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阿尔茨海默病伴掌颏反射阳性患者额纹状体连接异常。

Aberrant frontostriatal connectivity in Alzheimer's disease with positive palmomental reflex.

机构信息

Department of Neurology, Faculty of Medicine and University Hospital Cologne, University of Cologne, Cologne, Germany.

Cognitive Neuroscience, Research Center Jülich, Institute of Neuroscience and Medicine (INM3), Research Centre Juelich, Juelich, Germany.

出版信息

Eur J Neurol. 2020 Dec;27(12):2405-2414. doi: 10.1111/ene.14443. Epub 2020 Aug 20.

Abstract

BACKGROUND AND PURPOSE

Primitive reflexes may reoccur in various neurodegenerative diseases. However, little is known about their structural and functional correlates in the human brain. Notably, the neural mechanisms underlying a positive palmomental reflex (PMR) are poorly understood. As recent studies link Alzheimer's disease (AD)-related primitive reflexes to a dysfunction of the corticostriatal motor circuit (CMC), we conducted the present study to investigate functional and structural correlates of a positive PMR. We hypothesized an involvement of frontostriatal structures and an impairment of the CMC.

METHODS

Using whole-brain resting-state functional connectivity (FC), hypothesis and FC result-based probabilistic tractography, and voxel-based morphometry analyses, we compared two groups of AD patients with either positive (n = 12) or negative PMR (n = 12).

RESULTS

No significant differences in grey matter volume or structural connectivity (SC) could be observed between the PMR-positive and PMR-negative groups. In contrast, the PMR-positive group showed a decreased seed-to-voxel FC between the bilateral supplementary motor area and parts of the right-hemispherical caudate nucleus and thalamus and a decreased region of interest (ROI)-to-ROI FC between the left putamen and the left superior frontal gyrus.

CONCLUSION

Data suggest that dysfunction of the CMC reflected by decreased FC underlies a positive PMR in patients with AD. The lack of significant grey matter or SC differences might reflect that changes in FC appear before changes in SC in the structures of the CMC and brain atrophy.

摘要

背景与目的

原始反射可能在各种神经退行性疾病中重新出现。然而,人们对其在人类大脑中的结构和功能相关性知之甚少。值得注意的是,正性手掌颏反射(PMR)的神经机制尚未得到充分理解。由于最近的研究将阿尔茨海默病(AD)相关的原始反射与皮质纹状体运动回路(CMC)的功能障碍联系起来,我们进行了本研究以探讨正性 PMR 的功能和结构相关性。我们假设额叶纹状体结构的参与和 CMC 的损害。

方法

我们使用全脑静息状态功能连接(FC)、假设和 FC 结果为基础的概率轨迹追踪以及基于体素的形态测量分析,比较了两组 AD 患者,一组为 PMR 阳性(n=12),另一组为 PMR 阴性(n=12)。

结果

PMR 阳性组和 PMR 阴性组之间的灰质体积或结构连接(SC)没有显著差异。相比之下,PMR 阳性组表现为双侧辅助运动区与右侧尾状核和丘脑部分之间的种子到体素 FC 降低,左壳核与左额上回之间的 ROI 到 ROI FC 降低。

结论

数据表明,CMC 功能障碍反映了 FC 的降低,这是 AD 患者 PMR 阳性的基础。灰质或 SC 差异不显著可能反映了在 CMC 和脑萎缩的结构中,FC 的变化先于 SC 的变化。

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