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Surface multipoint microelectrode for direct recording of auditory evoked potentials on the auditory cortex of a rat

机译:表面多点微电极,用于直接记录大鼠听觉皮层上的听觉诱发电位

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Stimulation of the cochlear nucleus has been used for rehabilitation of deafened patients with bilateral acoustic neuromas, but current prosthetic devices bring few benefits. The goals of the authors' study are to develop such a system that could provide neuronal data with a high spatiotemporal resolution, reveal auditory pathway functions, and develop efficient guidelines for designing prostheses. Here, the authors propose and fabricate the surface microelectrode for direct cortical recordings, which is flexible enough to stick onto the cortex and consists of 32 recording sites on 2-mm square area. In addition, the spike microelectrode array, in which four microelectrodes are aligned at even intervals of 400 /spl mu/m, was developed, and used for micro-stimulation of the cochlear nucleus. The system using these electrodes was developed and its feasibility was shown on rats' animal experiments. In the experiments, the authors show that the surface electrode can provide high-resolution data of cortical activities elicited by both acoustic and electrical stimulation and can demonstrate the functional stimulation of the spike microelectrode array.
机译:耳蜗核的刺激已被用于聋哑双侧听觉神经瘤患者的康复,但是目前的修复装置带来的益处很小。作者研究的目的是开发这样一种系统,该系统可以提供具有高时空分辨率的神经元数据,揭示听觉通路的功能,并为设计假体提供有效的指导。在这里,作者提出并制造了用于直接皮层记录的表面微电极,该表面微电极具有足够的柔韧性以粘在皮层上,并由2个平方毫米面积上的32个记录位点组成。另外,开发了以400 /splμm/ m的均匀间隔排列四个微电极的尖峰微电极阵列,并将其用于耳蜗核的微刺激。开发了使用这些电极的系统,并在大鼠的动物实验中证明了其可行性。在实验中,作者表明表面电极可以提供由声和电刺激引起的皮质活动的高分辨率数据,并可以证明尖峰微电极阵列的功能性刺激。

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