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影响复杂细胞方向选择性的抑制机制及其在高静息放电水平下的改变。

Inhibitory mechanisms influencing complex cell orientation selectivity and their modification at high resting discharge levels.

作者信息

Sillito A M

出版信息

J Physiol. 1979 Apr;289:33-53. doi: 10.1113/jphysiol.1979.sp012723.

Abstract
  1. These experiments have investigated the contribution made by GABA-mediated inhibitory processes to the orientation tuning of complex cells in the cat's striate cortex. The GABA antagonist bicuculline has been ionophoretically applied to individual complex cells and the modifications produced in their orientation tuning documented. 2. In terms of the type of change produced in orientation tuning by the application of bicuculline, it seems that there are two categories of complex cells. 3. In one of these categories the orientation selectivity was eliminated during bicuculline application. The excitatory input to these cells would therefore appear to be non-orientation specific. Their orientation selectivity is presumably generated by a GABA-mediated inhibitory input. 4. In the other category of complex cells, although the orientation selectivity was decreased during bicuculline application, the cells retained a preference for a range of orientations that was generally centred around the original optimal orientation. It is suggested that for these cells the inhibitory input enhances the orientation tuning of an excitatory input that is already broadly orientation tuned. 5. Comparison of normal orientation tuning curves with those observed during the application of bicuculline provides a basis for estimating the orientation tuning of the GABA-mediated inhibitory input. In all cases, it is clear that at normal resting discharge levels, orientations either side of the optimal, and not those centred on the optimal, generate the most powerful inhibitory input. 6. These results would seem to be best explained by inhibitory interconnexions between cortical columns sensitive to different orientations. This type of lateral interaction between columns may serve to enhance the contrast in the orientation domain for the cortical representation of a specific stimulus orientation. 7. Increasing the resting discharge level of a complex cell, without blocking the action of GABA appeared to increase the gain of the inhibitory mechanisms acting on the cell. The normal excitatory responses to optimal or near optimal orientations were greatly reduced, or replaced by inhibitory responses, and non-optimal orientations produced only inhibitory responses. These inhibitory effects were blocked on the context of other observations in the literature. It is tentatively suggested that the interneurones providing the inhibitory drive to complex cells receive an input from recurrent collaterals of the recipient complex cells. Their other inputs would derive from neighbouring colums and from the afferent input to the parent column. The inputs from neighbouring columns would mediate the lateral inhibitory interactions in the orientation domain, and the recurrent collateral feed-back the decreased responsiveness at high resting discharge levels.
摘要
  1. 这些实验研究了γ-氨基丁酸(GABA)介导的抑制过程对猫纹状皮层中复杂细胞方向调谐的贡献。已将GABA拮抗剂荷包牡丹碱通过离子电泳法施加于单个复杂细胞,并记录了其方向调谐产生的变化。2. 就施加荷包牡丹碱后方向调谐产生的变化类型而言,似乎有两类复杂细胞。3. 在其中一类细胞中,施加荷包牡丹碱期间方向选择性被消除。因此,这些细胞的兴奋性输入似乎是非方向特异性的。它们的方向选择性大概是由GABA介导的抑制性输入产生的。4. 在另一类复杂细胞中,虽然施加荷包牡丹碱期间方向选择性降低,但细胞仍对通常围绕原始最佳方向的一系列方向有偏好。有人认为,对于这些细胞,抑制性输入增强了已经广泛调谐方向的兴奋性输入的方向调谐。5. 将正常方向调谐曲线与施加荷包牡丹碱期间观察到的曲线进行比较,为估计GABA介导的抑制性输入的方向调谐提供了基础。在所有情况下,很明显,在正常静息放电水平下,最佳方向两侧而非以最佳方向为中心的方向产生最强大的抑制性输入。6. 这些结果似乎最好用对不同方向敏感的皮质柱之间的抑制性连接来解释。柱之间的这种侧向相互作用可能有助于增强特定刺激方向的皮质表征在方向域中的对比度。7. 在不阻断GABA作用的情况下提高复杂细胞的静息放电水平,似乎会增加作用于该细胞的抑制机制的增益。对最佳或接近最佳方向的正常兴奋性反应大大降低,或被抑制性反应取代,而非最佳方向仅产生抑制性反应。这些抑制作用在文献中的其他观察背景下被阻断。初步认为,为复杂细胞提供抑制驱动的中间神经元从接受复杂细胞的回返侧支获得输入。它们的其他输入将来自相邻柱和母柱的传入输入。来自相邻柱的输入将介导方向域中的侧向抑制相互作用,而回返侧支在高静息放电水平下反馈降低的反应性。

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本文引用的文献

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Effects of bicuculline on functions of inhibition in visual cortex.
Nature. 1974 May 24;249(455):375-7. doi: 10.1038/249375a0.
6
Interactions between orientations in human vision.人类视觉中方向之间的相互作用。
Exp Brain Res. 1973 Oct 26;18(3):287-303. doi: 10.1007/BF00234599.
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Significance of intracortical inhibition in the visual cortex.视皮层内抑制的意义
Nat New Biol. 1972 Jul 26;238(82):124-6. doi: 10.1038/newbio238124a0.
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Orientation specificity of cells in cat striate cortex.猫纹状皮层中细胞的方向特异性
J Neurophysiol. 1974 Nov;37(6):1394-409. doi: 10.1152/jn.1974.37.6.1394.

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