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医疗保健中日常生活和身体活动的运动跟踪:系统综述从设计者的角度来看。

Motion Tracking of Daily Living and Physical Activities in Health Care: Systematic Review From Designers' Perspective.

机构信息

School of Design, The Hong Kong Polytechnic University, Hung Hom, China (Hong Kong).

出版信息

JMIR Mhealth Uhealth. 2024 May 6;12:e46282. doi: 10.2196/46282.

Abstract

BACKGROUND

Motion tracking technologies serve as crucial links between physical activities and health care insights, facilitating data acquisition essential for analyzing and intervening in physical activity. Yet, systematic methodologies for evaluating motion tracking data, especially concerning user activity recognition in health care applications, remain underreported.

OBJECTIVE

This study aims to systematically review motion tracking in daily living and physical activities, emphasizing the critical interaction among devices, users, and environments from a design perspective, and to analyze the process involved in health care application research. It intends to delineate the design and application intricacies in health care contexts, focusing on enhancing motion tracking data's accuracy and applicability for health monitoring and intervention strategies.

METHODS

Using a systematic review, this research scrutinized motion tracking data and their application in health care and wellness, examining studies from Scopus, Web of Science, EBSCO, and PubMed databases. The review used actor network theory and data-enabled design to understand the complex interplay between humans, devices, and environments within these applications.

RESULTS

Out of 1501 initially identified studies, 54 (3.66%) were included for in-depth analysis. These articles predominantly used accelerometer and gyroscope sensors (n=43, 80%) to monitor and analyze motion, demonstrating a strong preference for these technologies in capturing both dynamic and static activities. While incorporating portable devices (n=11, 20%) and multisensor configurations (n=16, 30%), the application of sensors across the body (n=15, 28%) and within physical spaces (n=17, 31%) highlights the diverse applications of motion tracking technologies in health care research. This diversity reflects the application's alignment with activity types ranging from daily movements to specialized scenarios. The results also reveal a diverse participant pool, including the general public, athletes, and specialized groups, with a focus on healthy individuals (n=31, 57%) and athletes (n=14, 26%). Despite this extensive application range, the focus primarily on laboratory-based studies (n=39, 72%) aimed at professional uses, such as precise activity identification and joint functionality assessment, emphasizes a significant challenge in translating findings from controlled environments to the dynamic conditions of everyday physical activities.

CONCLUSIONS

This study's comprehensive investigation of motion tracking technology in health care research reveals a significant gap between the methods used for data collection and their practical application in real-world scenarios. It proposes an innovative approach that includes designers in the research process, emphasizing the importance of incorporating data-enabled design framework. This ensures that motion data collection is aligned with the dynamic and varied nature of daily living and physical activities. Such integration is crucial for developing health applications that are accessible, intuitive, and tailored to meet diverse user needs. By leveraging a multidisciplinary approach that combines design, engineering, and health sciences, the research opens new pathways for enhancing the usability and effectiveness of health technologies.

摘要

背景

运动追踪技术是物理活动与医疗保健见解之间的重要环节,它可以方便地获取数据,这些数据对于分析和干预物理活动至关重要。然而,对于运动追踪数据的评估方法,尤其是在医疗保健应用中进行用户活动识别的方法,系统性的研究仍然较少。

目的

本研究旨在从设计角度系统地综述日常生活和体育活动中的运动追踪技术,强调设备、用户和环境之间的关键交互,并分析医疗保健应用研究中的相关过程。本研究旨在阐明医疗保健环境下设计和应用的复杂性,重点是提高运动追踪数据在健康监测和干预策略方面的准确性和适用性。

方法

本研究采用系统综述的方法,对运动追踪数据及其在医疗保健和健康领域的应用进行了研究,从 Scopus、Web of Science、EBSCO 和 PubMed 数据库中筛选了相关研究。该研究运用了行动者网络理论和数据驱动设计来理解这些应用中人类、设备和环境之间的复杂相互作用。

结果

在最初确定的 1501 项研究中,有 54 项(3.66%)被纳入深入分析。这些文章主要使用加速度计和陀螺仪传感器(n=43,80%)来监测和分析运动,表明这些技术在捕捉动态和静态活动方面具有很强的偏好。虽然采用了便携式设备(n=11,20%)和多传感器配置(n=16,30%),但在身体各部位(n=15,28%)和物理空间内(n=17,31%)使用传感器,突出了运动追踪技术在医疗保健研究中的多样化应用。这种多样性反映了该应用与从日常活动到专业场景的各种活动类型的一致性。研究结果还显示,参与者群体多样,包括普通公众、运动员和特定群体,其中以健康个体(n=31,57%)和运动员(n=14,26%)为主。尽管应用范围广泛,但主要侧重于实验室研究(n=39,72%),旨在实现专业用途,例如精确的活动识别和关节功能评估,这表明将发现从受控环境转化到日常体育活动的动态条件具有显著挑战。

结论

本研究对医疗保健研究中的运动追踪技术进行了全面调查,揭示了数据收集方法与实际应用之间存在显著差距,特别是在真实场景中的应用。本研究提出了一种创新方法,即让设计师参与研究过程,强调采用数据驱动设计框架的重要性。这确保了运动数据的收集与日常生活和体育活动的动态和多样化性质相匹配。这种整合对于开发易于使用、直观且能够满足不同用户需求的健康应用至关重要。通过结合设计、工程和健康科学的多学科方法,该研究为提高健康技术的可用性和有效性开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0fa/11106703/70956605e2f9/mhealth_v12i1e46282_fig1.jpg

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