首页> 外文会议>Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Altered Cortical and Postural Response to Balance Perturbation in Traumatic Brain Injury – An EEG Pilot Study*
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Altered Cortical and Postural Response to Balance Perturbation in Traumatic Brain Injury – An EEG Pilot Study*

机译:皮层和体位反应对颅脑外伤平衡扰动的改变–脑电图试验研究 *

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30-60% of traumatic brain injury (TBI) patients suffer from long-term balance deficit. Even though motor preparation and execution are altered and slowed in TBI, their relative contribution and importance to posture instability remain poorly understood. This study investigates the impaired cortical dynamics and neuromuscular response in TBI in response to balance perturbation and its relation to balance deficit. 12 TBI and 6 healthy control (HC) participants took the Berg Balance Scale (BBS) test and participated in a balance perturbation task where they were subjected to random anterior/posterior translation, while brain (EEG), muscle (EMG) activities, and center of pressure (COP) were continuously recorded. Using independent component analysis (ICA), the component most responsible for the N1 component of the perturbation evoked potential (PEP) was selected and its amplitude and latency were extracted. Balance task performance was measured by computing the COP displacement during the task. TBI had a significantly lower BBS, larger COP displacement and lower N1 amplitude compared to the HC group. No group differences was found for N1 latency and muscle activity onset delay to the perturbation. BBS was correlated with the COP displacement and N1 amplitude, and COP displacement was correlated with N1 latency. TBI balance deficit may be associated with more impaired than delayed cortical response to balance perturbation.
机译:30-60%的创伤性脑损伤(TBI)患者患有长期平衡不足。即使在TBI中改变了运动准备和执行并减慢了运动速度,但对姿势不稳定性的相对贡献和重要性仍然知之甚少。这项研究调查了TBI中皮层动力学和神经肌肉反应受损,以应对平衡扰动及其与平衡不足的关系。 12名TBI和6名健康对照(HC)参与者参加了Berg平衡量表(BBS)测试,并参加了一项平衡微扰任务,在此过程中,他们接受随机的前后翻译,而大脑(EEG),肌肉(EMG)活动和连续记录压力中心(COP)。使用独立成分分析(ICA),选择最负责扰动诱发电位(PEP)的N1成分的成分,并提取其幅度和潜伏期。通过计算任务期间的COP位移来衡量平衡任务的性能。与HC组相比,TBI的BBS明显更低,COP位移更大,N1振幅更低。没有发现N1潜伏期和肌肉活动开始到摄动延迟的组差异。 BBS与COP位移和N1振幅相关,而COP位移与N1潜伏期相关。 TBI平衡不足可能比皮层对平衡扰动的反应迟发而受损更大。

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