Lack of effects of four-week theta burst stimulation on white matter macro/microstructure in children and adolescents with autism

白质 刺激 心理学 磁共振弥散成像 磁刺激 自闭症 磁共振成像 随机对照试验 医学 听力学 麻醉 神经科学 内科学 发展心理学 放射科
作者
Hsing‐Chang Ni,Yi‐Ping Chao,Rung-Yu Tseng,Chiao‐En Wu,Luca Cocchi,Tai‐Li Chou,Rou-Shayn Chen,Susan Shur-Fen Gau,Chun‐Hung Yeh,Hon‐Yi Lin
出处
期刊:NeuroImage: Clinical [Elsevier]
卷期号:37: 103324-103324 被引量:1
标识
DOI:10.1016/j.nicl.2023.103324
摘要

Following the published behavioral and cognitive results of this single-blind parallel sham-controlled randomized clinical trial, the current study aimed to explore the impact of intermittent theta burst stimulation (iTBS), a variant of excitatory transcranial magnetic stimulation, over the bilateral posterior superior temporal sulci (pSTS) on white matter macro/microstructure in intellectually able children and adolescents with autism. Participants were randomized and blindly received active or sham iTBS for 4 weeks (the single-blind sham-controlled phase). Then, all participants continued to receive active iTBS for another 4 weeks (the open-label phase). The clinical results were published elsewhere. Here, we present diffusion magnetic resonance imaging data on potential changes in white matter measures after iTBS. Twenty-two participants in Active-Active group and 27 participants in Sham-Active group underwent multi-shell high angular resolution diffusion imaging (64-direction for b = 2000 & 1000 s/mm2, respectively) at baseline, week 4, and week 8. With longitudinal fixel-based analysis, we found no white matter changes following iTBS from baseline to week 4 (a null treatment by time interaction and a null within-group paired comparison in the Active-Active group), nor from baseline to week 8 (null within-group paired comparisons in both Active-Active and Sham-Active groups). As for the brain-symptoms relationship, we did not find baseline white matter metrics associated with symptom changes at week 4 in either group. Our results raise the question of what the minimal cumulative stimulation dose required to induce the white matter plasticity is.
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