A recent study published in Scientific Data reveals that Finland's most visually appealing bird species are colourful birds, with large birds of prey also ranking high. The top 10 most attractive species include the snowy owl and kingfisher, which receive high scores on a visual aesthetic attractiveness scale.
A study reveals that birds in multispecies flocks from Southeast Asia converge on similar appearances, blurring species distinctions. This phenomenon may contribute to diversity by allowing birds to adapt and evolve distinct traits within a species.
Research from Lund University shows that feeding small birds during winter reduces the need to lower body temperature, allowing them to fight infections more effectively. This study highlights the importance of access to food during winter in modulating a bird's immune response and ability to combat infection.
Scientists at UMass Amherst found that migrating birds burn high amounts of protein early in their flights, which then taper off as the duration increases. This discovery challenges previous assumptions about bird migration and fuels further research into the evolution of metabolism.
Two new species of poisonous birds have been discovered in New Guinea's rainforest, containing a neurotoxin similar to that found in South American poison dart frogs. Genetic changes in these bird species allow them to tolerate and store the toxin in their feathers, potentially serving as a defensive mechanism.
A study of bird poop reveals a unique relationship between birds and their microbiomes, which differ from those found in mammals. The researchers found that the types of bacteria present in the birds' gut microbiomes change over short time periods, rather than being tied to specific host species.
A study by University of Utah researchers found that birds eat fewer invertebrates in coffee plantations than in forests, threatening their survival. The disturbance of ecosystems significantly impacts dietary options, leading to reduced survival and population declines.
Researchers found that migratory birds can restore several parameters of their immune function during stopovers, not just to refuel. This discovery suggests that these short breaks are essential for the birds' overall health and immune system.
A study from Ohio State University reveals stark differences in avian functional diversity between the US East and West. Functional diversity patterns are highest in the West during breeding season, while in the East they are lowest despite high species richness.
A study by the University of Exeter found that flamingos form groups based on their individual personalities, with birds of similar traits spending more time together. This complex social behavior could help improve the welfare of captive flocks and provide insights into the evolution of bird societies.
Researchers at the University of Tokyo found that a specialized wing structure called the propatagium evolved in non-avian dinosaurs, paving the way for modern birds to fly. The discovery, based on statistical analyses of arm joints, helps fill gaps in knowledge about bird flight origins.
A long-term study from Lund University in Sweden found that native trees are preferred by urban birds due to their availability of resources. Non-native trees lack an evolutionary history with the local ecosystem and have fewer insects, leading to a shortage of food for insectivorous birds.
Researchers developed BirdFlow, a predictive model that utilizes eBird data and machine learning to forecast migratory patterns. The model was tested on 11 species of North American birds and found to outperform other models in tracking migration flows.
A new study analyzes the microstructure of eggshells from living and extinct flightless birds, shedding light on their evolutionary history. The research finds that wedge-like microstructures in rhea eggs evolved from ancient ancestors, while prism-like structures in ostrich and tinamous eggs likely developed independently.
Researchers found a strong correlation between birds captured outside their expected range and geomagnetic disturbances. The study suggests that birds rely on magnetoreceptors for navigation, which can be affected by solar activity and other factors. This knowledge can help scientists understand threats to birds and the ways they adapt.
Researchers created a robotic wing that can flap more efficiently than previous robots, mimicking the upstroke of birds. This study could lead to more efficient flapping drones for various applications, including deliveries.
A new study provides insights into the conservation of eastern US migratory landbirds by identifying key stopover hotspots and habitat associations. The researchers found that small pockets of deciduous forest, particularly in areas with high concentrations of food and shelter, are crucial for birds to complete their migration.
Researchers analyzed audio and motion-triggered video recordings to understand bird collisions with windows. Faster flights at angles of approach closer to perpendicular were more dangerous for birds.
A new study by the University of Bath suggests that diving birds like penguins and puffins are more prone to extinction than non-diving birds. The research found that diving evolved independently 14 times and led to a loss of evolutionary diversity in these species.
A new species of ancient bird, Janavis finalidens, has been found with a mobile beak, challenging the long-held assumption that modern birds evolved from a 'ancient jaw' group. The fossil shows a fused palate bone, similar to those of ostriches and their relatives.
Wild geese in Germany, Denmark, and the Netherlands experience significant changes in their behavior after fireworks, including flying further and foraging more, even after the disturbances end. The effects persist for up to two weeks, with birds leaving their sleeping sites and flying hundreds of kilometers non-stop.
