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A new modeling methodology for continuous cuffless blood pressure measurement.

, , and . BHI, page 264-267. IEEE, (2016)

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Pulse transit time based respiratory rate estimation with singular spectrum analysis., , , , and . Medical Biol. Eng. Comput., 58 (2): 257-266 (2020)Unobtrusive Sensing and Wearable Devices for Health Informatics., , , , , , , , and . IEEE Trans. Biomed. Eng., 61 (5): 1538-1554 (2014)Learning to Predict Blood Pressure with Deep Bidirectional LSTM Network., , , , and . CoRR, (2017)Multi-Wavelength Photoplethysmography Enabling Continuous Blood Pressure Measurement With Compact Wearable Electronics., , , , , and . IEEE Trans. Biomed. Eng., 66 (6): 1514-1525 (2019)A Novel Continuous Blood Pressure Estimation Approach Based on Data Mining Techniques., , , , , , and . IEEE J. Biomed. Health Informatics, 21 (6): 1730-1740 (2017)A pulse transit time based fusion method for the noninvasive and continuous monitoring of respiratory rate., , , and . EMBC, page 4240-4243. IEEE, (2016)A new modeling methodology for continuous cuffless blood pressure measurement., , and . BHI, page 264-267. IEEE, (2016)Photoplethysmogram intensity ratio: A potential indicator for improving the accuracy of PTT-based cuffless blood pressure estimation., and . EMBC, page 398-401. IEEE, (2015)Recommendation to Use Wearable-Based mHealth in Closed-Loop Management of Acute Cardiovascular Disease Patients During the COVID-19 Pandemic., , , , , , , , , and 2 other author(s). IEEE J. Biomed. Health Informatics, 25 (4): 903-908 (2021)