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Distributed Neural Systems Underlying the Timing of Movements

机译:运动时机的分布式神经系统

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摘要

Timing is essential to the execution of skilled movements, yet our knowledge of the neural systems underlying timekeeping operations is limited. Using whole-brain functional magnetic resonance imaging, subjects were imaged while tapping with their right index finger in synchrony with tones that were separated by constant intervals [Synchronization (S)], followed by tapping without the benefit of an auditory cue [Continuation (C)]. Two control conditions followed in which subjects listened to tones and then made pitch discriminations (D). Both the S and the C conditions produced equivalent activation within the left sensorimotor cortex, the right cerebellum (dorsal dentate nucleus), and the right superior temporal gyrus (STG). Only the C condition produced activation of a medial premotor system, including the caudal supplementary motor area (SMA), the left putamen, and the left ventrolateral thalamus. The C condition also activated a region within the right inferior frontal gyrus (IFG), which is functionally interconnected with auditory cortex. Both control conditions produced bilateral activation of the STG, and the D condition also activated the rostral SMA. These results suggest that the internal generation of precisely timed movements is dependent on three interrelated neural systems, one that is involved in explicit timing (putamen, ventrolateral thalamus, SMA), one that mediates auditory sensory memory (IFG, STG), and another that is involved in sensorimotor processing (dorsal dentate nucleus, sensorimotor cortex).
机译:计时对于执行熟练的机芯至关重要,但是我们对计时操作背后的神经系统的了解有限。使用全脑功能磁共振成像,用右手食指拍打的对象与以恒定间隔[Synchronization(S)]隔开的音调同步拍打,然后在没有听觉提示的情况下拍打[Continuation(C )]。接着是两个控制条件,在这些条件下,受试者听音调,然后进行音高判别(D)。 S和C条件在左感觉运动皮层,右小脑(齿状背核)和右颞上回(STG)内均产生相同的激活。只有C病才能激活内侧运动前系统,包括尾部辅助运动区(SMA),左壳核和左腹外侧丘脑。 C状态还激活了右下额回(IFG)内的区域,该区域在功能上与听觉皮层相互连接。两种控制条件都产生了STG的双向激活,而D条件也激活了鼻尖SMA。这些结果表明,精确定时运动的内部生成取决于三个相互关联的神经系统,一个涉及明确的计时(丘脑,腹侧丘脑,SMA),一个介导听觉感觉记忆(IFG,STG),另一个参与感觉运动处理(齿状背核,感觉运动皮层)。

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