This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a Université de Sherbrooke directory, so their courses may be missing. Find their university profile.
Research
Latest papers
A Dual-Output Physiology-Informed Neural Network Architecture for Continuous Cuffless Blood Pressure Waveform Estimation: A Proof‑of‑Concept.
Artery research · 2026 · senior author
No Cuff, No Trust: AHA/ACC's Verdict on Cuffless BP Devices.
Journal of the American College of Cardiology · 2025 · first author
Oscillometric blood pressure measurement: modeling and analysis of the area oscillogram and height oscillogram.
Frontiers in physiology · 2025
Latest funding
- $77,850
Portable hemodynamic monitoring system
NSERC · 2025 · Principal investigator
- $12,500
Wearable tonometry and oscillometry for data-driven cuffless blood pressure waveform monitoring
NSERC · 2024 · Principal investigator
- $35,000
Wearable tonometry and oscillometry for data-driven cuffless blood pressure waveform monitoring
NSERC · 2024 · Principal investigator
4 publications.
A Dual-Output Physiology-Informed Neural Network Architecture for Continuous Cuffless Blood Pressure Waveform Estimation: A Proof‑of‑Concept.
Aloui Z, Landry C
No Cuff, No Trust: AHA/ACC's Verdict on Cuffless BP Devices.
Landry C, Hundemer GL, Goupil R
Oscillometric blood pressure measurement: modeling and analysis of the area oscillogram and height oscillogram.
Dhamotharan V, Cheng HM, Sung SH, Chen CH, Landry C, Freithaler M, Mahajan A, Shroff SG, Hahn JO, Mukkamala R
A smartphone application toward detection of systolic hypertension in underserved populations.
Landry C, Dhamotharan V, Freithaler M, Hauspurg A, Muldoon MF, Shroff SG, Chandrasekhar A, Mukkamala R
Portable hemodynamic monitoring system
Principal investigators: Landry, Céderick
Keywords: cuffless blood pressure measurement; mechatronics; artificial neural network; cardiovascular physiology; system identification; biomechanical properties; signal processing; waveform analysis; arterial stiffness; viscoelasticity
Wearable tonometry and oscillometry for data-driven cuffless blood pressure waveform monitoring
Principal investigators: Landry, Céderick
Keywords: cuffless blood pressure measurement; mechatronics; artificial neural network; cardiovascular physiology; system identification; biomechanical properties; signal processing; waveform analysis; arterial stiffness; viscoelasticity
Wearable tonometry and oscillometry for data-driven cuffless blood pressure waveform monitoring
Principal investigators: Landry, Céderick
Keywords: cuffless blood pressure measurement; mechatronics; artificial neural network; cardiovascular physiology; system identification; biomechanical properties; signal processing; waveform analysis; arterial stiffness; viscoelasticity
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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