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离体鼠大脑皮层的 4.7kHz 至 2.0MHz 电导率。

Electrical impedance of mouse brain cortex in vitro from 4.7 kHz to 2.0 MHz.

机构信息

School of Engineering, University of Waikato, Private Bag 3105, Hamilton 3240, New Zealand.

出版信息

Physiol Meas. 2014 Feb;35(2):267-81. doi: 10.1088/0967-3334/35/2/267. Epub 2014 Jan 16.

Abstract

The electrical impedance of samples of mouse brain cortex has been measured between 4.7 kHz and 2.0 MHz. Brain slices of thickness 400 μm were prepared from two mice. Each slice was placed in either normal artificial cerebrospinal fluid or magnesium-free artificial cerebrospinal fluid; the latter induces seizure-like electrical behaviour. A total of 74 samples of cortex of approximate size 2 mm × 2 mm were then cut from these slices. Each sample in turn was placed between two flat Ag/AgCl electrodes and electrical impedance measured with an Agilent E4980A four-point impedance monitor. The measurements showed two regions of significant dispersion. Circuits based on the Cole-Cole and Fricke models, consisting of inductive, nonlinear capacitive and resistive elements were used to model the behaviour. Distributions of values for each circuit element have been determined for the samples prepared in seizing and non-seizing conditions. Few differences were found between the values of circuit elements between the seizing and non-seizing groups.

摘要

已经在 4.7kHz 到 2.0MHz 之间测量了来自老鼠大脑皮层的样本的电阻抗。从两只老鼠中制备了厚度为 400μm 的脑切片。每个切片被放置在正常人工脑脊液或无镁人工脑脊液中;后者诱导类似癫痫的电行为。然后从这些切片中总共切下了 74 个大约 2mm×2mm 大小的皮层样本。每个样本依次被放置在两个平坦的 Ag/AgCl 电极之间,并使用 Agilent E4980A 四点阻抗监视器测量电阻抗。测量结果显示出两个具有显著分散性的区域。基于科利-科尔和弗里克模型的电路,由电感、非线性电容和电阻元件组成,用于模拟行为。已经确定了在癫痫发作和非癫痫发作条件下制备的样本中每个电路元件的值分布。在癫痫发作组和非癫痫发作组之间,电路元件的值几乎没有差异。

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