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外部、可穿戴传感器和内部参数之间的关系:系统综述。

Relationships between External, Wearable Sensor-Based, and Internal Parameters: A Systematic Review.

机构信息

Institute of Sport and Sport Science, Albert-Ludwigs University Freiburg, 79117 Freiburg, Germany.

Institute for Advanced Biomechanics and Motion Studies, Offenburg University, Max-Planck Straße 1, 77656 Offenburg, Germany.

出版信息

Sensors (Basel). 2023 Jan 11;23(2):827. doi: 10.3390/s23020827.

Abstract

Micro electro-mechanical systems (MEMS) are used to record training and match play of intermittent team sport athletes. Paired with estimates of internal responses or adaptations to exercise, practitioners gain insight into players' dose-response relationship which facilitates the prescription of the training stimuli to optimize performance, prevent injuries, and to guide rehabilitation processes. A systematic review on the relationship between external, wearable-based, and internal parameters in team sport athletes, compliant with the PRISMA guidelines, was conducted. The literature research was performed from earliest record to 1 September 2020 using the databases PubMed, Web of Science, CINAHL, and SportDISCUS. A total of 66 full-text articles were reviewed encompassing 1541 athletes. About 109 different relationships between variables have been reviewed. The most investigated relationship across sports was found between (session) rating of perceived exertion ((session-)RPE) and PlayerLoad™ (PL) with, predominantly, moderate to strong associations (r = 0.49-0.84). Relationships between internal parameters and highly dynamic, anaerobic movements were heterogenous. Relationships between average heart rate (HR), Edward's and Banister's training impulse (TRIMP) seem to be reflected in parameters of overall activity such as PL and TD for running-intensive team sports. PL may further be suitable to estimate the overall subjective perception. To identify high fine-structured loading-relative to a certain type of sport-more specific measures and devices are needed. Individualization of parameters could be helpful to enhance practicality.

摘要

微机电系统 (MEMS) 用于记录间歇性团队运动运动员的训练和比赛情况。结合对运动时内部反应或适应的估计,从业者可以深入了解运动员的剂量反应关系,从而为训练刺激提供处方,以优化性能、预防受伤,并指导康复过程。对符合 PRISMA 指南的团队运动运动员的外部、基于可穿戴设备和内部参数之间的关系进行了系统评价。从最早的记录到 2020 年 9 月 1 日,使用 PubMed、Web of Science、CINAHL 和 SportDISCUS 数据库进行了文献研究。共审查了 66 篇全文文章,涵盖了 1541 名运动员。共审查了约 109 种变量之间的关系。发现不同运动中最常见的关系是(运动)感知用力评分(session-RPE)和运动员负荷(PlayerLoad,PL)之间的关系,主要是中等至强关联(r = 0.49-0.84)。内部参数与高动态、无氧运动之间的关系具有异质性。平均心率(HR)、爱德华氏和巴尼斯特氏训练冲动(TRIMP)之间的关系似乎反映在整体活动参数上,如对跑步为主的团队运动的 PL 和 TD。PL 可能进一步适合估计整体主观感觉。为了确定相对于特定类型运动的高精细结构负荷,需要更具体的措施和设备。参数的个体化可能有助于提高实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69c1/9864675/1b1490260b3d/sensors-23-00827-g004.jpg

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