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VBM Reveals Brain Volume Differences between Parkinson’s Disease and Essential Tremor Patients

机译:VBM揭示了帕金森氏病和原发性震颤患者之间的脑容量差异

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摘要

Symptoms of essential tremor (ET) are similar to those of Parkinson’s disease (PD) during their initial stages. Presently, there are few stable biomarkers available on a neuroanatomical level for distinguishing between these two diseases. However, few investigations have directly compared the changes in brain volume and assessed the compensatory effects of a change in the parts of the brain associated with PD and with ET. To determine the compensatory and/or degenerative anatomical changes in the brains of PD and ET patients, the present study tested, via two voxel-based morphometry (VBM) approaches (Basic vs. DARTEL VBM processing), the anatomical brain images of 10 PD and 10 ET patients, as well as of 13 age-matched normal controls, obtained through a 3T magnetic resonance scanner. These findings indicate that PD and ET caused specific patterns of brain volume alterations in the brains examined. In addition, our observations also revealed compensatory effects, or self-reorganization, occurring in the thalamus and the middle temporal gyrus in the PD and ET patients, due perhaps in part to the enhanced thalamocortical sensorimotor interaction and the head-eye position readjustment, respectively, in these PD and ET patients. Such a distinction may lend itself to use as a biomarker for differentiating between these two diseases.
机译:在初期,原发性震颤(ET)的症状与帕金森氏病(PD)的症状相似。当前,在神经解剖学水平上几乎没有可用于区分这两种疾病的稳定生物标志物。但是,很少有研究能够直接比较大脑容量的变化,并评估与PD和ET相关的大脑部分变化的补偿作用。为了确定PD和ET患者大脑的代偿性和/或退化性解剖变化,本研究通过两种基于体素的形态学(VBM)方法(基本vs.DARTEL VBM处理)测试了10个PD的解剖学大脑图像通过3T磁共振扫描仪获得的10例ET患者以及13例年龄匹配的正常对照。这些发现表明,PD和ET引起了所检查的大脑中脑容量变化的特定模式。此外,我们的观察还揭示了PD和ET患者的丘脑和颞中回发生代偿效应或自我重组,可能部分是由于丘脑皮层感觉运动相互作用增强和头眼位置重新调整引起的在这些PD和ET患者中。这样的区分可以使其自身用作区分这两种疾病的生物标记。

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