首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Carbon fibre micro-electrodes for concomitant in vivo electrophysiological and voltammetric measurements: no reciprocal influences.
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Carbon fibre micro-electrodes for concomitant in vivo electrophysiological and voltammetric measurements: no reciprocal influences.

机译:碳纤维微电极,可同时进行体内电生理和伏安法测量:无相互影响。

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摘要

Differential pulse voltammetry and more recently cyclic voltammetry have been successfully used to monitor basal levels of endogenous chemicals by means of treated carbon fibre microbiosensors inserted in specific brain regions. In this study, feasibility of concomitant in vivo recordings of stable electrophysiological signals and basal ascorbate, catecholaminergic and indolaminergic voltammetric peaks at the same cerebral site by means of a single electrically treated carbon fibre micro electrode (microbiosensor) is presented. The results indicate that these two independent techniques can be combined in vivo at a single electrode, and that voltammetric measurements of unstimulated levels of extracellular compounds do not alter concomitant basal cell firing for a period long enough (more than 6 h) to allow pharmacological manipulations.
机译:差分脉冲伏安法和最近的循环伏安法已成功地用于通过插入特定大脑区域的经过处理的碳纤维微生物传感器监测内源性化学物质的基础水平。在这项研究中,提出了在体内同时记录稳定的电生理信号和通过单个经过电处理的碳纤维微电极(微生物传感器)在同一大脑部位的基础抗坏血酸盐,儿茶酚胺能和吲哚胺能伏安峰的可行性。结果表明,这两种独立的技术可以在单个电极上进行体内组合,伏安法测量未刺激水平的细胞外化合物在足够长的时间内(超过6小时)不会改变伴随的基础细胞放电,从而可以进行药理学操作。

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