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A Method of Flexible Micro-Wire Electrode Insertion in Rodent for Chronic Neural Recording and a Device for Electrode Insertion

机译:一种柔性微线电极插入啮齿动物慢性神经记录和电极插入装置的方法

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摘要

Reliable chronic neural recording from focal deep brain structures is impeded by insertion injury and foreign body response, the magnitude of which is correlated with the mechanical mismatch between the electrode and tissue. Thin and flexible electrodes cause less glial scarring and record longer than stiff electrodes. However, the insertion of flexible microelectrodes in brain has been a challenge. Here, a novel insertion method is proposed, and demonstrated, for precise targeting deep brain structures using flexible micro-wire electrodes. The microelectrode is spun and slowly inserted in brain through an appropriate electrode guide. The electrode guide does not penetrate into cortex. Based on two new mechanisms, namely spinning and guided insertion, we have demonstrated successful insertion of 25-micron platinum flexible electrodes about 10-mmdeep in rat brains without buckling. We present an electrode insertion device based on the proposed method and demonstrate its use to implant flexible microelectrodes in rat brains. The step-by-step insertion process is described. Microelectrodes were inserted in the Botzinger complex and respiratory neural activity was recorded acutely in nine rats and chronically in two rats for 50 days.
机译:可靠性慢性神经记录来自局灶性深脑结构的可通过插入损伤和异物响应来阻抗,其大小与电极和组织之间的机械失配相关。薄且柔性电极导致较少的胶质瘢痕形成,并且比刚性电极更长。然而,脑大脑中的柔性微电极的插入是挑战。这里,提出了一种新的插入方法,并且证明了使用柔性微线电极的精确靶向深脑结构。微电极通过适当的电极导向旋转并缓慢插入脑中。电极导向器不会渗透到皮质中。基于两种新机制,即旋转和引导的插入,我们已经证明了在没有屈曲的情况下成功插入大鼠大脑中约10mmdep的柔性电极。我们基于所提出的方法介绍电极插入装置,并证明其用于植入大鼠大脑中的柔性微电极。描述逐步插入过程。将微电极插入Botzinger络合物中,呼吸神经活性急性活化,急性地记录在九只大鼠中,并在两只大鼠中慢慢地记录50天。

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