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环直径和钢丝张力对四环环形外固定架结构轴向生物力学的影响。

Effects of ring diameter and wire tension on the axial biomechanics of four-ring circular external skeletal fixator constructs.

作者信息

Cross A R, Lewis D D, Murphy S T, Rigaud S, Madison J B, Kehoe M M, Rapoff A J

机构信息

Department of Small Animal Clinical Sciences, College of Veterinary Medicine, University of Florida, Gainesville 32610-0126, USA.

出版信息

Am J Vet Res. 2001 Jul;62(7):1025-30. doi: 10.2460/ajvr.2001.62.1025.

Abstract

OBJECTIVE

To determine relative effects of ring diameter and wire tension on axial biomechanical properties of 4-ring circular external skeletal fixator constructs.

SAMPLE POPULATION

4-ring circular external skeletal fixator constructs and artificial bone models.

PROCEDURE

4-ring constructs were assembled, using 50-, 66-, 84-, or 118-mm-diameter rings. Two 1.6-mm-diameter fixation wires were attached to opposing surfaces of each ring at intersection angles of 90 degrees and placed through a gap-fracture bone model. Three examples of each construct were loaded in axial compression at 7 N/s to a maximum load of 400 N at each of 4 wire tensions (0, 30, 60, and 90 kg). Response variables were determined from resulting load-displacement curves (construct stiffness, load at 1 mm of displacement, displacement at 400 N).

RESULTS

Ring diameter and wire tension had a significant effect on all response variables and had a significant interaction for construct stiffness and displacement at 400 N. Significant differences within all response variables were seen among all 4 ring diameters and all 4 wire tensions. As ring diameter increased, effect of increasing wire tension on gap stiffness and gap displacement at 400 N decreased. Ring diameter had a greater effect than wire tension on all response variables.

CONCLUSIONS AND CLINICAL RELEVANCE

Although effects of wire tension decrease as ring diameter increases, placing tension on wires in larger ring constructs is important because these constructs are inherently less stiff. The differential contribution of ring diameter, wire tension, and their interactions must be considered when using circular external skeletal fixators.

摘要

目的

确定环直径和钢丝张力对四环环形外固定架结构轴向生物力学性能的相对影响。

样本群体

四环环形外固定架结构和人工骨模型。

方法

组装四环结构,使用直径为50、66、84或118毫米的环。将两根直径1.6毫米的固定钢丝以90度的交叉角连接到每个环的相对表面,并穿过一个间隙骨折骨模型。每种结构的三个样本在轴向压缩下以7牛/秒的速度加载,在4种钢丝张力(0、30、60和90千克)下分别加载至最大载荷400牛。根据所得的载荷-位移曲线确定响应变量(结构刚度、位移1毫米时的载荷、400牛时的位移)。

结果

环直径和钢丝张力对所有响应变量均有显著影响,并且在结构刚度和400牛时的位移方面存在显著的交互作用。在所有4种环直径和所有4种钢丝张力之间,所有响应变量均存在显著差异。随着环直径的增加,钢丝张力增加对400牛时的间隙刚度和间隙位移的影响减小。环直径对所有响应变量的影响大于钢丝张力。

结论及临床意义

尽管随着环直径的增加钢丝张力的影响会减小,但在较大环结构中对钢丝施加张力很重要,因为这些结构本身刚度较低。在使用环形外固定架时,必须考虑环直径、钢丝张力及其相互作用的不同贡献。

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