Honigmann Philipp, Oonk Joris, Dobbe Johannes, Strackee Simon, Streekstra Geert, Haefeli Mathias
Hand and Peripheral Nerve Surgery, Department of Orthopaedic and Trauma Surgery, Kantonsspital Baselland, Bruderholz, Laufen, Liestal, Switzerland.
Biomedical Engineering and Physics, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands.
Arch Orthop Trauma Surg. 2024 Dec 16;145(1):55. doi: 10.1007/s00402-024-05609-7.
The scaphoid bone is essential for wrist stability, force transmission, and movement, being crucial for maintaining carpal kinematics. In cases where the scaphoid is non-reconstructable, a complete replacement can serve as a treatment option to preserve carpal alignment and motion. This approach has evolved since its first descriptions in 1945, benefiting significantly from advancements in patient-specific implant design, additive manufacturing/3D printing, and material use in recent years. We present a technique for scaphoid replacement using a patient-specific prosthesis and reconstruction of intrinsic and extrinsic ligaments to achieve optimal stability and mobility.
舟骨对于腕关节的稳定性、力的传递和运动至关重要,对维持腕骨的运动学起着关键作用。在舟骨无法重建的情况下,完全置换可作为一种治疗选择,以保持腕骨的排列和运动。自1945年首次描述以来,这种方法不断发展,近年来在个性化植入物设计、增材制造/3D打印和材料使用方面取得了显著进展。我们介绍一种使用个性化假体置换舟骨并重建内在和外在韧带的技术,以实现最佳的稳定性和活动度。