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Dose-dependent effects of theta-burst rTMS on cortical excitability and resting-state connectivity of the human motor system.

机译:Theta-burst rTMS对人体运动系统的皮层兴奋性和静止状态连通性的剂量依赖性影响。

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摘要

Theta burst stimulation (TBS), a specific protocol of repetitive transcranial magnetic stimulation (rTMS), induces changes in cortical excitability that last beyond stimulation. TBS-induced aftereffects, however, vary between subjects, and the mechanisms underlying these aftereffects to date remain poorly understood. Therefore, the purpose of this study was to investigate whether increasing the number of pulses of intermittent TBS (iTBS) (1) increases cortical excitability as measured by motor-evoked potentials (MEPs) and (2) alters functional connectivity measured using resting-state fMRI, in a dose-dependent manner. Sixteen healthy, human subjects received three serially applied iTBS blocks of 600 pulses over the primary motor cortex (M1 stimulation) and the parieto-occipital vertex (sham stimulation) to test for dose-dependent iTBS effects on cortical excitability and functional connectivity (four sessions in total). iTBS over M1 increased MEP amplitudes compared with sham stimulation after each stimulation block. Although the increase in MEP amplitudes did not differ between the first and second block of M1 stimulation, we observed a significant increase after three blocks (1800 pulses). Furthermore, iTBS enhanced resting-state functional connectivity between the stimulated M1 and premotor regions in both hemispheres. Functional connectivity between M1 and ipsilateral dorsal premotor cortex further increased dose-dependently after 1800 pulses of iTBS over M1. However, no correlation between changes in MEP amplitudes and functional connectivity was detected. In summary, our data show that increasing the number of iTBS stimulation blocks results in dose-dependent effects at the local level (cortical excitability) as well as at a systems level (functional connectivity) with a dose-dependent enhancement of dorsal premotor cortex-M1 connectivity
机译:θ爆裂刺激(TBS)是重复性经颅磁刺激(rTMS)的特定协议,可诱导皮质兴奋性变化,这种变化持续超过刺激。然而,TBS诱导的后效应在受试者之间有所不同,并且迄今为止对这些后效应的潜在机制仍知之甚少。因此,本研究的目的是调查增加间歇性TBS(iTBS)的脉冲数是否(1)通过运动诱发电位(MEP)测得的皮质兴奋性增加,以及(2)使用静息状态测得的功能连通性是否改变功能磁共振成像,剂量依赖性。十六名健康的人类受试者在主运动皮层(M1刺激)和顶枕顶顶点(假刺激)上接受了三个连续施加的600个脉冲的iTBS块,以测试剂量依赖性iTBS对皮层兴奋性和功能连接性的影响(四个疗程)总共)。与每个刺激块后的假刺激相比,超过M1的iTBS增加了MEP振幅。尽管在M1刺激的第一个和第二个块之间,MEP幅度的增加没有差别,但我们观察到三个块(1800个脉冲)后MEP振幅显着增加。此外,iTBS增强了两个半球受刺激的M1和运动前区域之间的静止状态功能连接。在M1上经过1800次iTBS脉冲后,M1和同侧背前运动皮层之间的功能连接性进一步依赖剂量。但是,没有检测到MEP振幅变化与功能连通性之间的相关性。总而言之,我们的数据表明,增加iTBS刺激阻滞的数量会导致局部水平(皮质兴奋性)和系统水平(功能连通性)的剂量依赖性效应,并且剂量依赖性增强背运动前皮层, M1连接

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