首页> 外文期刊>Clinical biomechanics >Biomechanical and histological evaluation of the application of biodegradable poly-L-lactic cushion to the plate internal fixation for bone fracture healing.
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Biomechanical and histological evaluation of the application of biodegradable poly-L-lactic cushion to the plate internal fixation for bone fracture healing.

机译:可生物降解的聚L乳酸垫在板内固定中用于骨折愈合的应用的生物力学和组织学评估。

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BACKGROUND: Internal plate fixation of fracture can provide favorable mechanical environment for fracture fragments. However, osteoporosis under the plate is often found, and refracture may occur after the plate is removed. There are two different opinions about the bone loss beneath the plate: first is the stress shielding effect brought by the rigid fixation, and the second is the insufficient blood supply of the bone caused by the placement of the plate. In this paper, we tried to achieve a favorable condition for the fracture healing by inserting a kind of biodegradable cushion, through which the stress shielding effect and the interruption of the bone blood supply could be relieved at the same time. METHODS: Animal models of internal fixation for tibia diaphyseal fracture with the placement of the poly-l-lactic (PLLA) cushion between the plate and the bone were established; a series of in vitro investigations and finite element (FE) analysis were performed to evaluate the effect of this new internal fixation system. FINDINGS: During both the initial and 50% healing periods, the extent of stress shielding of the fracture zone decreased due to the use of the PLLA cushion. Especially for the 50% healing stage, the insertion of the PLLA cushion on alleviating the stress shielding of the bone tissue between the inner two screws directly under the plate is more apparent than that at the initial healing period. Meanwhile, radiological and histological coloration results demonstrated sooner callus growth and better trabecular rearrangement of the fracture zone in the PLLA group with the degradation of the PLLA cushion during the healing periods. INTERPRETATIONS: This study showed that the use of the PLLA cushion at the initial period did not impair the stability of the whole system, which provides a favorable mechanical environment for the following fracture healing. On the other hand, its superiorities on alleviating stress shielding effect and interruption with the blood supply of the bone tissue beneath the plate contributed to the favorable fracture healing conditions in PLLA group with the degradation of the materials.
机译:背景:骨折的内钢板固定可以为骨折碎片提供良好的机械环境。但是,经常会发现钢板下方的骨质疏松症,并且在移开钢板后可能会发生骨折。关于板下方的骨丢失,有两种不同的观点:第一种是刚性固定带来的应力屏蔽效果,第二种是由于放置板而导致的骨骼血液供应不足。本文试图通过插入一种可生物降解的垫层来为骨折愈合提供良好的条件,通过该垫层可以同时缓解应力屏蔽效应和骨骼血液供应的中断。方法:建立胫骨干phy端骨折内固定的动物模型,并在板和骨之间放置聚乳酸(PLLA)垫。进行了一系列的体外研究和有限元分析,以评估这种新型内固定系统的效果。结果:在最初的愈合期和50%的恢复期中,由于使用了PLLA缓冲垫,骨折区的应力屏蔽范围减小了。特别是对于50%的愈合阶段,与初始愈合阶段相比,在减轻位于板正下方的两个内部螺钉之间的骨组织应力屏蔽方面,采用PLLA缓冲垫的插入更为明显。同时,放射学和组织学染色结果显示,在愈合期间,PLLA组的愈伤组织生长更快,并且骨折区域的骨小梁重排更好,并且PLLA垫层退化。解释:这项研究表明,在最初阶段使用PLLA缓冲垫不会损害整个系统的稳定性,这为随后的骨折愈合提供了良好的机械环境。另一方面,其在减轻应力屏蔽效果和由于板下方骨组织的血液供应的中断而具有的优势导致了PLLA组的有利的骨折愈合条件,并且材料降解。

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