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首页> 外文期刊>Biological psychiatry >Brain areas coactivating with motor cortex during chronic motor tics and intentional movements.
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Brain areas coactivating with motor cortex during chronic motor tics and intentional movements.

机译:在慢性运动抽动和故意运动期间,大脑区域与运动皮层共激活。

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BACKGROUND: Chronic tic disorders are characterized by motor tics that are often preceded by premonitory urges to tic. Functional neuroimaging studies have documented brain activity patterns prior to and during tics, but these studies have not examined whether the activation patterns differ from those seen in normal control subjects performing similar acts. METHODS: A novel method was used to compare brain patterns during tics and intentional movements. First, the part of motor cortex specific to each patient's tic movement was identified. The brain areas activating prior to, during, and after that part of motor cortex during tics were then identified by temporally cross-correlating the time course of the localized motor region with activity in other brain areas. Given that motor cortex was active during tic execution, this yielded information regarding the brain areas active prior to, during, and after the movements. The spatiotemporal pattern of coactivation with motor cortex during tics was contrasted with that seen in healthy control subjects during intentional tic-like movements. RESULTS: Data from 16 adult subjects with tic disorders and 16 matched control subjects, who performed intentional movements similar to the patients' tics, revealed nearly identical patterns of cross-correlation to motor cortex throughout the brain in the two groups. However, the supplementary motor area showed a significantly broader profile of cross-correlation to motor cortex during tics than during intentional movements. CONCLUSIONS: These findings highlight the importance of the supplementary motor area in tic generation and may point toward novel intervention strategies for individuals suffering with severe tics.
机译:背景:慢性抽动症的特征是运动抽动症,通常是在抽动前对抽动症的强烈要求。功能性神经影像学研究已经记录了抽动前和抽动过程中的大脑活动模式,但是这些研究没有检查激活模式是否与正常对照受试者执行类似行为时发现的不同。方法:一种新颖的方法被用来比较抽动和故意运动期间的大脑模式。首先,确定运动皮层特定于每个患者抽动的部分。然后,通过在时间上使局部运动区域的时间进程与其他大脑区域的活动相互关联,来识别抽动过程中运动皮质的那部分之前,之中和之后激活的大脑区域。考虑到运动皮层在抽动执行期间处于活动状态,这会产生有关运动之前,运动中和运动后大脑区域的信息。抽动期间与运动皮层共激活的时空模式与有意抽动样运动中健康对照组的差异。结果:来自16位成年性抽动障碍的成年受试者和16位相匹配的对照组受试者的数据进行了类似于患者抽动的有意运动,揭示了两组大脑整个运动皮层的互相关模式几乎相同。但是,与抽搐相比,抽动时补充运动区与运动皮层的互相关性分布要宽得多。结论:这些发现突出了补充运动区在抽动发生中的重要性,并可能为重度抽动患者提供了新颖的干预策略。

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