Federico Roggio, Bruno Trovato, Martina Sortino, Michele Vecchio, Giuseppe Musumeci
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This study aimed to assess treadmill gait in healthy young adults by comparing the SS with the OS. The objectives were to determine whether participants could match SS with OS on a treadmill, examine sex differences in gait kinematics and spatiotemporal parameters (KSP) at different speeds, and identify which speed better reflects natural gait kinematics.</p><p><strong>Methods: </strong>A total of 60 healthy men and 70 healthy women, aged 22-35 years, participated in this cross-sectional study to investigate the gait kinematics and spatiotemporal differences between the SS and OS. Student's t-test, Bonferroni adjustment, Cohen's effect size, and quadratic regression were employed to analyse differences across walking speeds and groups.</p><p><strong>Results: </strong>A discrepancy between OS and SS was observed in 66.4% of the participants. Our findings revealed that the adjusted R² values for KSP at SS were consistently greater than those at OS, suggesting that SS offers a more robust and accurate representation of gait kinematics, whereas OS is less reliable.</p><p><strong>Conclusions: </strong>These findings underscore the importance of individualized speed selection in gait analysis, as it significantly impacts the accuracy of kinematic and spatiotemporal measurements. This insight is pivotal for clinicians and researchers to develop more effective rehabilitation strategies and comprehensively understand gait dynamics.</p>","PeriodicalId":48585,"journal":{"name":"BMC Sports Science Medicine and Rehabilitation","volume":"16 1","pages":"226"},"PeriodicalIF":2.1000,"publicationDate":"2024-11-04","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11533392/pdf/","citationCount":"0","resultStr":"{\"title\":\"Self-selected speed provides more accurate human gait kinematics and spatiotemporal parameters than overground simulated speed on a treadmill: a cross-sectional study.\",\"authors\":\"Federico Roggio, Bruno Trovato, Martina Sortino, Michele Vecchio, Giuseppe Musumeci\",\"doi\":\"10.1186/s13102-024-01011-3\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Background: </strong>Walking speed, a key element of gait analysis, is essential for evaluating the biomechanics of the musculoskeletal system and is typically assessed on flat surfaces, such as walkways or treadmills. While many authors have compared the differences and similarities between treadmill and overground walking, no studies have yet investigated the differences between treadmill gait analysis at self-selected speed (SS) and overground simulated speed (OS). The hypothesis is that accurate kinematic measurements depend on selecting the correct gait speed; however, a mismatch between the perceived comfortable treadmill speed and actual overground speed may affect the accuracy of treadmill gait analyses. This study aimed to assess treadmill gait in healthy young adults by comparing the SS with the OS. 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Our findings revealed that the adjusted R² values for KSP at SS were consistently greater than those at OS, suggesting that SS offers a more robust and accurate representation of gait kinematics, whereas OS is less reliable.</p><p><strong>Conclusions: </strong>These findings underscore the importance of individualized speed selection in gait analysis, as it significantly impacts the accuracy of kinematic and spatiotemporal measurements. 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引用次数: 0
摘要
背景:步行速度是步态分析的关键要素,对于评估肌肉骨骼系统的生物力学至关重要,通常在平坦的表面上进行评估,如人行道或跑步机。虽然许多学者已经比较了跑步机和地面行走的异同,但还没有研究调查过自选速度(SS)下的跑步机步态分析和地面模拟速度(OS)下的跑步机步态分析之间的差异。假设是,准确的运动学测量取决于选择正确的步态速度;然而,感觉舒适的跑步机速度和实际地面速度之间的不匹配可能会影响跑步机步态分析的准确性。本研究旨在通过比较 SS 和 OS 来评估健康年轻人的跑步机步态。目的是确定参与者是否能在跑步机上将SS与OS相匹配,检查不同速度下步态运动学和时空参数(KSP)的性别差异,并确定哪种速度能更好地反映自然步态运动学:共有 60 名健康男性和 70 名健康女性(22-35 岁)参加了这项横断面研究,以调查 SS 和 OS 的步态运动学和时空差异。采用学生 t 检验、Bonferroni 调整、科恩效应大小和二次回归分析不同步行速度和组别之间的差异:结果:66.4%的参与者观察到OS和SS之间存在差异。我们的研究结果表明,SS 的 KSP 调整 R² 值一直大于 OS,这表明 SS 能够更稳健、更准确地反映步态运动学,而 OS 的可靠性较低:这些发现强调了步态分析中个性化速度选择的重要性,因为它对运动学和时空测量的准确性有重大影响。这一见解对于临床医生和研究人员制定更有效的康复策略和全面了解步态动力学至关重要。
Self-selected speed provides more accurate human gait kinematics and spatiotemporal parameters than overground simulated speed on a treadmill: a cross-sectional study.
Background: Walking speed, a key element of gait analysis, is essential for evaluating the biomechanics of the musculoskeletal system and is typically assessed on flat surfaces, such as walkways or treadmills. While many authors have compared the differences and similarities between treadmill and overground walking, no studies have yet investigated the differences between treadmill gait analysis at self-selected speed (SS) and overground simulated speed (OS). The hypothesis is that accurate kinematic measurements depend on selecting the correct gait speed; however, a mismatch between the perceived comfortable treadmill speed and actual overground speed may affect the accuracy of treadmill gait analyses. This study aimed to assess treadmill gait in healthy young adults by comparing the SS with the OS. The objectives were to determine whether participants could match SS with OS on a treadmill, examine sex differences in gait kinematics and spatiotemporal parameters (KSP) at different speeds, and identify which speed better reflects natural gait kinematics.
Methods: A total of 60 healthy men and 70 healthy women, aged 22-35 years, participated in this cross-sectional study to investigate the gait kinematics and spatiotemporal differences between the SS and OS. Student's t-test, Bonferroni adjustment, Cohen's effect size, and quadratic regression were employed to analyse differences across walking speeds and groups.
Results: A discrepancy between OS and SS was observed in 66.4% of the participants. Our findings revealed that the adjusted R² values for KSP at SS were consistently greater than those at OS, suggesting that SS offers a more robust and accurate representation of gait kinematics, whereas OS is less reliable.
Conclusions: These findings underscore the importance of individualized speed selection in gait analysis, as it significantly impacts the accuracy of kinematic and spatiotemporal measurements. This insight is pivotal for clinicians and researchers to develop more effective rehabilitation strategies and comprehensively understand gait dynamics.
期刊介绍:
BMC Sports Science, Medicine and Rehabilitation is an open access, peer reviewed journal that considers articles on all aspects of sports medicine and the exercise sciences, including rehabilitation, traumatology, cardiology, physiology, and nutrition.