Researchers analyzed shark vertebrae to discover a finely engineered biomechanical system supporting strength, flexibility, and swimming efficiency. Different species evolved unique internal structures reflecting their varied swimming strategies.
SourceFlorida Atlantic University·JournalJournal of Anatomy·TypeImaging analysis·DateJul 27, 2026
A new video game, 'Run FoVE your life,' simulates high-intensity movement dynamics and energetics of cheetah chases, incorporating real movement data from human athletes in chase-tag games. The game aims to further understanding of fatigue and movement decision-making in life-or-death encounters.
Researchers found that most people prefer counterclockwise motion when turning, with age being the only factor that affects this bias. The study could impact our understanding of brain function and fields like design, engineering, and architecture.
SourceUniversity of Tokyo·JournalNature Communications·TypeExperimental study·DateJun 10, 2026
Researchers developed a 'walking fish' robot that mimics modern fish's ability to walk on land, and computer models showed similar modes of locomotion across several unrelated species. This undulating tripod gait is one of life's most ancient solutions to escaping predators or moving habitats.
SourceUniversity of Cambridge·JournalNature Communications·DateJun 2, 2026
Apple AirPods Pro (2nd Generation, USB-C)
Apple AirPods Pro (2nd Generation, USB-C) provide clear calls and strong noise reduction for interviews, conferences, and noisy field environments.
A team of researchers from The University of Osaka used supercomputer simulations to study how vortices generated by dolphin kicks power fast swimming. They found that large, powerful vortices created by the movement of the dolphin's tail are responsible for most of the propulsion, while smaller ones contribute little to forward motion.
SourceThe University of Osaka·JournalPhysical Review Fluids·TypeData/statistical analysis·DateApr 27, 2026
In a breakthrough study, researchers successfully integrated neuronal precursor cells into biobots, resulting in the formation of functional nervous systems. This development has significant implications for neuroscience, bioengineering, and regenerative medicine, enabling the investigation of fundamental questions about the origin of ...
SourceWyss Institute for Biologically Inspired Engineering at Harvard·JournalAdvanced Science·TypeExperimental study·DateMar 16, 2026
Researchers found that participants initially overestimated the awkwardness of their gait but improved as they practiced using the prosthetic device. Despite significant performance gains, participants remained inaccurate in assessing their own body movement, focusing on torso position rather than prosthetic behavior.
SourceNorth Carolina State University·JournalPNAS Nexus·TypeExperimental study·DateFeb 17, 2026
SAMSUNG T9 Portable SSD 2TB
SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.
A recent study using Drosophila as a model organism reveals the involvement of linear ubiquitination in T-tubule biogenesis. The findings highlight LUBEL's role in triggering Amph-mediated T-tubule formation, which promotes membrane tubulation and curvature through self-ubiquitination and positive feedback loops.
SourceInstitute of Science Tokyo·JournalScience Advances·TypeExperimental study·DateJan 7, 2026
A team of anthropologists offers powerful evidence that Sahelanthropus tchadensis, a seven-million-year-old fossil, was bipedal. The analysis confirmed the presence of traits essential for walking upright, including a femoral tubercle and gluteal muscles. This finding suggests that bipedalism evolved early in our lineage.
SourceNew York University·JournalScience Advances·TypeImaging analysis·DateJan 2, 2026
A new international study identifies several protein families potentially involved in bone remodeling and highlights their role in shaping bone structures through mechanoadaptation. The study sheds light on the evolutionary mechanisms behind bone mechanoadaptation and its relation to locomotion patterns such as bipedalism.
SourceUniversity of Turku·JournalCommunications Biology·DateDec 22, 2025
Apple MacBook Pro 14-inch (M4 Pro)
Apple MacBook Pro 14-inch (M4 Pro) powers local ML workloads, large datasets, and multi-display analysis for field and lab teams.
Researchers discovered that woodpeckers brace their head, neck, abdomen, and tail muscles to hold their bodies rigid while pounding on wood. The birds synchronize their breathing with each impact, like ace tennis stars grunting noisily to stabilize core muscles.
SourceThe Company of Biologists·JournalJournal of Experimental Biology·TypeExperimental study·DateNov 6, 2025
Researchers at the University of Tsukuba identified a peptide hormone called Capa that regulates calcium levels in fruit flies. The study found that Capa is secreted by specific neurons and acts on organs similar to vertebrate kidneys to mobilize calcium from stored reserves.
