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Why fish look down when they swim

Researchers used simulations of zebrafish brain, environment, and spatially-varying swimming behavior to conclude that fish look down to understand their surroundings' motion. This adaptive behavior helps fish avoid being swept away by turbulent water.

SourceNorthwestern University·JournalCurrent Biology·TypeComputational simulation/modeling·DateNov 2, 2022

Not so dumb: goldfish show a keen ability to estimate distances

Researchers at the University of Oxford discovered that goldfish can accurately estimate distances by processing visual cues. The study found that goldfish use 'optic flow' to estimate distance, unlike terrestrial animals which rely on changes in angle between their eye and surrounding objects.

SourceUniversity of Oxford·JournalProceedings of the Royal Society B Biological Sciences·TypeExperimental study·DateOct 12, 2022

30-million-year-old amphibious beaver fossil is oldest ever found

Researchers have found a 30-million-year-old beaver fossil that challenges previous theories on the evolution of semi-aquatic beavers in North America. The discovery, published in Royal Society Open Science, suggests that these animals may have evolved to swim earlier than previously thought and were likely adapted for aquatic life.

SourceOhio State University·JournalRoyal Society Open Science·TypeData/statistical analysis·DateAug 24, 2022

Study first to explore ‘walking’ sharks on the move in early life stages

A study by Florida Atlantic University researchers compared the walking and swimming behaviors of neonate and juvenile epaulette sharks. Contrary to expectations, results showed that differences in body shape did not alter kinematics between early life stages, suggesting a consistent locomotor performance.

SourceFlorida Atlantic University·JournalIntegrative and Comparative Biology·TypeObservational study·DateAug 18, 2022

Robot dog learns to walk in one hour

Researchers at Max Planck Institute for Intelligent Systems created a robot dog named Morti that can walk smoothly within an hour. The robot uses a Bayesian optimization algorithm to learn from sensor data and adapts its virtual spinal cord, allowing it to optimize its walking pattern and minimize stumbling.

SourceMax Planck Institute for Intelligent Systems·JournalNature Machine Intelligence·TypeExperimental study·DateJul 18, 2022

Code-free conservation

A new platform called MoveApps enables scientists and wildlife managers to explore animal movement data with little more than a device and a browser. The system uses open-source code and allows users to create complex analyses with simple clicks.

SourceMax-Planck-Gesellschaft·JournalMovement Ecology·TypeData/statistical analysis·DateJul 17, 2022

Tiny limbs and long bodies: Coordinating lizard locomotion

A multidisciplinary approach reveals a continuum of locomotion dynamics in lizards, with short-limbed species exhibiting snakelike waves and long-bodied species bending like lizards. The findings deepen understanding of evolution's implications for locomotion and have applications for advanced robotics designs.

SourceGeorgia Institute of Technology·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJun 27, 2022

Never too odd to learn how to swim

Researchers have developed a new formula for swimming based on their study of odd elasticity, allowing microswimmers to exhibit autonomously directional and deterministic motion. The team used Purcell's swimmer model to demonstrate that any odd elastic micromaterial can spontaneously generate locomotion in a fluid.

SourceKyoto University·JournalPhysical Review E·TypeComputational simulation/modeling·DateJun 6, 2022

Hummingbirds may struggle to go any further uphill

Researchers found that hummingbirds experience a 37% drop in metabolic rate and become torpid for longer periods at high elevations, making it unlikely they can relocate to higher altitudes. The birds' physiological response suggests lower oxygen availability and low air pressure may be difficult challenges to overcome.

SourceThe Company of Biologists·JournalJournal of Experimental Biology·TypeExperimental study·DateMay 26, 2022

Dense bones allowed Spinosaurus to hunt underwater

Researchers found that Spinosaurus and its close relative Baryonyx had dense bones that would have allowed them to submerge underwater to hunt. In contrast, Suchomimus had lighter bones that made swimming difficult, leading the team to conclude that these dinosaurs likely waded instead.

