Division of Basic Biomedical Sciences, Sanford School of Medicine, University of South Dakota, Vermillion, SD, USA.
Department of Neurology, University of Iowa, Iowa City, IA, USA.
Neurorehabil Neural Repair. 2022 Nov;36(10-11):715-725. doi: 10.1177/15459683221129282. Epub 2022 Oct 8.
Although many studies have shown abnormalities in brain structure and function in people with Parkinson's disease (PD), we still have a poor understanding of how brain structure and function relates to freezing of gait (FOG). Graph theory analysis of electroencephalography (EEG) can explore the relationship between brain network structure and gait function in PD.
Scalp EEG signals of 83 PD (42 PDFOG+ and 41 PDFOG-) and 42 healthy controls were recorded in an eyes-opened resting-state. The phase lag index was calculated for each electrode pair in different frequency bands, but we focused our analysis on the theta-band and performed global analyses along with nodal analyses over a midfrontal channel. The resulting connectivity matrices were converted to weighted graphs, whose structure was characterized using strength and clustering coefficient measurements, our main outcomes.
We observed increased global strength and increased global clustering coefficient in people with PD compared to healthy controls in the theta-band, though no differences were observed in midfrontal nodal strength and midfrontal clustering coefficient. Furthermore, no differences in global nor midfrontal nodal strength nor global clustering coefficients were observed between PDFOG+ and PDFOG- in the theta-band. However, PDFOG+ exhibited a significantly diminished midfrontal nodal clustering coefficient in the theta-band compared to PDFOG-. Furthermore, FOG scores were negatively correlated with midfrontal nodal clustering coefficient in the theta-band.
The present findings support the involvement of midfrontal theta oscillations in FOG symptoms in PD and the sensitivity of graph metrics to characterize functional networks in PDFOG+.
尽管许多研究表明帕金森病(PD)患者的大脑结构和功能存在异常,但我们仍然不了解大脑结构和功能与步态冻结(FOG)之间的关系。脑电图(EEG)的图论分析可以探索 PD 患者大脑网络结构与步态功能之间的关系。
记录 83 名 PD 患者(42 名 PDFOG+和 41 名 PDFOG-)和 42 名健康对照者在睁眼静息状态下的头皮 EEG 信号。在不同频带中计算每个电极对的相位滞后指数,但我们的分析重点是 theta 频带,并对中额通道进行全局分析和节点分析。将得到的连接矩阵转换为加权图,使用强度和聚类系数测量来描述其结构,这是我们的主要结果。
与健康对照组相比,PD 患者在 theta 频带中表现出全局强度增加和全局聚类系数增加,而中额节点强度和中额聚类系数没有差异。此外,在 theta 频带中,PDFOG+和 PDFOG-之间的全局和中额节点强度以及全局聚类系数均无差异。然而,与 PDFOG-相比,PDFOG+在 theta 频带中表现出明显降低的中额节点聚类系数。此外,FOG 评分与 theta 频带中的中额节点聚类系数呈负相关。
本研究结果支持中额 theta 振荡参与 PD 的 FOG 症状,以及图论指标对 PDFOG+中功能网络进行特征描述的敏感性。