Photoplethysmography in Wearable Devices: A Comprehensive Review of Technological Advances, Current Challenges, and Future Directions

Фотоплетизмография в носимых устройствах: всесторонний обзор технологических достижений, текущих проблем и перспектив
Kwang Bok Kim, Hyun Jae Baek
2023-07-03

analog front end for PPGlow-power sampling and interpolation for inter-beat intervalsmulti-wavelength PPGphotoplethysmography (PPG)wrist-worn wearable devices
Photoplethysmography (PPG) is an affordable and straightforward optical technique used to detect changes in blood volume within tissue microvascular beds. PPG technology has found widespread application in commercial medical devices, enabling measurements of oxygen saturation, blood pressure, and cardiac output; the assessment of autonomic nerve function; and the diagnosis of peripheral vascular disease. Recently, the growing demand for non-invasive, portable, cost-effective technology, along with advancements in small semiconductor components, has led to the integration of PPG into various wrist-worn wearable devices. Multiple sensor structures have been proposed and, through appropriate signal processing and algorithmic application, these wearable devices can measure a range of health indicators during daily life. This paper begins by addressing the market status of wrist-worn wearable devices, followed by an explanation of the fundamental principles underlying light operation and its interaction with living tissue for PPG measurements. Moving on to technological advancements, the paper addresses the analog front end for the measurement of the PPG signal, sensor configurations with multiple light emitters and receivers, the minimum sampling rate required for low-power systems, and the measurement of stress, sleep, blood pressure, blood glucose, and activity using PPG signals. Several challenges in the field are also identified, including selecting the appropriate wavelength for the PPG sensor’s light source, developing low-power interpolation methods to extract high-resolution inter-beat intervals at a low sampling rate, and exploring the measurement of physiological phenomena using multi-wavelength PPG signals simultaneously collected at the same location. Lastly, the paper presents future research directions, which encompass the development of new, reliable parameters specific to wearable PPG devices and conducting studies in real-world scenarios, such as 24-h long-term measurements.
1
Future directions emphasize creating new reliable parameters specific to wearable PPG and performing real-world studies such as 24-hour long-term measurements.
2
Key challenges identified are selecting optimal light-source wavelengths, developing low-power interpolation to obtain high-resolution inter-beat intervals at low sampling rates, and jointly measuring multiple physiological phenomena with multi-wavelength PPG at the same location.
3
PPG is a low-cost optical technique widely used in commercial devices to measure oxygen saturation, blood pressure, cardiac output, autonomic function, and peripheral vascular disease.
4
Recent semiconductor and demand-driven advances enabled integration of PPG into wrist-worn wearables with multiple sensor structures and algorithmic processing to measure health indicators during daily life.
5
Technological advances covered include analog front-end design, multi-emitter/receiver sensor configurations, and identification of minimum sampling rates for low-power wearable PPG systems.
6
Wearable PPG can be applied to measure stress, sleep, blood pressure, blood glucose, and activity, given appropriate signal processing and algorithms.

Wrist-worn wearable devices using photoplethysmography (PPG) sensors

Technological advances, measurement capabilities, challenges, and future directions of PPG-based sensing in wearables, including sensor/AFE configurations, sampling and signal-processing requirements, wavelength selection, multi-wavelength measurements, and physiological parameter estimation (stress, sleep, blood pressure, blood glucose, activity)

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2023-07-03
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Kwang Bok Kim
Hyun Jae Baek
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