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首页> 外文期刊>Journal of neurosurgery. >Single-neuron activity in the human supplementary motor area underlying preparation for action.
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Single-neuron activity in the human supplementary motor area underlying preparation for action.

机译:单神经元活动在人类准备运动的基础上的补充运动区域。

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OBJECT: The supplementary motor area (SMA) is considered critical in the planning, initiation, and execution of motor acts. Despite decades of research, including electrical stimulation mapping in patients undergoing neurosurgery, the contribution of this region to the generation of motor behavior has remained enigmatic. This is a study of single-neuron responses at various stages of a motor task during depth electrode recording in the SMA, pre-SMA, and medial temporal lobe of humans, with the goal of elucidating the disparate roles of neurons in these regions during movements. METHODS: The patients were undergoing evaluation for epilepsy surgery requiring implantation of intracranial depth electrodes. Single-unit recordings were made during both the execution and mental imagery of finger apposition sequences. Only medial frontal neurons responded selectively to specific features of the motor plan, such as which hand performed the motor activity or the complexity of the sequence. Neuron activity progressively increased before the patient was given a go the pre-SMA than in the SMA proper. We observed similar patterns of activation during motor imagery and actual movement, but only neurons in the SMA differentiated between imagined and real movements. CONCLUSIONS: These results provide support at the single-neuron level for the role of the medial frontal cortex in the temporal organization and planning of movements in humans.
机译:对象:辅助运动区域(SMA)被认为对运动行为的计划,发起和执行至关重要。尽管进行了数十年的研究,包括在接受神经外科手术的患者中进行电刺激测绘,但该区域对运动行为产生的贡献仍是未知的。这项研究是在人类的SMA,SMA前和颞内侧颞叶深度电极记录过程中,在运动任务各个阶段对单神经元反应的研究,目的是阐明运动期间这些区域中神经元的不同作用。方法:患者正在接受需要植入颅内深度电极的癫痫手术评估。在手指并置序列的执行和心理成像过程中都进行了单单元录音。仅内侧额神经元选择性地对运动计划的特定特征做出反应,例如哪只手执行了运动活动或序列的复杂性。在患者接受SMA前治疗之前,其神经元活性逐渐高于SMA本身。我们在运动图像和实际运动过程中观察到了类似的激活模式,但仅SMA中的神经元在想象的运动和真实的运动之间进行了区分。结论:这些结果在单神经元水平上支持内侧额叶皮层在人类的时间组织和运动计划中的作用。

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