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自发皮质活动改变可预测脑瘫患者的疼痛感知。

Altered spontaneous cortical activity predicts pain perception in individuals with cerebral palsy.

作者信息

Trevarrow Michael P, Reelfs Anna, Ott Lauren R, Penhale Samantha H, Lew Brandon J, Goeller Jessica, Wilson Tony W, Kurz Max J

机构信息

Institute for Human Neuroscience, Boys Town National Research Hospital, Omaha, NE 68010, USA.

Department of Anesthesiology, University of Nebraska Medical Center, Omaha, NE 68198, USA.

出版信息

Brain Commun. 2022 Apr 4;4(2):fcac087. doi: 10.1093/braincomms/fcac087. eCollection 2022.

Abstract

Cerebral palsy is the most common paediatric neurological disorder and results in extensive impairment to the sensorimotor system. However, these individuals also experience increased pain perception, resulting in decreased quality of life. In the present study, we utilized magnetoencephalographic brain imaging to examine whether alterations in spontaneous neural activity predict the level of pain experienced in a cohort of 38 individuals with spastic diplegic cerebral palsy and 67 neurotypical controls. Participants completed 5 min of an eyes closed resting-state paradigm while undergoing a magnetoencephalography recording. The magnetoencephalographic data were then source imaged, and the power within the delta (2-4 Hz), theta (5-7 Hz), alpha (8-12 Hz), beta (15-29 Hz), low gamma (30-59 Hz) and high gamma (60-90 Hz) frequency bands were computed. The resulting power spectral density maps were analysed vertex-wise to identify differences in spontaneous activity between groups. Our findings indicated that spontaneous cortical activity was altered in the participants with cerebral palsy in the delta, alpha, beta, low gamma and high gamma bands across the occipital, frontal and secondary somatosensory cortical areas (all  < 0.05). Furthermore, we also found that the altered beta band spontaneous activity in the secondary somatosensory cortices predicted heightened pain perception in the individuals with cerebral palsy ( = 0.039). Overall, these results demonstrate that spontaneous cortical activity within individuals with cerebral palsy is altered in comparison to their neurotypical peers and may predict increased pain perception in this patient population. Potentially, changes in spontaneous resting-state activity may be utilized to measure the effectiveness of current treatment approaches that are directed at reducing the pain experienced by individuals with cerebral palsy.

摘要

脑瘫是最常见的儿科神经障碍,会导致感觉运动系统广泛受损。然而,这些个体也会出现疼痛感知增强的情况,从而导致生活质量下降。在本研究中,我们利用脑磁图脑成像技术,来检验自发神经活动的改变是否能预测38名痉挛性双侧瘫脑瘫患者和67名神经典型对照者的疼痛程度。参与者在进行脑磁图记录时,完成了5分钟的闭眼静息状态范式。然后对脑磁图数据进行源成像,并计算出δ(2 - 4赫兹)、θ(5 - 7赫兹)、α(8 - 12赫兹)、β(15 - 29赫兹)、低γ(30 - 59赫兹)和高γ(60 - 90赫兹)频段内的功率。对所得的功率谱密度图进行逐顶点分析,以确定两组之间自发活动的差异。我们的研究结果表明,脑瘫患者在枕叶、额叶和次级体感皮层区域的δ、α、β、低γ和高γ频段的自发皮层活动发生了改变(所有p值均<0.05)。此外,我们还发现,次级体感皮层中改变的β频段自发活动可预测脑瘫患者的疼痛感知增强(p = 0.039)。总体而言,这些结果表明,与神经典型同龄人相比,脑瘫患者的自发皮层活动发生了改变,并且可能预测该患者群体疼痛感知增强。潜在地,自发静息状态活动的变化可用于衡量当前旨在减轻脑瘫患者疼痛的治疗方法的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e889/9014448/a32295ba24f9/fcac087ga1.jpg

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