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Don't build the engine, grow it: biohybrid miniature robots using living organisms

Researchers create living biohybrid miniature robots that solve traditional engineering trade-offs between structural rigidity and environmental adaptability. These biological engines utilize embodied intelligence to navigate complex terrains and achieve performance metrics rivaling state-of-the-art synthetics.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateApr 15, 2026

Reimagining proprioception: when biology meets technology

A new theory of proprioception challenges traditional understanding by incorporating frontier bionic evidence. The proposed framework reconceptualizes proprioception as a dynamic augmentable interface, enabling functional movement and potentially improving rehabilitation outcomes in sports injuries and neurological diseases. Researcher...

SourceJournal of Sport and Health Science·JournalJournal of Sport and Health Science·TypeCommentary/editorial·DateJan 22, 2026

SeoulTech develop hybrid polymer-CNT electrodes for safer brain-machine interfaces

Researchers at Seoul National University of Science and Technology developed a microelectrode with three-dimensional carbon nanotubes that efficiently conduct electricity while being soft like tissue. The arrays demonstrated stable insertion in brain tissues, precise recording of visual responses, and reduced inflammatory responses.

SourceSeoul National University of Science & Technology·JournalAdvanced Functional Materials·TypeExperimental study·DateSep 3, 2025

Bee-stinger-inspired microneedle deliver drugs, stimulate healing, and monitor wounds in real time

Researchers have created a wearable system that combines drug delivery, electrical stimulation, and continuous monitoring to treat diabetic foot ulcers. The microneedle platform anchors securely into the skin and adjusts therapy in real-time to prevent severe tissue damage.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateAug 18, 2025

Most advanced artificial touch for brain-controlled bionic hand

Researchers at Chalmers University of Technology have developed a unique method for encoding natural touch sensations via specific microstimulation patterns in implantable electrodes. This allows individuals with spinal cord injuries to feel tactile edges, shapes, curvatures and movements, enabling them to control a bionic arm with the...

SourceChalmers University of Technology·JournalScience·TypeObservational study·DateJan 16, 2025

Bioinspired weather-responsive adaptive shading

Researchers developed an energy-autonomous facade system that adapts to weather using bioinspired design and additive manufacturing. The 'Solar Gate' system harnesses hygromorphism, a property of cellulose, to open and close autonomously without electrical energy.

SourceUniversitaet Stuttgart·JournalNature Communications·TypeComputational simulation/modeling·DateJan 14, 2025

Scientists solve chemical mystery at the interface of biology and technology

Researchers at the University of Washington have solved a long-standing chemical mystery in organic electrochemical transistors (OECTs), which allow current to flow in devices like implantable biosensors. The study reveals that OECTs turn on via a two-step process, causing a lag, and off through a simpler one-step process.

SourceUniversity of Washington·JournalNature Materials·TypeExperimental study·DateApr 30, 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

Vision via sound for the blind

Researchers developed 'acoustic touch' smart glasses that translate visual information into distinct sound icons, enhancing the ability of blind or low-vision individuals to navigate their surroundings. The technology significantly improved object recognition and reaching abilities, empowering independence and quality of life.

SourceUniversity of Technology Sydney·JournalPLOS ONE·TypeRandomized controlled/clinical trial·DateOct 25, 2023

Surgical and engineering innovations enable unprecedented control over every finger of a bionic hand

Researchers have successfully integrated sensors, skeletal implants, and prosthetic limbs to enable unprecedented control over every finger of a bionic hand. The innovation uses reconfigured residual limbs and redistributed nerves to provide improved prosthetic control and sensory feedback.

SourceChalmers University of Technology·JournalScience Translational Medicine·TypeCase study·DateJul 12, 2023

Bionic pancreas improves type 1 diabetes management compared to standard insulin delivery methods

A new clinical trial found that the bionic pancreas device was more effective at maintaining blood glucose levels within normal range than standard-of-care management among people with type 1 diabetes. The device requires minimal user input and provides more automation, resulting in improved glycemic control.

