Results 91 to 100 of about 225,991 (155)
Immersion Phase Separation 3-Dimensional Printing for Strain-Stiffening Hydrogel Scaffolds
Strain-stiffening hydrogels, which mimic the nonlinear mechanical behavior of biological tissues such as skin, arteries, and cartilage, hold transformative potential for biomedical applications.
Muyuan Chai +4 more
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This book presents a selection of peer-reviewed papers from the 16th European Robotics Forum (ERF) of euRobotics, the European Robotics Association, held in Stuttgart, Germany, from March 25-27, 2025.
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The limitations of biohybrid and mechanical robots, including insufficient control accuracy, limited flexibility, long-term stability, and endurance, have spurred considerable research interest in cyborg animals, which leverage the innate locomotion ...
Yue Ma +7 more
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Center for Occupational Robotics Research PPOP [2021] [PDF]
The National Institute for Occupational Safety and Health (NIOSH) Center for Occupational Robotics Research (CORR) addresses the safety of today\u2019s workers who use, wear, or work near robots.
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Presented on November 29, 2023 at 11:00 a.m. as a part of the IRIM Robotics Days for Industry 2023.Brad Range is a senior project manager at Intuitive Surgical with technical expertise in robotics, automation, medical devices, and consumer products ...
Range, Brad, Olivero, Daniel
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Biological surfaces perform a wide range of functions, including communication, molecular exchange, defense, and movement. While these architectures have long inspired biomimetic surface engineering, most existing reviews focus on fabrication methods ...
Btisème Bendjebour +14 more
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Social immunity involves collective defensive strategies against infectious diseases. Despite its prevalence in eusocial insects, little is known about social immunity in non‐eusocial organisms like gregarious locusts.
Donato Romano, Cesare Stefanini
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Biohybrid Micro/Nanorobots: Pioneering the Next Generation of Medical Technology
Iravani, Siavash/0000-0003-3985-7928Biohybrid micro/nanorobots hold a great potential for advancing biomedical research. These tiny structures, designed to mimic biological organisms, offer a promising method for targeted drug delivery, tissue ...
Iravani, Siavash +3 more
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Will microfluidics enable functionally integrated biohybrid robots?
The next robotics frontier will be led by biohybrids. Capable biohybrid robots require microfluidics to sustain, improve, and scale the architectural complexity of their core ingredient: biological tissues.
Raman, Ritu +4 more
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