, which may enrich the local soil and the surrounding seas.
A wide variety of Avian ecology field methods, including counts, nest monitoring, and capturing and marking, are used for researching avian ecology.

Relationship with humans

Since birds are highly visible and common animals, humans have had a relationship with them since the dawn of man.Sometimes, these relationships are mutualistic, like the cooperative honey-gathering among honeyguides and African peoples such as the Borana.Other times, they may be commensal, as when species such as the House Sparrow have benefited from human activities. Several bird species have become commercially significant agricultural pests,and some pose an aviation hazard. Human activities can also be detrimental, and have threatened numerous bird species with extinction (huntingavian lead poisoningpesticides,roadkill, and predation by pet cats and dogs are common sources of death for birds).
Birds can act as vectors for spreading diseases such as psittacosissalmonellosis,campylobacteriosis, mycobacteriosis (avian tuberculosis), avian influenza (bird flu), giardiasis, andcryptosporidiosis over long distances. Some of these are zoonotic diseases that can also be transmitted to humans.

Economic importance

Domesticated birds raised for meat and eggs, called poultry, are the largest source of animal protein eaten by humans; in 2003, 76 milliontons of poultry and 61 million tons of eggs were produced worldwide.Chickens account for much of human poultry consumption, though turkeys, ducks, and geese are also relatively common. Many species of birds are also hunted for meat. Bird hunting is primarily a recreational activity except in extremely undeveloped areas. The most important birds hunted in North and South America are waterfowl; other widely hunted birds include pheasantswild turkeys, quail, dovespartridgegrousesnipe, and woodcock.Muttonbirding is also popular in Australia and New Zealand. Though some hunting, such as that of muttonbirds, may be sustainable, hunting has led to the extinction or endangerment of dozens of species.
 Illustration of fisherman on raft with pole for punting and numerous black birds on raft
The use of cormorants by Asian fishermen is in steep decline but survives in some areas as a tourist attraction.
Other commercially valuable products from birds include feathers (especially the down of geese and ducks), which are used as insulation in clothing and bedding, and seabird feces (guano), which is a valuable source of phosphorus and nitrogen. The War of the Pacific, sometimes called the Guano War, was fought in part over the control of guano deposits.
Birds have been domesticated by humans both as pets and for practical purposes. Colourful birds, such asparrots and mynas, are bred in captivity or kept as pets, a practice that has led to the illegal trafficking of some endangered speciesFalcons and cormorants have long been used for hunting and fishing, respectively. Messenger pigeons, used since at least 1 AD, remained important as recently as World War II. Today, such activities are more common either as hobbies, for entertainment and tourism,or for sports such as pigeon racing.
Amateur bird enthusiasts (called birdwatchers, twitchers or, more commonly, birders) number in the millions. Many homeowners erect bird feeders near their homes to attract various species. Bird feedinghas grown into a multimillion dollar industry; for example, an estimated 75% of households in Britain provide food for birds at some point during the winter.

Religion, folklore and culture

 Woodcut of three long-legged and long-necked birds
"The 3 of Birds" by the Master of the Playing Cards, 15th century Germany
Birds play prominent and diverse roles in folklore, religion, and popular culture. In religion, birds may serve as either messengers or priests and leaders for a deity, such as in the Cult of Makemake, in which the Tangata manu of Easter Island served as chiefs, or as attendants, as in the case of Hugin and Munin, two Common Ravens who whispered news into the ears of the Norse god Odin. Priests were involved in augury, or interpreting the words of birds while the "auspex" (from which the word "auspicious" is derived) watched their activities to foretell events. They may also serve as religious symbols, as when Jonah (Hebrew: יוֹנָהdove) embodied the fright, passivity, mourning, and beauty traditionally associated with doves. Birds have themselves been deified, as in the case of the Common Peacock, which is perceived as Mother Earth by the Dravidians of India. Some birds have also been perceived as monsters, including the mythological Roc and theMāori's legendary Pouākai, a giant bird capable of snatching humans.
Birds have been featured in culture and art since prehistoric times, when they were represented in earlycave paintings.Birds were later used in religious or symbolic art and design, such as the magnificentPeacock Throne of the Mughal and Persian emperors. With the advent of scientific interest in birds, many paintings of birds were commissioned for books. Among the most famous of these bird artists wasJohn James Audubon, whose paintings of North American birds were a great commercial success in Europe and who later lent his name to the National Audubon Society. Birds are also important figures in poetry; for example, Homer incorporated Nightingales into his Odyssey, and Catullus used a sparrow as an erotic symbol in his Catullus 2.The relationship between an albatross and a sailor is the central theme of Samuel Taylor Coleridge's The Rime of the Ancient Mariner, which led to the use of the term as a metaphor for a 'burden'.Other English metaphors derive from birds;vulture funds and vulture investors, for instance, take their name from the scavenging vulture.
Perceptions of various bird species often vary across cultures. Owls are associated with bad luck, witchcraft, and death in parts of Africa,but are regarded as wise across much of Europe. Hoopoes were considered sacred in Ancient Egypt and symbols of virtue in Persia, but were thought of as thieves across much of Europe and harbingers of war in Scandinavia.