SourceUniversity of Texas Health Science Center at San Antonio·JournalNew England Journal of Medicine·TypeRandomized controlled/clinical trial·DateOct 5, 2022

Nemours Children’s Health, Jacksonville trial shows that a bionic pancreas improves type 1 diabetes management compared to standard insulin delivery method

A bionic pancreas, which automatically delivers insulin based on blood glucose levels, was more effective than standard care at maintaining normal blood sugar levels. The study, funded by NIDDK and conducted at Nemours Children's Health, Jacksonville, found the device to require less user input and provide more automation.

SourceNemours·JournalNew England Journal of Medicine·TypeRandomized controlled/clinical trial·DateSep 28, 2022

Researchers redefine how liquid and solid layers stick together based on molecular forces New study reveals how intermolecular forces inform the design of smart materials

A new study by researchers from Tsinghua University redefines the interface between liquids and solid surfaces based on intermolecular forces. The findings reveal intrinsic wetting thresholds that deviate from Young's equation, providing a new perspective on wettability and its relationship with molecular interactions.

SourceTsinghua University Press·JournalNano Research·DateApr 8, 2022

Bionic wing flaps improve wind energy efficiency

Scientists from China have developed a bionic approach to improve wind turbine performance by combining features of a seagull's wing with an engineered flow control accessory. The combined flow control improves lift and delays stalling at high angles of attack, increasing the efficiency of wind energy turbines.

SourceAmerican Institute of Physics·JournalJournal of Renewable and Sustainable Energy·DateMar 22, 2022

Ice-free in icy worlds

The Antarctic scallop's microscopic ridges create a regular structure that prevents water from freezing on its surface, allowing it to resist icing. This unique feature provides an advantage for the species, with researchers suggesting potential technological applications for non-icing surfaces in polar shipping.

SourceMax Planck Institute for Polymer Research·JournalCommunications Biology·TypeExperimental study·DateMar 3, 2022

Tiny biohybrid robots for intelligent drug delivery

Biohybrid micro- and nanorobots promise to deliver drugs to body tissues with high precision, enabling tasks such as cancer treatment, cell microsurgery, and tissue engineering. Researchers envision incorporating novel biological components into robots to overcome immune responses and increase efficiency in manufacturing.

SourceBeijing Institute of Technology Press Co., Ltd·JournalCyborg and Bionic Systems·TypeExperimental study·DateMar 2, 2022

Hybrid machine-learning approach gives a hand to prosthetic-limb gesture accuracy

Researchers developed a hybrid machine-learning approach combining CNN and LSTM to recognize complex hand gestures in prosthetic hands. The technique achieved far superior performance than traditional machine learning efforts, with an accuracy of over 80%, but struggled with certain pinching gestures.

SourceBeijing Institute of Technology Press Co., Ltd·JournalCyborg and Bionic Systems·TypeExperimental study·DateFeb 7, 2022

Cleveland Clinic researchers develop bionic arm that restores natural behaviors in patients with upper limb amputations

Researchers created a bionic arm that combines intuitive motor control with touch and hand movement sensation, enabling wearers to think and behave like a person without an amputation. The system's bi-directional feedback and control allowed study participants to perform tasks with similar accuracy as non-disabled people.

SourceCleveland Clinic·JournalScience Robotics·DateSep 1, 2021

Technology lets clinicians objectively detect tinnitus for first time

A new study published in PLOS ONE describes the use of functional near-infrared spectroscopy (fNIRS) to objectively detect tinnitus. The technology revealed differences in brain connectivity between people with and without tinnitus, and accurately differentiated patients with mild from moderate/severe cases using machine learning.

SourcePLOS·JournalPLOS ONE·DateNov 18, 2020

Bionic breakthrough

The Utah Bionic Leg, developed by the University of Utah, enables amputees to walk with more power and better balance. The prosthetic limb features sensors, motors, a computer processor, and artificial intelligence that work together to provide assistance during walking and other activities.

Bionics: Electric view in murky waters

A team of scientists from the University of Bonn has created a camera that uses electrical pulses to capture images in murky or dark water, mimicking the sensing abilities of the African elephantnose fish. The 'electric camera' can identify objects, determine distances and shapes, and even distinguish between living and dead prey.

SourceUniversity of Bonn·JournalBioinspiration & Biomimetics·DateApr 9, 2019