Our mission is to transform the healthcare landscape by developing cutting-edge solutions in Computer-Assisted Surgery, Virtual Surgical Planning, and Medical Additive Manufacturing or 3D Printing for medical applications.
We aim to revolutionize surgical practices and improve patient outcomes by utilizing the latest advancements in medical technology. Our research efforts are rooted in a collaborative approach, working closely with regional, national, and international partners to translate our scientific breakthroughs into practical, life-changing medical solutions.
Initiative applications are always welcome. We are looking forward to meeting you!
Computational Medical Imaging and Interventions research combines artificial intelligence, medical imaging, and computer-assisted technologies to improve diagnosis, surgical planning, and treatment guidance. It also explores the use of virtual and augmented reality to enhance surgical precision, training, and patient outcomes.
Personalized Implants and Medical Device Engineering focuses on designing patient-specific implants using advanced manufacturing and biomaterials to improve fit, function, and clinical outcomes. It includes metal, high-performance polymer, and bioresorbable implants tailored to individual anatomy and gradually integrating or degrading in the body as needed.
Biofabrication and Regenerative Medicine focuses on creating biological tissues and functional structures to repair or replace damaged organs using engineering and life sciences. Key approaches include bioprinting living tissues and developing biosensors to monitor biological processes and support tissue growth and healing.
Translational and Personalized Healthcare aims to bring research innovations into clinical practice while tailoring treatments to individual patient needs. In fields like craniomaxillofacial and hand surgery, it supports patient-specific surgical planning, reconstruction, and functional restoration using advanced imaging and computational tools.