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Reduction of excitability ('inhibition') in the ipsilateral primary motor cortex is mirrored by fMRI signal decreases.

机译:fMRI信号减少反映了同侧原发性运动皮层兴奋性的降低(“抑制”)。

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摘要

Functional magnetic resonance imaging (fMRI) was used to investigate how focal cortical inhibition affects the blood oxygen level-dependent (BOLD) signal. Phasic low force pinch grip reduces excitability of the ipsilateral primary motor cortex. This task was used to study BOLD signal changes during inhibition. Six right-handed normal volunteers participated in the study. They were asked to perform a right-handed pinch grip repetitively at 1 Hz and 5% of their individual maximal voluntary contraction (MVC). Data were acquired with a 1.5 Tesla Magnetom and continuous multislice T2*-weighted images. The contralateral primary motor cortex (M1) revealed an activation in the knob-shaped hand representation of the central sulcus area. More importantly, a decreased (often referred to as "negative") BOLD signal in the ipsilateral M1 was observed. We suggest phasic low force pinch grip as a reproducible, easy model of focal inhibition. Decreased cortical excitability presents as decreased BOLD signal using fMRI.
机译:功能磁共振成像(fMRI)用于研究局灶性皮层抑制如何影响血氧水平依赖性(BOLD)信号。阶段性低力捏握会降低同侧初级运动皮层的兴奋性。该任务用于研究抑制过程中BOLD信号的变化。六名右撇子正常志愿者参加了研究。他们被要求以1 Hz的频率重复进行右手捏捏,并按其最大自发性收缩(MVC)的5%进行操作。数据是通过1.5特斯拉磁控管和连续的多层T2 *加权图像获取的。对侧初级运动皮层(M1)在中央沟区域的球形把手中显示出激活状态。更重要的是,在同侧M1中观察到BOLD信号减少(通常称为“负”)。我们建议将阶段性低力捏握作为一种可重现的,简便的局灶抑制模型。皮质兴奋性降低表现为使用fMRI的BOLD信号降低。

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