Hagura Nobuhiro, Oouchida Yutaka, Aramaki Yu, Okada Tomohisa, Matsumura Michikazu, Sadato Norihiro, Naito Eiichi
Graduate School of Human and Environmental Studies, Kyoto University, Kyoto 606-8501, Japan.
Cereb Cortex. 2009 Jan;19(1):176-86. doi: 10.1093/cercor/bhn068. Epub 2008 May 2.
Combination of visual and kinesthetic information is essential to perceive bodily movements. We conducted behavioral and functional magnetic resonance imaging experiments to investigate the neuronal correlates of visuokinesthetic combination in perception of hand movement. Participants experienced illusory flexion movement of their hand elicited by tendon vibration while they viewed video-recorded flexion (congruent: CONG) or extension (incongruent: INCONG) motions of their hand. The amount of illusory experience was graded by the visual velocities only when visual information regarding hand motion was concordant with kinesthetic information (CONG). The left posterolateral cerebellum was specifically recruited under the CONG, and this left cerebellar activation was consistent for both left and right hands. The left cerebellar activity reflected the participants' intensity of illusory hand movement under the CONG, and we further showed that coupling of activity between the left cerebellum and the "right" parietal cortex emerges during this visuokinesthetic combination/perception. The "left" cerebellum, working with the anatomically connected high-order bodily region of the "right" parietal cortex, participates in online combination of exteroceptive (vision) and interoceptive (kinesthesia) information to perceive hand movement. The cerebro-cerebellar interaction may underlie updating of one's "body image," when perceiving bodily movement from visual and kinesthetic information.
视觉信息与动觉信息的结合对于感知身体运动至关重要。我们进行了行为学和功能磁共振成像实验,以研究在手部运动感知中视觉动觉结合的神经关联。参与者在观看自己手部的视频记录的屈曲(一致:CONG)或伸展(不一致:INCONG)运动时,经历了由肌腱振动引起的手部虚幻屈曲运动。仅当关于手部运动的视觉信息与动觉信息一致(CONG)时,虚幻体验的程度才由视觉速度分级。在CONG条件下,左侧后外侧小脑被特别激活,并且这种左侧小脑激活在左手和右手上都是一致的。左侧小脑的活动反映了在CONG条件下参与者虚幻手部运动的强度,并且我们进一步表明,在这种视觉动觉结合/感知过程中,左侧小脑与“右侧”顶叶皮层之间出现了活动耦合。“左侧”小脑与“右侧”顶叶皮层在解剖学上相连的高阶身体区域协同工作,参与外感受(视觉)和内感受(动觉)信息的在线结合,以感知手部运动。当从视觉和动觉信息感知身体运动时,脑-小脑相互作用可能是更新个人“身体意象”的基础。