Electron lithography enables sub-100-nanometer patterning of a fully water-based hydrogel resist.
Electrochemically grown metal networks inside gels overcome the long-standing trade-off between strength and conductivity.
A team of researchers have introduced STAMP—Simple Templating of Actuators via Micro-Topographical Patterning—a low-cost, reusable method for aligning skeletal muscle fibers on hydrogels using ...
Hydrogels are among the most widely studied biomaterials in modern drug delivery research. Their high hydrophilicity, ...
Cilia are micrometer-sized biological structures that occur frequently in nature. Their characteristic high-frequency, ...
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Living hydrogel grown by fungi could revolutionize wound healing
When you think about materials used in medicine, you likely picture metals, plastics, or synthetic gels. Researchers at the ...
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