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Left hemisphere specialization for the control of voluntary movement rate.

机译:左半球专门用于控制自愿性运动速度。

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Although persuasive behavioral evidence demonstrates the superior dexterity of the right hand in most people under a variety of conditions, little is known about the neural mechanisms responsible for this phenomenon. As this lateralized superiority is most evident during the performance of repetitive, speeded movement, we used parametric rate variations to compare visually paced movement of the right and left hands. Twelve strongly right-handed subjects participated in a functional magnetic resonance imaging (fMRI) experiment involving variable rate thumb movements. For movements of the right hand, contralateral rate-related activity changes were identified in the precentral gyrus, thalamus, and posterior putamen. For left-hand movements, activity was seen only in the contralateral precentral gyrus, consistent with the existence of a rate-sensitive motor control subsystem involving the left, but not the right, medial premotor corticostriatal loop in right-handed individuals. We hypothesize that the right hemisphere system is less skilled at controlling variable-rate movements and becomes maximally engaged at a lower movement rate without further modulation. These findings demonstrate that right- and left-hand movements engage different neural systems to control movement, even during a relatively simple thumb flexion task. Specialization of the left hemisphere corticostriatal system for dexterity is reflected in asymmetric mechanisms for movement rate control.
机译:尽管有说服力的行为证据显示了大多数人在各种情况下右手都具有出色的灵活性,但对于造成这种现象的神经机制知之甚少。由于这种横向优势在重复,快速运动的执行过程中最为明显,因此我们使用参数速率变化来比较右手和左手的视觉节奏运动。 12位强势右撇子受试者参与了功能性磁共振成像(fMRI)实验,该实验涉及可变速率的拇指运动。对于右手运动,在中枢前回,丘脑和后壳中发现了对侧速率相关的活动变化。对于左手运动,仅在对侧中央前回中看到活动,这与右手个体中存在速率敏感的运动控制子系统有关,该运动控制子系统涉及左但不包括右内侧运动前皮质皮质环。我们假设右半球系统在控制可变速率运动方面不熟练,并且在没有进一步调制的情况下以较低的运动速率最大程度地参与。这些发现表明,即使在相对简单的拇指屈曲任务中,右手和左手的动作也会参与不同的神经系统来控制动作。左半球皮层造口系统的灵活性专门化反映在运动速率控制的不对称机制中。

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