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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The contribution of intracortical inhibition to dynamics of orientation tuning in cat striate cortex neurons.
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The contribution of intracortical inhibition to dynamics of orientation tuning in cat striate cortex neurons.

机译:皮层内抑制对猫纹状皮层神经元定向调节动力学的影响。

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摘要

Orientation tuning of some neurons in cat visual cortex (area 17) revealed successive shifts of the preferred orientation and widening of tuning in time during the first 150 ms after onset of a flashing light bar. The mechanisms of these dynamics and the possible role of intracortical inhibition are still under discussion. In this study we analysed the dynamics using the time slice method before and during blockade of GABAergic inhibition by microiontophoretic application of bicuculline and observed two main types of neuronal behaviour. The first group of neurons (39 of 68 units or 57.4%) with relatively sharp tuning and absence or relatively small shifts of preferred orientation under control conditions increased or developed this shift during bicuculline application. Changes in tuning were observed between 30 and 150 ms after stimulus onset when inhibition was blocked. Neurons of the second group (29 units or 42.6% of cases) displayed pronounced shifts of preferred orientation under control conditions which was typically diminished or lost during blockade of inhibition. The results indicate different contributions of intracortical inhibition to different neurons distinguishing by stability or time dependence of their orientation preference during normal response generation. In one group of striate cells orientation tuning was kept narrow and constant in time by intracortical inhibition, while in another group orientation tuning dynamics are induced by inhibitory mechanisms.
机译:猫视皮层(第17区)中某些神经元的方向调整显示出闪烁的光条开始后的最初150毫秒内,首选方向的连续移动和时间调整的扩大。这些动力学的机制以及皮质内抑制的可能作用仍在讨论中。在这项研究中,我们通过时间片法分析了在小分子双离子应用Bicuculline阻断GABA抑制GABA之前和之后的动力学过程,并观察了两种主要的神经元行为。在控制条件下,第一组神经元(68个单位中的39个单位,占57.4%)具有相对敏锐的调整,首选方向的缺失或相对较小的增加或发展了这种变化。抑制被阻止后,在刺激发作后30到150毫秒之间观察到调谐的变化。第二组神经元(29个单位,占病例的42.6%)在控制条件下表现出明显的首选方向转变,在抑制抑制过程中通常减弱或消失。结果表明皮层内抑制对不同神经元的不同贡献,通过在正常反应生成过程中其方向偏好的稳定性或时间依赖性来区分。在一组纹状细胞中,通过皮层内抑制使定向调谐在时间上保持狭窄和恒定,而在另一组中,抑制机制可诱导定向调谐动力学。

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