Researchers have discovered that the flight patterns of birds can be used to estimate fine-scale environmental conditions and turbulence levels. The team measured bird altitude and motion using GPS and data loggers attached to pigeons, finding a correlation between the birds' behavior and turbulence strength.
A study found that seeing or hearing birds is associated with improved mental wellbeing in both healthy people and those with depression. The link between birdlife and mental health was not explained by environmental factors.
A new study finds that birds attracted to artificial light at night are drawn into areas with higher concentrations of airborne toxic chemicals. This exposure is especially problematic during non-breeding seasons, when songbirds are not avoiding light pollution.
A new study of thrushes reveals that differences in plumage coloration between males and females help birds identify potential mates more quickly. The researchers found that species with the most pronounced color differences were more likely to be migratory, have short breeding seasons, and share territory with closely related species.
Researchers found that bird neurons consume three times less glucose than mammalian neurons, allowing for high cognitive abilities and complex brain structures. This discovery sheds light on the evolutionary advantages of birds' brains.
Researchers found that woodpeckers have regained the ability to sense sugar by repurposing their savory receptor. In contrast, wrynecks selectively lost this ability due to a single amino acid change in their receptor, highlighting a novel mechanism of sensory reversion.
A new University of Washington study found that bird behavior was not significantly affected by the reduced human activity during COVID-19 lockdowns. In fact, many birds were observed in highly developed urban areas, suggesting that green spaces may serve as important refuges for urban birds.
Research predicts that bird species extinction will decrease morphological diversity among remaining birds at a rate greater than species loss alone. Birds with extreme features are most likely to be affected, including the largest and smallest species, as well as regions like the Himalayan mountains and south Vietnam/Cambodia.
A new study investigates how birds experience neophobia, which could play a vital role in helping to save Critically Endangered species. The research gathered data on the behavior of captive Bali myna birds, revealing that juvenile birds may be more suitable for reintroduction than adults.
Researchers found that zebra finches' short vocalizations during flight are followed by an upward movement of the calling bird, which helps other birds observe its position. The birds also use vision to coordinate horizontal position changes, such as brief shoulder checks, to avoid collisions.
A new study published in Ecological Applications found that urban density has a stronger correlation with house sparrow health than other environmental factors like light pollution or noise levels. The researchers also discovered high lead levels in the birds' bodies, which could be linked to bioaccumulation from food sources.
A Washington State University research team developed a system using cameras and small drones to detect and deter pest birds. The system successfully reduced bird counts by four-fold in vineyards, resulting in a 50% reduction in damaged fruits. Further refinement and industry partnerships are needed for commercialization.
Researchers used weather radar data to identify areas where large numbers of migrating birds fly through the rotor-swept zone and stopover in high densities. This information can guide the placement of new wind energy development and turbine operation to minimize collisions and habitat loss.
Research by the University of Bath found that weaver birds eating seeds live in colonies and have polygamous breeding, while those eating insects are solitary and monogamous. The study statistically supports an ecological hypothesis on social behavior first proposed 58 years ago.
A study found that light pollution levels are increasing in the Western Hemisphere, particularly in Southeastern US, Mexico, and Central America, threatening nocturnal migrating bird populations. The authors suggest reversing light pollution trends to save a substantial number of migrating birds.
A study published in Nature Communications found that male Caspian terns carry the main responsibility for teaching young birds the secrets of migration during their first journey. Young birds always remained close to an adult bird and died if they lost contact, highlighting the importance of experienced adults guiding them to survive.
Researchers whole-genome sequenced 375 Salmonella enterica strains from wild birds collected in 41 US states to examine bacterial resistance to antibiotics and heavy metals. They found that only 1% of isolates were multi-antimicrobial resistant, with all cases isolated from waterbirds or raptors, not songbirds.
A new University of Michigan study found that higher levels of biodiversity reduce extinction risk in birds by providing a safe harbor for species at risk. The researchers used a comprehensive dataset covering over 99% of bird species and found diverse communities protect these species, allowing them to persist.
A study by UMass Amherst researchers reveals a negative correlation between birds' ability to fly and their willingness to fight. The findings suggest that developing wings instead of bony spurs was driven by both sexual and natural selection, leading to the remarkable diversity of bird species we see today.
