Mohsen Sarparast
Papers
2
Total Citations
44
H-Index
2
About
Mohsen Sarparast’s research focuses on the intersection of orthopaedic biomechanics and manufacturing process optimisation, with a particular emphasis on high-speed bone drilling. His major contributions lie in experimentally and computationally modelling the forces and temperatures generated during bone drilling—a critical concern in orthopaedic surgery, dentistry, and fracture treatment. Sarparast’s work addresses the risk of thermal necrosis, where temperatures exceeding 47 °C can damage bone tissue, as well as the potential for drill fracture. By combining finite element analysis with experimental validation, he has developed predictive models to optimise drilling parameters, thereby reducing thermal damage and improving surgical outcomes. His most-cited paper, “Experimental and finite element investigation of high-speed bone drilling: evaluation of force and temperature” (2020), has garnered 25 citations, while his 2019 study on modelling and optimisation has 19 citations. These works are notable for their practical implications in enhancing patient safety and surgical precision. Sarparast’s research is highly relevant for students and researchers in biomedical engineering, offering a data-driven approach to solving a longstanding clinical challenge.
Research Focus
Key Achievements
Top Papers
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