Conservation

 Large black bird with featherless head and hooked bill
The California Condor once numbered only 22 birds, but conservation measures have raised that to over 300 today.
Though human activities have allowed the expansion of a few species, such as the Barn Swallow andEuropean Starling, they have caused population decreases or extinction in many other species. Over a hundred bird species have gone extinct in historical times, although the most dramatic human-caused avian extinctions, eradicating an estimated 750–1800 species, occurred during the human colonisation ofMelanesianPolynesian, and Micronesian islands. Many bird populations are declining worldwide, with 1,227 species listed as threatened by Birdlife International and the IUCN in 2009.
The most commonly cited human threat to birds is habitat loss. Other threats include overhunting, accidental mortality due to structural collisions or long-line fishing bycatch pollution (including oil spillsand pesticide use), competition and predation from nonnative invasive species, and climate change.
Governments and conservation groups work to protect birds, either by passing laws that preserve andrestore bird habitat or by establishing captive populations for reintroductions. Such projects have produced some successes; one study estimated that conservation efforts saved 16 species of bird that would otherwise have gone extinct between 1994 and 2004, including the California Condor and Norfolk Parakeet.

>>Modern bird orders: Classification


Modern bird orders: Classification

Neornithes  
Palaeognathae 

Struthioniformes


Tinamiformes


 Neognathae 
Other birds (Neoaves)

Galloanserae 

Anseriformes


Galliformes





Basal divergences of modern birds
based on Sibley-Ahlquist taxonomy

Cladogram showing the most recent classification of Neoaves, based on several phylogenetic studies.
This is a list of the taxonomic orders in the subclass Neornithes, or modern birds. This list uses the traditional classification (the so-called Clements order), revised by the Sibley-Monroe classification. The list of birds gives a more detailed summary of the orders, including families.
Subclass Neornithes
The subclass Neornithes has two extant superorders –
Superorder Palaeognathae:
The name of the superorder is derived from paleognath, the ancient Greek for "old jaws" in reference to the skeletal anatomy of the palate, which is described as more primitive and reptilian than that in other birds. The Palaeognathae consists of two orders which comprise 49 existing species.
  • Struthioniformes—ostriches, emus, kiwis, and allies
  • Tinamiformes—tinamous
Superorder Neognathae:
The superorder Neognathae comprises 27 orders which have a total of nearly ten thousand species. The Neognathae have undergone adaptive radiation to produce the staggering diversity of form (especially of the bill and feet), function, and behaviour that are seen today.
The orders comprising the Neognathae are:
  • Anseriformes—waterfowl
  • Galliformes—fowl
  • Charadriiformes—gulls, button-quails, plovers and allies
  • Gaviiformes—loons
  • Podicipediformes—grebes
  • Procellariiformes—albatrosses, petrels, and allies
  • Sphenisciformes—penguins
  • Pelecaniformes—pelicans and allies
  • Phaethontiformes—tropicbirds
  • Ciconiiformes—storks and allies
  • Cathartiformes—New World vultures
  • Phoenicopteriformes—flamingos
  • Falconiformes—falcons, eagles, hawks and allies
  • Gruiformes—cranes and allies
  • Pteroclidiformes—sandgrouse
  • Columbiformes—doves and pigeons
  • Psittaciformes—parrots and allies
  • Cuculiformes—cuckoos and turacos
  • Opisthocomiformes—hoatzin
  • Strigiformes—owls
  • Caprimulgiformes—nightjars and allies
  • Apodiformes—swifts and hummingbirds
  • Coraciiformes—kingfishers and allies
  • Piciformes—woodpeckers and allies
  • Trogoniformes—trogons
  • Coliiformes—mousebirds
  • Passeriformes—passerines
The radically different Sibley-Monroe classification (Sibley-Ahlquist taxonomy), based on molecular data, found widespread adoption in a few aspects, as recent molecular, fossil, and anatomical evidence supported the Galloanserae.

