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首页> 外文期刊>Biological psychiatry >The role of the corpus callosum in transcranial magnetic stimulation induced interhemispheric signal propagation.
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The role of the corpus callosum in transcranial magnetic stimulation induced interhemispheric signal propagation.

机译:call体在经颅磁刺激引起的半球间信号传播中的作用。

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BACKGROUND: The corpus callosum, the main interhemispheric connection in the brain, may serve to preserve functional asymmetry between homologous cortical regions. METHODS: To test this hypothesis, 30 healthy adult subjects underwent combined transcranial magnetic stimulation (TMS)-electroencephalography procedures. Nineteen of these subjects also completed diffusion tensor imaging and tractography procedures. We examined the relationship between microstructural integrity of subdivisions of the corpus callosum with TMS-induced interhemispheric signal propagation. RESULTS: We found a significant inverse relationship between microstructural integrity of callosal motor fibers with TMS-induced interhemispheric signal propagation from left to right motor cortex. We also found a significant inverse relationship between microstructural integrity of genu fibers of the corpus callosum and TMS-induced interhemispheric signal propagation from left to right dorsolateral prefrontal cortex (DLPFC). We then demonstrated neuroanatomic specificity of these relationships. CONCLUSIONS: Taken together, our findings suggest that TMS-induced interhemispheric signal propagation is transcallosally mediated and neuroanatomically specific and support a role for the corpus callosum in preservation of functional asymmetry between homologous cortical regions. Delineation of the relationship between corpus callosum microstructure and interhemispheric signal propagation in neuropsychiatric disorders, such as schizophrenia, may reveal novel mechanisms of pathophysiology.
机译:背景:call体是大脑中半球之间的主要连接,可用于保持同源皮层区域之间的功能不对称。方法:为了验证这一假设,对30名健康成人受试者进行了联合经颅磁刺激(TMS)-脑电图检查程序。这些受试者中有19名还完成了弥散张量成像和tractography程序。我们检查了call体细分的微结构完整性与TMS诱导的半球信号传播之间的关系。结果:我们发现愈伤组织运动纤维的微结构完整性与TMS诱导的半球信号从左向右运动皮层的传播之间存在显着的反比关系。我们还发现call体属纤维的微结构完整性与TMS诱导的半球信号从左到右背外侧前额叶皮层(DLPFC)传播之间存在显着的反比关系。然后,我们证明了这些关系的神经解剖学特异性。结论:综上所述,我们的发现表明TMS诱导的半球间信号传播是经call骨介导的和神经解剖学特异性的,并支持call体在保持同源皮质区域之间的功能不对称中的作用。在精神分裂症等神经精神疾病中,call体微结构与半球间信号传播之间的关系的描述可能揭示了病理生理的新机制。

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