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首页> 外文期刊>Journal of Neurophysiology >Absence of Gamma-Range Corticomuscular Coherence During Dynamic Force in a Deafferented Patient.
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Absence of Gamma-Range Corticomuscular Coherence During Dynamic Force in a Deafferented Patient.

机译:丧失生命力的患者在动态受力过程中不存在伽玛范围的皮质相干连贯性。

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摘要

Recently, we studied corticomuscular coherence (CMC) in a visuomotor task and showed for the first time gamma-range (30-45 Hz) CMC during isometric compensation of a periodically modulated dynamic force. We speculated that for the control of such forces, the sensorimotor system resonates at gamma-range frequencies to rapidly integrate the visual and proprioceptive information and produce the appropriate motor command. In this study, we tested the role of the proprioceptive afferent feedback on gamma-range CMC by comparing the deafferented patient GL to six age- and sex-matched subjects during the performance of a visuomotor force task consisting of isometric compensation of static and dynamic forces applied on the finger. Patient GL presented no significant gamma-band CMC during dynamic force. Instead, she had only beta-range CMC as in the static force condition; concurrently, her performance was significantly worse than that of the controls in both conditions. This gives support to the conclusions of our previous paper and suggests that proprioceptive information is mandatory in the genesis of gamma-band CMC during the generation and control of dynamic forces.
机译:最近,我们在视觉运动任务中研究了皮质康体相干性(CMC),并首次展示了在等轴测周期性补偿动态力补偿过程中的伽马范围(30-45 Hz)CMC。我们推测,对于这种力的控制,感觉运动系统会在伽马范围的频率上发生共振,以快速整合视觉和本体感受信息并产生适当的运动命令。在这项研究中,我们通过比较在运动力任务(包括静态和动态力的等距补偿)执行过程中,将失力的患者GL与六个年龄和性别匹配的受试者进行比较,测试了本体感受传入反馈在伽马范围CMC上的作用涂在手指上。 GL患者在动态受力期间未出现明显的伽马波段CMC。相反,她只有β范围的CMC处于静态受力状态。同时,在这两种情况下,她的表现均显着低于对照组。这为我们前一篇论文的结论提供了支持,并表明在动态力的产生和控制过程中,本体感受信息在伽马带CMC的发生中是强制性的。

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