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Soft implantable microelectrodes for future medicine: prosthetics, neural signal recording and neuromodulation

机译:用于未来医学的软植入微电极:假体,神经信号记录和神经调节

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摘要

Implantable devices have provided various potential diagnostic options and therapeutic methods in diverse medical fields. A variety of hard-material-based implantable electrodes have been developed. However, several limitations for their chronic implantation remain, including mechanical mismatches at the interface between the electrode and the soft tissue, and biocompatibility. Soft-material-based implantable devices are suitable candidates for complementing the limitations of hard electrodes. Advances in microtechnology and materials science have largely solved many challenges, such as optimization of shape, minimization of infection, enhancement of biocompatibility and integration with components for diverse functions. Significant strides have also been made in mechanical matching of electrodes to soft tissue. In this review, we provide an overview of recent advances in soft-material-based implantable electrodes for medical applications, categorized according to their implantation site and material composition. We then review specific applications in three categories: neuroprosthetics, neural signal recording, and neuromodulation. Finally, we describe various strategies for the future development and application of implantable, soft-material-based devices.
机译:植入式设备在不同的医学领域提供了各种潜在的诊断选项和治疗方法。已经开发了多种基于硬材料的可植入电极。然而,它们的长期植入仍然存在一些局限性,包括电极与软组织之间的界面处的机械失配以及生物相容性。基于软材料的可植入设备是补充硬电极限制的合适候选者。微技术和材料科学的进步已在很大程度上解决了许多挑战,例如形状的优化,感染的最小化,生物相容性的增强以及与具有多种功能的组件的集成。在电极与软组织的机械匹配方面也取得了重大进展。在这篇综述中,我们提供了基于软材料的可植入电极在医疗领域的最新进展的概述,并根据其植入部位和材料成分进行了分类。然后,我们回顾了三类中的特定应用:神经修复术,神经信号记录和神经调节。最后,我们描述了可植入的基于软材料的设备的未来开发和应用的各种策略。

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