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Smart polymers for neural interfaces

机译:用于神经接口的智能聚合物

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Thermomechanical properties of smart polymers can be specifically tuned to address critical problems in neural interfaces. A compilation of materials and approaches is presented from each of three often overlapping research communities: shape memory polymers, hydrogels, and neural interfaces. The path toward chronically implantable devices for neural recording and stimulation relies on careful control of mechanical, chemical, electronic and geometric properties of next generation devices. These phenomena are described and put into a context of modulus changing materials, as opposed to the current focus on shape changing materials, as a paradigm that may lead to new discoveries addressing unmet clinical needs.
机译:智能聚合物的热机械性能可以专门调整,以解决神经接口中的关键问题。来自三个经常重叠的研究社区的材料和方法的汇编:形状记忆聚合物、水凝胶和神经接口。用于神经记录和刺激的慢性植入式设备的道路依赖于对下一代设备的机械、化学、电子和几何特性的仔细控制。这些现象被描述并置于模量变化材料的背景下,而不是目前对形状变化材料的关注,作为一种范式,可能会导致解决未满足的临床需求的新发现。

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