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首页> 外文期刊>Journal of Cognitive Neuroscience >Neuropsychology of Human Body Parts: Exploring Categorical Boundaries of Tactile Perception Using Somatosensory Mismatch Responses
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Neuropsychology of Human Body Parts: Exploring Categorical Boundaries of Tactile Perception Using Somatosensory Mismatch Responses

机译:人体部位的神经心理学:利用体感失配反应探索触觉感知的分类边界

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摘要

The focus of the current study is on a particular aspect of tactile perception: categorical segmentation on the body surface into discrete body parts. The MMN has been shown to be sensitive to categorical boundaries and language experience in the auditory modality. Here we recorded the somatosensory MMN (sMMN) using two tactile oddball protocols and compared sMMN amplitudes elicited by within- and across-boundary oddball pairs. Both protocols employed the identity MMN method that controls for responsivity at each body location. In the first protocol, we investigated the categorical segmentation of tactile space at the wrist by presenting pairs of tactile oddball stimuli across equal spatial distances, either across the wrist or within the forearm. Amplitude of the sMMN elicited by stimuli presented across the wrist boundary was significantly greater than for stimuli presented within the forearm, suggesting a categorical effect at an early stage of somatosensory processing. The second protocol was designed to investigate the generality of this MMN effect, and involved three digits on one hand. Amplitude of the sMMN elicited by a contrast of the third digit and the thumb was significantly larger than a contrast between the third and fifth digits, suggesting a functional boundary effect that may derive from the way that objects are typically grasped. These findings demonstrate that the sMMN is a useful index of processing of somatosensory spatial discrimination that can be used to study body part categories.
机译:当前研究的重点是触觉感知的一个特定方面:在体表上的分类分割为离散的身体部位。 MMN已被证明对听觉模态中的分类边界和语言经验敏感。在这里,我们使用两种触觉奇异球协议记录了体感MMN(sMMN),并比较了跨边界和跨边界奇异球对引起的sMMN振幅。两种协议都采用标识MMN方法,该方法控制每个身体位置的响应度。在第一个协议中,我们通过在手腕或前臂内等距离分布呈现成对的触觉奇异球刺激,研究了腕部的触觉空间的分类。穿过手腕边界的刺激引起的sMMN振幅明显大于前臂内的刺激,表明在体感处理的早期有一定的分类作用。第二种协议旨在调查这种MMN效应的普遍性,一方面涉及三位数。由第三手指与拇指的对比引起的sMMN的幅度明显大于第三与第五手指之间的对比,表明功能边界效应可能源于通常抓握物体的方式。这些发现表明,sMMN是处理体感空间辨别力的有用指标,可用于研究人体部位类别。

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