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猫视觉皮层不同层中神经元的感受野特性

Receptive-field properties of neurons in different laminae of visual cortex of the cat.

作者信息

Leventhal A G, Hirsch H V

出版信息

J Neurophysiol. 1978 Jul;41(4):948-62. doi: 10.1152/jn.1978.41.4.948.

DOI:10.1152/jn.1978.41.4.948
PMID:681994
Abstract
  1. Receptive-field properties of neurons in the different layers of the visual cortex of normal adult cats were analyzed quantitatively. Neurons were classified into one of two groups: 1) S-cells, which have discrete on- and/or off-regions in their receptive fields and possess inhibitory side bands; 2) C-cells, which do not have discrete on- and off-regions in their receptive fields but display an on-off response to flashing stimuli. Neurons of this type rarely display side-band inhibition. 2. As a group, S-cells display lower relative degrees of binocularity and are more selective for stimulus orientation than C-cells. In addition, within a given lamina the S-cells have smaller receptive fields, lower cutoff velocities, lower peak responses to visual stimulation, and lower spontaneous activity than do the C-cells. 3. S-cells in all layers of the cortex display similar orientation sensitivities, mean spontaneous discharge rates, peak response to visual stimulation, and degrees of binocularity. 4. Many of the receptive-field properties of cortical cells vary with laminar location. Receptive-field sizes and cutoff velocities of S-cells and of C-cells are greater in layers V and VI than in layers II-IV. For S-cells, preferred velocities are also greater in layers V and VI than in layers II-IV. Furthermore, C-cells in layers V and VI display high mean spontaneous discharge rates, weak orientation preferences, high relative degrees of binocularity, and higher peak responses to visual stimulation when compared to C-cells in layers II and III. 5. The receptive-field properties of cells in layers V-VI of the striate cortex suggest that most neurons that have their somata in these laminae receive afferents from LGNd Y-cells. Hence, our results suggest that afferents from LGNd Y-cells may play a major part in the cortical control of subcortical visual functions.
摘要
  1. 对正常成年猫视觉皮层不同层神经元的感受野特性进行了定量分析。神经元被分为两组之一:1)S细胞,其感受野中有离散的开和/或关区域,并具有抑制性侧带;2)C细胞,其感受野中没有离散的开和关区域,但对闪光刺激表现出开-关反应。这种类型的神经元很少表现出侧带抑制。2. 作为一个群体,S细胞的双眼性相对程度较低,对刺激方向的选择性比C细胞更高。此外,在给定的层内,S细胞的感受野较小,截止速度较低,对视觉刺激的峰值反应较低,自发活动也比C细胞低。3. 皮层各层的S细胞表现出相似的方向敏感性、平均自发放电率、对视觉刺激的峰值反应和双眼性程度。4. 皮层细胞的许多感受野特性随层位位置而变化。S细胞和C细胞的感受野大小和截止速度在V层和VI层比在II-IV层更大。对于S细胞,V层和VI层的偏好速度也比II-IV层更大。此外,与II层和III层的C细胞相比,V层和VI层的C细胞表现出高平均自发放电率、弱方向偏好、高双眼性相对程度以及对视觉刺激的更高峰值反应。5. 纹状皮层V-VI层细胞的感受野特性表明,大多数其胞体位于这些层的神经元接受来自外侧膝状体核Y细胞的传入纤维。因此,我们的结果表明,来自外侧膝状体核Y细胞的传入纤维可能在皮层对皮层下视觉功能的控制中起主要作用。

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