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通过电流源密度分析揭示的青蛙视顶盖的开和关通道。

ON and OFF channels of the frog optic tectum revealed by current source density analysis.

作者信息

Nakagawa H, Matsumoto N

机构信息

Department of Biochemical Engineering and Science, Faculty of Computer Science and Systems Engineering, Kyushu Institute of Technology, Iizuka, Fukuoka 820, Japan.

出版信息

J Neurophysiol. 1998 Oct;80(4):1886-99. doi: 10.1152/jn.1998.80.4.1886.

Abstract

The spatiotemporal patterns of excitatory synaptic activity in response to diffuse lightON and OFF stimuli were examined by means of current source density (CSD) analysis. The qualitative and quantitative analyses obtained from 24 depth profiles for each stimulus revealed obviously different distributions of synaptic activity in the laminar structure. Two or three dominant current sinks I, II, and III were evoked in response to diffuse light ON stimulation. Sink I was observed at the bottom of the retinorecipient layer. Both sinks II and III, showing an identical spatial pattern, were observed just above sink I. On the other hand, diffuse light OFF stimulation elicited up to six current sinks IV, V, VI, VII, VIII, and IX. Sink IV was observed at the bottom of the retinorecipient layer. Sink V was observed in the most superficial layer. Both sinks VI and VIII were located between the two preceding sinks. Finally, sinks VII and IX occurred below the retinorecipient layer. Five electrically evoked current sinks A, B, C, D, and E, characterized in our previous study, were also recognized in the present quantitative analysis. A statistical analysis revealed that, in visually evoked responses, statistical differences in the spatial distribution were not present between sinks I and IV, and sinks II and VIII (P < 0.05). The analysis also showed that, in electrically evoked responses, only a pair of sinks C and E exhibit virtually identical spatial distribution (P < 0.05). Based on well-known properties of the retinal ganglion cells, possible neuronal mechanisms underlying each of current sinks in the ON and OFF channels and their functional meanings were considered. Sink I reflects the excitatory monosynaptic activity derived from R3 retinal ganglion cells. Sink IV reflects the excitatory monosynaptic activity derived from both R3 and R4 cells. Sinks V, VI, VII, and IX may be composed of successive polysynaptic excitatory potentials derived from convergence of inputs from both R3 and R4 cells. We concluded that the early four sinks play in particular an important role in eliciting avoidance behavior. On the other hand, sinks II, III, and VIII reflect excitatory synaptic activities derived from - retinal fibers of another type having slow conduction velocity. These late current sinks were suggested to mediate prey catching and its facilitation.

摘要

通过电流源密度(CSD)分析,研究了响应漫射光开和关刺激时兴奋性突触活动的时空模式。对每种刺激的24个深度剖面进行的定性和定量分析显示,突触活动在层状结构中的分布明显不同。响应漫射光开刺激时,会诱发两到三个主要的电流汇I、II和III。电流汇I出现在视网膜接受层的底部。电流汇II和III显示出相同的空间模式,都出现在电流汇I的上方。另一方面,漫射光关刺激会诱发多达六个电流汇IV、V、VI、VII、VIII和IX。电流汇IV出现在视网膜接受层的底部。电流汇V出现在最表层。电流汇VI和VIII都位于前两个电流汇之间。最后,电流汇VII和IX出现在视网膜接受层下方。在本定量分析中,还识别出了我们之前研究中表征的五个电诱发电流汇A、B、C、D和E。统计分析表明,在视觉诱发反应中,电流汇I和IV之间以及电流汇II和VIII之间在空间分布上不存在统计学差异(P < 0.05)。分析还表明,在电诱发反应中,只有一对电流汇C和E表现出几乎相同的空间分布(P < 0.05)。基于视网膜神经节细胞的已知特性,考虑了开和关通道中每个电流汇潜在的神经元机制及其功能意义。电流汇I反映了源自R3视网膜神经节细胞的兴奋性单突触活动。电流汇IV反映了源自R3和R4细胞的兴奋性单突触活动。电流汇V、VI、VII和IX可能由源自R3和R4细胞输入汇聚的连续多突触兴奋性电位组成。我们得出结论,早期的四个电流汇在引发回避行为中尤其起着重要作用。另一方面,电流汇II、III和VIII反映了源自另一种传导速度较慢的视网膜纤维的兴奋性突触活动。这些后期电流汇被认为介导猎物捕获及其促进作用。

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