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Silk coating as a novel delivery system and reversible adhesive for stiffening and shaping flexible probes

机译:丝绸涂层作为一种新颖的输送系统和可逆粘合剂,用于加固和成形柔性探头

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The performance of any implantable electrode depends not only on its recording or stimulation capabilities but also on its position in relation to the target site. Electrode displacement during or after implantation represents a major issue as it might result in tissue damage or incorrect recording or stimulation location, complicating the interpretation of experimental data. Although thin-film electrode arrays have overcome some of the main limitations of more traditional, stiffer probes, their intrinsic flexibility and unilateral contacts represent a new challenge: they tend to bend during insertion and are difficult to implant simultaneously while maintaining a specific relative position. Here, we present a method that addresses all these issues using a coating of silk fibroin, a versatile protein derived from silkworm cocoons. The method is demonstrated by acquiring electromyographic (EMG) recordings in Manduca sexta , a soft-bodied animal that exemplifies the issues of electrode insertion and placement in delicate and deformable tissues.
机译:任何植入式电极的性能不仅取决于其记录或刺激能力,还取决于其相对于目标部位的位置。植入期间或植入后电极移位是一个主要问题,因为它可能导致组织损伤或错误的记录或刺激位置,从而使实验数据的解释变得复杂。尽管薄膜电极阵列克服了更传统,更硬探针的一些主要限制,但其固有的柔韧性和单边接触仍是一个新的挑战:它们在插入过程中趋于弯曲,并且在保持特定相对位置的同时难以同时植入。在这里,我们提出一种使用丝素蛋白涂层解决所有这些问题的方法,丝素蛋白是一种由蚕茧衍生的通用蛋白。该方法通过采集曼杜卡六倍体中的肌电图(EMG)记录来证明,该实物是软性动物,其例证了电极在脆弱和可变形组织中的插入和放置问题。

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