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首页> 外文期刊>Journal of Cognitive Neuroscience >Perceiving Biological Motion: Dissociating Visible Speech from Walking
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Perceiving Biological Motion: Dissociating Visible Speech from Walking

机译:感知生物运动:从步行中分离出可见的语音

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Neuropsychological research suggests that the neural system underlying visible speech on the basis of kinematics is distinct from the system underlying visible speech of static images of the face and identifying whole-body actions from kinematics alone. Functional magnetic resonance imaging was used to identify the neural systems underlying point-light visible speech, as well as perception of a walking/jumping point-light body, to determine if they are independent. Although both point-light stimuli produced overlapping activation in the right middle occipital gyrus encompassing area KO and the right inferior temporal gyrus, they also activated distinct areas. Perception of walking biological motion activated a medial occipital area along the lingual gyrus close to the cuneus border, and the ventromedial frontal cortex, neither of which was activated by visible speech biological motion. In contrast, perception of visible speech biological motion activated right V5 and a network of motor-related areas (Broca's area, PM, M1, and supplementary motor area (SMA)), none of which were activated by walking biological motion. Many of the areas activated by seeing visible speech biological motion are similar to those activated while speech-reading from an actual face, with the exception of Ml and medial SMA. The motor-related areas found to be active during point-light visible speech are consistent with recent work characterizing the human "mirror" system (Rizzolatti, Fatliga, Gallese, & Fogassi, 1996).
机译:神经心理学研究表明,以运动学为基础的可见语音的神经系统不同于以面部静态图像为基础并仅从运动学识别全身动作的神经系统。功能磁共振成像用于识别点光源可见语音的潜在神经系统,以及对行走/跳跃点光源物体的感知,以确定它们是否独立。尽管两个点光源刺激都在右中枕回包围区域KO和右下颞回产生了重叠的激活,但它们也激活了不同的区域。行走生物运动的知觉激活了沿舌状回的靠近枕骨边界的枕骨内侧区域,以及腹侧额叶皮层,这两个都不被可见的语音生物运动激活。相反,对可见语音生物运动的感知激活了右V5和运动相关区域(Broca's区域,PM,M1和辅助运动区域(SMA))的网络,而行走生物运动均未激活这些区域。通过观察可见的语音生物运动而激活的许多区域类似于从实际面部读取语音时所激活的区域,除了M1和内侧SMA。发现在点光可见语音中活跃的与运动有关的区域与表征人类“镜子”系统的最新工作是一致的(Rizzolatti,Fatliga,Gallese和Fogassi,1996)。

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