A recent study from Harvard John A. Paulson School of Engineering and Applied Sciences uses wearable sensor technology and machine learning to estimate ground-reaction forces in runners. This data can provide insights into performance and injury, enabling the development of devices that deliver real-time feedback to users.
SourceHarvard John A. Paulson School of Engineering and Applied Sciences·JournalPLOS One·TypeExperimental study·DateOct 23, 2025
A recent study published in Integrative and Comparative Biology found that bonnethead sharks' skin undergoes significant changes as they mature, with younger sharks having fewer ridges on their denticles. These changes likely improve swimming performance and protect the skin from predators or injuries.
SourceFlorida Atlantic University·JournalIntegrative and Comparative Biology·TypeImaging analysis·DateOct 15, 2025
Researchers discovered that proprioceptive nerve cells for sensing leg motion are deactivated during active movement in fruit flies. This selective suppression may enable the insect to quickly respond to sudden external events. The study advances basic scientific knowledge of sensory feedback and its application to clinical treatments
SourceUniversity of Washington School of Medicine/UW Medicine·JournalNature·TypeExperimental study·DateSep 18, 2025
Apple iPhone 17 Pro
Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.
A new study by Florida Atlantic University reveals that every arm is capable of performing all action types, with front arms mainly used for exploration and back arms supporting movement. Octopuses demonstrated remarkable flexibility, showcasing complex motor control.
SourceFlorida Atlantic University·JournalScientific Reports·TypeObservational study·DateSep 11, 2025
A new study finds that sargassum seaweed can significantly slow down sea turtle hatchlings in Florida, increasing their risk of predation and heat exposure. Researchers found that even small amounts of sargassum can impede hatchlings' progress, with leatherbacks taking 54% longer to crawl through light sargassum.
SourceFlorida Atlantic University·JournalJournal of Coastal Research·TypeExperimental study·DateSep 8, 2025
Researchers developed a snake-inspired soft robot (ICSBot) that leverages diverse locomotion modes to navigate complex environments and handle objects with high flexibility. The ICSBot's design offers new possibilities for creating adaptive robotic systems inspired by nature, enabling enhanced performance and autonomy.
SourceShanghai Jiao Tong University Journal Center·JournalNano-Micro Letters·TypeExperimental study·DateJul 2, 2025
Researchers at OIST introduce a mouse motion capture method using marker-based approach to track high-quality data on complex movements. The method avoids pitfalls associated with smaller animals, enabling detailed studies of neuroscientific and physiological foundations of mouse movement.
SourceOkinawa Institute of Science and Technology (OIST) Graduate University·JournaleNeuro·TypeExperimental study·DateJun 29, 2025
Northern Arizona University researchers have developed an open-source robotic exoskeleton framework, OpenExo, which provides comprehensive instructions for building single- or multi-joint exoskeletons. The system helps overcome challenges in developing biomechanically beneficial and technologically advanced exoskeletons.
SourceNorthern Arizona University·JournalScience Robotics·DateJun 25, 2025
Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C)
Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C) keeps Macs, tablets, and meters powered during extended observing runs and remote surveys.
A study by the CSIC-UMH Institute of Neurosciences uncovers how flies' flight stabilizers, the halteres, take shape. The structure is stabilized by a sophisticated cellular system that connects its two surfaces through an internal framework.
SourceUniversidad Miguel Hernandez de Elche·JournalCurrent Biology·TypeExperimental study·DateJun 11, 2025
A team of scientists simulated the movement of microorganisms in liquids without a central control system. They found that simple rules and decentralized control can lead to efficient swimming behavior, potentially enabling nanobots to transport drugs or perform other complex tasks.
SourceVienna University of Technology·JournalCommunications Physics·TypeComputational simulation/modeling·DateMay 19, 2025
Researchers found a single young adult Paranthropus robustus fossil with evidence of habitual upright walking, weighing only about a meter tall and 27 kg at death. The species' small size made it vulnerable to predators like sabertooth cats and giant hyenas.
SourceUniversity of the Witwatersrand·JournalJournal of Human Evolution·DateMar 5, 2025
Researchers at Sainsbury Wellcome Centre develop novel experimental setup called Translocator, isolating fundamental elements of locomotion and motion-source separation. The team finds that individual cells in primary visual cortex use motor and vestibular signals to determine visual flow origin.
