Differences in running biomechanics and tibiotalar cartilage T2 relaxation time between runners with and without asymptomatic tibial sesamoid bone marrow edema - clinical case series.

IF 2 3区 医学 Q3 ENGINEERING, BIOMEDICAL Sports Biomechanics Pub Date : 2024-12-01 Epub Date: 2024-05-27 DOI:10.1080/14763141.2024.2356859
Hyun Kyung Kim, Seyed Ali Mirjalili
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Abstract

The impact of asymptomatic bone marrow edema (BME) in sesamoids on running biomechanics remains largely unknown, but exploring this relationship could aid early detection of forefoot-related injuries with cost-effective modalities. This study aimed to compare the running biomechanics of runners with asymptomatic BME in the tibial sesamoids with that of healthy controls. Four runners with asymptomatic BME in tibial sesamoids and four healthy runners participated. Lower extremity joint kinetics and kinematics were assessed along with plantar pressure while running at a self-selected speed. The T2 relaxation time of the tibiotalar cartilage was measured using MRI-derived T2 maps. Compared to the non-injured group, the injured group exhibited significantly lower plantar pressure under the hallux (p = 0.001), increased peak ankle rotation angles (p = 0.025), reduced ankle power generation (p = 0.049), and increased knee extension torque (p = 0.015). No significant differences in T2 values of the tibiotalar cartilage were observed. It appears that runners with asymptomatic BME adapted their running strategies by modifying their ankle biomechanics and reducing plantar pressure, even in the absence of pain. While the precise implications of these biomechanical alterations warrant further investigation, this study provides valuable insights into the relationship between asymptomatic BME and running biomechanics.

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有症状和无症状胫骨剑突骨骨髓水肿的跑步者在跑步生物力学和胫骨软骨T2弛豫时间上的差异--临床病例系列。
芝麻状骨无症状骨髓水肿(BME)对跑步生物力学的影响在很大程度上仍不为人所知,但探究这种关系有助于用经济有效的方法及早发现前足相关损伤。本研究旨在比较胫骨芝麻状水肿患者与健康对照组的跑步生物力学。四名胫骨芝麻状骨无症状BME患者和四名健康跑者参加了此次研究。在以自选速度跑步时,对下肢关节动力学和运动学以及足底压力进行了评估。胫骨软骨的T2弛豫时间是通过核磁共振成像的T2图来测量的。与未受伤组相比,受伤组的脚掌下跖压明显降低(p = 0.001),踝关节旋转角度峰值增大(p = 0.025),踝关节发力减少(p = 0.049),膝关节伸展扭矩增大(p = 0.015)。胫骨软骨的 T2 值无明显差异。看来,即使在没有疼痛的情况下,无症状 BME 患者也会通过改变踝关节生物力学和减少足底压力来调整跑步策略。虽然这些生物力学改变的确切影响还需要进一步研究,但本研究为了解无症状 BME 与跑步生物力学之间的关系提供了宝贵的见解。
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来源期刊
Sports Biomechanics
Sports Biomechanics 医学-工程:生物医学
CiteScore
5.70
自引率
9.10%
发文量
135
审稿时长
>12 weeks
期刊介绍: Sports Biomechanics is the Thomson Reuters listed scientific journal of the International Society of Biomechanics in Sports (ISBS). The journal sets out to generate knowledge to improve human performance and reduce the incidence of injury, and to communicate this knowledge to scientists, coaches, clinicians, teachers, and participants. The target performance realms include not only the conventional areas of sports and exercise, but also fundamental motor skills and other highly specialized human movements such as dance (both sport and artistic). Sports Biomechanics is unique in its emphasis on a broad biomechanical spectrum of human performance including, but not limited to, technique, skill acquisition, training, strength and conditioning, exercise, coaching, teaching, equipment, modeling and simulation, measurement, and injury prevention and rehabilitation. As well as maintaining scientific rigour, there is a strong editorial emphasis on ''reader friendliness''. By emphasising the practical implications and applications of research, the journal seeks to benefit practitioners directly. Sports Biomechanics publishes papers in four sections: Original Research, Reviews, Teaching, and Methods and Theoretical Perspectives.
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