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The contribution of excitatory and inhibitory inputs to the length preference of hypercomplex cells in layers II and III of the cats striate cortex

机译:兴奋性和抑制性输入对猫纹皮层第二层和第三层中超复杂细胞长度偏好的贡献

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摘要

1. The GABA antagonist bicuculline has been applied to hypercomplex cells in layers II and III of the cat's striate cortex in an attempt to test the hypothesis that their length preference derives from the action of a GABA mediated post-synaptic inhibitory input.2. Iontophoretic application of bicuculline to these cells resulted in a reduction but not an elimination of the length preference. The reduction in length preference was only observed in the case of slits extended to one side of the receptive field or to slits only partially covering what appeared to be inhibitory flanking regions either side of the field centre. In cells normally showing a clear and stable length preference it was never possible to produce by the application of bicuculline a significant response to a slit fully extended to cover both flanking regions.3. The orientation tuning was basically eliminated by the application of bicuculline. In contrast the directional specificity was relatively unaffected.4. The action of bicuculline on hypercomplex cell orientation tuning supports the view that GABA mediated inhibitory inputs were effectively blocked and suggests that the partial effect on length preference and lack of effect on directional specificity reflect the varying degree of involvement of a GABA mediated inhibitory input to these receptive field properties.5. These observations introduce the possibility that the excitatory input to the superficial layer hypercomplex cells exhibits directional specificity, length preference with respect to a slit extended to both sides of the field and a low degree of orientation selectivity. Evidence is presented indicating that certain layer V cells with hypercomplex type receptive field properties exhibit some of the characteristics required of this input.
机译:1.已将GABA拮抗剂bicuculline应用于猫的纹状皮质II和III层中的超复杂细胞,以尝试检验其长度偏好源自GABA介导的突触后抑制输入的作用的假设。2。对这些细胞进行离子电渗疗法的应用导致了长度偏好的减少,但并没有消除。仅在狭缝延伸至接受野的一侧或狭缝仅部分覆盖似乎位于场中心两侧的抑制侧翼区域的狭缝的情况下,观察到长度偏好的降低。在通常显示出清晰而稳定的长度偏好的细胞中,不可能通过使用双小分子碱对完全覆盖两个侧翼区域的狭缝产生显着的响应。3。双向调谐的应用基本上消除了定向调谐。相反,方向​​特异性相对不受影响。4。 Bicuculline对超复杂细胞方向调节的作用支持以下观点:GABA介导的抑制性输入被有效阻断,并表明对长度偏好的部分影响和对方向特异性的影响反映了GABA介导的抑制性输入参与这些变化的程度接收场特性5。这些观察结果引入了对浅层超复杂细胞的兴奋性输入表现出方向特异性,相对于延伸至视野两侧的狭缝的长度偏好和较低的方向选择性的可能性。提供的证据表明某些具有超复杂类型接受场特性的V层细胞表现出该输入所需的某些特性。

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