Mazdak Ghajari
Papers
4
Total Citations
90
H-Index
3
About
Mazdak Ghajari is a pioneering researcher at the intersection of additive manufacturing, robotics, and medical simulation. His work centers on two key areas: the mechanical characterisation of 3D-printed materials and the development of advanced robotic simulators for clinical training. Ghajari’s most cited paper, “Material characterisation of additively manufactured elastomers at different strain rates and build orientations” (2020, 65 citations), provides foundational insights into how build orientation and strain rate affect elastomer performance—critical knowledge for designing durable, functional printed parts. In medical robotics, he has made significant contributions to palpation training. His work on “Robotic Simulators for Tissue Examination Training With Multimodal Sensory Feedback” (2022, 18 citations) integrates haptic, visual, and auditory cues to teach subtle sensorimotor skills. He also developed a surrogate finite element model of the abdomen for real-time visualisation of tissue stress during training (2022, 6 citations), enhancing feedback in robotic patients. Most recently, Ghajari has explored angle-dependent damping in robot joints to reduce impact forces (2025), showing his versatility in addressing safety in human-robot interaction. His research directly improves medical education and robotic safety, with growing impact across engineering and clinical domains.
Research Focus
Key Achievements
Top Papers
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