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采用功能近红外光谱技术在中风患者电刺激小脑顶核时增加大脑皮层激活。

Increased cerebral cortex activation in stroke patients during electrical stimulation of cerebellar fastigial nucleus with functional near-infrared spectroscopy.

作者信息

Ma Haiyun, Zhai Yujia, Xu Zhen, Fan Shengnuo, Wu Xian, Xu Jing, Wu Shaoling, Ma Chao

机构信息

Department of Rehabilitation Medicine, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou, China.

出版信息

Front Neurosci. 2022 Aug 18;16:895237. doi: 10.3389/fnins.2022.895237. eCollection 2022.

Abstract

BACKGROUND

Electrical stimulation of the cerebellar fastigial nucleus (FNS) has been shown to protect animals against cerebral ischemic injury. However, the changes in cortical activation as a response to FNS have not been illustrated in humans.

OBJECTIVE

This study aims to detect functional connectivity changes in the brain of stroke patients, and investigate the cortical activation caused by FNS through measuring the oxygenated hemoglobin concentration (HBO) in the cerebral cortex of stroke patients and healthy controls (HCs).

METHODS

This study recruited 20 patients with stroke and 20 HCs with all the following factors matched: age, gender and BMI. The experiment session was made up of the pre-task baseline, FNS task period, and post-task baseline. FNS task period contains 5 blocks, each block encompassing the resting state (30 s) and the FNS state (30 s). HBO signals were acquired by functional near-infrared spectroscopy (fNIRS) from the Prefrontal Cortex (PFC), the Motor Cortex (MC) and the Occipital Cortex (OC) throughout the experiment. The Pearson correlation coefficient was used to calculate the resting-state functional connectivity strength between the two groups, and the general linear model (GLM) was used to calculate the activation of 39 fNIRS channels during FNS in stroke patients and HCs, respectively.

RESULTS

The coupling strength of stroke patients were significantly decreased in the following regions: right MC and left MC ( = 4.65, = 0.0007), right MC and left OC ( = 2.93, = 0.04), left MC and left OC ( = 2.81, = 0.04). In stroke patients, the changes in cerebral oxygenated hemoglobin (ΔHBO) among 12 channels (CH) in the bilateral PFC and bilateral MC regions were significantly increased during the FNS state (FDR corrected < 0.05) compared with the resting state. In HCs, only 1 channel was increased (FDR corrected < 0.05) in the left PFC during FNS.

CONCLUSION

By using the FNS and fNIRS techniques, the characteristics of functional connectivity were found to decrease in stroke patients. It was also noticed that FNS activates the PFC and MC regions. These findings may help to guide functional rehabilitation in stroke patients.

摘要

背景

小脑顶核电刺激(FNS)已被证明可保护动物免受脑缺血损伤。然而,FNS刺激后人类大脑皮质激活的变化尚未得到阐述。

目的

本研究旨在检测中风患者大脑中的功能连接变化,并通过测量中风患者和健康对照者(HCs)大脑皮质中的氧合血红蛋白浓度(HBO),研究FNS引起的皮质激活情况。

方法

本研究招募了20例中风患者和20例HCs,所有入选者在年龄、性别和体重指数方面均匹配。实验阶段由任务前基线、FNS任务期和任务后基线组成。FNS任务期包含5个组块,每个组块包括静息状态(30秒)和FNS状态(30秒)。在整个实验过程中,通过功能近红外光谱技术(fNIRS)从前额叶皮质(PFC)、运动皮质(MC)和枕叶皮质(OC)采集HBO信号。采用Pearson相关系数计算两组之间的静息态功能连接强度,采用一般线性模型(GLM)分别计算中风患者和HCs在FNS期间39个fNIRS通道的激活情况。

结果

中风患者在以下区域的耦合强度显著降低:右侧MC与左侧MC(t = 4.65,P = 0.0007)、右侧MC与左侧OC(t = 2.93,P = 0.04)、左侧MC与左侧OC(t = 2.81,P = 0.04)。在中风患者中,与静息状态相比,FNS状态下双侧PFC和双侧MC区域12个通道(CH)的脑氧合血红蛋白变化(ΔHBO)显著增加(FDR校正P < 0.05)。在HCs中,FNS期间左侧PFC仅1个通道增加(FDR校正P < 0.05)。

结论

通过使用FNS和fNIRS技术,发现中风患者的功能连接特征降低。还注意到FNS激活了PFC和MC区域。这些发现可能有助于指导中风患者的功能康复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e574/9433974/e00300896344/fnins-16-895237-g001.jpg

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