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Mechanical testing of a single rod versus a double rod in a long-segment animal model.

机译:在长段动物模型中对单杆和双杆的机械测试。

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This study involved the mechanical testing of single-rod segmental hook fixation and double-rod segmental hook fixation in a long-segment animal model. The goals were first to compare the flexibility of a single-rod scoliosis construct with that of a double-rod construct when tested in torsion, and second, to determine the effect of not using instrumentation with every vertebral segment for the single rod. Another study found that the single-rod construct was as stiff in torsion as the standard double-rod construct in a model of 10 vertebral segments. The amount of neutral zone (NZ) rotation was tested in five calf spines using an MTS (Material Testing System) machine. Five constructs were tested and included 1) a single rod with hooks at every level except the apex; 2) a single rod with two fewer hooks; 3) a single rod with four fewer hooks; 4) a double-rod construct; and 5) no instrumentation. The amount of NZ rotation between vertebral segments was measured over 12, 10, 8, 6, 4, and 2 vertebral segments. An analysis of variance with all constructs showed that the instrumented spines had significantly less movement than did the uninstrumented spine. Statistical comparison using analysis of variance of constructs (constructs 1 to 4) showed that over 12 vertebral segments (T4-L3), all single-rod constructs (constructs 1 to 3) allowed more NZ rotation than did the standard double-rod construct. This testing indicated that over 12 vertebral segments the single rod allowed more NZ rotation than a double-rod construct.
机译:这项研究涉及在长段动物模型中单杆节段钩固定和双杆节段钩固定的力学测试。目的是首先比较单杆脊柱侧弯结构和双杆结构在挠曲测试时的柔韧性,其次是确定不对每个杆的每个椎骨节段使用仪器的效果。另一项研究发现,在10个椎骨节段的模型中,单杆构造的扭转强度与标准双杆构造的一样。使用MTS(材料测试系统)机器在五个小腿棘突中测试了中性区域(NZ)的旋转量。测试了五种构造,其中包括:1)除顶点以外在每个水平上带有钩的单个杆; 2)单杆,钩子少两个; 3)一根杆少了四个钩; 4)双杆构造; 5)没有仪器。在12个,10个,8个,6个,4个和2个椎骨段之间测量了椎骨段之间的NZ旋转量。对所有构造的方差分析表明,器械刺的脊椎运动明显少于未器械刺的脊椎。使用构建体(构建体1至4)的方差分析进行统计比较表明,在12个椎骨节段(T4-L3)中,所有单杆构建体(构建体1至3)比标准双杆构建体允许更多的NZ旋转。该测试表明,在12个椎骨节段上,单杆比双杆构造允许更多的NZ旋转。

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