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Multi-Site Photoplethysmography Technology for Blood Pressure Assessment: Challenges and Recommendations
Gabriel Chan1, Rachel Cooper2, Manish Hosanee3
1Faculty of Medicine, University of British Columbia, Vancouver, BC V6T 1Z3, Canada. gabriel.chan@alumni.ubc.ca.
Insights
Multi-site photoplethysmography (PPG) offers a promising, cuff-less method for continuous blood pressure monitoring. Further validation is needed to ensure accuracy across diverse populations for this hypertension detection technology.
Area of Science:
- Biomedical Engineering
- Cardiovascular Technology
- Medical Diagnostics
Background:
- Hypertension, a prevalent disease often asymptomatic, necessitates early detection and intervention to prevent severe comorbidities like chronic kidney and cardiovascular diseases.
- Current blood pressure measurement using sphygmomanometers provides intermittent readings and is susceptible to various confounding factors, highlighting the need for continuous monitoring solutions.
Purpose of the Study:
- To systematically review and analyze existing research on multi-site photoplethysmography (PPG) for blood pressure assessment.
- To identify promising methodologies and provide recommendations for future research in this field.
Main Methods:
- A systematic literature search was conducted for studies published between January 2010 and January 2019.
- Analysis focused on papers proposing novel methods using two-channel PPG systems and signal processing for blood pressure estimation.
Main Results:
- Thirteen papers were identified, presenting promising results using multi-site PPG for blood pressure estimation.
- These studies employed various two-channel PPG systems and signal processing techniques.
Conclusions:
- Multi-site PPG demonstrates potential as a non-invasive, cuff-less technology for continuous blood pressure monitoring.
- A significant limitation identified is the general lack of validation concerning sample size and population diversity in current research, indicating a need for more robust studies.
Abstract:
Hypertension is one of the most prevalent diseases and is often called the "silent killer" because there are usually no early symptoms. Hypertension is also associated with multiple morbidities, including chronic kidney disease and cardiovascular disease. Early detection and intervention are therefore important. The current routine method for diagnosing hypertension is done using a sphygmomanometer, which can only provide intermittent blood pressure readings and can be confounded by various factors, such as white coat hypertension, time of day, exercise, or stress. Consequently, there is an increasing need for a non-invasive, cuff-less, and continuous blood pressure monitoring device. Multi-site photoplethysmography (PPG) is a promising new technology that can measure a range of features of the pulse, including the pulse transit time of the arterial pulse wave, which can be used to continuously estimate arterial blood pressure. This is achieved by detecting the pulse wave at one body site location and measuring the time it takes for it to reach a second, distal location. The purpose of this review is to analyze the current research in multi-site PPG for blood pressure assessment and provide recommendations to guide future research. In a systematic search of the literature from January 2010 to January 2019, we found 13 papers that proposed novel methods using various two-channel PPG systems and signal processing techniques to acquire blood pressure using multi-site PPG that offered promising results. However, we also found a general lack of validation in terms of sample size and diversity of populations.
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