Tuesday, November 13, 2007

>>Radiation of modern birds

Radiation of modern birds

Modern birds are classified in the subclass Neornithes, which are now known to have evolved into some basic lineages by the end of the Cretaceous . The Neornithes are split into two superorders, the Paleognathae and Neognathae. The paleognaths include the tinamous of Central and South America and the ratites. The ratites are large flightless birds, and include ostriches, rheas, cassowaries, kiwis and emus (though some scientists suspect that the ratites represent an artificial grouping of birds which have independently lost the ability to fly in a number of unrelated lineages).
The basal divergence from the remaining Neognathes was that the Galloanserae, the superorder containing the Anseriformes (ducks, geese, swans and screamers), and the Galliformes (the pheasants, grouse, and their allies, together with the mound builders, and the guans and their allies). The dates for the splits are much debated by scientists. It is agreed that the Neornithes evolved in the Cretaceous and that the split between the Galloanseri from other Neognathes occurred before the K-T extinction event, but there are different opinions about whether the radiation of the remaining Neognathes occurred before or after the extinction of the other dinosaurs.This disagreement is in part caused by a divergence in the evidence, with molecular dating suggesting a Cretaceous radiation and fossil evidence supporting a Tertiary radiation. Attempts to reconcile the molecular and fossil evidence have proved controversial.
The classification of birds is a contentious issue. Sibley and Ahlquist's Phylogeny and Classification of Birds (1990) is a landmark work on the classification of birds, although frequently debated and constantly revised. A preponderance of evidence seems to suggest that the modern bird orders constitute accurate taxa. But scientists disagree about the relationships between orders; evidence from modern bird anatomy, fossils and DNA have all been brought to bear on the problem but no strong consensus has emerged. More recently, new fossil and molecular evidence is providing an increasingly clear picture of the evolution of modern bird orders.

>>Early evolution of birds

Early evolution of birds

Aves

Archaeopteryx

Pygostylia

Confuciusornithidae

Ornithothoraces

Enantiornithes

Ornithurae

Hesperornithiformes


Neornithes






Basal bird phylogeny simplified after Chiappe, 2007
During the Cretaceous Period, birds diversified into a wide variety of forms. Many of these groups retained primitive characteristics, such as clawed wings and teeth, though the latter was lost independently in a number of bird groups, including modern birds (Neornithes). While the earliest birds retained the long bony tails of their ancestors (birds such as Archaeopteryx and Jeholornis), more advanced birds shortened the tail with the advent of the pygostyle bone in the clade Pygostylia.
The first large, diverse lineage of short-tailed birds to evolve were the Enantiornithes, or "opposite birds", so named because the construction of their shoulder bones was the reverse of the condition seen in modern birds. Enantirornithes occupied a wide array of ecological niches, from sand-probing shorebirds and fish-eaters to tree-dwelling forms and seed-eaters. More advanced lineages also specialized in eating fish, like the superficially gull-like subclass of Ichthyornithes ("fish birds"). One order of Mesozoic seabirds, the Hesperornithiformes, became so well adapted to hunting fish in marine environments that they lost the ability to fly and became primarily aquatic. Despite their extreme specializations, the Hesperornithiformes represent some of the closest relatives of modern birds.

Friday, November 2, 2007

>>Dinosaurs and the origin of birds

Dinosaurs and the origin of birds



Confuciusornis, a Cretaceous bird from China

Confuciusornis, a Cretaceous bird from China
There is significant evidence that birds evolved from theropod dinosaurs, specifically, that birds are members of Maniraptora, a group of theropods which includes dromaeosaurs and oviraptorids, among others. As more non-avian theropods that are closely related to birds are discovered, the formerly clear distinction between non-birds and birds becomes blurred. Recent discoveries in Liaoning Province of northeast China, demonstrating that many small theropod dinosaurs had feathers, contribute to this ambiguity.
The oldest known bird, the Late Jurassic Archaeopteryx, is well-known as one of the first transitional fossils to be found in support of evolution in the late 19th century, though it is not considered a direct ancestor of modern birds. Protoavis texensis may be even older although the fragmentary nature of this fossil leaves it open to considerable doubt whether this was a bird ancestor.
The dromaeosaurids Cryptovolans and Microraptor may have been capable of powered flight to an extent similar to or greater than that of Archaeopteryx. Cryptovolans had a sternal keel and had ribs with uncinate processes. In fact, Cryptovolans makes a better "bird" than Archaeopteryx which is missing some of these modern bird features. Because of this, some palaeontologists have suggested that dromaeosaurs are actually basal birds, and that the larger members of the family are secondarily flightless, i.e. that dromaeosaurs evolved from birds and not the other way around. Evidence for this theory is currently inconclusive, as the exact relationship among the most advanced maniraptoran dinosaurs and the most primitive true birds are not well understood.
Although ornithischian (bird-hipped) dinosaurs share the hip structure of birds, birds actually originated from the saurischian (lizard-hipped) dinosaurs, and thus evolved their hip structure independently. In fact, the bird-like hip structure also developed a third time among a peculiar group of theropods, the Therizinosauridae.
An alternate theory to the dinosaurian origin of birds, espoused by a few scientists (most notably Larry Martin and Alan Feduccia), states that birds (including maniraptoran "dinosaurs") evolved from early archosaurs like Longisquama, a theory which is contested by most palaeontologists and evidence based on feather development and evolution.

