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首页> 外文期刊>Journal of Neurophysiology >Responses of MT and MST neurons to one and two moving objects in the receptive field.
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Responses of MT and MST neurons to one and two moving objects in the receptive field.

机译:MT和MST神经元对感受野中一个和两个运动物体的反应。

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To test the effects of complex visual motion stimuli on the responses of single neurons in the middle temporal visual area (MT) and the medial superior temporal area (MST) of the macaque monkey, we compared the response elicited by one object in motion through the receptive field with the response of two simultaneously presented objects moving in different directions through the receptive field. There was an increased response to a stimulus moving in a direction other than the best direction when it was paired with a stimulus moving in the best direction. This increase was significant for all directions of motion of the non-best stimulus and the magnitude of the difference increased as the difference in the directions of the two stimuli increased. Similarly, there was a decreased response to a stimulus moving in a non-null direction when it was paired with a stimulus moving in the null direction. This decreased response in MT did not reach significance unless the second stimulus added to the null direction moved in the best direction, whereas in MST the decrease was significant when the second stimulus direction differed from the null by 90 degrees or more. Further analysis showed that the two-object responses were better predicted by taking the averaged response of the neuron to the two single-object stimuli than by summation, multiplication, or vector addition of the responses to each of the two single-object stimuli. Neurons in MST showed larger modulations than did neurons in MT with stimuli moving in both the best direction and in the null direction and the average better predicted the two-object response in area MST than in area MT. This indicates that areas MT and MST probably use a similar integrative mechanisms to create their responses to complex moving visual stimuli, but that this mechanism is further refined in MST. These experiments show that neurons in both MT and MST integrate the motion of all directions in their responses to complex moving stimuli. These results with the motion of objects were in sound agreement with those previously reported with the use of random dot patterns for the study of transparent motion in MT and suggest that these neurons use similar computational mechanisms in the processing of object and global motion stimuli.
机译:为了测试复杂的视觉运动刺激对猕猴中颞视觉区域(MT)和内侧颞上区域(MST)中单个神经元反应的影响,我们比较了一个对象通过运动引起的响应。接收场,其中两个同时出现的对象通过接收场朝不同方向移动。当将刺激与沿最佳方向移动的刺激配对时,对沿最佳方向以外的方向移动的刺激的响应增加。这种增加对于非最佳刺激的所有运动方向都是显着的,并且随着两种刺激方向的差异增加,差异的大小也随之增加。类似地,当将刺激与沿零方向移动的刺激配对时,对沿非零方向移动的刺激的响应会降低。除非添加到无效方向的第二刺激向最佳方向移动,否则MT的这种降低的响应不会达到显着水平,而在MST中,当第二刺激方向与无效方向相差90度或更多时,该下降是显着的。进一步的分析表明,与通过对两个单对象刺激中的每个响应进行求和,相乘或矢量相加相比,通过获取神经元对两个单对象刺激的平均响应,可以更好地预测两个对象的响应。 MST中的神经元显示出比MT中的神经元更大的调制,并且刺激沿最佳方向和无效方向移动,并且平均水平更好地预测了MST区域中的两个对象的响应,而不是MT区域。这表明MT和MST区域可能使用类似的整合机制来创建其对复杂的运动视觉刺激的响应,但是该机制在MST中得到了进一步完善。这些实验表明,MT和MST中的神经元在对复杂运动刺激的反应中都整合了所有方向的运动。这些与物体运动有关的结果与先前报道的使用随机点模式用于研究MT透明运动的结果完全一致,并表明这些神经元在物体和整体运动刺激的处理中使用了类似的计算机制。

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