首页> 外文期刊>Journal of Avian Medicine and Surgery >Mechanical evaluation of external skeletal fixator-intramedullary pin tie-in configurations applied to cadaveral humeri from red-tailed hawks (Buteo jamaicensis).
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Mechanical evaluation of external skeletal fixator-intramedullary pin tie-in configurations applied to cadaveral humeri from red-tailed hawks (Buteo jamaicensis).

机译:对红尾鹰( jamoicensis )的尸体肱骨的外骨骼固定器-髓内钉固定结构的力学评估。

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摘要

Use of external skeletal fixator-intramedullary pin (ESF-IM) tie-in fixators is an adjustable and effective method of fracture fixation in birds. The objective of this study was to determine the contribution of each of the following parameters to the compressive and torsional rigidity of an ESF-IM pin tie-in applied to avian bones with an osteotomy gap: (1) varying the fixation pin position in the proximal bone segment and (2) increasing the number of fixation pins in one or both bone segments. ESF-IM pin tie-in constructs were applied to humeri harvested from red-tailed hawks (Buteo jamaicensis) (n=24) that had been euthanatized for clinical reasons. Constructs with a variation in the placement of the proximal fixation pin and with 2, 3, or 4 fixation pins applied to avian bone with an osteotomy gap were loaded to a defined displacement in torque and axial compression. Response variables were determined from resulting load-displacement curves (construct stiffness, load at 1-mm displacement). Increasing the number of fixation pins from 1 to 2 per bone segment significantly increased the stiffness in torque (110%) and compression (60%), and the safe load in torque (107%) and compression (50%). Adding a fixation pin to the distal bone segment to form a 3-pin fixator significantly increased the stiffness (27%) and safe load (20%) in torque but not in axial compression. In the configuration with 2 fixation pins, placing the proximal pin distally in the proximal bone segment significantly increased the stiffness in torque (28%), and the safe load in torque (23%) and in axial compression (32%). Results quantified the relative importance of specific parameters affecting the rigidity of ESF-IM pin tie-in constructs as applied to unstable bone fracture models in birds.
机译:使用外部骨骼固定器-髓内钉(ESF-IM)系结固定器是一种可调节且有效的鸟类骨折固定方法。这项研究的目的是确定以下每个参数对应用于截骨间隙的禽骨的ESF-IM销钉固定件的压缩和扭转刚度的影响:(1)改变固定钉在钉扎器中的位置(2)增加一个或两个骨节中固定销的数量。将ESF-IM销钉配对构建体应用于从因临床原因而被安乐死的红尾鹰(n = 24)收获的肱骨。将具有近端固定销的位置变化并且将2、3或4个固定销施加到具有截骨术间隙的禽骨上的结构,以规定的扭矩和轴向压缩位移加载。根据产生的载荷-位移曲线(结构刚度,位移为1毫米时的载荷)确定响应变量。每个骨段将固定销的数量从1个增加到2个,可以显着提高扭矩的刚度(110%)和压缩力(60%),以及安全负载的扭矩(107%)和压缩力(50%)。在远端骨节上添加固定销以形成3销固定器,可显着提高扭矩的刚度(27%)和安全负载(20%),但不会增加轴向压缩。在具有2个固定销的配置中,将近端销向远侧放置在近端骨段中会显着增加扭矩的刚度(28%),并增加扭矩的安全负载(23%)和轴向压缩(32%)。结果量化了影响ESF-IM销栓连接结构刚度的特定参数的相对重要性,这些参数适用于鸟类的不稳定骨折模型。

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