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首页> 外文期刊>Brain: A journal of neurology >Network-level connectivity is a critical feature distinguishing dystonic tremor and essential tremor
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Network-level connectivity is a critical feature distinguishing dystonic tremor and essential tremor

机译:网络级连接是一个关键的特征,区分透射震颤和基本震颤

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摘要

Dystonia is a movement disorder characterized by involuntary muscle co-contractions that give rise to disabling movements and postures. A recent expert consensus labelled the incidence of tremor as a core feature of dystonia that can affect body regions both symptomatic and asymptomatic to dystonic features. We are only beginning to understand the neural network-level signatures that relate to clinical features of dystonic tremor. At the same time, clinical features of dystonic tremor can resemble that of essential tremor and present a diagnostic confound for clinicians. Here, we examined network-level functional activation and connectivity in patients with dystonic tremor and essential tremor. The dystonic tremor group included primarily cervical dystonia patients with dystonic head tremor and the majority had additional upper-limb tremor. The experimental paradigm included a precision grip-force task wherein online visual feedback related to force was manipulated across high and low spatial feedback levels. Prior work using this paradigm in essential tremor patients produced exacerbation of grip-force tremor and associated changes in functional activation. As such, we directly compared the effect of visual feedback on grip-force tremor and associated functional network-level activation and connectivity between dystonic tremor and essential tremor patient cohorts to better understand disease-specific mechanisms. Increased visual feedback similarly exacerbated force tremor during the grip-force task in dystonic tremor and essential tremor cohorts. Patients with dystonic tremor and essential tremor were characterized by distinct functional activation abnormalities in cortical regions but not in the cerebellum. We examined seed-based functional connectivity from the sensorimotor cortex, globus pallidus internus, ventral intermediate thalamic nucleus, and dentate nucleus, and observed abnormal functional connectivity networks in dystonic tremor and essential tremor groups relative to controls. However, the effects were far more widespread in the dystonic tremor group as changes in functional connectivity were revealed across cortical, subcortical, and cerebellar regions independent of the seed location. A unique pattern for dystonic tremor included widespread reductions in functional connectivity compared to essential tremor within higher-level cortical, basal ganglia, and cerebellar regions. Importantly, a receiver operating characteristic determined that functional connectivity z-scores were able to classify dystonic tremor and essential tremor with 89% area under the curve, whereas combining functional connectivity with force tremor yielded 94%. These findings point to network-level connectivity as an important feature that differs substantially between dystonic tremor and essential tremor and should be further explored in implementing appropriate diagnostic and therapeutic strategies.
机译:Dystonia是一种运动障碍,其特征在于不自愿的肌肉共同收缩,从而产生致残运动和姿势。最近的一项专家共识标记了震颤的发病率作为肌瘤的核心特征,可以影响症状和无症状的身体区域对透明特征。我们只开始了解与透射震颤的临床特征有关的神经网络级签名。与此同时,逆震震颤的临床特征可以类似于基本震颤,并为临床医生展示诊断混淆。在这里,我们检查了逆震震颤和必要震颤患者的网络级功能激活和连通性。逆震震颤组主要包括椎间型颞骨头震颤患者,大多数有额外的上肢震颤。实验范式包括精确的抓地力任务,其中与力相关的在线视觉反馈在高低的空间反馈水平上操纵。在必要的震颤患者中使用该范例的前后工作产生了加剧的抓地力震颤和功能活化的相关变化。因此,我们直接比较了视觉反馈对触发力震颤的影响和相关的功能网络级激活和透射震颤患者群体之间的连接,以更好地了解疾病特定机制。在透火颤震颤和基本震颤队列中的抓地力任务中,增加视觉反馈的同样激发力震颤。患病患者令人发电震颤和基本震颤的特征在于皮质地区的不同功能活化异常,但不在小脑中。我们检查了来自SensorImotor皮层,Globus pallidus Internus,腹侧中间粒细胞核和牙齿核心的种子的功能连通性,并且观察到相对于对照的透射震颤和基本震颤组中的异常功能连接网络。然而,由于在皮质,皮质点和小脑区域上显示功能性连通性的变化,因此效果更广泛地普及逆风震颤组。与高级皮质,基底神经节和小脑区域内的基本震颤相比,透射震颤的独特模式包括相比之下的功能连通性。重要的是,确定功能连接Z分数的接收器操作特性能够将透射震颤和基本震颤分类为曲线下的89%面积,而与力震颤结合功能连接产生94%。这些发现指向网络级连接,作为透射震颤和基本震颤之间大大不同的重要特征,并应进一步探索实施适当的诊断和治疗策略。

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