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米勒细胞反应、局部视网膜跨膜电位与钾离子通量之间的关系。

Relationship between Müller cell responses, a local transretinal potential, and potassium flux.

作者信息

Karowski C J, Proenza L M

出版信息

J Neurophysiol. 1977 Mar;40(2):244-59. doi: 10.1152/jn.1977.40.2.244.

Abstract
  1. In the Necturus retina, light-evoked field potentials, Müller (glial) cell responses, and extracellular potassium ion concentration ([K+]0) were recorded and found to exhibit the three-way correlation characteristic of these variables elsewhere in the nervous system. 2. Müller cell responses to a flashed spot or annulus consist primarily of slow depolarizations at both light onset and offset. The responses are maximum to 0.5-mm-diameter spots and decrease with larger diameters. Responses to stimulus intensity and flicker were also used to characterize Müller cell behavior. 3. In response to long-duration stimuli, the initial Müller cell depolarization is followed by a very slow hyperpolarization, which is likely the origin of slow PIII. 4. A new extracellular potential is described, the M-wave, the basic properties of which suggest that it is generated by Müller cells. Moreover, the M-wave and Müller cells show remarkably similar behavior to a wide variety of stimulus parameters. 5. In the proximal retina, [K+]0 increases at both light onset and offset with a time course similar to that of Müller cell depolarizing responses. This K+ increase also behaves similarly to the Müller cell depolarization in response to changes in stimulus parameters. 6. It is concluded that light stimulation leads to an increase in [K+]0 in the proximal retina and that this increase depolarizes Müller cells whose associated currents, in turn, generate the M-wave.
摘要
  1. 在美西螈视网膜中,记录了光诱发的场电位、米勒(神经胶质)细胞反应以及细胞外钾离子浓度([K+]0),发现它们呈现出神经系统其他部位这些变量的三元相关性特征。2. 米勒细胞对闪光光斑或光环的反应主要由光开始和结束时的缓慢去极化组成。对直径0.5毫米的光斑反应最大,直径增大时反应减弱。还利用对刺激强度和闪烁的反应来表征米勒细胞的行为。3. 对长时间刺激的反应中,米勒细胞最初的去极化之后是非常缓慢的超极化,这可能是慢PIII的起源。4. 描述了一种新的细胞外电位,即M波,其基本特性表明它是由米勒细胞产生的。此外,M波和米勒细胞对各种刺激参数表现出非常相似的行为。5. 在视网膜近端,[K+]0在光开始和结束时均升高,其时间进程与米勒细胞去极化反应相似。这种钾离子升高对刺激参数变化的反应也与米勒细胞去极化相似。6. 得出的结论是,光刺激导致视网膜近端[K+]0升高,这种升高使米勒细胞去极化,其相关电流进而产生M波。

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