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上肢截肢破坏的是半球间的结构连接而非功能连接。

Upper-Limb Amputation Disrupts the Interhemispheric Structural Rather than Functional Connectivity.

作者信息

Zhang Kexu, Wu Chaowei, Lyu Yuanyuan, Xiang Jianbo, Pan Changjie, Guo Xiaoli, Tong Shanbao

机构信息

School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, China.

Department of Radiology, The Second People's Hospital of Changzhou Affiliated to Nanjing Medical University, Changzhou, China.

出版信息

Brain Connect. 2023 Apr;13(3):133-142. doi: 10.1089/brain.2022.0020. Epub 2022 Sep 29.

Abstract

Recent neuroimaging studies on upper-limb amputation have revealed the reorganization of bilateral sensorimotor cortex after sensory deprivation, underpinning the assumption of changes in the interhemispheric connections. In the present study, using functional magnetic resonance imaging (fMRI) and diffusion tensor imaging (DTI), we aim to explore the alterations in the interhemispheric functional and structural connectivity after upper-limb amputation. Twenty-two upper-limb amputees and 15 age- and sex-matched healthy controls were recruited for MRI scanning. The amputees were further divided into subgroups by amputation side and residual limb pain (RLP). DTI metrics of corpus callosum (CC) subregions and resting-state functional connectivity (FC) between the bilateral sensorimotor cortices were measured for each participant. Linear mixed models were carried out to investigate the relationship of interhemispheric connectivity with the amputation, amputation side, and RLP. Compared with healthy controls, upper-limb amputees showed lower axial diffusivity (AD) in CC subregions II and III. Subgroup analyses showed that the dominant hand amputation induced significant microstructural changes in CC subregion III. In addition, only amputees with RLP showed decreased fractional anisotropy and AD in CC, which was also correlated with the intensity of RLP. No significant changes in interhemispheric FC were found after upper-limb amputation. The present study demonstrated that the interhemispheric structural connectivity rather than FC degenerated after upper-limb amputation, and the degeneration of interhemispheric structural connectivity was shown to be relevant to the amputation side and the intensity of RLP. Impact statement Neuroimaging studies have revealed the functional reorganization of bilateral sensorimotor cortex after amputation, with expanded activation from the intact hemisphere to the deprived hemisphere. Our findings indicated a degeneration of interhemispheric white matter connections in upper-limb amputees, unveiling the underlying structural basis for bilateral functional reorganization after amputation.

摘要

近期关于上肢截肢的神经影像学研究揭示了感觉剥夺后双侧感觉运动皮层的重组,这支持了半球间连接发生变化的假设。在本研究中,我们使用功能磁共振成像(fMRI)和扩散张量成像(DTI),旨在探究上肢截肢后半球间功能和结构连接的改变。招募了22名上肢截肢者和15名年龄及性别匹配的健康对照者进行MRI扫描。截肢者根据截肢侧和残肢疼痛(RLP)进一步分为亚组。测量了每位参与者胼胝体(CC)亚区域的DTI指标以及双侧感觉运动皮层之间的静息态功能连接(FC)。进行线性混合模型分析以研究半球间连接与截肢、截肢侧和RLP之间的关系。与健康对照者相比,上肢截肢者在CC亚区域II和III中表现出较低的轴向扩散率(AD)。亚组分析表明,优势手截肢在CC亚区域III中引起了显著的微观结构变化。此外,只有伴有RLP的截肢者在CC中表现出分数各向异性和AD降低,这也与RLP的强度相关。上肢截肢后未发现半球间FC有显著变化。本研究表明,上肢截肢后半球间结构连接而非FC发生退化,并且半球间结构连接的退化与截肢侧和RLP的强度有关。影响声明神经影像学研究揭示了截肢后双侧感觉运动皮层的功能重组,从完整半球到剥夺半球的激活范围扩大。我们的研究结果表明上肢截肢者半球间白质连接退化,揭示了截肢后双侧功能重组的潜在结构基础。

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