Constantin von Deimling
Papers
5
Total Citations
267
H-Index
3
About
Constantin von Deimling is a leading orthopedic biomechanics researcher whose work bridges the gap between surgical technique and mechanical understanding. His primary research focuses on shoulder instability, knee kinematics, and patellofemoral joint mechanics, with a strong emphasis on robotic and navigated biomechanical testing. His most impactful contribution is a 2016 study comparing three remplissage techniques for engaging Hill-Sachs defects in glenohumeral instability, which has garnered 123 citations and directly informs surgical decision-making. He also demonstrated that repairing the lateral posterior meniscal root significantly improves stability in ACL-deficient knees (91 citations), a finding with major implications for combined injury management. His work on distal femoral torsional osteotomy (48 citations) provides critical biomechanical evidence for treating patellofemoral instability. Beyond these landmark studies, Von Deimling has pioneered the development of open-architecture robotic testbenches for real-time 3D visualization and implant evaluation, enabling high-fidelity cadaveric simulation of total knee arthroplasty. His work is distinguished by its translational impact, offering surgeons quantifiable, evidence-based guidance for complex joint reconstruction procedures.
Research Focus
Key Achievements
Top Papers
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