SourceField Museum·JournalNature·DateMar 23, 2022

How much energy does a dolphin use to swim?

A new study provides a reliable way to estimate energy costs in dolphins by using overall dynamic body acceleration (ODBA), an integrated measure of all body motions during swimming. The study found significant correlation between oxygen consumption and body acceleration, suggesting ODBA can be a proxy for estimating cost of locomotion.

SourceDuke University·JournalJournal of Experimental Biology·TypeObservational study·DateFeb 24, 2022

Treatment for Parkinson’s could now get even better

A new study from the University of Copenhagen has made significant breakthroughs in treating Parkinson's disease by targeting specific neurons in the brainstem. By stimulating excitatory neurons in the caudal area of the pedunculopontine nucleus, researchers were able to restore normal walking function in mice with Parkinson's symptoms.

SourceUniversity of Copenhagen - The Faculty of Health and Medical Sciences·JournalNature Communications·TypeExperimental study·DateFeb 18, 2022

Research in mice identifies neurons that control locomotion

In a study published in Cell, researchers report that ventral spinocerebellar tract neurons (VSCTs) are both necessary and sufficient for regulating locomotor behavior in mice. Activation of VSCTs induces locomotion, while suppression halts it, demonstrating their crucial role in controlling this essential behavior.

SourceCell Press·JournalCell·TypeExperimental study·DateJan 20, 2022

Light pollution makes crickets chirp in the daytime and may disrupt reproductive processes

Exposure to artificial light at night impairs crickets' activity cycles, disrupting their nocturnal chirping and potentially affecting reproduction. The study, conducted by researchers at Tel Aviv University and the Open University, highlights the need to reduce artificial light pollution to protect environmental behaviors.

SourceTel-Aviv University·JournalProceedings of the Royal Society B Biological Sciences·DateNov 2, 2021

Probiotics prove effective in treating antibiotics-induced dysbiosis in mice

A study by Kazan Federal University found that probiotics administered to antibiotic-treated mice improved behavior, reduced oxidative stress, and restored gut microbiota diversity. The researchers demonstrated a strong link between the gut microbiota and brain functioning, with potential therapeutic benefits for treating dysbiosis-rel...

SourceKazan Federal University·JournalLife·TypeRandomized controlled/clinical trial·DateAug 26, 2021

T. rex’s jaw had sensors to make it an even more fearsome predator, new digital study finds

A new digital study has found that Tyrannosaurus rex's jaw had nerve sensors enabling it to better detect and eat its prey. The researchers used computed tomography to analyze the distribution of neurovascular canals in a fossil mandible, revealing complex branching patterns similar to those of modern-day crocodiles and birds.

SourceTaylor & Francis Group·JournalHistorical Biology·TypeComputational simulation/modeling·DateAug 23, 2021

A robotic fish tail and an elegant math ratio could inform the design of next- generation underwater drones

University of Virginia researchers design a simple way to implement a tunable stiffness strategy in robots, enabling efficient swimming at varying speeds. The approach, inspired by the natural adaptability of fish, uses a programmable artificial tendon to adjust tail stiffness in real-time.

SourceUniversity of Virginia School of Engineering and Applied Science·JournalScience Robotics·TypeExperimental study·DateAug 11, 2021

How the amphibians got their vertebrae

A study found that ancient amphibians' spine stiffness varied with habitat, with more aquatic species having more rigid backbones. The researchers collected measurements on over 40 species of temnospondyls, providing valuable information on early vertebrate adaptations to water-to-land transitions.

SourcePLOS·JournalPLOS ONE·DateJun 9, 2021

Guppies have varying levels of self-control

Researchers found guppies showed higher inhibitory control when swimming towards food in a cylinder and resisted the urge to bump into it. The study revealed consistent differences between individual guppies and a population-level difference in self-control ability compared to another strain of guppies.

SourceUniversity of Exeter·JournalJournal of Fish Biology·DateJan 15, 2021