SourceSainsbury Wellcome Centre·JournalCell·TypeExperimental study·DateFeb 19, 2025
A team of biologists and mathematicians from the University of Oxford and Manchester have solved the mystery of the squirting cucumber's explosive seed dispersal. The study used a combination of experiments, high-speed videography, image analysis, and mathematical modeling to reveal the key components of the plant's dispersal strategy.
SourceUniversity of Oxford·JournalProceedings of the National Academy of Sciences·DateNov 25, 2024
Apple Watch Series 11 (GPS, 46mm)
Apple Watch Series 11 (GPS, 46mm) tracks health metrics and safety alerts during long observing sessions, fieldwork, and remote expeditions.
Researchers at Princeton University developed a new technology inspired by bird feathers, which improves flight performance and prevents stalling. The covert-inspired flaps deploy in response to changes in airflow, offering an inexpensive and lightweight method to increase flight performance without complex machinery.
SourcePrinceton University, Engineering School·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateOct 28, 2024
A new study published in Science Advances provides insights into the complex and nonlinear transition of mammal evolution from sprawled to upright posture. Researchers used cutting-edge methods to analyze fossil data and biomechanical modeling, revealing that locomotor performance peaked and dipped over millions of years.
SourceHarvard University, Department of Organismic and Evolutionary Biology·JournalScience Advances·DateOct 25, 2024
Study reveals the brain controls leg coordination during walking only when discoordination exceeds a certain threshold. Researchers found that not actively intervening improves energy efficiency and maneuverability.
SourceOsaka University·JournalCommunications Biology·TypeData/statistical analysis·DateSep 20, 2024
Researchers have discovered that sunflowers wiggle to find patches of sunlight, forming a zig-zag pattern that maximizes access to light. This movement allows the plant to explore its surroundings and settle into configurations that provide maximum light exposure.
SourceUniversity of Colorado at Boulder·JournalPhysical Review X·DateAug 15, 2024
Researchers found that turkey vultures flying at higher altitudes are generally flying 1m/s faster than those at lower elevations due to reduced drag. By flying faster, these birds can compensate for the lack of lift caused by thin air, allowing them to remain aloft in challenging conditions.
SourceThe Company of Biologists·JournalJournal of Experimental Biology·TypeExperimental study·DateAug 1, 2024
GoPro HERO13 Black
GoPro HERO13 Black records stabilized 5.3K video for instrument deployments, field notes, and outreach, even in harsh weather and underwater conditions.
Researchers discovered cyanobacteria start bending at around 150 micrometres, revealing a natural tipping point for movement adaptation. This finding has implications for biotechnology applications, such as biofuel production and adaptive biomaterials.
SourceMax Planck Institute for Dynamics and Self-Organization·JournaleLife·DateJun 14, 2024
Researchers studied the dolphin-kick swimming motion and found that water flow velocity increases with speed, generating a strong vortex during kicking. Recycling of flow is also observed during transitions between kicks, becoming more pronounced as speed increases.
SourceUniversity of Tsukuba·JournalJournal of Biomechanics·DateMar 14, 2024
A study published in Nature Communications found that the fastest animals are medium-sized, like cheetahs, due to a physical limit imposed by muscle contraction speed and shortening. This sweet spot size of around 50kg enables animals to reach speeds of up to 65 miles per hour
SourceImperial College London·JournalNature Communications·DateMar 12, 2024
Researchers have successfully engineered a soft robotic replica of a 450-million-year-old marine organism, pleurocystitid, to better understand its biomechanical factors and locomotion. The study introduces the field of Paleobionics, which uses Softbotics to explore evolution and animal design.
SourceCollege of Engineering, Carnegie Mellon University·JournalProceedings of the National Academy of Sciences·DateNov 6, 2023
Sky & Telescope Pocket Sky Atlas, 2nd Edition
Sky & Telescope Pocket Sky Atlas, 2nd Edition is a durable star atlas for planning sessions, identifying targets, and teaching celestial navigation.
A US study found that increasing nest temperatures affects leatherback hatchling morphology, performance and hatching success. Mid-season nests had the highest hatching success and better physical performance.
