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通过形状/线索不变的中颞叶内侧神经元对复杂运动模式进行分析。

The analysis of complex motion patterns by form/cue invariant MSTd neurons.

作者信息

Geesaman B J, Andersen R A

机构信息

Department of Brain and Cognitive Sciences, Masschusetts Institute of Technology, Cambridge 02139, USA.

出版信息

J Neurosci. 1996 Aug 1;16(15):4716-32. doi: 10.1523/JNEUROSCI.16-15-04716.1996.

Abstract

Several groups have proposed that area MSTd of the macaque monkey has a role in processing optical flow information used in the analysis of self motion, based on its neurons' selectivity for large-field motion patterns such as expansion, contraction, and rotation. It has also been suggested that this cortical region may be important in analyzing the complex motions of objects. More generally, MSTd could be involved in the generic function of complex motion pattern representation, with its cells responsible for integrating local motion signals sent forward from area MT into a more unified representation. If MSTd is extracting generic motion pattern signals, it would be important that the preferred tuning of MSTd neurons not depend on the particular features and cues that allow these motions to be represented. To test this idea, we examined the diversity of stimulus features and cues over which MSTd cells can extract information about motion patterns such as expansion, contraction, rotation, and spirals. The different classes of stimuli included: coherently moving random dot patterns, solid squares, outlines of squares, a square aperture moving in front of an underlying stationary pattern of random dots, a square composed entirely of flicker, and a square of nonFourier motion. When a unit was tuned with respect to motion pattern producing the most vigorous response in a neuron was nearly the same for each class. Although preferred tuning was invariant, the magnitude and width of the tuning curves often varied between classes. Thus, MSTd is form/cue invariant for complex motions, making it an appropriate candidate for analysis of object motion as well as motion introduced by observer translation.

摘要

几个研究小组提出,猕猴的内侧上颞叶区(MSTd)在处理自我运动分析中使用的光流信息方面发挥作用,这是基于其神经元对诸如扩张、收缩和旋转等大视野运动模式的选择性。也有人提出,这个皮质区域在分析物体的复杂运动中可能很重要。更一般地说,MSTd可能参与复杂运动模式表示的一般功能,其细胞负责将从MT区向前发送的局部运动信号整合为更统一的表示。如果MSTd正在提取一般运动模式信号,那么MSTd神经元的偏好调谐不依赖于允许这些运动被表示的特定特征和线索将是很重要的。为了验证这一想法,我们研究了MSTd细胞能够提取有关诸如扩张、收缩、旋转和螺旋等运动模式信息的刺激特征和线索的多样性。不同类别的刺激包括:连贯移动的随机点模式、实心方块、方块轮廓、在底层静止随机点模式前移动的方形孔径、完全由闪烁组成的方块以及非傅里叶运动的方块。当一个单元针对产生最强反应的运动模式进行调谐时,每个类别中神经元的反应几乎相同。尽管偏好调谐是不变的,但调谐曲线的幅度和宽度在不同类别之间经常变化。因此,MSTd对于复杂运动是形式/线索不变的,这使其成为分析物体运动以及观察者平移引入的运动的合适候选者。

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