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首页> 外文期刊>Veterinary and Comparative Orthopaedics and Traumatology >Biomechanical comparison of a novel castless arthrodesis plate with T-plate and cross pin techniques for canine partial carpal arthrodesis.
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Biomechanical comparison of a novel castless arthrodesis plate with T-plate and cross pin techniques for canine partial carpal arthrodesis.

机译:新型城堡式关节固定板与T型板和十字钉技术在犬部分腕关节固定中的生物力学比较。

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摘要

Objectives: To describe a novel canine castless partial carpal arthrodesis plate (par-CA) and its ex vivo biomechanical comparison with T-plate and cross pinning techniques for canine partial carpal arthrodesis. Methods: The three implant systems were applied to three cohorts of six forelimbs from Greyhounds euthanatized for reasons unrelated to the study. Intercarpal and carpometacarpal palmar fibrocartilage and ligaments were sectioned. Potentiometers were applied between the radial carpal and third metacarpal bones to measure micromotion, and limbs were loaded at 30% of bodyweight at 1 Hertz for 10,000 cycles on a servo-hydraulic universal testing machine. Following assessment of micromotion, limbs were loaded to failure at 20 mm/s and ultimate strength, ultimate displacement, and stiffness were measured. Results: The T-plate (p<0.01) and par-CA (p<0.01) had reduced micromotion relative to the cross pin constructs but there was no significant difference between the control, T-plate and par-CA constructs. There was no significant difference in ultimate strength between constructs. Ultimate displacement was reduced in the plated constructs. Stiffness did not differ between constructs. Clinical significance: The novel par-CA construct was biomechanically similar to the T-plate and both were superior to cross pins in resisting micromotion. There was no difference in load at failure between constructs. The par-CA plate permits radial and ulnar carpal bone compression, a more distal location of the plate to limit impingement, and placement of screws in two metacarpal bones; features which may offer clinical benefits over T-plate fixation.
机译:目的:描述一种新型的犬城堡式部分腕关节固定板(par-CA),并与T板和交叉钉扎技术对犬的部分腕关节固定进行离体生物力学比较。方法:出于与研究无关的原因,将三个植入系统应用于来自安乐死的灵狮的六个前肢的三个队列中。切开腕间和腕掌掌部纤维软骨和韧带。在the骨腕骨和第三掌骨之间施加电位计以测量微动,并在伺服液压万能试验机上以1赫兹的体重将30%的肢体加载10,000个循环。在评估微动之后,将肢体以20 mm / s的速度加载至失败,并测量极限强度,极限位移和刚度。结果:相对于十字钉构建体,T板(p <0.01)和par-CA(p <0.01)的微运动减少,但对照,T板和par-CA结构之间没有显着差异。构造之间的极限强度没有显着差异。在平板构建物中最终位移减少了。构造之间的刚度没有差异。临床意义:新颖的par-CA构建物在生物力学上与T板相似,并且在抵抗微动方面均优于交叉销。构造之间的破坏载荷没有差异。 par-CA板允许radial骨和尺骨腕骨压缩,该板的更远侧位置可以限制撞击,并且可以在两个掌骨中放置螺钉。可能比T板固定提供临床益处的功能。

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