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在小鼠踝关节扭伤后的纵向神经可塑性:基于体素的形态计量学研究 11.7T MRI。

Longitudinal neuroplasticity after ankle sprain in mice: A voxel-based morphometry study on 11.7T MRI.

机构信息

Department of Sports Medicine, Huashan Hospital, Fudan University, Shanghai, China.

Institute of Science and Technology for Brain-Inspired Intelligence, Fudan University, Shanghai, China.

出版信息

J Orthop Res. 2023 Jun;41(6):1291-1298. doi: 10.1002/jor.25458. Epub 2022 Oct 17.

DOI:10.1002/jor.25458
PMID:36203347
Abstract

Lateral ankle sprains (LAS) might lead to joint sensory deafferentation, which induces maladaptive neuroplasticity, especially the morphological atrophy of the cerebellar vermis. However, longitudinal evidence on the causality of injury and neural differences is still lacking. To this end, this study aimed to determine whether the morphology of the central nervous system would be altered before and after ligament transection in LAS mouse models. A total of 40 C57BL/6 mice were randomly divided among the LAS, Sham and Blank groups. We repeatedly performed the balance beam test and neural voxel-based morphometry (VBM) measurements using an 11.7 T magnetic resonance imaging before and 2 months after the surgery. The results showed that for balance outcomes, the LAS group had a significantly longer time and more slips of the balance beam tests compared with the Sham and Blank groups at 2 months after surgery, with no significant difference among the three groups before surgery. Regarding the VBM analysis, the LAS group showed significantly lower VBM values in the central lobule III of the cerebellar vermis and medial amygdalar nucleus (MEA) compared with the Sham and Blank groups after surgery, with no significant difference among the three groups before surgery. In conclusion, lateral ligament injuries might lead to morphological atrophy of the cerebellar vermis in animal models, which might pave the way for the pathological process of ankle instability after LAS.

摘要

外侧踝关节扭伤(LAS)可能导致关节感觉去传入,从而引起适应性神经可塑性,特别是小脑蚓部的形态萎缩。然而,关于损伤和神经差异的因果关系的纵向证据仍然缺乏。为此,本研究旨在确定 LAS 小鼠模型中韧带横断前后中枢神经系统的形态是否会发生改变。总共 40 只 C57BL/6 小鼠被随机分为 LAS、Sham 和 Blank 组。我们在手术前和手术后 2 个月使用 11.7T 磁共振成像重复进行平衡梁测试和神经体素形态测量(VBM)。结果表明,对于平衡结果,与 Sham 和 Blank 组相比,LAS 组在手术后 2 个月时平衡梁测试的时间明显更长,滑倒次数更多,而手术前三组之间无显著差异。关于 VBM 分析,与 Sham 和 Blank 组相比,LAS 组术后小脑蚓部 III 中央小叶和内侧杏仁核(MEA)的 VBM 值明显降低,而手术前三组之间无显著差异。总之,外侧韧带损伤可能导致动物模型中小脑蚓部的形态萎缩,这可能为 LAS 后踝关节不稳定的病理过程铺平道路。

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