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健康个体与偏瘫个体行走过程中的不对称皮质激活:一项功能近红外光谱神经成像研究。

Asymmetric cortical activation in healthy and hemiplegic individuals during walking: A functional near-infrared spectroscopy neuroimaging study.

作者信息

He Xiaokuo, Lei Lei, Yu Guo, Lin Xin, Sun Qianqian, Chen Shanjia

机构信息

Department of Rehabilitative Medicine, Fifth Hospital of Xiamen, Xiamen, China.

Department of Rehabilitative Medicine, Xiangyang Central Hospital, Xiangyang, Hubei, China.

出版信息

Front Neurol. 2023 Jan 25;13:1044982. doi: 10.3389/fneur.2022.1044982. eCollection 2022.

Abstract

BACKGROUND

This study investigated the cortical activation mechanism underlying locomotor control during healthy and hemiplegic walking.

METHODS

A total of eight healthy individuals with right leg dominance (male patients, 75%; mean age, 40.06 ± 4.53 years) and six post-stroke patients with right hemiplegia (male patients, 86%; mean age, 44.41 ± 7.23 years; disease course, 5.21 ± 2.63 months) completed a walking task at a treadmill speed of 2 km/h and a functional electrical stimulation (FES)-assisted walking task, respectively. Functional near-infrared spectroscopy (fNIRS) was used to detect hemodynamic changes in neuronal activity in the bilateral sensorimotor cortex (SMC), supplementary motor area (SMA), and premotor cortex (PMC).

RESULTS

fNIRS cortical mapping showed more SMC-PMC-SMA locomotor network activation during hemiplegic walking than during healthy gait. Furthermore, more SMA and PMC activation in the affected hemisphere was observed during the FES-assisted hemiplegic walking task than during the non-FES-assisted task. The laterality index indicated asymmetric cortical activation during hemiplegic gait, with relatively greater activation in the unaffected (right) hemisphere during hemiplegic gait than during healthy walking. During hemiplegic walking, the SMC and SMA were predominantly activated in the unaffected hemisphere, whereas the PMC was predominantly activated in the affected hemisphere. No significant differences in the laterality index were noted between the other groups and regions ( > 0.05).

CONCLUSION

An important feature of asymmetric cortical activation was found in patients with post-stroke during the walking process, which was the recruitment of more SMC-SMA-PMC activation than in healthy individuals. Interestingly, there was no significant lateralized activation during hemiplegic walking with FES assistance, which would seem to indicate that FES may help hemiplegic walking recover the balance in cortical activation. These results, which are worth verifying through additional research, suggest that FES used as a potential therapeutic strategy may play an important role in motor recovery after stroke.

摘要

背景

本研究调查了健康行走和偏瘫行走过程中运动控制的皮质激活机制。

方法

共有8名右腿优势的健康个体(男性患者,75%;平均年龄,40.06±4.53岁)和6名右偏瘫中风后患者(男性患者,86%;平均年龄,44.41±7.23岁;病程,5.21±2.63个月)分别在跑步机速度为2 km/h的情况下完成行走任务以及功能性电刺激(FES)辅助行走任务。功能性近红外光谱(fNIRS)用于检测双侧感觉运动皮层(SMC)、辅助运动区(SMA)和运动前皮层(PMC)神经元活动的血流动力学变化。

结果

fNIRS皮质图谱显示,与健康步态相比,偏瘫行走过程中SMC - PMC - SMA运动网络的激活更多。此外,与非FES辅助任务相比,在FES辅助偏瘫行走任务期间,患侧半球的SMA和PMC激活更多。偏侧性指数表明偏瘫步态期间皮质激活不对称,与健康行走相比,偏瘫步态期间未受影响(右侧)半球的激活相对更大。在偏瘫行走过程中,SMC和SMA主要在未受影响的半球被激活,而PMC主要在患侧半球被激活。其他组和区域之间的偏侧性指数无显著差异(>0.05)。

结论

在中风后患者的行走过程中发现了不对称皮质激活的一个重要特征,即与健康个体相比,更多的SMC - SMA - PMC被激活。有趣的是,在FES辅助的偏瘫行走过程中没有明显的偏侧化激活,这似乎表明FES可能有助于偏瘫行走恢复皮质激活的平衡。这些结果值得通过进一步研究进行验证,表明作为一种潜在治疗策略的FES可能在中风后的运动恢复中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e66/9905619/1f9df9985094/fneur-13-1044982-g0001.jpg

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