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Non-invasive electrical stimulation of the brain (ESB) modifies the resting-state network connectivity of the primary motor cortex: A proof of concept fMRI study

机译:无创性脑电刺激(ESB)改变了主运动皮层的静止状态网络连接:fMRI研究的概念证明

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An innovative method to obtain fMRI resting-state network maps during non-invasive electrical stimulation of the brain (ESB) was developed and tested. Five healthy volunteers participated in 2 fMRI sessions. In session one, a transcranial direct current stimulator (tDCS) was applied placing the positive electrode (31.5 cm~2) over the right Ml of the cortex and the negative electrode (31.5 cm~2) over the left supra-orbital area of the head. In session two, a monophasic pulsed current stimulator (tPCS) was applied using the identical electrode placement Imagingwas performed on a Siemens 3 T Tim Trio scanner with a 12-channel head coil. At each session, five consecutive functional scans were obtained: 1) resting-state without stimulation (Rest-1), 2) a motor scan consisting of self-paced, bilateral finger-thumb opposition task, 3) resting-state with ESB (Stim-1), 4) resting-state without stimulation (Rest-2), and 5) resting-state with ESB, replicating Stim-1 (Stim-2). Data were analyzed using AFNI and MATLAB. For motor task fMRI analysis, a general linear model (GLM) determined the voxels in the right and left Ml that were significantly correlated with the motor task paradigm. The resting-state time series from the voxels in the R-M1 were averaged and the resulting time series used as a regressor in a GLM analysis to identify Ml connectivity maps. Connectivity maps were quantified as R~2 values, and then combined to give overlap maps for each of the experimental conditions. Fourier analysis determined the energy in the normalized signal average time courses extracted from L-Ml and R-Ml for each of the resting-state scans. Both tDCS and tPCS lowered the R~2 values and energy of the averaged time course in the right and left Ml ROI. The effect of the tPCS appeared more pronounced and less variable among subjects. Applying non-invasive ESB during fMRI scanning may down regulate the motor cortex's resting-state network connectivity.
机译:开发并测试了一种创新的方法,该方法可在无创性脑电刺激(ESB)期间获得fMRI静止状态网络图。五名健康​​志愿者参加了两次功能磁共振成像会议。在第一节中,应用经颅直流电刺激器(tDCS),将正电极(31.5 cm〜2)置于皮层右M1上方,将负电极(31.5 cm〜2)置于皮层右眶上区域上头。在第二部分中,使用相同的电极放置方式施加单相脉冲电流刺激器(tPCS)。在具有12通道头部线圈的Siemens 3 T Tim Trio扫描仪上进行成像。在每个疗程中,进行了五次连续的功能扫描:1)无刺激的静止状态(Rest-1),2)包括自定进度的双指拇指对立任务的运动扫描,3)ESB的静止状态( Stim-1),4)没有刺激的静止状态(Rest-2)和5)带有ESB的静止状态,复制了Stim-1(Stim-2)。使用AFNI和MATLAB分析数据。对于运动任务功能磁共振成像分析,通用线性模型(GLM)确定了左右M1中与运动任务范例显着相关的体素。对来自R-M1中的体素的静止状态时间序列求平均,并将所得的时间序列用作GLM分析中的回归以确定M1连通性图。将连接图量化为R〜2值,然后合并以给出每种实验条件的重叠图。傅里叶分析确定了针对每个静止状态扫描从L-M1和R-M1提取的归一化信号平均时间过程中的能量。 tDCS和tPCS都降低了左右M1 ROI的R〜2值和平均时程的能量。在受试者之间,tPCS的作用显得更为明显,且变化较小。在fMRI扫描过程中应用非侵入性ESB可能会下调运动皮层的静止状态网络连接性。

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