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Preliminary pilot fMRI study of neuropostural optimization with a noninvasive asymmetric radioelectric brain stimulation protocol in functional dysmetria

机译:功能性功能障碍的无创不对称放射电脑刺激方案对神经姿势优化的初步试验性fMRI研究

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Purpose: This study assessed changes in functional dysmetria (FD) and in brain activation observable by functional magnetic resonance imaging (fMRI) during a leg flexion-extension motor task following brain stimulation with a single radioelectric asymmetric conveyer (REAC) pulse, according to the precisely defined neuropostural optimization (NPO) protocol.Population and methods: Ten healthy volunteers were assessed using fMRI conducted during a simple motor task before and immediately after delivery of a single REAC-NPO pulse. The motor task consisted of a flexion-extension movement of the legs with the knees bent. FD signs and brain activation patterns were compared before and after REAC-NPO.Results: A single 250-millisecond REAC-NPO treatment alleviated FD, as evidenced by patellar asymmetry during a sit-up motion, and modulated activity patterns in the brain, particularly in the cerebellum, during the performance of the motor task.Conclusion: Activity in brain areas involved in motor control and coordination, including the cerebellum, is altered by administration of a REAC-NPO treatment and this effect is accompanied by an alleviation of FD.
机译:目的:本研究评估了在用单个无线电波不对称输送器(REAC)脉冲刺激大脑后的腿屈伸运动任务中,功能性功能障碍(FD)和可通过功能磁共振成像(fMRI)观察到的大脑激活的变化。精确定义的神经姿势优化(NPO)方案。人群和方法:在进行单个REAC-NPO脉冲之前和之后的简单运动任务期间,使用功能磁共振成像对10名健康志愿者进行了评估。运动任务包括膝盖弯曲使腿屈伸运动。结果:在仰卧起坐运动中pa骨不对称以及调节的大脑活动模式,证明了REAC-NPO之前和之后的FD体征和大脑激活模式均得到了改善。结果:一次250毫秒REAC-NPO治疗缓解了FD。结论:REAC-NPO治疗改变了与运动控制和协调有关的大脑区域活动,包括小脑,这种作用伴随着FD的减轻。

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