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利用功能连接分析将特发性震颤映射到常见的大脑网络。

Mapping Essential Tremor to a Common Brain Network Using Functional Connectivity Analysis.

机构信息

From the Cognitive Neuroscience Unit (E.Y., E.G.E., N.P., K.C., D.T.C.), School of Psychology, Deakin University, Geelong, Australia; Human Neuroscience (P.P., S.T.), Sapienza University of Rome; IRCCS NEUROMED (P.P.), Pozzilli, Italy; Department of Neurology (J.B.-L.) and Research Institute (i+12), University Hospital "12 de Octubre"; Centro de Investigación Biomédica en Red Sobre Enfermedades Neurodegenerativas (CIBERNED) (J.B.-L.); Department of Medicine (J.B.-L.), Complutense University; Facultad de Ciencias Experimentales (J.P.R.), Universidad Francisco de Vitoria; Brain Damage Unit (J.P.R.), Hospital Beata María Ana, Madrid, Spain; Turku Brain and Mind Center (J.J.), Clinical Neurosciences, University of Turku; Turku PET Centre (J.J.), Neurocenter, Turku University Hospital, Finland; and Center for Brain Circuit Therapeutics (D.T.C.), Department of Neurology, Psychiatry, and Radiology, Brigham and Women's Hospital, Harvard Medical School, Boston, MA.

出版信息

Neurology. 2023 Oct 10;101(15):e1483-e1494. doi: 10.1212/WNL.0000000000207701. Epub 2023 Aug 18.

Abstract

BACKGROUND AND OBJECTIVES

The cerebello-thalamo-cortical circuit plays a critical role in essential tremor (ET). However, abnormalities have been reported in multiple brain regions outside this circuit, leading to inconsistent characterization of ET pathophysiology. Here, we test whether these mixed findings in ET localize to a common functional network and whether this network has therapeutic relevance.

METHODS

We conducted a systematic literature search to identify studies reporting structural or metabolic brain abnormalities in ET. We then used 'coordinate network mapping,' which leverages a normative connectome (n = 1,000) of resting-state fMRI data to identify regions commonly connected to findings across all studies. To assess whether these regions may be relevant for the treatment of ET, we compared our network with a therapeutic network derived from lesions that relieved ET. Finally, we investigated whether the functional connectivity of this ET symptom network is abnormal in an independent cohort of patients with ET as compared with healthy controls.

RESULTS

Structural and metabolic brain abnormalities in ET were located in heterogeneous regions throughout the brain. However, these coordinates were connected to a common functional brain network, including the cerebellum, thalamus, motor cortex, precuneus, inferior parietal lobe, and insula. The cerebellum was identified as the hub of this network because it was the only brain region that was both functionally connected to the findings of over 90% of studies and significantly different in connectivity compared with a control data set of other movement disorders. This network was strikingly similar to the therapeutic network derived from lesions improving ET, with key regions aligning in the thalamus and cerebellum. Furthermore, positive functional connectivity between the cerebellar network hub and the sensorimotor cortices was significantly reduced in patients with ET compared with healthy controls, and connectivity within this network was correlated with tremor severity and cognitive functioning.

DISCUSSION

These findings suggest that the cerebellum is the central hub of a network commonly connected to structural and metabolic abnormalities in ET. This network may have therapeutic utility in refining and informing new targets for neuromodulation of ET.

摘要

背景与目的

小脑-丘脑-皮质回路在特发性震颤(ET)中起着关键作用。然而,在该回路之外的多个脑区也有异常报道,导致 ET 病理生理学的特征描述不一致。在此,我们检测这些 ET 中的混合发现是否定位于一个共同的功能网络,以及该网络是否具有治疗相关性。

方法

我们进行了系统文献检索,以确定报告 ET 结构或代谢性脑异常的研究。然后,我们使用“坐标网络映射”,该方法利用静息状态 fMRI 数据的规范连接组(n=1000)来识别与所有研究发现都普遍相连的区域。为了评估这些区域是否与 ET 的治疗相关,我们将我们的网络与源自缓解 ET 的病变的治疗网络进行了比较。最后,我们调查了该 ET 症状网络的功能连接是否在与健康对照组相比的独立 ET 患者队列中异常。

结果

ET 的结构性和代谢性脑异常位于大脑中的异质区域。然而,这些坐标与一个共同的功能性大脑网络相连,包括小脑、丘脑、运动皮质、楔前叶、下顶叶和脑岛。小脑被确定为该网络的枢纽,因为它是唯一一个与超过 90%的研究发现都有功能连接且与另一个运动障碍对照数据集的连接性显著不同的脑区。该网络与源自改善 ET 的病变的治疗网络非常相似,关键区域在丘脑和小脑中对齐。此外,与健康对照组相比,ET 患者小脑网络枢纽与感觉运动皮质之间的正功能连接显著降低,且该网络内的连接性与震颤严重程度和认知功能相关。

讨论

这些发现表明,小脑是与 ET 结构性和代谢性异常普遍相连的网络的中央枢纽。该网络可能在改善 ET 的神经调节中具有治疗效用,有助于精化和提供新的治疗靶点。

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