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Increased cortical recruitment in Huntington's disease using a Simon task.

机译:使用Simon任务增加了亨廷顿舞蹈病的皮质募集。

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Cognitive deficits in Huntington's disease (HD) have been attributed to neuronal degeneration within the striatum; however, postmortem and structural imaging studies have revealed more widespread morphological changes. To examine the impact of HD-related changes in regions outside the striatum, we used functional magnetic resonance imaging (fMRI) in HD to examine brain activation patterns using a Simon task that required a button press response to either congruent or incongruent arrow stimuli. Twenty mild to moderate stage HD patients and 17 healthy controls were scanned using a 3T GE scanner. Data analysis involved the use of statistical parametric mapping software with a random effects analysis model to investigate group differences brain activation patterns compared to baseline. HD patients recruited frontal and parietal cortical regions to perform the task, and also showed significantly greater activation, compared to controls, in the caudal anterior cingulate, insula, inferior parietal lobules, superior temporal gyrus bilaterally, right inferior frontal gyrus, right precuneus/superior parietal lobule, left precentral gyrus, and left dorsal premotor cortex. The significantly increased activation in anterior cingulate-frontal-motor-parietal cortex in HD may represent a primary dysfunction due to direct cell loss or damage in cortical regions, and/or a secondary compensatory mechanism of increased cortical recruitment due to primary striatal deficits.
机译:亨廷顿舞蹈病(HD)的认知缺陷归因于纹状体中的神经元变性。然而,验尸和结构成像研究显示出更广泛的形态变化。为了检查纹状体外侧区域与高清相关的变化的影响,我们使用西蒙任务中的功能性磁共振成像(fMRI)来检查HD的大脑激活模式,该任务需要按按钮来响应一致或不一致的箭头刺激。使用3T GE扫描仪对20例轻至中度HD患者和17位健康对照进行了扫描。数据分析涉及使用统计参数映射软件和随机效应分析模型来研究与基线相比的组差异性大脑激活模式。 HD患者募集了额叶和顶叶皮质区域来执行任务,并且与对照组相比,在尾状前扣带回,岛状,顶叶小叶,双侧颞上回,双侧右颞下回,右前突/上突的激活明显增强顶叶,左中央前回和左前运动皮层。 HD中前扣带回-前运动-顶叶皮质的激活显着增加可能是原发性功能障碍,原因是直接的细胞丢失或皮质区域受损,和/或由于原发性纹状体缺陷而增加了皮质募集的次要补偿机制。

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