>>Evolution and taxonomy

Evolution and taxonomy

Archaeopteryx, the earliest known bird

Archaeopteryx, the earliest known bird
The first classification of birds was developed by Francis Willughby and John Ray in their 1676 volume, Ornithologiae. Carolus Linnaeus modified that work in 1758 to devise the taxonomic classification system still in use.Birds are categorised as the biological class Aves in Linnean taxonomy. Phylogenetic taxonomy places Aves in the dinosaur clade Theropoda. Aves and a sister group, the order Crocodilia, together are the sole living members of the reptile clade Archosauria. Phylogenetically, Aves is commonly defined as all descendants of the most recent common ancestor of modern birds and Archaeopteryx lithographica.Archaeopteryx, from the Kimmeridgian stage of the Late Jurassic (some 155–150 million years ago), is the earliest known bird under this definition. Others have defined Aves to include only the modern bird groups, excluding most groups known only from fossils,in part to avoid the uncertainties about the placement of Archaeopteryx in relation to animals traditionally thought of as theropod dinosaurs.
Modern birds all sit within the subclass Neornithes, which is divided into two superorders, the Paleognathae (mostly flightless birds like ostriches), and the wildly diverse Neognathae, containing all other birds. Depending on the taxonomic viewpoint, the number of species cited varies anywhere from 9,800 to 10,050 known living bird species in the world.

Saturday, October 6, 2007

>>Birds

Birds



Birds (class Aves) are bipedal, warm-blooded, egg-laying vertebrate animals. Birds evolved from theropod dinosaurs during the Jurassic period and the earliest known bird is the Late Jurassic Archaeopteryx. Ranging in size from tiny hummingbirds to the huge Ostrich and Emu, there are around 10,000 known living bird species in the world, making them the most diverse class of terrestrial vertebrates.
Modern birds are characterised by feathers, a beak with no teeth, the laying of hard-shelled eggs, a high metabolic rate, a four-chambered heart, and a lightweight but strong skeleton. All birds have forelimbs modified as wings and most can fly, though the ratites and several others, particularly endemic island species, have lost the ability to fly. Birds also have unique digestive and respiratory systems that are highly adapted for flight.
Many species of bird undertake long distance annual migrations, and many more perform shorter irregular movements. Birds are social and communicate using visual signals and through calls and song, and participate in social behaviours including cooperative hunting, cooperative breeding, flocking and mobbing of predators. Birds are primarily socially monogamous, with engagement in extra-pair copulations being common in some species—other species have polygamous or polyandrous breeding systems. Eggs are usually laid in a nest and incubated and most birds have an extended period of parental care after hatching.
Birds are economically important to humans: many are important sources of food, acquired either through hunting or farming, and they provide other products. Some species, particularly songbirds and parrots, are popular as pets. Birds figure prominently in all aspects of human culture from religion to poetry and popular music. About 120–130 species have become extinct as a result of human activity since 1600, and hundreds more before this. Currently around 1,200 species of birds are threatened with extinction by human activities and efforts are underway to protect them.

>>What is avian flu?

What is avian flu?

Avian flu describes the form of influenza viruses that ostensibly infects only birds. These can be birds that live in the wild, such as swans, ducks or geese, or birds bred in factory conditions for human consumption, such as chickens or turkeys.

It has been a known fact and for some time, that birds, in any form, appear to be widespread carriers of a many natural variations of the flu virus, Experts calculate that there may be as many as fifteen different varieties of influenza affecting the bird population of the globe.

