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A simple implantation method for flexible multisite microelectrodes into rat brains

机译:一种将柔性多位微电极植入大鼠大脑的简单方法

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摘要

A long term functional and reliable coupling between neural tissue and implanted microelectrodes is the key issue in acquiring neural electrophysiological signals or therapeutically excite neural tissue. The currently often used rigid micro-electrodes are thought to cause a severe foreign body reaction resulting in a thick glial scar and consequently a poor tissue-electrode coupling in the chronic phase. We hypothesize, that this adverse effect might be remedied by probes compliant to the soft brain tissue, i.e., replacing rigid electrodes by flexible ones. Unfortunately, this flexibility comes at the price of a low stiffness, which makes targeted low trauma implantation very challenging. In this study, we demonstrate an adaptable and simple method to implant extremely flexible microprobes even to deep areas of rat's brain. Implantation of flexible probes is achieved by rod supported stereotactic insertion fostered by a hydrogel (2% agarose in PBS) cushion on the exposed skull. We were thus able to implant very flexible micro-probes in 70 rats as deep as the rodent's subthalamic nucleus. This work describes in detail the procedures and steps needed for minimal invasive, but reliable implantation of flexible probes.
机译:神经组织和植入的微电极之间的长期功能性和可靠耦合是获取神经电生理信号或治疗性刺激神经组织的关键问题。据认为,当前经常使用的刚性微电极会引起严重的异物反应,从而导致胶质瘢痕增厚,从而导致慢性期组织电极耦合不良。我们假设,可以通过顺应于软脑组织的探针(即用柔性电极代替刚性电极)来纠正这种不利影响。不幸的是,这种灵活性是以低刚度为代价的,这使得有针对性的低创伤植入非常具有挑战性。在这项研究中,我们展示了一种适应性强且简单的方法,即使在大鼠大脑深处也可以植入极其灵活的微探针。通过在裸露的头骨上靠水凝胶(PBS中2%的琼脂糖)垫促进杆支持的立体定向插入来实现柔性探针的植入。因此,我们能够在与啮齿动物的丘脑底核一样深的70只大鼠中植入非常灵活的微探针。这项工作详细描述了微创但可靠植入柔性探针所需的程序和步骤。

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