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A whale of a tail: Unraveling the evolutionary secrets of how whales and dolphins adapted their backbones for aquatic life

Researchers found that cetaceans' backbones are highly regionalized, with a shift in vertebral column driving locomotion in aquatic environments. The team developed a computational software, MorphoRegions, to analyze the backbone of each specimen individually.

Steady flight of kestrels could help aerial safety soar

Researchers studied kestrels' hovering flight behavior, revealing insights that could improve drone stability in turbulent conditions. The study found that birds use changes in wing surface area to achieve stable flight, a method that could be applied to morphing wings in drones.

SourceRMIT University·JournalJournal of Experimental Biology·TypeObservational study·DateAug 7, 2024

New concept explains how tiny particles navigate water layers – with implications for marine conservation

Researchers have unveiled insights into how microscopic organisms such as marine plankton move through water with different density layers. The study reveals two types of microscopic swimmers that navigate density gradients differently, with pullers moving parallel to the gradient and pushers swimming perpendicular.

SourceUniversity of British Columbia·JournalProceedings of the National Academy of Sciences·TypeComputational simulation/modeling·DateJul 15, 2024

Invasive ants spread by hitchhiking on everyday vehicles

Researchers found that ants need three main things to succeed when hitchhiking: climbing ability, foraging/colonizing behaviors, and temperature tolerance. The study tracked the spread of invasive ants through non-commercial transport on personal vehicles, highlighting a significant threat to native species.

SourceVirginia Tech·JournalEcological Entomology·DateJun 27, 2024

Fish in schools have an easier time swimming in rough waters

A recent study found that schooling fish expend up to 79% less energy while swimming in turbulent water compared to solitary fish. This suggests that traveling in schools allows fish to shield each other from disruptive water currents, making it easier to swim through rough waters.

SourcePLOS·JournalPLOS Biology·TypeExperimental study·DateJun 6, 2024

Finding the beat of collective animal motion

Researchers found that zebrafish synchronize movements by taking turns to move and responding to neighbors' timing, a two-way process known as reciprocity. Virtual reality experiments confirmed the principle, enabling the recreation of natural schooling behavior in fish and virtual conspecifics.

SourceMax-Planck-Gesellschaft·JournalNature Communications·TypeComputational simulation/modeling·DateMay 23, 2024

University of Oregon researchers uncover how jelly sea creatures might shape modern robotics

Researchers at the University of Oregon have discovered that salps, gelatinous marine animals, use coordinated jet propulsion to swim through the ocean in giant corkscrew shapes. This unusual locomotion could inspire new designs for efficient underwater vehicles and may even enable silent and less turbulent navigation.

SourceUniversity of Oregon·JournalScience Advances·TypeObservational study·DateMay 15, 2024

In the evolution of walking, the hip bone connected to the rib bones

A new reconstruction of the 375-million-year-old fossil fish Tiktaalik reveals that its ribs likely attached to its pelvis, enabling support of the body and potentially leading to the evolution of walking. This discovery provides insights into the major evolutionary transition from fish to four-limbed vertebrates.

SourcePenn State·JournalProceedings of the National Academy of Sciences·DateApr 5, 2024

Unlocking the energetic secrets of collective animal movement: How group behavior reduces energy costs in fish

A study by Harvard researchers found that fish group behavior can reduce energy costs by up to 50%, with coordinated movement allowing for more efficient swimming. By measuring the energetic cost of individual and group movements, the team discovered a J-shaped relationship between speed and energy expenditure.

This Japanese 'dragon' terrorized ancient seas

A newly described mosasaur, the Wakayama Soryu (blue dragon), had a distinctive shark-like dorsal fin and massive flippers that defied classification. The specimen, discovered in Japan, is the most complete mosasaur skeleton found in the country, with features that challenge current understanding of its swimming abilities.

SourceUniversity of Cincinnati·JournalJournal of Systematic Palaeontology·TypeObservational study·DateDec 12, 2023

A single parameter to describe animal locomotion

Researchers develop a phase shift parameter to describe animal locomotion, combining forces of inertia, gravity, elasticity and viscosity into one dimensionless number. This new parameter predicts muscle activation patterns in a wide range of animals during locomotion.

SourcePNAS Nexus·JournalPNAS Nexus·DateOct 10, 2023

The art of wandering in vertebrates: new mapping of neurons involved in locomotion

Researchers have identified a conserved brain region in vertebrates essential for initiating forward movement. The mesencephalic locomotor region (MLR) stimulates reticulospinal neurons to control finer details of movement. Mapping this circuit could lead to new treatments for Parkinson's disease.

SourceInstitut du Cerveau (Paris Brain Institute)·JournalNature Neuroscience·TypeExperimental study·DateSep 4, 2023

Scurrying centipedes inspire many-legged robots that can traverse difficult landscapes

Researchers developed a new theory of multilegged locomotion, creating robotic models that can move across uneven surfaces without sensors. The robot's leg redundancy enables it to transport itself and loads on challenging terrain, making it suitable for applications like agriculture, space exploration, and search and rescue.

SourceGeorgia Institute of Technology·JournalScience·TypeExperimental study·DateMay 4, 2023

Large animals travel more slowly because they can’t keep cool

A new study suggests that large animals are disadvantaged due to their limited traveling speeds, which can be attributed to their inability to effectively dissipate excess heat generated by their muscles. This limitation leads to slower travel speeds compared to medium-sized animals.

SourcePLOS·JournalPLOS Biology·TypeMeta-analysis·DateApr 18, 2023

Ancient giant amphibians swam like crocodiles 250 million years ago

A team of researchers from South Africa has discovered exceptional trace fossils that provide insight into the locomotion of ancient giant amphibians. The fossils, found on a rock surface once part of a tidal flat or lagoon, suggest these animals propelled themselves through water with continuous side-to-side tail motions.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateMar 29, 2023

Carnegie Mellon University researchers develop soft robot that shifts from land to sea with ease

Researchers at Carnegie Mellon University have created soft robots that can transition from walking to swimming, crawling to rolling, or jumping. The robots use highly dynamic bistable soft actuators made of shape-memory alloy springs that react to electrical currents, allowing for varied locomotion and adaptability.

SourceCarnegie Mellon University·JournalAdvanced Materials Technologies·DateMar 14, 2023

A new bioinspired earthworm robot for future underground explorations

Researchers at Istituto Italiano di Tecnologia have created a soft robot inspired by earthworms, able to crawl using soft actuators that elongate or squeeze. The prototype demonstrates improved locomotion with a speed of 1.35mm/s and has potential applications in underground exploration, excavation, search and rescue operations.

SourceIstituto Italiano di Tecnologia - IIT·JournalScientific Reports·TypeExperimental study·DateMar 1, 2023

The ants go marching … methodically

Researchers at the University of Arizona found that rock ants follow a methodical search strategy, combining systematized meandering with random movement to efficiently explore new areas. This unique behavior may provide insights into the evolution of exploration strategies in other species.

SourceUniversity of Arizona·JournaliScience·TypeObservational study·DateFeb 8, 2023

Stowers scientists use cavefish to learn more about metabolism and the evolutionary basis of being a couch potato

Researchers studied cavefish metabolism to understand how humans might adapt over long periods of inactivity, finding genetic changes that enable muscle endurance and efficient energy storage. The study suggests potential implications for understanding and mitigating the negative effects of sedentary lifestyles on human health.

SourceStowers Institute for Medical Research·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJan 24, 2023