A University of California, Davis study found that farms with surrounding natural habitat experience the most benefits from birds, including less crop damage and lower food-safety risks. The presence of natural habitat was the single most important driver differentiating a farm where wild birds brought more benefits than harm.
Researchers identified two new species of ancient bird fossils found in northwestern China. One species, Brevidentavis zhangi, had small peg-like teeth and a movable bony appendage at the tip of its lower jaw that may have helped it root for food.
A study from Washington University in St. Louis found that birds with bigger brains relative to their bodies reduced their body size by only about one-third compared to smaller-brained birds. This suggests that cognitive power may play a role in helping certain species adapt to climate change.
Researchers found that migratory birds, such as bar-tailed godwits and whimbrels, can fly for up to 9 days at a time, more efficiently than previously thought. The birds also demonstrate exceptional meteorological knowledge, adapting their routes to weather systems over long distances.
Researchers have discovered a natural nanostructure in birds that produces iridescent shimmer, finding an evolutionary tweak in feather nanostructure that has more than doubled the range of iridescent colors. This insight could inspire new materials that capture or manipulate light.
Research found that cacao agroforestry systems support unique bird species in tropical dry forests, while bats are more abundant in these areas than in nearby forests. This suggests that cacao farms can serve as biodiversity-friendly oases, providing food and refuge for birds and bats.
A study published in eLife reveals that Ruby-throated hummingbirds employ an energy-conserving strategy called torpor to build fat stores for their 5,000-kilometre migrations. The birds adapt this strategy to conserve energy during different periods of the annual cycle.
A team of researchers proposes that endothermy in mammals and birds has a common ancestry and is much older than previously accepted. They found evidence of endothermy in early ancestors of modern birds and mammals, including Pelycosaurs and Pareiasaurs.
A new study from the University of Texas at Austin suggests that extinct dinosaurs expressed bright colors on their beaks, legs, and around their eyes. The researchers analyzed data from living bird species and found a 50% chance that the common ancestor of birds and extinct dinosaurs had bright colors in its soft tissues.
Researchers found that migratory bird species tend to be lighter colored than non-migratory species, reducing the risk of overheating during extreme journeys. The study's findings suggest that lighter plumage coloration helps birds absorb less heat and stay cooler in the hot sun.
Amazon Rainforest birds have reduced body mass by an average of 2% every decade since the 1980s, with most species losing about 27.6 grams on average. The birds' bodies and wings have also changed to become more energy-efficient in flight, with longer wings and lighter bodies adapted to hotter and drier conditions.
Researchers found that in dry years, birds funnel into riparian environments due to increased greenness, leading to overcrowding and decreased bird populations. The study highlights the importance of understanding how birds respond to climate change for conservation purposes.
Researchers at the University of Cincinnati have developed a new tool to aid in the conservation of critical habitats by tracking the migratory patterns of wide-ranging hawks and falcons. By analyzing isotopes from the feathers of young birds, scientists can pinpoint their likely origins with surprising precision.
Researchers found that stronger hurricanes trap and transport more birds due to their intense winds and thunderstorms. The study used radar data from 33 Atlantic hurricanes between 2011 and 2020, revealing a correlation between hurricane intensity and the presence of birds within the eye.
Researchers discovered an alternating pattern of tooth replacement in ancient birds, similar to dinosaurs and crocodilians. The study suggests that the genetic controls for tooth replacement survived even after the split between birds and crocodilians millions of years ago.
Researchers found that brood parasites have larger eyes than host birds, which may help them avoid detection. Birds with larger eyes relative to their body mass are also less likely to have their nests parasitized.
Researchers tracked individual Kirtland's Warblers and found that their gut bacteria differed in The Bahamas and Michigan. This suggests that birds' microbiomes adapt to changing environments during migration.
A new study from the Kalahari Desert finds that teamwork allows birds to cope with brutally unpredictable environments. The research team at the University of Exeter shows that families with more helpers successfully raise more chicks in dry conditions, reducing weather-driven variation in breeding success.
Researchers used a 'role-play' approach to study how Neanderthals caught choughs in caves. They found that the birds were vulnerable to artificial light and could be caught using nets or by hand. The findings suggest that catching birds was another skill of Neanderthals, which is surprising given their intelligence and adaptability.
Seabirds are dying from starvation after being exposed to cyclones, which disrupt their ability to feed. The study found that birds can't fly in high winds and dive into stormy seas, leaving them without food sources.