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Counterclockwise bias

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

University of Houston BRAIN, TIRR Memorial Hermann develop first wearable pediatric soft exoskeleton made of smart materials

The MyoStep project represents a significant advancement in pediatric mobility aids for children with cerebral palsy, addressing motor impairments that restrict participation in physical activities. The soft power suit provides a lightweight, discreet solution tailored to fit seamlessly into the lives of children and their families.

SourceUniversity of Houston·JournalIEEE Electron Devices Magazine·DateApr 29, 2025

This fish has legs

The study reveals that sea robin legs are sensitive to both mechanical and chemical stimuli, and are covered in papillae similar to human taste buds. The research provides new insights into the evolution of this unique trait, which could offer clues about how humans developed bipedalism.

SourceHarvard University·JournalCurrent Biology·TypeExperimental study·DateSep 26, 2024

Walking in lockstep

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

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

Built-in bionic computing

Researchers have created a method to control pneumatic artificial muscles with embedded bifurcation structures, which can generate diverse dynamics and patterns. This breakthrough enables robots to exhibit more adaptable and flexible movements, streamlining hardware and software development.

SourceKyoto University·JournalAdvanced Science·TypeExperimental study·DateApr 25, 2024

Swimming lessons often discourage kids from just having fun in the pool

Researchers from the Netherlands found that traditional swimming lessons in the country often discourage children from having fun in the pool. By adopting a teaching style based on self-determination theory, instructors can nurture autonomy, competence, and relatedness, leading to improved swimming skills and increased enjoyment. The s...

SourceFrontiers·JournalFrontiers in Sports and Active Living·TypeObservational study·DateSep 27, 2023

Advanced universal control system may revolutionize lower limb exoskeleton control and optimize user experience

Researchers developed a new method for controlling lower limb exoskeletons using deep reinforcement learning, enabling more robust and natural walking control. The system has the potential to benefit users with spinal cord injuries, multiple sclerosis, stroke, and other neurological conditions.

SourceKessler Foundation·JournalJournal of NeuroEngineering and Rehabilitation·TypeComputational simulation/modeling·DateJun 15, 2023

Powering an ‘arm’ with air could be mighty handy

Researchers at Rice University have developed a pneumatic robotic arm powered by compressed air that can grasp objects and go, using textile-based energy harvesting system. The device is designed for individuals with disabilities and can produce equivalent of 3 watts of power, outperforming other energy harvesting strategies.

SourceRice University·JournalScience Advances·TypeExperimental study·DateAug 25, 2022

Mommy says easy does it

A study by Kyoto University researchers reveals that human fetuses develop slower shoulder growth before birth, alleviating complications during delivery. This adaptation allows for a safer passage through the birth canal, reconciling the incompatibility between wide shoulders and narrow pelvis.

In world-first, Tel Aviv University researchers engineer human spinal cord implants for treating paralysis

Researchers from Tel Aviv University have engineered 3D human spinal cord tissues and implanted them in lab models with long-term chronic paralysis, resulting in an 80% success rate in restoring walking abilities. The team aims to conduct clinical trials in human patients within a few years to make the treatment commercially available.

SourceTel-Aviv University·JournalAdvanced Science·DateFeb 7, 2022

LSU Health rediscovers anatomy to correct “common knowledge” about hip muscles

Researchers at LSU Health have rediscovered the correct anatomy of the hip muscles, finding that they do not join into a single tendon but instead attach to different regions. This discovery has significant implications for understanding the evolution of human upright gait and bipedal locomotion.

SourceLouisiana State University Health Sciences Center·JournalThe Anatomical Record·TypeObservational study·DateNov 8, 2021

Walking efficiently takes next to no thought

A team of scientists found that people can adjust their walking efficiency automatically, even when distracted, without having to think about it. This ability allows for focus on other tasks while walking, such as tracking road bumps and managing daily life.

SourceThe Company of Biologists·JournalJournal of Experimental Biology·TypeExperimental study·DateSep 14, 2021

Practice makes perfect

Scientists from the University of Tsukuba analyzed video from top-level judo matches to systematically determine the aspects of posture that lead to success. The study found that the distance between competitors is a key factor in correct technique, which may assist in automating athletic training methods.

SourceUniversity of Tsukuba·JournalSensors·DateSep 3, 2021

Fancy a Swim?

Researchers at the University of Tsukuba reviewed the scientific literature on swimming hydrodynamics and identified key areas for improvement. They found that certain biomechanical aspects, such as velocity and drag forces, are not fully understood, but optimizing technique can lead to a competitive edge.

SourceUniversity of Tsukuba·JournalSports Biomechanics·DateSep 1, 2021