【2h】

Modality maps within primate somatosensory cortex

机译:灵长类体感皮层内的形态图

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摘要

The sensations of pressure, flutter, and vibration are psychophysically distinct tactile modalities produced by frequency-specific vibrotactile stimulation of different mechanoreceptors in the skin. The information coded by the different low-threshold mechanoreceptors are carried by anatomically and electrophysiologically distinct pathways that remain separate at least up to and including the input stage of primary somatosensory cortex (SI) in primates, area 3b. Little is known about the functional organization of tactile representation beyond that stage. By using intrinsic optical imaging methods to record from area 1, the second processing stage of SI, we present evidence that pressure, flutter, and vibratory stimuli activate spatially distinct cortical domains in area 1, further strengthening the foundation for modality-specific processing streams in SI. These modality domains exhibit an organization that is unlike the discontinuous modality maps in visual area V2 but more like the continuous visual orientation maps in V1. The results demonstrate that psychophysically distinct sensory modalities can have fundamentally different modes of cortical representation.
机译:压力,颤动和振动的感觉是心理上不同的触觉方式,是由皮肤中不同机械感受器的特定频率的触觉刺激产生的。由不同的低阈值机械感受器编码的信息由解剖学和电生理学不同的途径携带,这些途径至少在灵长类动物的主要体感皮层(SI)的输入阶段(包括3b)一直保持分离。在该阶段之后,人们对触觉表征的功能组织知之甚少。通过使用固有的光学成像方法从区域1(SI的第二个处理阶段)进行记录,我们提供了证据表明压力,颤动和振动刺激会激活区域1中空间上不同的皮质区域,从而进一步增强了模式特定处理流的基础。 SI。这些模态域展示的组织与视觉区域V2中的不连续模态图不同,而更像V1中的连续视觉方向图。结果表明,心理上不同的感觉方式可以具有根本不同的皮层表示方式。

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