Subrata Mondal
Aston University, University of Cambridge, Indian Institute of Technology Mandi, Motilal Nehru National Institute of Technology, Queen Mary University of London, Asansol Engineering College
About
I am a mechanical research engineer specialising in advanced
computational and experimental biomechanics of both hard and soft biological tissues, with expertise in medical devices, tissue regeneration, and injury analysis.
My proficiency extends to design and failure analysis of orthopaedic implants, coupled with extensive experience in finite element analysis, medical imaging, computer-aided design, programming, and 3D printing. My comprehensive training covers theoretical and practical aspects of finite element method, solid mechanics, design, and biomechanics.
Employment
-
Aston University Lecturer2025 - Present
-
University of Cambridge Research Associate2024 - 2025
-
Queen Mary University of London Postdoctoral Researcher2023 - 2024
-
University of Bath Postdoctoral Research Associate2023 - 2023
-
Dublin City University Postdoctoral research assistant2020 - 2022
-
Academy of Technology Assistant Professor2014 - 2015
-
Aston University
-
University of Bath? - 2023
Education
-
Indian Institute of Technology Mandi PHD2015 - 2020
-
Motilal Nehru National Institute of Technology M.TECH2012 - 2014
-
Asansol Engineering College B.TECH2008 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (24)
- Influence of obesity on load-transfer mechanism, contact mechanics, and longevity of cemented acetabular cup Save
- Finite element analysis of vertebroplasty in the osteoporotic T11-L1 vertebral body: Effects of bone cement formulation Save
- A numerical investigation of stress, strain, and bone density changes due to bone remodelling in the talus bone following total ankle arthroplasty Save
- An ankle prosthesis Save
- DEVELOPMENT OF AN OPEN-SOURCE FINITE ELEMENT ANKLE MODEL FOR IN-SILICO INVESTIGATION OF THE ANKLE JOINT Save
- QUANTIFICATION OF ERROR IN THE MANUAL SEGMENTATION OF ANKLE CT SCANS Save
- A finite element model of contusion spinal cord injury in rodents Save
- Mechanical behaviour of gel-filled additively-manufactured lattice structures under quasi-static compressive loading Save
- Effect of Uniaxial Compression Frequency on Osteogenic Cell Responses in Dynamic 3D Cultures Save
- A computational analysis of a novel therapeutic approach combining an advanced medicinal therapeutic device and a fracture fixation assembly for the treatment of osteoporotic fractures: Effects of physiological loading, interface conditions, and fracture… Save