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Relationships of local inhibitory and excitatory circuits to orientation preference maps in ferret visual cortex.

机译:雪貂视觉皮层中局部抑制性和兴奋性回路与取向偏好图的关系。

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The contribution and precise role of intracortical circuits in generating orientation tuned responses in visual cortical neurons is still controversial. To address this question, the relationship between excitatory and inhibitory synaptic connections and orientation maps in ferret striate cortex was investigated by combining in vivo optical imaging and in vitro scanning laser photostimulation. Excitatory and inhibitory inputs to pyramidal cells originated preferentially from regions with similar orientation preference. Prominent cross-orientation inhibition was not observed, arguing against cross-orientation models of orientation selectivity. The tuning of inhibitory inputs was significantly broader in both layer 2/3 and layer 5/6 pyramidal neurons compared to the tuning of excitatory inputs. Local excitatory inputs were more prominent in the 0-20 degrees tuning difference range between pre- and postsynaptic cells than inhibitory inputs, whereas inhibition dominated in the 20-40 degrees tuning difference range. These differences in tuning of excitatory and inhibitory inputs onto individual cells are consistent with the predictions of recurrent models of orientation selectivity.
机译:皮层内回路在视觉皮层神经元中产生定向调谐反应中的作用和精确作用仍存在争议。为了解决这个问题,通过结合体内光学成像和体外扫描激光光刺激研究了雪貂纹状皮质的兴奋性和抑制性突触连接与定向图之间的关系。锥体细胞的兴奋性和抑制性输入优先源自具有相似取向偏好的区域。没有观察到明显的交叉取向抑制,这与定向选择性的交叉取向模型有关。与刺激性输入的调整相比,抑制输入的调整在第2/3层和第5/6层锥体神经元中的范围要广得多。在突触前和突触后细胞之间的0-20度调谐差异范围内,局部兴奋性输入比抑制性输入更为突出,而在20-40度调谐差异范围内,抑制作用占主导。调节单个细胞的兴奋性和抑制性输入的这些差异与方向选择性递归模型的预测一致。

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