These forms of flu are generally pretty mild, and rarely display symptoms or cause widespread fatalities. However, and especially when the birds are bred in close proximity to one and other in an enclosed environment, there are some forms of flu viruses that are both highly contagious and especially viral in their form.

Known as "highly pathogenic avian influenza" these epidemics can cause widespread fatalities in a bird population in a matter of hours. One particularly viral form of avian flu has been active in Asia intermittently for the last decade. In 1997, when this form of avian flu was first detected. researchers were both surprised and alarmed to discover that this was a virus which had the ability and could occasionally infect humans. Almost without exception, the cases reported were among people who were handling live chickens or turkeys in coups. Known in scientific circles as "species jumping" there arose a genuine fear that an avian flu virus bearing highly pathogenic characteristics could be merged with an influenza virus in human form.

That this virus was shown to be fatal in most cases to the avian populations meant that the greatest fears of researchers into the spread of a pandemic that would affect both birds and humans as one.

If this were to happen, the result could be a global flu pandemic that would make the previous one that took place almost one hundred years previously seem like a picnic. Known as the Spanish pandemic of 1918-1919, it saw the deaths of between 20 and 40 million people.

This was more than the recently ended World War One. The Spanish Flue Pandemic is generally regarded as the most devastating epidemic in world history to date. Bearing in mind that this pandemic took place before international travel was commonplace and was confined mainly to Europe, if there were to a be global avian flu pandemic in the 21st century the consequential loss of life could have been indeed catastrophic.

In order to contain the spread of the pandemic, initially many of the Asian countries were required to cull entire poultry stocks. However there was little to be done to prevent the disease from spreading through wild fowl and these were found to be the principal carriers and spreaders of the virus.

So how does the avian flu spread to humans? Theory has it that if a person, who is suffering from a human viral flu, comes into contact with a bird who is suffering from avian flu, there is a remote possibility that the two strains may combine to create a new strain that will be based on the avian flu virus. This would mean that the avian flu’s highly pathogenic characteristics could be passed on to humans, both rapidly and with the capability of causing tremendous and widespread fatalities.

Thankfully, till now, this has not been the case. There have been human fatalities from avian flu, but they have been numbered in the low hundreds in total over the last ten years. And the Avian Flu viruses (i.e. H5N1, H7N3 have still been contained in people who have been in daily contact with live poultry.

The symptoms of avian flu are similar to human flu, and they are a high fever, a dry cough, sore throat and aching muscles. In advanced forms of avian flu, the patient may experience problems with breathing that can develop into pneumonia. This form of complication, in many cases, can prove fatal.

The threat of a pandemic of avian flu affecting humans has not yet happened. Scientists have not dismissed the likelihood of this happening in the future. All that it would take would be a chain of events that theoretically could occur but are unlikely to do so. People who travel to the far eastern countries should avoid contact with people who are involved in the poultry industry, especially if they are suffering from influenza. An unfortunate chain of events like that could spark of a global avian influenza pandemic.


Frank j Vanderlugt owns and operates http://www.avian-flu-symptons.com 2 Avianflusymptonscom
Article Source: http://www.ArticleBiz.com
By: Frank Vanderlugt

>>About Avian Flu Birds

About Avian Flu Birds

Avian flu is commonly called bird flu. It is an infection that occurs naturally in birds. The virus is carried by wild birds in their intestines. The wild birds rarely get sick from the virus. It is however very contagious among domesticated birds like chickens, ducks and turkeys. It can make them very sick, very quickly and usually leads to death.

The virus comes in two forms. One is a low impact variety that usually goes undetected. The domestic birds show little change. The high impact form spreads quickly through a domestic flock. The virus attacks internal organs and the infected birds are usually dead within two days.

The virus spreads through domestic birds quickly because the birds are typically held in close contact with each other. The saliva and feces spread the virus from one bird to the next. Common areas like water and feed supplies often become contaminated and accelerate the spread of the disease.

Typically avian flu does not transfer from birds to people. But in recent years there have been more than 100 confirmed cases of human infection by the World Health Organization. The flu spreads to people in much the same way it spreads to other birds. The humans that were infected had contact with the infected chickens, ducks or turkeys or contaminated surfaces. Transfer from one infected person to another is luckily very rare.

Avian flu symptoms are very much like normal human strains of the flu and include fever, cough, sore throat and muscle aches. Additional symptoms vary based on the specific strain of the virus that caused the infection. A lab test is needed to confirm if the person is suffering from avian flu or just a normal human strain.

