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Motor Timing in Tourette Syndrome: The Effect of Movement Lateralization and Bimanual Coordination

机译:抽动秽语综合征中的运动时机:运动横向化和双手协调的影响。

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The study of motor timing informs on how temporal information integrates with motor acts. Cortico-basal ganglia and cortico-cerebellar circuits control this integration, whereas transcallosal interhemispheric connectivity modulates finely timed lateralized or bimanual actions. Motor timing abilities are under-explored in Tourette syndrome (TS). We adopted a synchronization-continuation task to investigate motor timing in sequential movements in TS patients. We studied 14 adult TS patients and 19 age-matched healthy volunteers. They were asked to tap in synchrony with a metronome cue (SYNC) and then, when the tone stopped, to keep tapping, maintaining the same rhythm (CONT). We tested both a sub-second and a supra-second inter-stimulus interval between the cues. Subjects randomly performed a single-hand task with the right hand and a bimanual task using both hands simultaneously wearing sensor-engineered gloves. We measured the temporal error and the interval reproduction accuracy index. We also performed MRI-based diffusion tensor imaging and probabilistic tractography of inter-hemispheric corpus callosum (CC) connections between supplementary motor areas (SMA) and the left SMA-putamen fiber tract. TS patients were less accurate than healthy individuals only on the single-hand version of the CONT task when asked to reproduce supra-second time interval. Supra-second time processing improved in TS patients in the bimanual task, with the performance of the right hand on the bimanual version of the CONT task being more accurate than that of the right hand on the single-hand version of the task. We detected a significantly higher fractional anisotropy (FA) in both SMA-SMA callosal and left-sided SMA-putamen fiber tracts in TS patients. In TS patients only, the structural organization of transcallosal connections between the SMAs and of the left SMA-putamen tract was higher when the motor timing accuracy of the right hand on the bimanual version of the task was lower. Abnormal timing performance for supra-second time processing is suggestive of a defective network inter-connecting the striatum, the dorsolateral prefrontal cortex and the SMA. An increase in accuracy on the bimanual version of the CONT task may be the result of compensatory processes linked to self-regulation of motor control, as witnessed by plastic rearrangement of inter-hemispheric and cortical-subcortical fiber tracts.
机译:对马达正时的研究可告知时间信息如何与马达行为整合在一起。皮质基底神经节和皮质小脑回路控制了这种整合,而跨hem间半球之间的连通性调节了精细定时的侧向或双向动作。抽动秽语综合症(TS)中尚未充分开发运动计时功能。我们采用了同步持续任务来调查TS患者连续运动中的运动时机。我们研究了14位成人TS患者和19位年龄匹配的健康志愿者。要求他们与节拍器提示(SYNC)同步敲击,然后在声音停止时继续敲击,保持相同的节奏(CONT)。我们测试了提示之间的亚秒级和超秒级间刺激间隔。受试者随机右手执行单手任务,双手同时戴上传感器设计的手套,进行双手双向任务。我们测量了时间误差和间隔再现精度指标。我们还对补充运动区(SMA)和左SMA-丘脑纤维束之间的半球间体(CC)连接进行了基于MRI的扩散张量成像和概率束摄影术。当要求患者重现超秒时间间隔时,仅在单手版本的CONT任务上,TS患者的准确性不及健康个体。双手任务的TS患者的超秒时间处理得到改善,CONT任务的双手版本的右手性能比单手任务上的右手性能更高。我们在TS患者的SMA-SMA os骨和左侧SMA-豆核纤维束中均检测到明显更高的分数各向异性(FA)。仅在TS患者中,当双手型任务的右手运动定时精度较低时,SMA与左SMA-胸膜通道之间的经call肌连接的结构组织较高。过时的时间处理的计时性能异常表明,纹状体,背外侧前额叶皮层和SMA相互连接的网络有缺陷。双向版本CONT任务准确性的提高可能是与运动控制的自我调节有关的补偿过程的结果,半球间和皮质-皮层下纤维束的塑性重排证明了这一点。

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