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猫初级皮层同侧和对侧输入在21a区神经元反应中的作用。

The role of ipsilateral and contralateral inputs from primary cortex in responses of area 21a neurons in cats.

作者信息

Michalski A, Wimborne B M, Henry G H

机构信息

Centre for Visual Science, John Curtin School of Medical Research, Australian National University, Canberra.

出版信息

Vis Neurosci. 1994 Sep-Oct;11(5):839-49. doi: 10.1017/s0952523800003801.

Abstract

Neuronal responses in cat visual area 21a were analyzed when the primary visual cortex (areas 17 and 18) was deactivated by cooling. Ipsilateral and contralateral cortices were deactivated separately. Results established that (1) cooling the ipsilateral primary cortex diminished the activity of all area 21a cells and, in 30%, blocked responsiveness altogether, and (2) cooling the contralateral primary cortex initially increased activity in area 21a cells but, with further cooling, reduced it to below the original level although only 9% of cells ceased responding. These findings were then compared to earlier results in which bilateral deactivation of the primary cortex greatly reduced and, in most cases, blocked the activity of area 21a cells (Michalski et al., 1993). Despite the response attenuation following cooling of the primary visual cortex (either ipsilateral or contralateral), neurons of area 21a retained their original orientation specificity and sharpness of tuning (measured as the half-width at half-height of the orientation tuning curve). Direction selectivity also tended to remain unchanged. We concluded that for area 21a cells (1) the ipsilateral primary cortex provides the main excitatory input; (2) the contralateral primary cortex supplies a large inhibitory input; and (3) the nature of orientation specificity, sharpness of orientation tuning, and direction selectivity are largely unaffected by removal of the ipsilateral hemisphere excitatory input or the contralateral hemisphere inhibitory input.

摘要

当通过冷却使初级视觉皮层(17区和18区)失活时,对猫视觉21a区的神经元反应进行了分析。分别使同侧和对侧皮层失活。结果表明:(1)冷却同侧初级皮层会降低所有21a区细胞的活性,并且在30%的情况下,会完全阻断反应性;(2)冷却对侧初级皮层最初会增加21a区细胞的活性,但随着进一步冷却,会将其降低到原始水平以下,尽管只有9%的细胞停止反应。然后将这些发现与早期的结果进行比较,在早期结果中,初级皮层的双侧失活大大降低了,并且在大多数情况下,阻断了21a区细胞的活性(Michalski等人,1993年)。尽管初级视觉皮层(同侧或对侧)冷却后反应减弱,但21a区的神经元仍保留其原始的方向特异性和调谐锐度(以方向调谐曲线半高宽衡量)。方向选择性也倾向于保持不变。我们得出结论,对于21a区细胞:(1)同侧初级皮层提供主要的兴奋性输入;(2)对侧初级皮层提供大量的抑制性输入;(3)方向特异性、方向调谐锐度和方向选择性的性质在很大程度上不受同侧半球兴奋性输入或对侧半球抑制性输入去除的影响。

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