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不完全性脊髓损伤后伴有神经病理性疼痛个体的岛叶亚区重组。

The Reorganization of Insular Subregions in Individuals with Below-Level Neuropathic Pain following Incomplete Spinal Cord Injury.

机构信息

Department of Radiology, Xuanwu Hospital, Capital Medical University, 100053, China.

Beijing Key Laboratory of Magnetic Resonance Imaging and Brain Informatics, 100053, China.

出版信息

Neural Plast. 2020 Mar 10;2020:2796571. doi: 10.1155/2020/2796571. eCollection 2020.

Abstract

OBJECTIVE

To investigate the reorganization of insular subregions in individuals suffering from neuropathic pain (NP) after incomplete spinal cord injury (ISCI) and further to disclose the underlying mechanism of NP.

METHOD

The 3D high-resolution T1-weighted structural images and resting-state functional magnetic resonance imaging (rs-fMRI) of all individuals were obtained using a 3.0 Tesla MRI system. A comparative analysis of structure and function connectivity (FC) with insular subareas as seeds in 10 ISCI individuals with below-level NP (ISCI-P), 11 ISCI individuals without NP (ISCI-N), and 25 healthy controls (HCs) was conducted. Associations between the structural and functional alteration of insula subregions and visual analog scale (VAS) scores were analyzed using the Pearson correlation in SPSS 20.

RESULTS

Compared with ISCI-N patients, when the left posterior insula as the seed, ISCI-P showed increased FC in right cerebellum VIIb and cerebellum VIII, Brodmann 37 (BA 37). When the left ventral anterior insula as the seed, ISCI-P indicated enhanced FC in right BA18 compared with ISCI-N patients. These increased FCs positively correlated with VAS scores. Relative to HCs, ISCI-P presented increased FC in the left hippocampus when the left dorsal anterior insula was determined as the seed. There was no statistical difference in the volume of insula subregions among the three groups.

CONCLUSION

Our study indicated that distinctive patterns of FC in each subregion of insula suggest that the insular subareas participate in the NP processing through different FC following ISCI. Further, insula subregions could serve as a therapeutic target for NP following ISCI.

摘要

目的

研究不完全性脊髓损伤(ISCI)后神经性疼痛(NP)患者岛叶亚区的重组织,并进一步揭示 NP 的潜在机制。

方法

使用 3.0T MRI 系统获取所有个体的三维高分辨率 T1 加权结构图像和静息态功能磁共振成像(rs-fMRI)。对 10 例 ISCI 伴 NP(ISCI-P)、11 例 ISCI 无 NP(ISCI-N)和 25 例健康对照(HC)个体的岛叶亚区的结构和功能连接(FC)进行比较分析。采用 SPSS 20 中的 Pearson 相关性分析,分析岛叶亚区结构和功能改变与视觉模拟评分(VAS)之间的相关性。

结果

与 ISCI-N 患者相比,当左侧后岛叶作为种子时,ISCI-P 显示右侧小脑 VIIb 和小脑 VIII、Brodmann 37(BA 37)的 FC 增加。当左侧前腹侧岛叶作为种子时,ISCI-P 显示与 ISCI-N 患者相比,右侧 BA18 的 FC 增强。这些增加的 FC 与 VAS 评分呈正相关。与 HCs 相比,当左侧前背侧岛叶为种子时,ISCI-P 显示左侧海马的 FC 增加。三组之间岛叶亚区的体积无统计学差异。

结论

本研究表明,岛叶各亚区的 FC 存在明显差异,提示岛叶亚区通过不同的 FC 参与 ISCI 后的 NP 处理。此外,岛叶亚区可以作为 ISCI 后 NP 的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/827d/7085828/e381981586e8/NP2020-2796571.001.jpg

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