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猕猴MSTd区中自我运动选择性与视觉反应特性的聚类

Clustering of self-motion selectivity and visual response properties in macaque area MSTd.

作者信息

Chen Aihua, Gu Yong, Takahashi Katsumasa, Angelaki Dora E, Deangelis Gregory C

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, MO, USA.

出版信息

J Neurophysiol. 2008 Nov;100(5):2669-83. doi: 10.1152/jn.90705.2008. Epub 2008 Aug 27.

Abstract

Neurons in the dorsal subdivision of the medial superior temporal area (MSTd) show directionally selective responses to both visual (optic flow) and vestibular stimuli that correspond to translational or rotational movements of the subject. Previous work has shown that MSTd neurons are clustered within the cortex according to their directional preferences for optic flow, suggesting that there may be a topographic mapping of self-motion vectors in MSTd. If MSTd provides a multisensory representation of self-motion information, then MSTd neurons may also be expected to show clustering according to their directional preferences for vestibular signals, but this has not been tested previously. We have examined clustering of vestibular signals by comparing the tuning of isolated single units (SUs) with the undifferentiated multiunit (MU) activity of several neighboring neurons recorded from the same microelectrode. We find that directional preferences for both translational and rotational vestibular stimuli, like those for optic flow, are clustered within area MSTd. MU activity often shows significant tuning for vestibular stimuli, although this MU selectivity is generally weaker for translation than for rotation. When directional tuning is observed in MU activity, the direction preference generally agrees closely with that of a simultaneously recorded SU. We also examined clustering of visual receptive field properties in MSTd by analyzing receptive field maps obtained using a reverse-correlation technique. We find that both the local directional preferences and overall spatial receptive field profiles are well clustered in MSTd. Overall, our findings have implications for how visual and vestibular signals regarding self-motion may be decoded from populations of MSTd neurons.

摘要

内侧颞上区背侧亚区(MSTd)的神经元对视觉(光流)和前庭刺激均表现出方向选择性反应,这些刺激与主体的平移或旋转运动相对应。先前的研究表明,MSTd神经元根据其对光流的方向偏好聚集在皮质内,这表明MSTd中可能存在自我运动向量的拓扑映射。如果MSTd提供自我运动信息的多感觉表征,那么也可以预期MSTd神经元会根据其对前庭信号的方向偏好而聚集,但此前尚未对此进行测试。我们通过比较分离的单个神经元(SU)的调谐与从同一微电极记录的几个相邻神经元的未分化多单位(MU)活动,研究了前庭信号的聚集情况。我们发现,与光流一样,对平移和旋转前庭刺激的方向偏好也聚集在MSTd区域内。MU活动通常对前庭刺激表现出显著的调谐,尽管这种MU选择性对于平移通常比对旋转弱。当在MU活动中观察到方向调谐时,方向偏好通常与同时记录的SU的方向偏好密切一致。我们还通过分析使用反向相关技术获得的感受野图,研究了MSTd中视觉感受野特性的聚集情况。我们发现,局部方向偏好和整体空间感受野轮廓在MSTd中都有很好的聚集。总体而言,我们的研究结果对于如何从MSTd神经元群体中解码关于自我运动的视觉和前庭信号具有启示意义。

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