While this may not sound like a serious problem, health official are very concerned about avian flu being transmitted to humans even in small numbers. The risk is that the virus will adapt over time to a form that is highly contagious among humans just like it is now among domestic birds. Additionally all viruses are a concern because they can become resistant to drugs and harder to treat.

Currently in the U.S., there is no risk of avian flu. There is no concern about eating properly cooked eggs and poultry. There is no need to wear a surgical mask when around large groups of people. It is also considered safe to maintain a flock of chickens for personal egg production.

As a precaution you should avoid contact with any wild bird. Do not attempt to touch a diseased or dead bird. You can contact your local government for proper removal of the dead bird. Often the bird will be sent for testing to determine if any disease was present.

Hunters should exercise caution when dealing with game birds. They should never handle or eat sick birds. When cleaning the bird, latex gloves should be worn. The knives, surfaces and other equipment should be cleaned with soap and water. Hunters should not drink, eat or smoke while handling the birds. This could easily transfer contamination to the mouth. All game birds should be cooked thoroughly.
frank j vanderlugt owns and operates http://www.avian-flu-symptons-now.com 2 Avianflusymptonsnowcom

Article Source: http://www.ArticleBiz.com
By: Frank Vanderlugt

>>How to Keep Your Pet Birds Safe at Home

How to Keep Your Pet Birds Safe at Home

Many of us have heard stories about birds outlasting their owners. This is a surprise to many, considering the delicate appearance of most species of birds. Birds, especially canaries, were used by miners to test the quality of the air deep in the mines. When the air reaches relatively unhealthy levels, the canaries are affected adversely and succumb to the fatal effects. This gives miners ample warning before the air became fatal for humans. This shows the keen perception of birds.

Pet birds are easily affected by unwholesome smells, similar to wild birds. Many household items, Teflon pans, aerosol sprays and even furniture polish, can be lethal to birds. One of the best practices when dealing with substances that may give off pungent odors is to use it in airy areas far away from your birds.

Pet birds have a natural inclination to chomp and it can be a major issue. When a bird chomps on soldered joints on welded items, lead poisoning is a common result. Also, birds do have a penchant to chew on potted plants. Despite popular sentiments, poinsettia plants are not deadly. It is better to be safe than sorry so do err on the side of caution should you be uncertain if a plant is poisonous for your pet bird and remove it from the reach of your pet. A small pot of innocuous parsley can be helpful to the bird to overcome the desire of nibbling on houseplants as it is a safe substitute.

Fresh food that is fed to your birds will do them a whole lot of good; however, food like coffee, chocolate and avocado are fatal for birds and they should never be given such foods.

As the holiday season approaches, most people will bring a tree into their house. Many might think that a bird's natural habitat is a tree and have the belief that their birds will have an affinity for perching on it. It is true that birds might enjoy this exercise, many pine trees could have had preservatives or chemicals administered and prove fatal to your pet. Furthermore, electrical lights and decorations can be pose a certain kind of danger for your birds.

There are a number of precautionary issues to see to if your bird does not have had its wings clipped. First, all windows and glass doors should be covered in some way. A good bet is achieved by blinds, shades or curtains. Placing safety decals on windows and glass is another option, besides curtains or blinds, to alert the bird that the glass is there and help avoid serious or fatal accidents. You should treat other large reflective surfaces and mirrors in a similar manner when your pet bird is released from its cage.

Standing water can pose as a form of danger as well. The bird can meet its untimely end in a toilet bowl or full kitchen sink in a few seconds. Cooking while a bird is out of its cage is not advised, especially if you have an uncovered pot on the stove.

Finally, always be mindful of the whereabouts of your bird even if its wings are clipped. Even a bird with clipped wings can soar for a considerable distance if there is an upward breeze. It is easy to forget that your bird is perched on your shoulder when your doorbell suddenly rings and you rush to answer it but you must remember never to carry your bird to an open door regardless of whether or not its wings are clipped.
Moses Wright has been a bird lover since young and now he loves to help fellow bird owners solve their bird care problems and other house pet care problems whenever he can on his site: http://www.petquery.com/

Article Source: http://www.ArticleBiz.com
By: Moses Wright

Monday, September 17, 2007

>>Watching the Beautiful Bird life at the Kakamega Forest Reserve

Watching the Beautiful Bird life
at the Kakamega Forest Reserve

Bird Watching in Kenya takes place in the Kakamega Forest Reserve; a beautiful rain forest with myriad varieties of birds, animals and butterflies, Virtually all of the Rift Valley Lakes, Mount Kenya and its surrounding, the Lake Victoria Region and the Masai Mara National Reserve to mention but the least.

