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体内血管纹电位的电生理测量。

Electrophysiological measurements of the stria vascularis potentials in vivo.

作者信息

Melichar I, Syka J

出版信息

Hear Res. 1987;25(1):35-43. doi: 10.1016/0378-5955(87)90077-3.

Abstract

Glass microelectrodes were introduced into the stria vascularis (SV) to measure the DC potential profile of the SV in vivo from its apical as well as basal side. The K+ concentration gradient in the lateral cochlear wall was measured by means of double barrel K+-selective microelectrodes. A positive potential 10.4 +/- 6.3 mV higher than the endocochlear potential (EP) was found in the SV. In noise-exposed animals the positive potential found in the SV was 14.6 +/- 7.2 mV higher than the EP. K+ concentration observed during penetration into the SV was in the range of 50-100 mmol/l. Simultaneous measurement of the DC positive potential in the SV and EP showed a nearly parallel time course during anoxia with a tendency to increase the difference between the SV potential and the EP. The difference reached approximately 30 mV 20 min after the beginning of anoxia. It may be assumed that the electrogenic pump localized at the basolateral membrane of the marginal cell (MC) is a source of the positive potential inside the MC and is hence a source of the potential drop across the luminal side of the MC membrane.

摘要

将玻璃微电极插入血管纹(SV),以在体内从其顶端和基底侧测量SV的直流电位分布。通过双管钾离子选择性微电极测量耳蜗外侧壁的钾离子浓度梯度。在血管纹中发现了比内淋巴电位(EP)高10.4±6.3 mV的正电位。在噪声暴露的动物中,血管纹中发现的正电位比内淋巴电位高14.6±7.2 mV。在插入血管纹过程中观察到的钾离子浓度范围为50-100 mmol/L。在缺氧期间,同时测量血管纹中的直流正电位和内淋巴电位显示出几乎平行的时间进程,血管纹电位与内淋巴电位之间的差异有增加的趋势。缺氧开始20分钟后,差异达到约30 mV。可以假定,位于边缘细胞(MC)基底外侧膜上的生电泵是MC内部正电位的来源,因此是MC膜腔侧电位降的来源。

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