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猫初级视觉皮层神经元选择的图像特征。

Image features selected by neurons of the cat primary visual cortex.

作者信息

Shevelev I A

机构信息

Laboratory for Analyzer Physiology, Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow.

出版信息

Neurosci Behav Physiol. 2000 Sep-Oct;30(5):599-609. doi: 10.1007/BF02462620.

Abstract

The sensitivity of neurons in field 17 of the visual cortex in cats to cross-shaped, Y-shaped, and star-shaped figures flashing in the receptive field was studied. About 40% of the neurons studied (114 of 289) were found to generate large responses (with an average response factor of 3.06 +/- 0.32) to one of the figures flashing in the center of the receptive field, as compared with the responses produced to a single bar in the optimal orientation. Most of these neurons (72%) were selectively sensitive to the shape and orientation of figures; the remainder demonstrated some degree of tuning invariance to these properties. The latent periods of responses to figures were usually shorter than those of responses to bars. Tuning parameters for bars and figures were generally related: neurons with acute orientational tuning to a bar were usually highly selective to both the configuration and the orientation people figures. Separate or combined stimulation with crosses in the center and near periphery of the receptive fields demonstrated summation, antagonism, or the lack of any interaction between these zones in producing sensitivity to crosses. Local blockade of intracortical GABAergic inhibition by microiontophoretic application of bicuculline showed that in one third of the neurons studied, sensitivity to figures was generated or enhanced by inhibition in normal conditions, while one third of cells showed suppression by inhibition, and sensitivity in the remainder was independent of inhibition. These data show that reconsideration of existing concepts of the role of field 17 in selecting only first-order shape features of images (i.e., the orientations of single lines) is needed, since almost half the neurons in the cat primary visual cortex can efficiently detect second-order features (angles and line intersections).

摘要

研究了猫视觉皮层17区神经元对在感受野中闪烁的十字形、Y形和星形图形的敏感性。与对最佳方向的单一线条产生的反应相比,在所研究的神经元中,约40%(289个中的114个)被发现对在感受野中心闪烁的其中一种图形产生大的反应(平均反应因子为3.06±0.32)。这些神经元中的大多数(72%)对图形的形状和方向具有选择性敏感性;其余的则对这些特性表现出一定程度的调谐不变性。对图形的反应潜伏期通常比对线条的反应潜伏期短。线条和图形的调谐参数通常相关:对线条具有敏锐方向调谐的神经元通常对图形的构型和方向都具有高度选择性。在感受野中心和近周边分别或联合用十字形刺激,证明了这些区域在产生对十字形的敏感性时存在总和、拮抗或无任何相互作用。通过微量离子电泳应用荷包牡丹碱对皮质内GABA能抑制进行局部阻断表明,在所研究的三分之一神经元中,对图形的敏感性在正常情况下是由抑制产生或增强的,而三分之一的细胞表现出抑制性抑制,其余细胞的敏感性与抑制无关。这些数据表明,需要重新考虑关于17区在仅选择图像的一阶形状特征(即单线的方向)方面作用的现有概念,因为猫初级视觉皮层中几乎一半的神经元能够有效地检测二阶特征(角度和线交叉)。

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