Mataliotakis George I, Tsouknidas Alexander, Panteliou Sofia, Vekris Marios D, Mitsionis Grigorios I, Agathopoulos Simeon, Beris Alexander E
Department of Orthopaedic Surgery, University of Ioannina, Ioannina, Greece.
Department of Mechanical Engineering, Aristotle University of Thessaloniki, Thessaloniki, Greece.
Biomed Mater Eng. 2015;25(4):335-46. doi: 10.3233/BME-151540.
The optimum fixation device for the critical size bone defect is not established yet.
A reliable, feasible and low-cost fixation device for the long-term maintenance of a critical bone defect.
A custom-made plate made of poly-methyl-methacrylate was used for the fixation of a critical defect of rats' femurs. The screws were securely fixing both on the plate and the bone. A three point bending test, aimed to resemble the in vivo loading pattern, a Finite Element Analysis and a 24-week in vivo monitoring of the integrity of the plate fixation were utilized.
The plate has linear and reproducible behavior. It presents no discontinuities in the stress field of the fixation. Its properties are attributed to the material and the locking principle. It fails beyond the level of magnitude of the normal ambulatory loads. In vivo, 100% of the plates maintained the bone defect intact up to 12 weeks and 85% of them at 24 weeks.
This novel locking plate shows optimal biomechanical performance and reliability with high long-term in vivo survival rate. It is fully implantable, inexpensive and easily manufactured. It can be qualified for long term critical defect fixation in bone regeneration studies.
目前尚未确定用于临界尺寸骨缺损的最佳固定装置。
开发一种可靠、可行且低成本的固定装置,用于长期维持临界骨缺损。
使用定制的聚甲基丙烯酸甲酯板固定大鼠股骨的临界缺损。螺钉牢固地固定在板和骨上。采用旨在模拟体内加载模式的三点弯曲试验、有限元分析以及对板固定完整性进行24周的体内监测。
该板具有线性且可重复的性能。其在固定应力场中无间断。其性能归因于材料和锁定原理。它在超过正常行走负荷量级的水平时失效。在体内,100%的板在12周时保持骨缺损完整,85%的板在24周时保持完整。
这种新型锁定板显示出最佳的生物力学性能和可靠性,体内长期存活率高。它完全可植入、价格低廉且易于制造。它可用于骨再生研究中的长期临界缺损固定。