首页> 外文期刊>Cortex: A Journal Devoted to the Study of the Nervous System and Behavior >Neural correlates of state estimation in visually guided movements: an event-related fMRI study.
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Neural correlates of state estimation in visually guided movements: an event-related fMRI study.

机译:视觉引导运动中状态估计的神经相关性:与事件相关的功能磁共振成像研究。

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摘要

State estimation of self-movement, based on both motor commands and sensory feedback, has been suggested as essential to human movement control to compensate for inherent feedback delays in sensorimotor loops. The present study investigated the neural basis for state estimation of human movement using event-related functional magnetic resonance imaging (fMRI). Participants traced visually presented curves with a computer mouse, and an artificial delay was introduced to visual feedback. Motor performance and brain activities during movements were measured. Experiment 1 investigated brain activations that were significantly correlated with visual feedback delay and motor error by parametrically manipulating visual feedback delay. Activation of the right posterior parietal cortex (PPC) was positively correlated with motor error, whereas activation of the right temporo-parietal junction (TPJ) was observed only in the group with a smaller increase in motor error with increased visual feedback delay. Experiment 2 involved parametric analysis of motor performance while controlling mouse movement speed during the task. Activity in the right TPJ showed a significant positive correlation with motor performance under the delayed visual feedback condition. In addition, activity of the PPC was greater when motor error was presented visually. These results suggest that the PPC plays a significant role in evaluating visuomotor prediction error, while the TPJ is involved in state estimation of self-movement during visually guided movements.
机译:已经提出了基于运动命令和感觉反馈的自我运动状态估计,这对人体运动控制以补偿感觉运动回路中固有的反馈延迟至关重要。本研究调查了使用事件相关功能磁共振成像(fMRI)进行人体运动状态估计的神经基础。参与者使用计算机鼠标在视觉上绘制了曲线,并在视觉反馈中引入了人工延迟。测量运动过程中的运动表现和大脑活动。实验1通过参数化视觉反馈延迟来研究与视觉反馈延迟和运动错误显着相关的大脑激活。右后顶叶皮层(PPC)的激活与运动错误呈正相关,而仅在运动错误增加较小且视觉反馈延迟增加的组中观察到右颞顶叶接合处(TPJ)的激活。实验2涉及对电机性能的参数分析,同时控制任务期间的鼠标移动速度。在延迟的视觉反馈条件下,右TPJ的活动与运动表现显着正相关。另外,当视觉上呈现出运动错误时,PPC的活性更大。这些结果表明,PPC在评估运动预测误差方面起着重要作用,而TPJ则在视觉引导的运动中参与自我运动的状态估计。

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