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ViMove2 系统在跑步步态测量中的有效性和可靠性。

Validity and reliability of running gait measurement with the ViMove2 system.

机构信息

Department of Sport, Exercise and Rehabilitation, Northumbria University, Newcastle upon Tyne, United Kingdom.

Department of Computer and Information Sciences, Northumbria University, Newcastle upon Tyne, United Kingdom.

出版信息

PLoS One. 2024 Oct 31;19(10):e0312952. doi: 10.1371/journal.pone.0312952. eCollection 2024.

Abstract

Running biomechanics have traditionally been analysed in laboratory settings, but this may not reflect natural running gait. Wearable technology has the potential to enable precise monitoring of running gait beyond the laboratory. This study aimed to evaluate the analytical validity and intra-session reliability of temporal running gait outcomes measured by the ViMove2 wearable system in healthy adults. Seventy-four healthy adults (43 males, 31 females, aged 18-55 years) wore the inertial device, ViMove2 on the tibia. Participants ran on a treadmill for one minute at various speeds (8, 10, 12, 14km/hr), completed in a standardised shoe (Saucony Guide Runner). Running gait was measured with the ViMove2 wearable and 3D motion capture (Vicon). Temporal running gait outcomes included ground contact time (GCT) and cadence (steps/min). GCT and cadence from the ViMove2 had face validity with expected changes in outcome with different running speeds, but ViMove2 tended to over-estimate GCT, and under-estimate cadence compared to the reference, especially at slower speeds. GCT demonstrated moderate to good agreement to the reference at speeds >10km/hr, but poor agreement at 8km/hr and within female runners. Cadence had moderate to excellent agreement across speeds compared to the reference. GCT and cadence had excellent reliability across speeds, but at 8km/hr GCT had good agreement between trials. Overall, temporal gait outcomes of GCT and cadence can be measured with the ViMove2, but accuracy and reliability are impacted at slow running speeds and within female runners. Future work is needed to clarify sex or speed-dependent corrections to algorithms / outcomes to aid interpretation and application.

摘要

传统上,跑步生物力学在实验室环境中进行分析,但这可能无法反映自然的跑步步态。可穿戴技术有可能在实验室之外实现对跑步步态的精确监测。本研究旨在评估 ViMove2 可穿戴系统在健康成年人中测量的时间跑步步态结果的分析有效性和组内测试可靠性。74 名健康成年人(43 名男性,31 名女性,年龄 18-55 岁)在胫骨上佩戴惯性设备 ViMove2。参与者在跑步机上以 8、10、12、14km/hr 的各种速度跑步一分钟,穿着标准化的鞋子(Saucony Guide Runner)。使用 ViMove2 可穿戴设备和 3D 运动捕捉(Vicon)测量跑步步态。时间跑步步态结果包括地面接触时间(GCT)和步频(步/min)。ViMove2 的 GCT 和步频具有表面有效性,随着不同跑步速度的变化,结果会发生预期变化,但 ViMove2 与参考值相比,往往会高估 GCT,低估步频,尤其是在较慢的速度下。在速度 >10km/hr 时,GCT 与参考值具有中等至良好的一致性,但在 8km/hr 时和女性跑步者内,一致性较差。与参考值相比,步频在所有速度下均具有中等至优秀的一致性。GCT 和步频在所有速度下均具有优秀的可靠性,但在 8km/hr 时,两次试验之间的 GCT 具有良好的一致性。总体而言,ViMove2 可以测量 GCT 和步频等时间步态结果,但在较慢的跑步速度和女性跑步者内,准确性和可靠性受到影响。需要进一步的工作来阐明算法/结果的性别或速度依赖性校正,以帮助解释和应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d936/11527157/c32860f66b10/pone.0312952.g001.jpg

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