SourceFlorida Atlantic University·JournalEndangered Species Research·TypeExperimental study·DateSep 7, 2023
Researchers at CityU and HKUMed developed genetically modified human neural stem cells that promote neural circuit reconstruction, reduce glial scar accumulation, and enhance axon outgrowth. The therapy demonstrates potential for treating severe spinal cord injuries with functional recovery.
SourceCity University of Hong Kong·JournalAdvanced Science·TypeExperimental study·DateAug 16, 2023
Researchers found that cells store extra 'skin' in folds and bumps on their surface to rapidly deploy temporary protrusions. This allows cells to move safely while maintaining cell volume and membrane integrity.
SourceCell Press·JournalBiophysical Journal·TypeExperimental study·DateMay 18, 2023
A species of jumping spider employs two lines of defense to avoid being eaten: camouflaging with plants and walking like an ant. The spiders' brilliant coloration also plays a role in their ability to blend in with their environment.
Nikon Monarch 5 8x42 Binoculars
Nikon Monarch 5 8x42 Binoculars deliver bright, sharp views for wildlife surveys, eclipse chases, and quick star-field scans at dark sites.
Tiny California blackworms tangle themselves to perform biological functions, but can untangle in mere milliseconds. Researchers have discovered the mathematics behind this process, revealing how helical gaits and topological principles enable the worms' superpower.
SourceGeorgia Institute of Technology·JournalScience·TypeExperimental study·DateApr 27, 2023
A new VR locomotion system, Seamless-walk, offers a natural and comfortable experience without equipment or body pose recording. It uses high-resolution foot pressure imprints and machine learning to estimate the user's direction and movement speed.
SourceGIST (Gwangju Institute of Science and Technology)·JournalVirtual Reality·TypeExperimental study·DateApr 11, 2023
Researchers found that older adults who are comfortable traveling short distances have higher risks of functional disability and mortality. A study in Japan linked acceptable walking and cycling distances to future health outcomes, providing valuable insights for policymakers and researchers.
SourceUniversity of Tsukuba·JournalHealth & Place·DateJan 17, 2023
Researchers have discovered a newly found protein, CTENO189, that controls the unique locomotion of comb jellies. The protein is essential for the rippling movement of their comb plates, which propels them through the water.
SourceUniversity of Tsukuba·JournalCurrent Biology·DateOct 26, 2022
Researchers used small wheeled robots to study indirect mechanical interactions on deformable surfaces, finding that active matter can interact through non-contact forces. They created a model to control collective behavior by modifying robot design, mirroring celestial bodies' paths in Einstein's General Relativity.
SourceGeorgia Institute of Technology·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateSep 28, 2022
Kestrel 3000 Pocket Weather Meter
Kestrel 3000 Pocket Weather Meter measures wind, temperature, and humidity in real time for site assessments, aviation checks, and safety briefings.
Researchers used 3D modeling and engineering to digitally reconstruct the function of foot bones in sauropods, discovering a soft tissue pad beneath the heel that cushioned the foot to absorb weight. This finding confirms a long-suspected idea and provides biomechanical evidence for how sauropods supported their enormous weight on land.
SourceUniversity of Queensland·JournalScience Advances·DateAug 10, 2022
Researchers successfully taught microrobots to swim via deep reinforcement learning, allowing them to adapt to changing conditions and perform complex maneuvers. The AI-powered swimmers can navigate toward any target location on their own, showcasing their robust performance in fluid flows and uncontrolled environments.
SourceNew Jersey Institute of Technology·JournalCommunications Physics·DateAug 4, 2022
Researchers at UNO and UNL are using machine learning to investigate the metabolic cost of different phases of the gait cycle across different age groups. The goal is to create practical applications for gait rehabilitation, such as designing improved assistive devices.
Researchers discovered that wandering salamanders, living in redwoods, have developed aerial behaviors to avoid predators, including parachuting and gliding. They are able to maintain control and make horizontal maneuvers, defying expectations of their sluggish nature.
SourceUniversity of California - Berkeley·JournalCurrent Biology·TypeExperimental study·DateMay 23, 2022
Researchers found that the nervous system explores multiple coordination patterns to learn new movements, then adapts specific aspects for optimal performance. This process reduces energy cost by up to 25%.
SourceSimon Fraser University·JournalCurrent Biology·TypeData/statistical analysis·DateMay 10, 2022
Rigol DP832 Triple-Output Bench Power Supply
Rigol DP832 Triple-Output Bench Power Supply powers sensors, microcontrollers, and test circuits with programmable rails and stable outputs.
