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Y视网膜神经节细胞对二阶运动线索反应的细胞基础。

Cellular basis for the response to second-order motion cues in Y retinal ganglion cells.

作者信息

Demb J B, Zaghloul K, Sterling P

机构信息

Department of Neuroscience, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.

出版信息

Neuron. 2001 Nov 20;32(4):711-21. doi: 10.1016/s0896-6273(01)00484-6.

Abstract

We perceive motion when presented with spatiotemporal changes in contrast (second-order cue). This requires linear signals to be rectified and then summed in temporal order to compute direction. Although both operations have been attributed to cortex, rectification might occur in retina, prior to the ganglion cell. Here we show that the Y ganglion cell does indeed respond to spatiotemporal contrast modulations of a second-order motion stimulus. Responses in an OFF ganglion cell are caused by an EPSP/IPSP sequence evoked from within the dendritic field; in ON cells inhibition is indirect. Inhibitory effects, which are blocked by tetrodotoxin, clamp the response near resting potential thus preventing saturation. Apparently the computation for second-order motion can be initiated by Y cells and completed by cortical cells that sum outputs of multiple Y cells in a directionally selective manner.

摘要

当面对对比度的时空变化(二阶线索)时,我们会感知到运动。这需要将线性信号进行整流,然后按时间顺序求和以计算方向。尽管这两种操作都被认为是由皮层完成的,但整流可能发生在视网膜中,即在神经节细胞之前。在这里,我们表明Y神经节细胞确实对二阶运动刺激的时空对比度调制做出反应。OFF神经节细胞的反应是由树突场中诱发的兴奋性突触后电位/抑制性突触后电位序列引起的;在ON细胞中,抑制是间接的。被河豚毒素阻断的抑制作用将反应钳制在静息电位附近,从而防止饱和。显然,二阶运动的计算可以由Y细胞启动,并由以方向选择性方式对多个Y细胞的输出进行求和的皮层细胞完成。

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