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中风后痉挛状态下的皮质网状通路:一项扩散张量成像研究

Corticoreticular Pathway in Post-Stroke Spasticity: A Diffusion Tensor Imaging Study.

作者信息

Ko Sung-Hwa, Kim Taehyung, Min Ji Hong, Kim Musu, Ko Hyun-Yoon, Shin Yong-Il

机构信息

Department of Rehabilitation Medicine, Pusan National University Yangsan Hospital, Yangsan 50612, Korea.

Research Institute for Convergence of Biomedical Science and Technology, Pusan National University Yangsan Hospital, Yangsan 50612, Korea.

出版信息

J Pers Med. 2021 Nov 4;11(11):1151. doi: 10.3390/jpm11111151.

Abstract

One of the pathophysiologies of post-stroke spasticity (PSS) is the imbalance of the reticulospinal tract (RST) caused by injury to the corticoreticular pathway (CRP) after stroke. We investigated the relationship between injuries of the CRP and PSS using MR diffusion tensor imaging (DTI). The subjects were divided into spasticity and control groups. We measured the ipsilesional fractional anisotropy (iFA) and contralesional fractional anisotropy (cFA) values on the reticular formation (RF) of the CRP were on the DTI images. We carried out a retrospective analysis of 70 patients with ischemic stroke. The cFA values of CRP in the spasticity group were lower than those in the control group ( = 0.04). In the sub-ROI analysis of CRP, the iFA values of pontine RF were lower than the cFA values in both groups ( < 0.05). The cFA values of medullary RF in the spasticity group were lower than the iFA values within groups, and also lower than the cFA values in the control group ( < 0.05). This results showed the CRP injury and that imbalance of RST caused by CRP injury was associated with PSS. DTI analysis of CRP could provide imaging evidence for the pathophysiology of PSS.

摘要

中风后痉挛(PSS)的病理生理学之一是中风后皮质网状通路(CRP)损伤导致的网状脊髓束(RST)失衡。我们使用磁共振扩散张量成像(DTI)研究了CRP损伤与PSS之间的关系。将受试者分为痉挛组和对照组。我们在DTI图像上测量了CRP网状结构(RF)上的同侧分数各向异性(iFA)和对侧分数各向异性(cFA)值。我们对70例缺血性中风患者进行了回顾性分析。痉挛组CRP的cFA值低于对照组(=0.04)。在CRP的亚感兴趣区分析中,两组脑桥RF的iFA值均低于cFA值(<0.05)。痉挛组延髓RF的cFA值低于组内iFA值,也低于对照组的cFA值(<0.05)。该结果表明CRP损伤以及CRP损伤导致的RST失衡与PSS相关。对CRP的DTI分析可为PSS的病理生理学提供影像学证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afc8/8621009/b42f924a6260/jpm-11-01151-g001.jpg

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