动态双平面放射摄影显示健康成年人跑步时的踝关节和后足运动:两侧对称性、性别差异以及与步行的比较

IF 1.7 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Joshua C. Setliff , Paige F. Paulus , Tetsuya Yamamoto , Shumeng Yang , MaCalus V. Hogan , William J. Anderst
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引用次数: 0

摘要

这项研究的目的是利用双平面射线照相术描述健康男性和女性在地面跑步时的踝关节和后足运动学特征,并将这些数据与之前在同一人群中地面行走时获得的数据进行比较。参与者以自选的速度跑过高架平台,同时同步采集其踝关节和后足的双平面X光片。胫骨、距骨和小方骨的运动采用经过验证的基于体积模型的跟踪过程进行跟踪。获得了胫骨和距骨下的 6DOF 运动学数据。计算了ROM和运动学波形的绝对侧对侧差异。通过混合模型分析,评估了站立阶段 10 % 增量的侧对侧差异和性别差异。皮尔逊相关系数用于评估站立阶段跑步和行走运动学之间的关系。20 名参与者组成了研究队列(10 名男性,平均年龄为 30.8 ± 6.3 岁,平均体重指数为 24.1 ± 3.1)。跑步运动学波形的平均绝对侧向差异在胫骨关节为 5.6°/2.0毫米或更小,在踝关节为 5.2°/3.2毫米或更小。跑步运动学波形在两侧或男女之间没有发现差异。胫腓关节处的相关性(42/66 [64 %] 的相关性 p < 0.05)强于胫骨关节处的相关性(38/66 [58 %] 的相关性 p < 0.05)。这些结果为评估原生踝关节和后足运动学提供了标准参考,可能对手术或康复有参考价值。在地面跑步过程中,踝关节运动学的性别差异在临床上或病因学上可能并不显著。步行和跑步运动学之间的关联表明,可以用其中一个来预测另一个。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ankle and hindfoot motion of healthy adults during running revealed by dynamic biplane radiography: Side-to-side symmetry, sex-specific differences, and comparison with walking

This study aimed to characterize ankle and hindfoot kinematics of healthy men and women during overground running using biplane radiography, and to compare these data to those previously obtained in the same cohort during overground walking. Participants ran across an elevated platform at a self-selected pace while synchronized biplane radiographs of their ankle and hindfoot were acquired. Motion of the tibia, talus, and calcaneus was tracked using a validated volumetric model-based tracking process. Tibiotalar and subtalar 6DOF kinematics were obtained. Absolute side-to-side differences in ROM and kinematics waveforms were calculated. Side-to-side and sex-specific differences were evaluated at 10 % increments of stance phase with mixed model analysis. Pearson correlation coefficients were used to assess the relationship between stance-phase running and walking kinematics. 20 participants comprised the study cohort (10 men, mean age 30.8 ± 6.3 years, mean BMI 24.1 ± 3.1). Average absolute side-to-side differences in running kinematics waveforms were 5.6°/2.0 mm or less at the tibiotalar joint and 5.2°/3.2 mm or less at the subtalar joint. No differences in running kinematics waveforms between sides or between men and women were detected. Correlations were stronger at the tibiotalar joint (42/66 [64 %] of correlations were p < 0.05), than at the tibiotalar joint (38/66 [58 %] of correlations were p < 0.05). These results provide a normative reference for evaluating native ankle and hindfoot kinematics which may be informative in surgical or rehabilitation contexts. Sex-specific differences in ankle kinematics during overground running are likely not clinically or etiologically significant. Associations seen between walking and running kinematics suggest one could be used to predict the other.

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来源期刊
Medical Engineering & Physics
Medical Engineering & Physics 工程技术-工程:生物医学
CiteScore
4.30
自引率
4.50%
发文量
172
审稿时长
3.0 months
期刊介绍: Medical Engineering & Physics provides a forum for the publication of the latest developments in biomedical engineering, and reflects the essential multidisciplinary nature of the subject. The journal publishes in-depth critical reviews, scientific papers and technical notes. Our focus encompasses the application of the basic principles of physics and engineering to the development of medical devices and technology, with the ultimate aim of producing improvements in the quality of health care.Topics covered include biomechanics, biomaterials, mechanobiology, rehabilitation engineering, biomedical signal processing and medical device development. Medical Engineering & Physics aims to keep both engineers and clinicians abreast of the latest applications of technology to health care.
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