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视网膜场电位的电流源密度分析。II. b波和M波的药理学分析。

Current source density analysis of retinal field potentials. II. Pharmacological analysis of the b-wave and M-wave.

作者信息

Xu X, Karwoski C J

机构信息

Department of Psychology, University of Georgia, Athens 30602.

出版信息

J Neurophysiol. 1994 Jul;72(1):96-105. doi: 10.1152/jn.1994.72.1.96.

Abstract
  1. The actions of two pharmacological agents, barium ions (Ba2+) and picrotoxin (PTX), were examined on components of the electroretinogram (ERG) in frog retina. Depth profiles of light-evoked field potentials were recorded, and current source densities (CSDs) were computed from these. 2. Ba2+ abolished the M-wave, slow PIII, and the c-wave, but only decreased b-wave amplitude down to approximately 65% of control amplitude. 3. Ba2+ abolished a slow current sink in the inner plexiform layer (IPL) and the source at the inner limiting membrane (ILM). This IPL sink/ILM source appears to generate the M-wave. 4. Ba2+ decreased the current sink at the outer plexiform layer (OPL) to approximately 70% of control amplitude, and it increased an IPL source. This Ba(2+)-resistant OPL sink/IPL source appears to generate a significant portion of the b-wave. The Ba(2+)-sensitive portion of the b-wave might be generated by Müller cells. 5. PTX enhanced retinal field potentials, particularly the M-wave in the proximal retina. This enhanced M-wave was shown to originate from an enhanced IPL sink/ILM source. 6. Our results suggest that the M-wave originates from Müller cells, through the spatial buffering of the light-evoked increase in [K+]o of the proximal retina. A portion of the b-wave may also originate from Müller cells, but a stronger direct contribution from depolarizing bipolar cells is suggested.
摘要
  1. 研究了两种药理剂钡离子(Ba2+)和印防己毒素(PTX)对青蛙视网膜视网膜电图(ERG)各成分的作用。记录了光诱发场电位的深度分布,并据此计算了电流源密度(CSD)。2. Ba2+消除了M波、缓慢的PIII波和c波,但仅将b波振幅降低至对照振幅的约65%。3. Ba2+消除了内网状层(IPL)中的一个缓慢电流汇和内界膜(ILM)处的电流源。这个IPL电流汇/ILM电流源似乎产生了M波。4. Ba2+将外网状层(OPL)处的电流汇降低至对照振幅的约70%,并增加了一个IPL电流源。这个对Ba2+有抗性的OPL电流汇/IPL电流源似乎产生了很大一部分b波。b波对Ba2+敏感的部分可能由米勒细胞产生。5. PTX增强了视网膜场电位,特别是近端视网膜中的M波。这种增强的M波被证明起源于增强的IPL电流汇/ILM电流源。6. 我们的结果表明,M波起源于米勒细胞,是通过近端视网膜光诱发的[K+]o增加的空间缓冲作用。b波的一部分也可能起源于米勒细胞,但提示去极化双极细胞有更强的直接贡献。

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