Rahul Manoj
Norwegian University of Science and Technology, Healthcare Technology Innovation Centre, Indian Institute of Technology Madras, National Institute of Technology Calicut
About
I am an electrical engineer and interdisciplinary research scientist working at the intersection of biomedical instrumentation, sensing technologies, and cardiovascular health. My work focuses on building reliable, user-focused systems that translate complex measurements into clinically meaningful insights.
Currently, I am a Postdoctoral Research Fellow with the Division of Biomechanics, Department of Structural Engineering at NTNU, Norway, where I collaborate with academia, hospitals, and industry on physics-based and data-driven modelling, parameter estimation, and digital twin solutions for cardiovascular health diagnosis and monitoring.
With over seven years of experience in applied R&D, I have worked across electro-mechanical system design, embedded electronics, ultrasound technologies, multi-modality sensing, signal processing, algorithm development, physiological modelling, and experimental validation, building functional prototypes, and supporting pre-clinical and clinical studies.
I enjoy working in multidisciplinary environments where core engineering principles meet real-world impact, whether that is a devices, algorithms, models, or workflows. I am now excited to transition into roles where I can contribute to translational research, technology development, system design, and product engineering.
Research interests:
Physics & Data Driven Modelling
Sensors & Instrumentation
Signal Processing
Algorithm Development
Prototyping
Employment
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Norwegian University of Science and Technology Post Doctoral Research Fellow2024 - Present
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Healthcare Technology Innovation Centre Research Intern, Research Fellow2018 - 2024
Education
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Indian Institute of Technology Madras Master of Science (M.S) & Doctor of Philosophy (Ph.D)2017 - 2024
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National Institute of Technology Calicut Bachelor of Technology2012 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (41)
- Single-element ultrasound system for high-resolution jugular venous pulse contour detection Save
- Carotid Pressure Wave Separation Analysis Using Multi-Rayleigh Flow Model Save
- Acoustic Plethysmography for Aortic Pulse Wave Velocity Measurement: In-Vitro and In-Vivo Feasibility Study Save
- Assessment of Local Venous Pulse Wave Velocity using Single-Site Methods- A Pilot Study Save
- Bilateral Carotid Pulse Wave Velocity: A Proof of Concept Save
- Estimating Left Ventricular Contractility through Carotid Artery Distension: A Portable Device Utilizing A-Mode Ultrasound and Surrogate Marker Analysis Save
- Impact of Physical (In)Activity on Carotid-Femoral PWV and Central Blood Pressure in Young and Middle-Aged Adults: A Pilot Study using ARTSENS Plus Save
- Measurement of Inter and Intra-cycle Variations in Local Pulse Wave Velocity from Forward Travelling Pulse Waves Save
- Periodic Weight Measurement for Bedridden Patients Using a Pressurized Liquid-Filled Channel System Integrated with Hospital Beds Save
- Quantification of reflected wave magnitude and transit time using a multi-Rayleigh flow waveform model: A simplified approach to arterial wave separation analysis Save