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运动相关性脑震荡后的定量磁敏感图

Quantitative Susceptibility Mapping after Sports-Related Concussion.

机构信息

From the Departments of Radiology (K.M.K., R.K., A.S.N.)

Neurosurgery (T.B.M., L.T.M., M.M.), Medical College of Wisconsin, Milwaukee, Wisconsin.

出版信息

AJNR Am J Neuroradiol. 2018 Jul;39(7):1215-1221. doi: 10.3174/ajnr.A5692. Epub 2018 Jun 7.

Abstract

BACKGROUND AND PURPOSE

Quantitative susceptibility mapping using MR imaging can assess changes in brain tissue structure and composition. This report presents preliminary results demonstrating changes in tissue magnetic susceptibility after sports-related concussion.

MATERIALS AND METHODS

Longitudinal quantitative susceptibility mapping metrics were produced from imaging data acquired from cohorts of concussed and control football athletes. One hundred thirty-six quantitative susceptibility mapping datasets were analyzed across 3 separate visits (24 hours after injury, 8 days postinjury, and 6 months postinjury). Longitudinal quantitative susceptibility mapping group analyses were performed on stability-thresholded brain tissue compartments and selected subregions. Clinical concussion metrics were also measured longitudinally in both cohorts and compared with the measured quantitative susceptibility mapping.

RESULTS

Statistically significant increases in white matter susceptibility were identified in the concussed athlete group during the acute (24 hour) and subacute (day 8) period. These effects were most prominent at the 8-day visit but recovered and showed no significant difference from controls at the 6-month visit. The subcortical gray matter showed no statistically significant group differences. Observed susceptibility changes after concussion appeared to outlast self-reported clinical recovery metrics at a group level. At an individual subject level, susceptibility increases within the white matter showed statistically significant correlations with return-to-play durations.

CONCLUSIONS

The results of this preliminary investigation suggest that sports-related concussion can induce physiologic changes to brain tissue that can be detected using MR imaging-based magnetic susceptibility estimates. In group analyses, the observed tissue changes appear to persist beyond those detected on clinical outcome assessments and were associated with return-to-play duration after sports-related concussion.

摘要

背景与目的

磁共振成像(MR)定量磁化率成像可用于评估脑组织结构和成分的变化。本研究报告初步结果,展示运动相关性脑震荡后组织磁化率的变化。

材料与方法

对脑震荡和对照组足球运动员队列的影像学数据进行纵向定量磁化率映射指标测量。在 3 次单独的访视(损伤后 24 小时、损伤后 8 天和损伤后 6 个月)中分析了 136 个定量磁化率映射数据集。对稳定性阈值的脑组织区室和选定的亚区进行了纵向定量磁化率映射组分析。两个队列也进行了纵向临床脑震荡指标测量,并与测量的定量磁化率进行了比较。

结果

在脑震荡运动员组中,在急性期(24 小时)和亚急性期(第 8 天),白质磁化率出现了统计学上显著的增加。这些影响在第 8 天的访视中最为明显,但在第 6 个月的访视中恢复正常,与对照组没有显著差异。皮质下灰质没有表现出统计学上的组间差异。在组水平上,脑震荡后观察到的磁化率变化似乎比自我报告的临床恢复指标持续时间更长。在个体受试者水平上,白质内的磁化率增加与重返比赛的持续时间具有统计学显著相关性。

结论

本初步研究结果表明,运动相关性脑震荡可导致脑组织发生生理变化,这些变化可以通过基于磁共振成像的磁化率估计来检测。在组分析中,观察到的组织变化似乎持续存在于临床结果评估之外,并与运动相关性脑震荡后重返比赛的持续时间相关。

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Quantitative Susceptibility Mapping after Sports-Related Concussion.运动相关性脑震荡后的定量磁敏感图
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