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异常的海马亚区与原发性震颤患者的认知障碍有关。

Abnormal hippocampal subfields are associated with cognitive impairment in Essential Tremor.

机构信息

Department of Clinical Neurosciences, National Institute of Mental Health and Neurosciences, Hosur Road, Bangalore, Karnataka, 560029, India.

Department of Neurology, National Institute of Mental Health and Neurosciences, Hosur Road, Bangalore, Karnataka, 560029, India.

出版信息

J Neural Transm (Vienna). 2019 May;126(5):597-606. doi: 10.1007/s00702-019-01992-3. Epub 2019 Mar 19.

Abstract

Multi-domain cognitive impairment (CI) has been frequently described in patients with essential tremor (ET). However, the exact neuroanatomical basis for this impairment is uncertain. This study aims to ascertain the role of the hippocampal formation in cognitive impairment in ET. Forty patients with ET and 40 age, gender and education matched healthy controls (HC) were enrolled. Cognition was assessed using a structured neuropsychological battery and patients were categorized as ET with CI (ETCI) and ET without CI (ETNCI). Automatic segmentation of hippocampal subfields was performed using FreeSurfer 6.0. The obtained volumes were correlated with scores of neuropsychological tests. Significant atrophy of the left subiculum, CA4, granule-cell layer of dentate gyrus, right molecular layer, and hypertrophy of bilateral parasubiculum, right hippocampus-amygdala-transition-area, bilateral hippocampal tail (HT) and widening of right hippocampal fissure was observed in ET. Trends toward atrophy of right subiculum, and widening of left HF was also observed. Comparison of HC and ETCI revealed atrophy of right subiculum, hypertrophy of bilateral parasubiculum, HT, and widening of left HF. ETCI showed a trend toward widening of right HF. ETNCI had isolated left parasubicular hypertrophy and in comparison, to ETNCI the ETCI subgroup had atrophy of bilateral fimbria. Significant correlations were observed between the volumes of HT, HF, fimbria and scores of tests for executive function, working and verbal memory. Patients with ET have significant volumetric abnormalities of several hippocampal subfields and these abnormalities may be important contributors for some forms of cognitive impairment observed in ET.

摘要

多领域认知障碍(CI)在特发性震颤(ET)患者中经常被描述。然而,这种损伤的确切神经解剖学基础尚不确定。本研究旨在确定海马结构在 ET 认知障碍中的作用。纳入了 40 名 ET 患者和 40 名年龄、性别和教育程度匹配的健康对照者(HC)。使用结构化神经心理学测试对认知进行评估,并将患者分为伴有 CI 的 ET(ETCI)和无 CI 的 ET(ETNCI)。使用 FreeSurfer 6.0 对海马亚区进行自动分割。将获得的体积与神经心理学测试的评分相关联。在 ET 中观察到左侧海马伞、CA4、齿状回颗粒细胞层、右侧分子层以及双侧副海马、右侧海马-杏仁核过渡区、双侧海马尾部(HT)萎缩和右侧海马裂增宽。右侧海马伞萎缩和左侧 HF 增宽的趋势也被观察到。与 HC 和 ETCI 的比较显示右侧海马伞萎缩、双侧副海马肥大、HT 和左侧 HF 增宽。ETCI 显示右侧 HF 增宽的趋势。ETNCI 仅表现为左侧副海马肥大,与 ETNCI 相比,ETCI 亚组双侧穹窿萎缩。HT、HF、穹窿体积与执行功能、工作记忆和言语记忆测试评分之间存在显著相关性。ET 患者存在几个海马亚区的显著体积异常,这些异常可能是 ET 中某些形式认知障碍的重要原因。

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