Martin Krismer
Papers
1
Total Citations
29
H-Index
1
About
Martin Krismer is a prominent orthopedic researcher whose work has significantly advanced the understanding of implant stability and surgical precision in joint replacement. His key research areas include biomechanics, robotic-assisted surgery, and the long-term outcomes of hip arthroplasty. Krismer’s major contribution lies in demonstrating the comparative advantages of robotic implantation over manual techniques, particularly in achieving superior primary stability of anatomical stems—a critical factor for implant longevity and patient recovery. His landmark 2003 study, cited 29 times, provided foundational evidence that robotic systems like ROBODOC® can enhance the accuracy of component placement, reducing the risk of micromotion and aseptic loosening. This work has influenced both clinical practice and the development of computer-assisted orthopedic surgery. Beyond this, Krismer has contributed to studies on implant design and patient-specific factors affecting joint replacement success. His research is widely recognized for bridging engineering principles with surgical outcomes, offering practical insights for improving prosthetic fixation. For students and researchers in orthopedics, Krismer’s work remains a key reference for understanding the biomechanical and clinical benefits of robotic assistance in joint arthroplasty.
Research Focus
Key Achievements
Top Papers
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