首页> 外文期刊>The Veterinary Journal >Finite element analysis of a novel pin-sleeve system for external fixation of distal limb fractures in horses.
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Finite element analysis of a novel pin-sleeve system for external fixation of distal limb fractures in horses.

机译:一种新型销钉套筒系统用于马远端肢体骨折外固定的有限元分析。

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摘要

The transfixation pin cast (TPC) is an external skeletal fixation technique used to treat horses with distal limb fractures, but its use is often associated with pin-loosening and an increased risk of treatment failure. To address implant loosening, the pin sleeve cast system (PSC) was recently designed and consists of a pin-sleeve unit inserted into the bone. Each pin runs through a sleeve placed in the bone, making contact at two fixed points only within the sleeve. Each pin is attached to a ring embedded in a resin cast. In this report, the mechanical performance of a traditional TPC pin arrangement was compared with that of the PSC using validated finite element models of bone substitutes previously tested in vitro. The PSC resulted in a marked reduction in peak strain magnitude around the pins and a more even distribution of strain across the bone cortex. The two systems resulted in comparable proximal fragment displacement and had a similar stress concentration around bone defects during implant removal. The findings suggest that the PSC load transfer mechanism is effective even in geometrically complex structures like equine bones.Digital Object Identifier http://dx.doi.org/10.1016/j.tvjl.2010.10.026
机译:固定针铸造(TPC)是一种外部骨骼固定技术,用于治疗具有远端肢体骨折的马匹,但其使用通常与松动针钉和治疗失败的风险增加相关。为了解决植入物松动的问题,最近设计了一种针套铸造系统(PSC),该系统由插入骨骼的针套单元组成。每个销钉穿过放置在骨骼中的一个套筒,仅在套筒内的两个固定点接触。每个销钉都连接到嵌入树脂铸件中的环上。在本报告中,使用经过验证的骨骼替代物的有限元模型,对传统的TPC销排列的机械性能与PSC的机械性能进行了比较,该模型先前已在体外进行了测试。 PSC导致销周围的峰值应变幅度显着降低,并且整个骨皮质的应变分布更加均匀。这两个系统导致了类似的近端碎片移位,并且在植入物去除过程中围绕骨缺损具有相似的应力集中。研究结果表明,PSC负载转移机制甚至在马齿等几何复杂的结构中也有效。数字对象标识符http://dx.doi.org/10.1016/j.tvjl.2010.10.026

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