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实验性创伤性脑损伤中半球间功能连接的静息态功能磁共振成像

Resting-State Functional Magnetic Resonance Imaging of Interhemispheric Functional Connectivity in Experimental Traumatic Brain Injury.

作者信息

Huang Shiliang, Shen Qiang, Watts Lora Talley, Long Justin A, O'Boyle Michael, Nguyen Tony, Muir Eric, Duong Timothy Q

机构信息

Research Imaging Institute, UT Health San Antonio, San Antonio, Texas, USA.

Department of Radiology, UT Health San Antonio, San Antonio, Texas, USA.

出版信息

Neurotrauma Rep. 2021 Nov 29;2(1):526-540. doi: 10.1089/neur.2021.0023. eCollection 2021.

Abstract

Although resting-state functional magnetic resonance imaging (rsfMRI) has the potential to offer insights into changes in functional connectivity networks after traumatic brain injury (TBI), there are few studies that examine the effects of moderate TBI for monitoring functional recovery in experimental TBI, and thus the neural correlates of brain recovery from moderate TBI remain incompletely understood. Non-invasive rsfMRI was used to longitudinally investigate changes in interhemispheric functional connectivity (IFC) after a moderate TBI to the unilateral sensorimotor cortex in rats ( = 9) up to 14 days. Independent component analysis of the rsfMRI data was performed. Correlations of rsfMRI sensorimotor networks were made with changes in behavioral scores, lesion volume, and T- and diffusion-weighted images across time. TBI animals showed less localized rsfMRI patterns in the sensorimotor network compared to sham ( = 6) and normal ( = 5) animals. rsfMRI clusters in the sensorimotor network showed less bilateral symmetry compared to sham and normal animals, indicative of IFC disruption. With time after injury, many of the rsfMRI patterns in the sensorimotor network showed more bilateral symmetry, indicative of IFC recovery. The disrupted IFC in the sensorimotor and subsequent partial recovery showed a positive correlation with changes in behavioral scores. Overall, rsfMRI detected widespread disruption and subsequent recovery of IFC within the sensorimotor networks post-TBI, which correlated with behavioral changes. Therefore, rsfMRI offers the means to probe functional brain reorganization and thus has the potential to serve as an imaging marker to longitudinally stage TBI and monitor for novel treatments.

摘要

尽管静息态功能磁共振成像(rsfMRI)有潜力深入了解创伤性脑损伤(TBI)后功能连接网络的变化,但很少有研究在实验性TBI中考察中度TBI对监测功能恢复的影响,因此中度TBI后脑恢复的神经相关性仍未完全明了。采用非侵入性rsfMRI对9只大鼠单侧感觉运动皮层中度TBI后长达14天的半球间功能连接(IFC)变化进行纵向研究。对rsfMRI数据进行独立成分分析。将rsfMRI感觉运动网络与行为评分、损伤体积以及不同时间的T加权和扩散加权图像的变化进行相关性分析。与假手术组(n = 6)和正常组(n = 5)动物相比,TBI动物感觉运动网络中的rsfMRI模式定位性较差。与假手术组和正常组动物相比,感觉运动网络中的rsfMRI簇的双侧对称性较低,表明IFC中断。随着损伤后时间的推移,感觉运动网络中的许多rsfMRI模式表现出更多的双侧对称性,表明IFC恢复。感觉运动网络中IFC的中断及随后的部分恢复与行为评分的变化呈正相关。总体而言,rsfMRI检测到TBI后感觉运动网络内IFC广泛中断及随后的恢复,这与行为变化相关。因此,rsfMRI提供了探索脑功能重组的方法,因而有潜力作为一种成像标志物对TBI进行纵向分期并监测新的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3507/8655818/72bcc5f79a0d/neur.2021.0023_figure1.jpg

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