首页> 外文期刊>Veterinary Surgery >Arthrodesis of the Proximal Interphalangeal Joint in the Horse: A Cyclic Biomechanical Comparison of Two and Three Parallel Cortical Screws Inserted in Lag Fashion
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Arthrodesis of the Proximal Interphalangeal Joint in the Horse: A Cyclic Biomechanical Comparison of Two and Three Parallel Cortical Screws Inserted in Lag Fashion

机译:马近端趾间关节的关节固定术:两个和三个平行皮质螺钉以滞后方式插入的循环生物力学比较

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摘要

To compare the biomechanical cyclic fatigue properties of 2 and 3 parallel transarticular 5.5 mm cortical screws used in arthrodesis of the proximal interphalangeal (PIP) joint. Randomized block design, for horse, fixation method (2 versus three 5.5 mm cortical screws), side (right, left) and end (front, hind) in cadaveric equine limbs. Cadaveric adult equine fore- and hindlimbs (n=5 pairs each). Two parallel 5.5 mm cortical screws were inserted in lag fashion, transarticularly through the PIP joint in 1 limb of a pair, and in the contralateral limb, three 5.5 mm cortical screws were inserted in similar fashion. Constructs were then tested in 3-point bending in a dorsal-to-palmar (plantar) direction using a materials testing machine using a cyclic load of -500 to -3500 N at a rate of 6 Hz. There was no significant difference in displacement at failure, force at failure or number of cycles between limbs. Forelimb constructs tended to fail at a greater mean displacement than hindlimb constructs but this difference was not significant (P=.06). There was no statistical difference in any tested biomechanical variable between left- and right-sided limbs. There was no significant difference in the number of cycles to failure for the 2 methods tested. Two 5.5 mm cortical screws inserted in parallel for PIP joint arthrodesis is surgically simpler, results in comparable biomechanical performance in the current model and should perform as well as three 5.5 mm screws under cyclic fatigue conditions.
机译:为了比较2和3个平行的跨关节5.5毫米皮质螺钉在近端指间关节(PIP)关节固定术中的生物力学循环疲劳特性。尸体的随机区组设计,适用于马,尸体马肢体的固定方法(2对3个5.5 mm皮质螺钉),侧面(右,左)和末端(前,后)。尸体成年马前肢和后肢(每对n = 5对)。滞后插入两个平行的5.5 mm皮质螺钉,穿过一对一对肢中的PIP关节,穿过关节,在对侧肢中,以类似的方式插入三个5.5 mm皮质螺钉。然后,使用材料测试机以6 Hz的速率在-500至-3500 N的循环载荷下,在背对掌(足底)方向上进行三点弯曲测试,以进行三点弯曲。失败时的位移,失败时的力或四肢之间的周期数没有显着差异。前肢构造的平均位移往往比后肢构造的平均位移大,但这种差异并不明显(P = .06)。左侧和右侧肢体之间的任何测试生物力学变量均无统计学差异。两种测试方法的失败循环次数均无显着差异。并行插入两个用于PIP关节固定术的5.5毫米皮质螺钉在手术上更简单,在当前模型中可产生可比的生物力学性能,并且在周期性疲劳条件下的性能应与三个5.5毫米螺钉相同。

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