Theses most similar to Reconstructing the blood pressure waveform using a wearable photoplethysmograph sensor and hydrostatic pressure variations measured by accelerometers (Marinković, Aleksanda; 2007) read it
Design and analysis of artifact-resistive finger photoplethysmographic sensors for vital sign monitoring
Rhee, Sokwoo (2000)
- Advisors: Boo-Ho Yang; Harry H. Asad
- Department of Mechanical Engineering
Thermal-based probe for testing endothelial dysfunction and possible implications for diagnosing atherosclerosis
Lediju, Muyinatu A. (Muyinatu Adebisi) (2006)
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- Department of Mechanical Engineering
A wearable blood pressure sensor using oscillometric photoplethysmography and micro accelerometers
Shaltis, Phillip Andrew (2007)
- Advisor: H. Harry Asada
- Department of Mechanical Engineering
Continuous estimation of cardiac output and arterial resistance from arterial blood pressure using a third-order Windkessel model
Francis, Said Elias (2007)
- Advisors: George C. Verghese; Tushar Parlikar
- Department of Electrical Engineering and Computer Science
An exploration of through-the-eye intraocular pressure measurement device
Chiu, Flora T. (Flora Tze Kwan) (2005)
- Advisors: David Miller; Ernesto Blanco
- Department of Electrical Engineering and Computer Science
Development of a wearable blood pressure monitor using adaptive calibration of peripheral pulse transit time measurements
McCombie, Devin Barnett, 1972- (2008)
- Advisor: H. Harry Asada
- Department of Mechanical Engineering
- Advisors: George C. Verghese; Thomas Heldt
- Department of Electrical Engineering and Computer Science
Estimation of cardiovascular indices by analysis of the arterial blood pressure signal
Arai, Tatsuya (2011)
- Advisor: Richard J. Cohen
- Department of Aeronautics and Astronautics
- Advisors: Faisal M. Kashif; George C. Verghese
- Department of Electrical Engineering and Computer Science
Cuff-less continuous monitoring of beat-to-beat blood pressure using a Kalman filter and sensor fusion
Zhang, Yi, 1973- (2000)
- Advisors: H. Harry Asada; Roger G. Mark
- Department of Electrical Engineering and Computer Science; Department of Mechanical Engineering