Kakamega Forest Reserve is home to the almost extinct De Brazza's monkey, the red tailed monkey, black colobus monkey, white colobus monkey, fruit bats and flying squirrels. However the mother of all attractions is the bird watching excursions in the Kakamega Forest Reserve. This reserve boasts to over 330 of bird species and over 400 species of butterflies. A visit to this reserve will sure treat you to a variety of plant life, unique due to the fact that Kakamega Forest Reserve is a virgin tropical forest especially in the northern side.

The best times to visit the Kakamega Forest Reserve is in June, July, August through to October. During these times thousands of Migratory birds arrive. The Kakamega Forest Reserve is usually in full bloom at this time and is a magnificent site to behold. Its during these times also that circumcision, a practice very important to the local community is performed. On Sundays you will sure be treated to bull fights and cock fights organized by the local communities of Khaemba and Shinyalu within the Kakamega Forest Reserve.

Walking through the Kakamega Forest Reserve is the best way to appreciate its bio-diversity. I would not encourage you to make four wheel drive travel through the forest since the trails and the paths are not meant for vehicles and you could easily scare away the birds and animals that you intended to see. Its advisable to take a trained guide with you at a small fee. This guides have a lot of invaluable information and details that you could make do with, apart from guiding you through the trails.

Although bird watching is the reason visitors come to Kakamega Forest Reserve, one will well be treated to fantastic nature walks along the Yara river, Lugusida river, Isiukhu river and the Ikuywa river. Its interesting to watch the isukhu falls on the Isiukhu River, to climb to the Buyanga Hill lookout in the Northern side of the forest to watch the sunrise and Lirhanda Hill lookout in the south to watch the sunset. You could also see the Crying Stone situated to the south of Kakamega town, half way on your way to shinyalu.

The Kakamega Forest Reserve is not short of places to eat, sleep and while away your evenings. You could stay at the Udo's Bandas and campsite near the Kenya Wildlife offices overlooking the Isiukhu Falls in Buyangu area, The Forest Rest House and Keep Center at Isicheno and The Sarova isle Resort. Be sure also to check out the Rivendell Gardens and the Rondo Retreat.
Lucy Maruhi is a Tour Operator and has been researching and reporting on Travel, Tour and Vacation for years. For more information on Kakamega Forest Reserve, visit her site at Kakamega Forest Reserve
Article Source: http://www.ArticleBiz.com
By: Lucy Maruhi

>>How to Make Sure the Hummingbirds Find You This Spring

How to Make Sure the Hummingbirds
Find You This Spring

It's spring at last, and here in Southern Colorado, it seems we've been waiting a long time to glimpse our favorite wild bird, the hummingbird. We just love watching these tiny, lithe creatures of such vivid color outside our window. There have been a couple summers here that we've had twenty different hummingbirds at our three feeders. We had to refill them every day just to keep up!

We're fortunate to have very good soil in our yard, while most of this part of the country is poor, rocky soil. This makes growing perennials easier and more bountiful. I say easier because we are in a high-desert climate and must water constantly to keep things green.

Those two things: certain flowers, and running the sprinkler system help attract the hummingbirds to our yard. With their specially designed beaks and long tongues, they just love the flowers suited to their anatomy. Our columbines, torch lilies and butterfly bushes are like giant billboards advertising a hummingbird-friendly play land.

We've tried to plant perennials that bloom at different times throughout the summer so that we always have something to attract the hummingbirds. What a difference it has made. We usually get to enjoy the hummingbirds at least a full month before they discover our next door neighbors yard.

While you may not need to run a sprinkler in the summer months like we must, you can install a fountain or bird bath that will attract just as many hummingbirds. They love the splash and spray of the water and we've seen them many times hovering and dipping over the nearby river where the water hits the rocks and sprays up.

Besides the flowers and water, we offer our hummingbirds feeders filled with sugar water. While you can purchase commercial food mix, it is less expensive to make your own at home and it's very simple to do. Here's the recipe:

-One part sugar

-Four parts water

-Boil for 2 minutes

-Cool and fill feeders made for hummingbirds

There is no need to add food coloring to the feed and it may actually be detrimental to the birds. Why take the chance?

A little trick we've learned over the years is to put a short piece of transparent tape around the stem that holds the bee guard in place. That way it keeps the larger, more aggressive birds like the Orioles from pulling out the bee guard and guzzling the food.

