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猕猴颞中视觉区神经元的功能特性。II. 双眼相互作用及对双眼视差的敏感性。

Functional properties of neurons in middle temporal visual area of the macaque monkey. II. Binocular interactions and sensitivity to binocular disparity.

作者信息

Maunsell J H, Van Essen D C

出版信息

J Neurophysiol. 1983 May;49(5):1148-67. doi: 10.1152/jn.1983.49.5.1148.

Abstract
  1. Electrophysiological recordings were made in the middle temporal visual area (MT) of five macaque monkeys. Binocularity and selectivity for disparity were examined using a computer-driven stimulator to activate each eye independently. Results were obtained from 91 single units in MT. 2. Most units in MT receive approximately balanced inputs from the two eyes, and very few could be driven through only one eye. 3. In one type of test for disparity selectivity, units were examined with stimuli that had different but fixed horizontal disparities, thereby simulating frontoparallel movements at different distances from the animal. About two-thirds of ;the units tested for fixed disparity selectivity (52/76) showed pronounced sensitivity to horizontal disparity. Most of these units could be grouped into the same four classes of disparity-tuned units that have previously been described in V1 and V2 of the macaque: near, far, tuned excitatory, and tuned inhibitory. 4. Twenty units were tested for sensitivity to vertical stimulus disparity, which does not normally contribute to stereopsis. Most were as sensitive to vertical disparities as to horizontal. 5. Units were also tested for selectivity for stimuli that moved with changing disparity, simulating trajectories with components of motion toward or away from the animal (motion in depth). No units were found to be truly selective for motion in depth. Units tuned for fixed disparity could appear to prefer motion in depth if tested only with trajectories whose common center point was far from the unit's optimal fixed disparity. However, we do not consider this to represent genuine selectivity for motion in depth, since 1) the responses ara adequately and more easily explained in terms of selectivity for fixed disparity and 2) the best overall response of these units is to frontoparallel motion at the optimal fixed disparity. This observation bears importantly on the interpretation of motion in depth selectivity in previous investigations. 6. The presence of a substantial degree of selectivity for fixed disparity in MT, together with previously demonstrated selectivities for direction and speed, indicates that MT is well suited for the analysis of motion in three-dimensional space.
摘要
  1. 在五只猕猴的颞中视觉区(MT)进行了电生理记录。使用计算机驱动的刺激器独立激活每只眼睛,检查双眼性和视差选择性。从MT中的91个单个神经元获得了结果。2. MT中的大多数神经元从两只眼睛接收大致平衡的输入,很少有神经元仅通过一只眼睛就能被驱动。3. 在一种视差选择性测试中,用具有不同但固定水平视差的刺激来检查神经元,从而模拟在与动物不同距离处的额平行运动。在测试固定视差选择性的神经元中,约三分之二(52/76)对水平视差表现出明显的敏感性。这些神经元中的大多数可以分为先前在猕猴的V1和V2中描述过的相同的四类视差调谐神经元:近、远、调谐兴奋型和调谐抑制型。4. 对20个神经元进行了垂直刺激视差敏感性测试,垂直视差通常对立体视觉没有贡献。大多数神经元对垂直视差和水平视差一样敏感。5. 还对神经元进行了对视差变化的刺激的选择性测试,模拟具有朝向或远离动物的运动分量的轨迹(深度运动)。没有发现神经元对深度运动具有真正的选择性。如果仅用其公共中心点远离神经元最佳固定视差的轨迹进行测试,调谐到固定视差的神经元似乎更喜欢深度运动。然而,我们不认为这代表对深度运动的真正选择性,因为1)这些反应可以用对固定视差的选择性来充分且更容易地解释,并且2)这些神经元的最佳总体反应是在最佳固定视差下的额平行运动。这一观察结果对先前研究中深度运动选择性的解释具有重要意义。6. MT中存在对固定视差的高度选择性,以及先前证明的对方向和速度的选择性,表明MT非常适合于三维空间中运动的分析。

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