首页> 外文OA文献 >Striatal morphology correlates with frontostriatal electrophysiological motor processing in Huntington\u27s disease: an IMAGE-HD study
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Striatal morphology correlates with frontostriatal electrophysiological motor processing in Huntington\u27s disease: an IMAGE-HD study

机译:IMAGE-HD研究表明,纹状体形态与亨廷顿病中的前额肌电生理运动处理有关

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摘要

Background: Huntington\u27s disease (HD) causes progressive atrophy to the striatum, a critical node in frontostriatal circuitry. Maintenance of motor function is dependent on functional connectivity of these premotor, motor, and dorsolateral frontostriatal circuits, and structural integrity of the striatum itself. We aimed to investigate whether size and shape of the striatum as a measure of frontostriatal circuit structural integrity was correlated with functional frontostriatal electrophysiological neural premotor processing (contingent negative variation, CNV), to better understand motoric structure-function relationships in early HD.Methods: Magnetic resonance imaging (MRI) scans and electrophysiological (EEG) measures of premotor processing were obtained from a combined HD group (12 presymptomatic, 7 symptomatic). Manual segmentation of caudate and putamen was conducted with subsequent shape analysis. Separate correlational analyses (volume and shape) included covariates of age, gender, intracranial volume, and time between EEG and MRI. Results: Right caudate volume correlated with early CNV latency over frontocentral regions and late CNV frontally, whereas right caudate shape correlated with early CNV latency centrally. Left caudate volume correlated with early CNV latency over centroparietal regions and late CNV frontally. Right and left putamen volumes correlated with early CNV latency frontally, and right and left putamen shape/volume correlated with parietal CNV slope.Conclusions: Timing (latency) and pattern (slope) of frontostriatal circuit-mediated premotor functional activation across scalp regions were correlated with abnormalities in structural integrity of the key frontostriatal circuit component, the striatum (size and shape). This was accompanied by normal reaction times, suggesting it may be undetected in regular tasks due to preserved motor \u22performance.\u22 Such differences in functional activation may reflect atrophy-based frontostriatal circuitry despecialization and/or compensatory recruitment of additional brain regions.
机译:背景:亨廷顿舞蹈症(HD)引起纹状体进行性萎缩,纹状体是额窦回路中的关键节点。运动功能的维持取决于这些运动前,运动和背外侧额窦回路的功能连接性以及纹状体本身的结构完整性。我们的目的是调查纹状体的大小和形状(作为量测前额窦电路结构完整性的手段)是否与功能性前额叶电生理神经前运动处理(或有负性负变异,CNV)相关联,以更好地了解早期HD患者的运动结构与功能的关系。运动前处理的磁共振成像(MRI)扫描和电生理学(EEG)措施来自合并的HD组(12例有症状,7例有症状)。手动分割尾状和壳状核,随后进行形状分析。单独的相关分析(体积和形状)包括年龄,性别,颅内体积以及EEG与MRI之间的时间的协变量。结果:右尾状体的体积与额叶中央区域的早期CNV潜伏期相关,而额叶中部的CNV晚期与中央尾部形态相关。左尾状体的体积与早于中央点区域的CNV潜伏期和晚期CNV的前额相关。右和左壳核体积与CNV早期潜伏期相关,右和左壳核形状/体积与顶叶CNV斜率相关。结论:额叶电路介导的头皮区域前运动功能激活的时间(潜伏期)和模式(斜率)相关。关键的额骨前额电路组件纹状体的结构完整性异常(大小和形状)。这伴随着正常的反应时间,这表明由于保持运动能力,在常规任务中可能未检测到该反应。这种功能性激活的差异可能反映了基于萎缩的额窦道电路去专业化和/或其他大脑区域的代偿募集。

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