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Conformally-mapped multielectrode arrays for in-vitro stimulation and recording of hippocampal acute slices

机译:用于体外刺激和流海马急性切片的共形映射多电极阵列

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Multiple configurations of planar, conformallymapped multielectrode arrays (cMEAs) are used to enable stimulation and recording of hippocampal acute slice activities. The configurations of the multielectrode arrays are conformal in that the designs incorporate the specific geometrical mapping of various sub-regions of the rat hippocampus (CA1-to-CA3, dentate gyrus-to-CA3, or individual regions) [1]. The high-density feature of the arrays also provides a high spatial resolution for currentsource density (CSD) analysis, with 50μm or 60μm center-to-center distances. Fabrication of gold and ITO (indium tin oxide) based multielectrode arrays with up to sixty-four recording/stimulating elements has been achieved. Impedance measurements are taken for the multielectrode arrays, and a simple equivalent circuit has been employed to model the electrode-electrolyte interface; cyclic voltammetry and potential monitoring experiments are performed to set guidelines and to identify limitations of stimulation protocols, thus avoiding undesirable irreversible faradaic reactions due to excess stimulation. Evoked in-vitro electrophysiological experiments with acute slices of rat hippocampus have successfully been performed using the cMEAs.
机译:使用平面的多种配置,共形地映射的多电极阵列(CMEAS)用于刺激和记录海马急性切片活动。多电极阵列的配置是共形式的,因为设计包括大鼠海马的各种子区域的特定几何映射(Ca1-〜-Ca 3,牙齿回散 - Ca 3或单个区域)[1]。阵列的高密度特征还提供了用于水流密度(CSD)分析的高空间分辨率,具有50μm或60μm中心到中心距离。已经实现了基于金和ITO(氧化铟锡)的多电极阵列的制造,其具有高达六十四的记录/刺激元件。对多电极阵列采取阻抗测量值,并且已经采用简单的等效电路来模拟电极电解质界面;进行循环伏安法和潜在的监测实验,以设定指导和识别刺激方案的局限性,从而避免由于过度刺激引起的不可取的不可逆的游览反应。使用CMEA成功地进行了用急性切片的体外电生理学实验诱发了急性切片大鼠海马。

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