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L-DOPA changes spontaneous low-frequency BOLD signal oscillations in Parkinsons disease: a resting state fMRI study

机译:L-DOPA改变帕金森氏病的自发性低频BOLD信号振荡:静止状态fMRI研究

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摘要

Analysis of the amplitude of low frequency BOLD signal fluctuations (ALFF) in the resting state has recently been used to study the dynamics of intrinsic neural activity. Several studies have also suggested its potential as a biomarker for neuropsychiatric disease. In the current study, we quantified ALFF to determine changes in intrinsic neural oscillations in patients with Parkinson's disease (PD) on and off L-DOPA. Twenty-four PD patients and 24 healthy age-matched controls participated in the study. PD patients underwent two resting state fMRI sessions, either ON a controlled dose of L-DOPA or following a placebo pill (OFF). Control participants underwent one test session. We found that there was increased amplitude of low frequency BOLD signal oscillations for PD patients OFF L-DOPA in the primary and secondary motor areas, and in the middle and medial prefrontal cortices. L-DOPA significantly reduced the amplitude of low frequency oscillations within these regions. The degree of ALFF in the premotor cortex predicted patients' motor performance as measured by the Grooved Pegboard task, such that greater ALFF was associated with poorer performance. These results are in line with the pathophysiology of PD, which shows changes in neural oscillations. Thus, frequency domain analyses of resting state BOLD fMRI signals may provide a useful means to study the pathophysiology of PD and the physiology of the brain's dopaminergic pathways.
机译:最近,已经对静止状态下低频BOLD信号波动(ALFF)的幅度进行了分析,以研究内在神经活动的动力学。几项研究还表明其作为神经精神疾病的生物标志物的潜力。在当前的研究中,我们对ALFF进行了定量,以确定L-DOPA上和下的帕金森氏病(PD)患者内在神经振荡的变化。 24名PD患者和24名年龄匹配的健康对照者参加了研究。 PD患者在控制剂量的L-DOPA或安慰剂药(OFF)后经历了两次静息状态fMRI疗程。对照参与者进行了一次测试。我们发现在主要和次要运动区域以及中额前内侧和内侧额叶皮质中,PD患者OFF L-DOPA的低频BOLD信号振荡幅度增加。 L-DOPA大大降低了这些区域内低频振荡的幅度。运动前皮层中的ALFF程度可预测患者的运动表现,如Grooved Pegboard任务所测量的,因此,更大的ALFF与较差的表现有关。这些结果与PD的病理生理学一致,PD显示了神经振荡的变化。因此,静息状态BOLD fMRI信号的频域分析可能为研究PD的病理生理学和大脑多巴胺能途径的生理学提供有用的手段。

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