Department of Radiology, The First Affiliated Hospital, Nanchang University, 17 Yongwaizheng Street, Nanchang, Jiangxi, 330006, People's Republic of China.
Neuroradiology Laboratory, Jiangxi Province Medical Imaging Research Institute, Nanchang, 330006, People's Republic of China.
Sci Rep. 2022 Apr 15;12(1):6324. doi: 10.1038/s41598-022-10238-4.
Neuroimaging studies have suggested a link between the intensity of chronic low back pain intensity and structural and functional brain alterations. However, chronic pain results from the coordination and dynamics among several brain networks that comprise the dynamic pain connectome. Here, we use resting-state functional magnetic resonance imaging and measures of static (sFC) and dynamic functional connectivity (dFC) variability in the typical (0.01-0.1 Hz) and five specific (slow-6 to slow-2) frequency bands to test hypotheses regarding disruption in this variability in low back-related leg pain (LBLP) patients who experience chronic pain and numbness. Twenty-four LBLP patients and 23 healthy controls completed clinical assessments, and partial correlational analyses between altered sFC and dFC variability and clinical measures were conducted. We found a lower within-network sFC in the ascending nociceptive pathway (Asc) and a lower cross-network sFC between nodes of the salience network and the Asc in the typical frequency band. In the slow-5 frequency band, a lower within-network sFC was found in the Asc. Abnormal cross-network sFC was found between nodes of the salience network-Asc (slow-5 and slow-6) and the default mode network-Asc (slow-4 and slow-6). Furthermore, cross-network abnormalities in the typical and certain specific frequency bands were linked to clinical assessments. These findings indicate that frequency-related within- and cross-network communication among the nodes in the dynamic pain connectome is dysfunctional in LBLP patients and that selecting specific frequencies may be potentially useful for detecting LBLP-related brain activity.
神经影像学研究表明,慢性低背痛强度与结构和功能脑改变之间存在关联。然而,慢性疼痛是由几个脑网络的协调和动态产生的,这些脑网络构成了动态疼痛连接组。在这里,我们使用静息态功能磁共振成像以及典型(0.01-0.1 Hz)和五个特定(慢 6 到慢 2)频率带的静态(sFC)和动态功能连接(dFC)变异性的测量值,来测试与经历慢性疼痛和麻木的低背相关腿部疼痛(LBLP)患者中这种变异性中断相关的假设。24 名 LBLP 患者和 23 名健康对照者完成了临床评估,并进行了改变的 sFC 和 dFC 变异性与临床测量之间的部分相关分析。我们发现,在典型频率带中,上行伤害感受通路(Asc)中的网络内 sFC 较低,突显网络节点与 Asc 之间的网络间 sFC 也较低。在慢 5 频带中,Asc 中的网络内 sFC 较低。在突显网络-Asc(慢 5 和慢 6)与默认模式网络-Asc(慢 4 和慢 6)之间,发现了异常的跨网络 sFC。此外,典型和某些特定频率带中的跨网络异常与临床评估相关。这些发现表明,动态疼痛连接组中节点之间的与频率相关的网络内和跨网络通信在 LBLP 患者中存在功能障碍,并且选择特定频率可能对检测与 LBLP 相关的大脑活动有用。