A team of scientists has discovered a bi-directional neural network connecting the legs and visual system in fruit flies, enabling them to walk while tracking their steps. The study reveals that this network supports walking on two different timescales simultaneously.
SourceChampalimaud Centre for the Unknown·JournalNeuron·TypeExperimental study·DateMay 6, 2022
Free-ranging dairy cows exhibit unique natural behaviors, taking more daily steps than penned cattle. A comparison study found penned cattle take half as many daily steps in modern cubicle housing without access to pasture.
Scientists discovered that animals likely evolved asymmetric gaits 472 million years ago, with evidence of crutching and bounding in ancient fish and crocodiles. The study suggests that many modern species have lost this ability due to evolution or size constraints.
SourceThe Company of Biologists·JournalJournal of Experimental Biology·TypeData/statistical analysis·DateMar 8, 2022
Researchers developed a fully autonomous biohybrid fish from human stem-cell derived cardiac muscle cells that recreates the muscle contractions of a pumping heart. The device has two layers of muscle cells that work together to propel the fish for over 100 days.
SourceHarvard John A. Paulson School of Engineering and Applied Sciences·JournalScience·DateFeb 10, 2022
Researchers from Rice University and the University of Wyoming discovered self-organization into circular aggregates in Myxococcus xanthus, a model system for social cooperation. The circular behavior is linked to TraAB protein overexpression, which creates a sticky bond between cells, preventing reversals.
SourceRice University·JournalmSystems·TypeExperimental study·DateDec 13, 2021
Davis Instruments Vantage Pro2 Weather Station
Davis Instruments Vantage Pro2 Weather Station offers research-grade local weather data for networked stations, campuses, and community observatories.
A new study published in Scientific Reports found that lack of sleep affects gait control, with students who stayed awake all night performing poorly. However, those who compensated for lost sleep by catching up on weekends showed improved walking control.
SourceMassachusetts Institute of Technology·JournalScientific Reports·DateOct 26, 2021
Researchers at Beijing Institute of Technology created a robot that can track fast-moving rats for extended periods using real-time localization and movement analysis. The robotic rat's built-in stereo vision system enables it to characterize typical behaviors of actual rats, promoting autonomy and reproducibility in behavior research.
SourceBeijing Institute of Technology Press Co., Ltd·JournalCyborg and Bionic Systems·TypeNews article·DateOct 18, 2021
Researchers used fruit flies in a virtual reality setting to show that vision influences body movements by tuning postural adjustments as a preventative measure. Without vision, the limb control systems respond to balance and posture perturbations, but when vision is available, the behavioral goal of walking straight takes precedence.
SourceChampalimaud Centre for the Unknown·JournalCurrent Biology·TypeExperimental study·DateSep 8, 2021
Researchers found that tardigrades move with a strategy similar to that of larger insects, walking in a manner that is 500,000 times more efficient. This discovery raises possibilities for understanding evolutionary biology and designing soft robots.
SourceRockefeller University·JournalProceedings of the National Academy of Sciences·DateAug 27, 2021
CalDigit TS4 Thunderbolt 4 Dock
CalDigit TS4 Thunderbolt 4 Dock simplifies serious desks with 18 ports for high-speed storage, monitors, and instruments across Mac and PC setups.
Researchers from UC Berkeley studied squirrels' ability to leap and land successfully to develop more agile robots. They found that squirrels assess their biomechanical abilities based on branch flexibility and gap distance, allowing them to adjust their strategies with minimal attempts.
SourceUniversity of California - Berkeley·JournalScience·TypeExperimental study·DateAug 5, 2021
Researchers found that high-dose gait training using a robotic exoskeleton can restore functional ambulation in individuals with moderate to severe hemiplegia caused by stroke. The study showed improvements in walking distance, speed, balance, and endurance, with no complications or falls reported.
SourceKessler Foundation·JournalNeuroRehabilitation An International Interdisciplinary Journal·TypeExperimental study·DateAug 3, 2021
Researchers found that Parkinson's patients exhibit 53% lower step length synergy while crossing obstacles compared to healthy subjects. This impairment affects gait timing and foot positioning, making it difficult for patients to navigate obstacles safely, increasing the risk of falls.
SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalGait & Posture·DateApr 7, 2021