The 2023 wearable photoplethysmography roadmap

Дорожная карта носимой фотоплетизмографии 2023 года
Jussi Hernesniemi, Gari D. Clifford, Pablo Laguna, Ilkka Korhonen, David A. Clifton, Yuan‐Ting Zhang, Joachim A. Behar, Xiao Hu, Tingting Zhu, Peter Charlton, Jessilyn Dunn, Tânia Pereira, Ni Zhao, Xiaorong Ding, Carmen C. Y. Poon, Chungkeun Lee, Danilo P. Mandic, Chengyu Liu, Jing Liu, John Allen, Vaidotas Marozas, T. Tamura, Fei Chen, Dingchang Zheng, Ramakrishna Mukkamala, Mohamed Elgendi, Nan Ji, Hang‐Sik Shin, Stephanie Baker, Meir Nitzan, Raquel Bailón, Harry J. Davies, Cheng Ding, Munia Ferdoushi, Daniel Franklin, Eduardo Gil, Md. Farhad Hassan, Yasser Khan, Spyridon Kontaxis, P. A. Kyriacou, Jesús Lázaro, Jeremy Levy, Yumin Li, Lei Lü, Elisa Mejía‐Mejía, Jessica C. Ramella‐Roman, Harri Juhani Saarinen, Md Mobashir Hasan Shandhi, Gerard Stansby, Antti Vehkaoja, Will Ke Wang
2023-07-26

clinical applicationsphotoplethysmography sensorssensor designsignal processingwearable photoplethysmography
Photoplethysmography is a key sensing technology which is used in wearable devices such as smartwatches and fitness trackers. Currently, photoplethysmography sensors are used to monitor physiological parameters including heart rate and heart rhythm, and to track activities like sleep and exercise. Yet, wearable photoplethysmography has potential to provide much more information on health and wellbeing, which could inform clinical decision making. This Roadmap outlines directions for research and development to realise the full potential of wearable photoplethysmography. Experts discuss key topics within the areas of sensor design, signal processing, clinical applications, and research directions. Their perspectives provide valuable guidance to researchers developing wearable photoplethysmography technology.
1
Expert perspectives in the Roadmap offer guidance for researchers developing wearable PPG technology to advance its clinical utility.
2
PPG sensors have potential to provide substantially more health and wellbeing information that could inform clinical decision making.
3
The Roadmap identifies research and development directions across sensor design, signal processing, clinical applications, and research methodology to realise PPG's full potential.
4
Wearable photoplethysmography (PPG) is widely used in devices like smartwatches to monitor heart rate, heart rhythm, sleep, and exercise.

wearable photoplethysmography technology (sensors in wearable devices such as smartwatches and fitness trackers)

research and development directions to realise the full potential of wearable photoplethysmography, including sensor design, signal processing, clinical applications, and research priorities for monitoring physiological parameters and health-related outcomes

Publication Details
Publication Date
2023-07-26
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Cited by
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Authors
Jussi Hernesniemi
Gari D. Clifford
Pablo Laguna
Ilkka Korhonen
David A. Clifton
Yuan‐Ting Zhang
Joachim A. Behar
Xiao Hu
Tingting Zhu
Peter Charlton
Jessilyn Dunn
Tânia Pereira
Ni Zhao
Xiaorong Ding
Carmen C. Y. Poon
Chungkeun Lee
Danilo P. Mandic
Chengyu Liu
Jing Liu
John Allen
Vaidotas Marozas
T. Tamura
Fei Chen
Dingchang Zheng
Ramakrishna Mukkamala
Mohamed Elgendi
Nan Ji
Hang‐Sik Shin
Stephanie Baker
Meir Nitzan
Raquel Bailón
Harry J. Davies
Cheng Ding
Munia Ferdoushi
Daniel Franklin
Eduardo Gil
Md. Farhad Hassan
Yasser Khan
Spyridon Kontaxis
P. A. Kyriacou
Jesús Lázaro
Jeremy Levy
Yumin Li
Lei Lü
Elisa Mejía‐Mejía
Jessica C. Ramella‐Roman
Harri Juhani Saarinen
Md Mobashir Hasan Shandhi
Gerard Stansby
Antti Vehkaoja
Will Ke Wang
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