首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Implicit Motor Imagery and the Lateral Occipitotemporal Cortex: Hints for Tailoring Non-Invasive Brain Stimulation
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Implicit Motor Imagery and the Lateral Occipitotemporal Cortex: Hints for Tailoring Non-Invasive Brain Stimulation

机译:隐含电动机图像和侧枕状催眠术:暗示非侵入性脑刺激的提示

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摘要

Background: Recent evidence has converged in showing that the lateral occipitotemporal cortex is over-recruited during implicit motor imagery in elderly and in patients with neurodegenerative disorders, such as Parkinson’s disease. These data suggest that when automatically imaging movements, individuals exploit neural resources in the visual areas to compensate for the decline in activating motor representations. Thus, the occipitotemporal cortex could represent a cortical target of non-invasive brain stimulation combined with cognitive training to enhance motor imagery performance. Here, we aimed at shedding light on the role of the left and right lateral occipitotemporal cortex in implicit motor imagery. Methods: We applied online, high-frequency, repetitive transcranial magnetic stimulation (rTMS) over the left and right lateral occipitotemporal cortex while healthy right-handers judged the laterality of hand images. Results: With respect to the sham condition, left hemisphere stimulation specifically reduced accuracy in judging the laterality of right-hand images. Instead, the hallmark of motor simulation, i.e., the biomechanical effect, was never influenced by rTMS. Conclusions: The lateral occipitotemporal cortex seems to be involved in mental representation of the dominant hand, at least in right-handers, but not in reactivating sensorimotor information during simulation. These findings provide useful hints for developing combined brain stimulation and behavioural trainings to improve motor imagery.
机译:背景:最近的证据融合在表明,在老年人和神经变性疾病的患者中,伴随患者的隐式电动机图像中过度招募了侧向枕型术,例如帕金森病。这些数据表明,当自动成像移动时,个人利用视觉区域的神经资源来补偿激活电动机表示的下降。因此,枕型血运动皮质可以代表非侵入性脑刺激的皮质靶标结合认知训练,以增强电动机图像性能。在这里,我们的目标是在隐式电动机图像中缩小左侧和右侧枕型术尿造膜皮层的作用。方法:我们在左侧和右侧枕型肌肉皮质上施用在线,高频,重复的经颅磁刺激(RTMS),而健康的右手辅导者判断手图像的外形。结果:关于虚假条件,左半球刺激在判断右手图像的外面方面明确地降低了准确性。相反,电动机仿真的标志,即生物力学效果,从未受到RTMS的影响。结论:侧枕型皮质皮质似乎参与了主导手的心理表达,至少在右手撇子中,但在模拟期间不再重新激活感官电流信息。这些调查结果为开发联合脑刺激和行为培训提供了有用的提示,以改善电动机图像。

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