
معرفی
Stephan Maximilian Herbert Röhrl is a Professor at the Department of Orthopaedics within the Faculty of Medicine at the University of Oslo. He maintains his clinical and research activities at Ullevål University Hospital (OUS, Ullevål) and is a key member of CIRRO (Center for Implant and Related Research Oslo). His work bridges clinical orthopaedic practice with advanced biomechanical research methodologies.
Professor Röhrl's research interests span orthopaedic biomechanics, radiostereometric analysis (RSA), joint replacement techniques, and orthopaedic implant evaluation. His work particularly focuses on precise measurement of implant migration, wear analysis, and biomechanical testing of new surgical techniques and devices. He has made significant contributions to understanding hip and knee arthroplasty outcomes, fracture management techniques, and sacroiliac joint procedures through rigorous biomechanical and clinical studies.
His publication record reveals a clear trajectory of increasingly sophisticated imaging techniques applied to orthopaedic research. Starting with traditional RSA methods, his recent work has pioneered CT-based RSA approaches that offer greater precision in measuring implant migration and wear. His research consistently addresses clinically relevant questions about implant stability, surgical techniques, and patient outcomes across various orthopaedic subspecialties including hip, knee, wrist, and foot/ankle surgery.
Professor Röhrl maintains an active collaboration network across Norwegian orthopaedic research centers and participates in numerous multi-center clinical trials. His work with the Norwegian Arthroplasty Register demonstrates his commitment to population-level orthopaedic outcomes research.
As a principal investigator at CIRRO, he leads research efforts focused on improving the precision of implant evaluation techniques and translating biomechanical findings into clinical practice. His laboratory work with cadaveric models and advanced imaging provides crucial preclinical data for new orthopaedic devices and techniques.
