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首页> 外文期刊>Trends in Neurosciences >New directions in retinal research.
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New directions in retinal research.

机译:视网膜研究的新方向。

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Direction-selective retinal ganglion cells (DSGCs) respond to image motion in a "preferred" direction but not the opposite "null" direction. Extracellular spike recordings from rabbit DSGCs suggested that the key mechanism underlying the directional responses is spatially offset inhibition projecting in the null direction. Recent patch-clamp recordings have shown that this inhibition, which acts directly on the DSGC, is already direction selective. Dual recordings established that the inhibition arises from starburst amacrine cells (SBACs) located on the null side of the DSGC but not from those on the preferred side. Thus, for each radially symmetric SBAC, processes pointing in different directions would provide the null-direction inhibition to subtypes of DSGCs with different preferred directions. Ca2+ imaging revealed that the SBAC terminal processes respond more strongly to image motion away from the soma than towards the soma, therefore accounting for the direction selectivity of the inhibitory input to the DSGCs.
机译:方向选择性视网膜神经节细胞(DSGC)对图像运动的响应是“首选”方向,而不是相反的“空”方向。兔DSGC的细胞外峰值记录表明,定向反应的关键机制是向零方向投射的空间偏移抑制。最近的膜片钳记录表明,直接作用于DSGC的这种抑制作用已经具有方向选择性。双重记录证实抑制作用是由位于DSGC无效侧的星爆无长突细胞(SBAC)引起的,而不是来自优选侧的星突无长突细胞(SBAC)。因此,对于每个径向对称的SBAC,指向不同方向的过程将为具有不同优选方向的DSGC子类型提供零方向抑制。 Ca 2+成像显示,SBAC末端过程对远离躯体的图像运动的反应比向躯体运动的响应大,因此考虑了对DSGC的抑制性输入的方向选择性。

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