The Laboratory for Investigative Neurophysiology (The LINE), Department of Radiology and Department of Clinical Neurosciences, University Hospital Center (CHUV) and University of Lausanne (UNIL), Lausanne, Switzerland.
Institute of Neuroradiology, University Hospital Zurich, Zurich, Switzerland.
Sci Rep. 2016 Nov 24;6:37259. doi: 10.1038/srep37259.
Sensorimotor processing specifically impacts mental body representations. In particular, deteriorated somatosensory input (as after complete spinal cord injury) increases the relative weight of visual aspects of body parts' representations, leading to aberrancies in how images of body parts are mentally manipulated (e.g. mental rotation). This suggests that a sensorimotor or visual reference frame, respectively, can be relatively dominant in local (hands) versus global (full-body) bodily representations. On this basis, we hypothesized that the recruitment of a specific reference frame could be reflected in the activation of sensorimotor versus visual brain networks. To this aim, we directly compared the brain activity associated with mental rotation of hands versus full-bodies. Mental rotation of hands recruited more strongly the supplementary motor area, premotor cortex, and secondary somatosensory cortex. Conversely, mental rotation of full-bodies determined stronger activity in temporo-occipital regions, including the functionally-localized extrastriate body area. These results support that (1) sensorimotor and visual frames of reference are used to represent the body, (2) two distinct brain networks encode local or global bodily representations, and (3) the extrastriate body area is a multimodal region involved in body processing both at the perceptual and representational level.
感觉运动加工特别影响心理身体表象。具体而言,感觉输入恶化(如完全性脊髓损伤后)增加了身体部位表象的视觉方面的相对权重,导致身体部位表象在心理上的操纵出现异常(例如,心理旋转)。这表明感觉运动或视觉参考系可以在局部(手)和全局(全身)身体表象中相对占主导地位。在此基础上,我们假设特定参考系的招募可以反映在感觉运动与视觉大脑网络的激活中。为此,我们直接比较了手部和全身心理旋转的大脑活动。手部心理旋转更强烈地招募了辅助运动区、前运动皮层和次级体感皮层。相反,全身心理旋转则确定了颞枕叶区域更强的活动,包括功能定位的外纹状体身体区。这些结果支持以下观点:(1)感觉运动和视觉参考框架用于表示身体,(2)两个不同的大脑网络编码局部或全局身体表象,以及(3)外纹状体身体区是一个涉及身体加工的多模态区域,既涉及知觉水平也涉及表象水平。