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左旋多巴对帕金森病患者支持工作记忆的皮质纹状体回路的影响。

Effects of levodopa on corticostriatal circuits supporting working memory in Parkinson's disease.

机构信息

Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada.

出版信息

Cortex. 2017 Aug;93:193-205. doi: 10.1016/j.cortex.2017.05.021. Epub 2017 Jun 7.

Abstract

Working memory dysfunction is common in Parkinson's disease, even in its early stages, but its neural basis is debated. Working memory performance likely reflects a balance between corticostriatal dysfunction and compensatory mechanisms. We tested this hypothesis by examining working memory performance with a letter n-back task in 19 patients with mild-moderate Parkinson's disease and 20 demographically matched healthy controls. Parkinson's disease patients were tested after an overnight washout of their usual dopamine replacement therapy, and again after a standard dose of levodopa. FMRI was used to assess task-related activation and resting state functional connectivity; changes in BOLD signal were related to performance to disentangle pathological and compensatory processes. Parkinson's disease patients off dopamine replacement therapy displayed significantly reduced spatial extent of task-related activation in left prefrontal and bilateral parietal cortex, and poorer working memory performance, compared to controls. Amongst the Parkinson's disease patients off dopamine replacement therapy, relatively better performance was associated with greater activation of right dorsolateral prefrontal cortex compared to controls, consistent with compensatory right hemisphere recruitment. Administration of levodopa remediated the working memory deficit in the Parkinson's disease group, and resulted in a different pattern of performance-correlated activity, with a shift to greater left ventrolateral prefrontal cortex activation in patients on, compared to off dopamine replacement therapy. Levodopa also significantly increased resting-state functional connectivity between caudate and right parietal cortex (within the right fronto-parietal attentional network). The strength of this connectivity contributed to better performance in patients and controls, suggesting a general compensatory mechanism. These findings argue that Parkinson's disease patients can recruit additional neural resources, here, the right fronto-parietal network, to optimize working memory performance despite impaired corticostriatal function. Levodopa seems to both boost engagement of a task-specific prefrontal region, and strengthen a putative compensatory caudate-cortical network to support this executive function.

摘要

工作记忆功能障碍在帕金森病中很常见,即使在疾病早期也是如此,但它的神经基础仍存在争议。工作记忆表现可能反映了皮质纹状体功能障碍和补偿机制之间的平衡。我们通过在 19 名轻度至中度帕金森病患者和 20 名年龄匹配的健康对照者中进行字母 n 回任务来检验这一假设。帕金森病患者在停止使用常规多巴胺替代疗法过夜后接受测试,然后在标准剂量左旋多巴后再次接受测试。我们使用 fMRI 来评估与任务相关的激活和静息状态功能连接;通过改变 BOLD 信号与性能相关,以区分病理性和补偿性过程。与对照组相比,停用多巴胺替代疗法的帕金森病患者左前额叶和双侧顶叶皮质的任务相关激活的空间范围明显减小,工作记忆表现更差。在停用多巴胺替代疗法的帕金森病患者中,与对照组相比,相对较好的表现与右背外侧前额叶皮质的更大激活相关,这与补偿性右半球募集一致。左旋多巴的给药改善了帕金森病患者的工作记忆缺陷,并导致了与性能相关的活动的不同模式,与患者相比,左旋多巴替代疗法患者的左腹外侧前额叶皮质的激活增加。左旋多巴还显著增加了尾状核和右顶叶皮质之间的静息状态功能连接(在右额顶注意网络内)。这种连接的强度与患者和对照组的更好表现相关,表明存在一般的补偿机制。这些发现表明,帕金森病患者可以在皮质纹状体功能受损的情况下,招募额外的神经资源,即右额顶网络,以优化工作记忆表现。左旋多巴似乎既增强了特定的前额叶区域的参与,又增强了假定的补偿性尾状核皮质网络,以支持这种执行功能。

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