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原始光电容积脉搏波图作为研究级可穿戴活动监测器的增强功能。

Raw Photoplethysmography as an Enhancement for Research-Grade Wearable Activity Monitors.

机构信息

Department of Kinesiology and Nutrition, University of Illinois Chicago, Chicago, IL, United States.

Department of Kinesiology and Health Sciences, University of Waterloo, Waterloo, ON, Canada.

出版信息

JMIR Mhealth Uhealth. 2024 Sep 27;12:e57158. doi: 10.2196/57158.


DOI:10.2196/57158
PMID:39331461
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11470225/
Abstract

Wearable monitors continue to play a critical role in scientific assessments of physical activity. Recently, research-grade monitors have begun providing raw data from photoplethysmography (PPG) alongside standard raw data from inertial sensors (accelerometers and gyroscopes). Raw PPG enables granular and transparent estimation of cardiovascular parameters such as heart rate, thus presenting a valuable alternative to standard PPG methodologies (most of which rely on consumer-grade monitors that provide only coarse output from proprietary algorithms). The implications for physical activity assessment are tremendous, since it is now feasible to monitor granular and concurrent trends in both movement and cardiovascular physiology using a single noninvasive device. However, new users must also be aware of challenges and limitations that accompany the use of raw PPG data. This viewpoint paper therefore orients new users to the opportunities and challenges of raw PPG data by presenting its mechanics, pitfalls, and availability, as well as its parallels and synergies with inertial sensors. This includes discussion of specific applications to the prediction of energy expenditure, activity type, and 24-hour movement behaviors, with an emphasis on areas in which raw PPG data may help resolve known issues with inertial sensing (eg, measurement during cycling activities). We also discuss how the impact of raw PPG data can be maximized through the use of open-source tools when developing and disseminating new methods, similar to current standards for raw accelerometer and gyroscope data. Collectively, our comments show the strong potential of raw PPG data to enhance the use of research-grade wearable activity monitors in science over the coming years.

摘要

可穿戴式监测器在科学评估身体活动方面继续发挥着关键作用。最近,研究级监测器开始提供光电体积描记法(PPG)的原始数据,以及惯性传感器(加速度计和陀螺仪)的标准原始数据。原始 PPG 可以对心率等心血管参数进行精细和透明的估计,因此为标准 PPG 方法提供了一个有价值的替代方案(其中大多数方法依赖于仅提供来自专有算法的粗略输出的消费级监测器)。这对身体活动评估具有巨大的影响,因为现在可以使用单个非侵入性设备来监测运动和心血管生理学的精细和并发趋势。然而,新用户还必须意识到使用原始 PPG 数据所伴随的挑战和限制。因此,本观点文章通过介绍原始 PPG 数据的机制、陷阱和可用性,以及它与惯性传感器的相似之处和协同作用,使新用户了解原始 PPG 数据的机会和挑战。这包括讨论特定应用于预测能量消耗、活动类型和 24 小时运动行为的应用,重点介绍原始 PPG 数据可能有助于解决惯性感测中的已知问题的领域(例如,在骑行活动期间的测量)。我们还讨论了如何通过在开发和传播新方法时使用开源工具来最大程度地发挥原始 PPG 数据的影响,类似于当前对原始加速度计和陀螺仪数据的标准。总的来说,我们的评论表明,原始 PPG 数据具有很大的潜力,可以在未来几年内增强研究级可穿戴活动监测器在科学中的使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6572/11470225/92d84b31f23f/mhealth_v12i1e57158_fig2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6572/11470225/8bf9b0807043/mhealth_v12i1e57158_fig1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6572/11470225/92d84b31f23f/mhealth_v12i1e57158_fig2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6572/11470225/8bf9b0807043/mhealth_v12i1e57158_fig1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6572/11470225/92d84b31f23f/mhealth_v12i1e57158_fig2.jpg

相似文献

[1]
Raw Photoplethysmography as an Enhancement for Research-Grade Wearable Activity Monitors.

JMIR Mhealth Uhealth. 2024-9-27

[2]
A novel computational signal processing framework towards multimodal vital signs extraction using neck-worn wearable devices.

Sci Rep. 2024-9-27

[3]
Accuracy of Consumer Wearable Heart Rate Measurement During an Ecologically Valid 24-Hour Period: Intraindividual Validation Study.

JMIR Mhealth Uhealth. 2019-3-11

[4]
Defining a systems framework for characterizing physical work demands with wearable sensors.

Ann Work Expo Health. 2024-6-6

[5]
Photoplethysmographic Time-Domain Heart Rate Measurement Algorithm for Resource-Constrained Wearable Devices and its Implementation.

Sensors (Basel). 2020-3-23

[6]
Improved Heart Rate Tracking Using Multiple Wrist-type Photoplethysmography during Physical Activities.

Annu Int Conf IEEE Eng Med Biol Soc. 2018-7

[7]
Towards Photoplethysmography-Based Estimation of Instantaneous Heart Rate During Physical Activity.

IEEE Trans Biomed Eng. 2017-9

[8]
A Review of Wearable Multi-Wavelength Photoplethysmography.

IEEE Rev Biomed Eng. 2023

[9]
Multi-Mode Particle Filtering Methods for Heart Rate Estimation From Wearable Photoplethysmography.

IEEE Trans Biomed Eng. 2019-1-28

[10]
Comparison of HRV parameters derived from photoplethysmography and electrocardiography signals.

Annu Int Conf IEEE Eng Med Biol Soc. 2015

本文引用的文献

[1]
Wearable Sensors and Artificial Intelligence for Physical Ergonomics: A Systematic Review of Literature.

Diagnostics (Basel). 2022-12-5

[2]
Photoplethysmography-new applications for an old technology: a sleep technology review.

J Clin Sleep Med. 2023-1-1

[3]
CHAP-child: an open source method for estimating sit-to-stand transitions and sedentary bout patterns from hip accelerometers among children.

Int J Behav Nutr Phys Act. 2022-8-26

[4]
Influence of Sex, BMI, and Skin Color on the Accuracy of Non-Invasive Cuffless Photoplethysmography-Based Blood Pressure Measurements.

Front Physiol. 2022-6-29

[5]
Wearables: An R Package With Accompanying Shiny Application for Signal Analysis of a Wearable Device Targeted at Clinicians and Researchers.

Front Behav Neurosci. 2022-6-23

[6]
Cross-sectional survey on researchers' experience in using accelerometers in health-related studies.

BMJ Open Sport Exerc Med. 2022-5-9

[7]
Fatigue Monitoring Through Wearables: A State-of-the-Art Review.

Front Physiol. 2021-12-15

[8]
90% Accuracy for Photoplethysmography-Based Non-Invasive Blood Glucose Prediction by Deep Learning with Cohort Arrangement and Quarterly Measured HbA1c.

Sensors (Basel). 2021-11-24

[9]
Reflection-type photoplethysmography pulse sensor based on an integrated optoelectronic chip with a ring structure.

Biomed Opt Express. 2021-9-15

[10]
Validation of the optical Aktiia bracelet in different body positions for the persistent monitoring of blood pressure.

Sci Rep. 2021-10-19

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