Children With Bilateral Cerebral Palsy Exhibit Bimanual Asymmetric Motor Deficits and EEG Evidence of Dominant Sensorimotor Hemisphere Overreliance During Reaching.

IF 3.7 2区 医学 Q1 CLINICAL NEUROLOGY Neurorehabilitation and Neural Repair Pub Date : 2023-09-01 Epub Date: 2023-08-29 DOI:10.1177/15459683231195044
Connor Phillips, Julia Kline, Christopher J Stanley, Thomas C Bulea, Diane L Damiano
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Abstract

Background: Reaching is a fundamental motor skill often impaired in cerebral palsy (CP). Studies on manual function, intervention, and underlying brain mechanisms largely focus on unilateral CP. This first electroencephalography (EEG) evaluation of reaching exclusively in bilateral CP aims to quantify and relate brain activation patterns to bimanual deficits in this population.

Methods: A total of 15 children with bilateral CP (13.4 ± 2.9 years) and 13 with typical development (TD: 14.3 ± 2.4 years) performed 45 reaches per hand while recording motion capture and EEG data. The Box and Blocks test was administered bilaterally. Cortical sources were identified using independent component analysis and clustered using k-means. Alpha (8-12 Hz) and beta (13-30 Hz) band event-related desynchronization (ERD) values were compared across groups and hands within clusters, between dominant and non-dominant sensorimotor clusters, and related to reach kinematics and the Box and Block test.

Results: The group with CP demonstrated bimanual motor deficits with slower reaches, lower Box and Blocks scores, and stronger hand preference than in TD. Beta ERD, representing motor execution, was notably higher in the dominant sensorimotor cluster in CP compared to TD. Both groups demonstrated more contralateral than ipsilateral activity in both hands and clusters, with CP showing a less lateralized (more bilateral) alpha response. Higher brain activation was generally related to better function.

Conclusion: Bimanual deficits in bilateral CP and related EEG differences warrant more clinical and research attention particularly earlier in life when greater potential for neural and functional recovery exists.

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双侧脑瘫儿童在伸手过程中表现出双手不对称运动缺陷和显性感觉运动半球过度依赖的脑电图证据。
背景:伸手是脑瘫患者的一项基本运动技能。对手动功能、干预和潜在大脑机制的研究主要集中在单侧CP上。这是首次对双侧CP进行脑电图(EEG)评估,旨在量化该人群的大脑激活模式,并将其与双手缺陷联系起来。方法:共有15名儿童患有双侧CP(13.4 ± 2.9 年)和具有典型发育的13个(TD:14.3 ± 2.4 年)在记录运动捕捉和EEG数据的同时每只手进行45次触达。Box和Blocks测试是双侧进行的。使用独立成分分析确定皮质来源,并使用k均值进行聚类。Alpha(8-12 Hz)和β(13-30 Hz)波段事件相关去同步(ERD)值在各组和组内的手之间、显性和非显性感觉运动簇之间进行比较,并与到达运动学和Box and Block测试相关。结果:与TD组相比,CP组表现出双手运动缺陷,活动范围较慢,Box和Blocks评分较低,手偏好更强。与TD组比较,CP组的优势感觉运动簇中代表运动执行的βERD明显更高。两组的双手和簇中对侧活动都比同侧活动更多,CP表现出较少的侧化(更多的双侧)α反应。大脑激活程度越高通常与功能越好有关。结论:双侧CP的双手缺陷和相关的脑电图差异值得更多的临床和研究关注,尤其是在生命早期,当存在更大的神经和功能恢复潜力时。
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来源期刊
CiteScore
8.30
自引率
4.80%
发文量
52
审稿时长
6-12 weeks
期刊介绍: Neurorehabilitation & Neural Repair (NNR) offers innovative and reliable reports relevant to functional recovery from neural injury and long term neurologic care. The journal''s unique focus is evidence-based basic and clinical practice and research. NNR deals with the management and fundamental mechanisms of functional recovery from conditions such as stroke, multiple sclerosis, Alzheimer''s disease, brain and spinal cord injuries, and peripheral nerve injuries.
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