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猕猴内侧颞上区背侧扩张/收缩细胞和旋转细胞反应特异性的潜在机制。

Underlying mechanisms of the response specificity of expansion/contraction and rotation cells in the dorsal part of the medial superior temporal area of the macaque monkey.

作者信息

Tanaka K, Fukada Y, Saito H A

机构信息

Laboratory for Neural Information Processing, Frontier Research Program, RIKEN, Saitama, Japan.

出版信息

J Neurophysiol. 1989 Sep;62(3):642-56. doi: 10.1152/jn.1989.62.3.642.

Abstract
  1. The dorsal part of medial superior temporal area (MST) has two unique types of visually responsive cells: 1) expansion/contraction cells, which selectively respond to either an expansion or a contraction; and 2) rotation cells, which selectively respond to either a clockwise or a counterclockwise rotation. In addition to selectivity for the mode of motion, both types of cells respond preferentially to movements over a wide field rather than over a small field. With the aim of understanding the underlying mechanisms of these selectivities, we carried out experiments on immobilized monkeys anesthetized with N2O. 2. Expansion/contraction and rotation of a pattern extending over a wide field contain three stimulus factors: 1) the spatial arrangement of different directions of movement, 2) the gradient in the speed of regional movement from the center to the periphery of the stimulus, and 3) the size change of texture components of the pattern in the expansion/contraction and the acceleration of movement of texture components toward the center of the stimulus in the rotation. The contribution of each factor to the activation of the cells was evaluated by comparing the response before and after removing the factor from the stimulus. The moving stimuli that lacked one or two of the factors were produced by the use of a cinematographic animation technique. 3. Withdrawal of the first factor, the spatial arrangement of different directions of movement, reduced the response of both Expansion/contraction and Rotation cells much more severely than either of the other two factors. We concluded that the first factor is far more important for activation than the other two. 4. These results are consistent with the model that Expansion/contraction and Rotation cells receive converging inputs from many directional cells with relatively small receptive fields in different parts of the visual field. Because MST receives strong fiber projections from MT, MT cells are candidates for the input cells. According to the model, if the convergence is organized so that the preferred directions of the input cells are arranged radially, the target cell will be an Expansion/contraction cell; if the input cells are arranged circularly, a Rotation cell will result.
摘要
  1. 颞上内侧区(MST)的背侧部分有两种独特类型的视觉反应细胞:1)扩张/收缩细胞,它们选择性地对扩张或收缩做出反应;2)旋转细胞,它们选择性地对顺时针或逆时针旋转做出反应。除了对运动模式的选择性外,这两种细胞都优先对大视野范围内的运动做出反应,而不是小视野范围内的运动。为了理解这些选择性的潜在机制,我们对用N2O麻醉的固定猴子进行了实验。2. 在大视野范围内扩展或收缩的图案的扩张/收缩和旋转包含三个刺激因素:1)不同运动方向的空间排列,2)从刺激中心到周边区域运动速度的梯度,3)图案纹理成分在扩张/收缩时的大小变化以及纹理成分在旋转时向刺激中心的运动加速度。通过比较从刺激中去除该因素前后的反应,评估每个因素对细胞激活的贡献。缺少一个或两个因素的移动刺激是通过电影动画技术产生的。3. 去除第一个因素,即不同运动方向的空间排列,比其他两个因素中的任何一个都更严重地降低了扩张/收缩细胞和旋转细胞的反应。我们得出结论,第一个因素对激活的重要性远高于其他两个因素。4. 这些结果与以下模型一致:扩张/收缩细胞和旋转细胞从视野不同部分具有相对小感受野的许多方向细胞接收汇聚输入。因为MST从MT接收强大的纤维投射,所以MT细胞是输入细胞的候选者。根据该模型,如果汇聚的组织方式使得输入细胞的偏好方向呈放射状排列,目标细胞将是扩张/收缩细胞;如果输入细胞呈圆形排列,将产生旋转细胞。

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