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超远距离马拉松运动中距下关节和中跗关节的MRI软骨评估——对人类运动的新见解

MRI Cartilage Assessment of the Subtalar and Midtarsal Joints During a Transcontinental Ultramarathon - New Insights into Human Locomotion.

作者信息

Schütz Uwe Hans-Werner, Billich Christian, Schoss Daniel, Beer Meinrad, Ellermann Jutta

机构信息

Universitatsklinikum Ulm, Klinik für Diagnostische und Interventionelle Radiologie, Ulm, Germany.

University of Minnesota, Department of Radiology (CMRR), Minneapolis, United States.

出版信息

Int J Sports Med. 2018 Jan;39(1):37-49. doi: 10.1055/s-0043-118008. Epub 2017 Nov 30.

DOI:10.1055/s-0043-118008
PMID:29190850
Abstract

MR measurements can be accurately performed during 4486 km of running, opening a window into in vivo assessment of hindfoot articular cartilage under extreme ultra-endurance loading. This observational cross-sectional study included 22 randomized participants of TransEurope FootRace between Italy and the North Cape, which was accompanied by a trailer-mounted 1.5T MRI scanner over 9 weeks. Four follow up MR examinations of subtalar and midtarsal joints were performed. Statistics of cartilage T2*  and thickness were obtained. Nearly all observed joints showed an initial significant mean T2*  increase of 20.9% and 26.3% for the left and right side, followed by a relative decrease of 28.5% and 16.0% during the second half, respectively. It could be demonstrated that mobile MRI field studies allow in vivo functional tissue observations under extreme loading. Elevated T2*  values recovered during the second half of the ultramarathon supported the evidence that this response is a physiological adaptive mechanism of chondrocyte function via upregulation of de novo synthesis of proteoglycans and collagen. These changes occurred in a distinct asymmetric pattern leaving a "biochemical signature" of articular cartilage that allows in vivo insight into joint loading. In conclusion, the normal articular cartilage of the hindfoot is resilient and adaptive, leaving extreme endurance activities up to limitless human ambition.

摘要

在4486公里的跑步过程中可以准确地进行磁共振测量,从而为在极端超长耐力负荷下对后足关节软骨进行体内评估打开了一扇窗口。这项观察性横断面研究纳入了22名参加意大利至北角的泛欧赛跑的随机参与者,在9周内由一辆拖挂式1.5T磁共振成像扫描仪伴随。对距下关节和中跗关节进行了四次随访磁共振检查。获得了软骨T2值和厚度的统计数据。几乎所有观察到的关节在初始阶段左侧和右侧的平均T2值分别显著增加20.9%和26.3%,随后在下半年分别相对下降28.5%和16.0%。可以证明,移动磁共振现场研究允许在极端负荷下进行体内功能组织观察。在超级马拉松后半程T2*值升高后恢复,这支持了这样的证据,即这种反应是软骨细胞功能通过上调蛋白聚糖和胶原蛋白的从头合成而产生的一种生理适应性机制。这些变化以一种独特的不对称模式发生,留下了关节软骨的“生化特征”,从而能够在体内深入了解关节负荷情况。总之,后足的正常关节软骨具有弹性和适应性,能够承受极端耐力活动,直至人类无限的雄心壮志。

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