We've tried many different designs of feeders and found that the birds like the ones with hard plastic "flowers"' surrounding the bee guards. We've not had much luck with the drip-type feeders.

Be sure to rinse the feeders well with very warm water between use. It is not recommended to put any part of a hummingbird feeder in the dishwasher or use detergent. To make sure the feeders are perfectly clean before storing for the winter, we use a tiny bit of chlorine bleach and water. You must be sure to rinse the feeders very well if you do need to use bleach.

So if you're looking to attract beautiful hummingbirds to your yard, remember the flowers, the water and some food. You'll soon have your own flock of hummingbirds who return to your yard each year!
Cindy Dykstra writes for Article-DirectorySite.com where you can find articles on pets and animals and every other subject under the sun. Free content for your web site, blog or newsletter and free RSS feeds. Free article submission too! Visit http://www.Article-DirectorySite.com today.
Article Source: http://www.ArticleBiz.com
By: Cindy Dykstra

>>How To Build A Bird House

How To Build A Bird House

How To Build A Bird House - If you enjoy spending time around birds then you may want to build a birdhouse. Building a birdhouse is a great way to become a companion of birds. Birdhouses add attractiveness to any landscape. Crafting, designing and building birdhouses is a in-expensive hobby.

You need to construct a birdhouse that is easy to clean. It should be sturdy, cool, and rainproof as well. Remember, this is your birdhouse, so use your imagination; you will have something unique and all your own when your project is completed..

It is important not to use metal to build your birdhouse, not even nails; use non-toxic outdoor wood glue. Metal can become very hot when the sun is beating down on it, plus it can have very sharp edges. Wood is the best material to build a birdhouse. To keep water out of the entrance of the birdhouse you need the roof to pitch enough to shed water.

Add a couple small holes near the top of the birdhouse for ventilation on hot days. The bottom of the birdhouse should be constructed with screws, so it will be easy to take apart when you clean it.

When your bird house is built it is time to mount it. When mounting your birdhouse it is important to keep in mind predators, such as squirrels, cats and snakes. Place your bird house mount out of the range of jumping and climbing animals. The best mount for a birdhouse is PVC pipe which can be purchased inexpensively at your local home hardware supply store. Get an 8' long piece of PVC that is 3 or 4" in diameter. Also be sure and buy a "flange" that will fit into the PVC. When looking at a 'flange' from the side it has the shape of a man's dress hat, as one would also look at the dress hat from from it's side view. The round part of the 'hat' - or 'flange' slips down, about 2" into one end of the PVC pipe. The flat part of the 'hat' - or 'flange' should have a small hole pre-drilled in each corner. A large, approx. 12" x 12" piece of plywood is attached, to the flat part of the 'hat' or 'flange' with screws via the pre-drilled holes. Be sure this is placed in the middle of the 12" x 12 plywood. This will serve as your birdhouse base. Now turn this over and simply slide the round part of the 'hat' - or 'flange' into the end of your PVC pipe. On top of this securely mount your bird house. When you have moved your PVC to an upright mounting position, you would be looking upward, and see the screws that attached flange to your 12" x 12" base.

Now it's time to mount your bird house. Dig about an 18" hole and drop it in! Be sure and pack the dirt solidly back around the base to secure it. For added security you could pick up an inexpensive bag of ready mix cement. Just mix it with water, set the PVC in the middle of the hole and pour the cement evenly around it. It is a good idea if you could put your hands on a level to make sure your PVC stays vertically straight while working. That's all there is to it!

When you are ready to clean your bird house simple unscrew the 12" x 12" base mounting screws, slide off the base with it's attached birdhouse and clean it! When cleaned, replace the 12" x 12" base and reinsert your screws. Now wasn't that easy!

For more great information be sure and visit;

http://www.bird-city.com

If you lightly coat the PVC pipe mount with in-expensive vegetable oil ants and other crawling insects will not be able to climb disturb the bird nest.

Don't forget to treat your feathered friend with feeders, bird baths or bird pond sprinkle the area with some wild flower seeds. When your wild flower are in bloom your feathered friend will provide you with constant delight. ~ Anthony Benjamin ~ http://www.mysecretsites.info
Anthony Benjamin is an avid world traveler, lover of nature and animals. He loves to write and share his wealth of information and adventures in his writings. His favorite place to retreat and write is his summer home, secluded high on a mountaintop in the Great Smoky Mountains. A visit to his website is a true delight: http://www.appalachian-treasures.com
Article Source: http://www.ArticleBiz.com

By: Anthony Benjamin