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The influence of screw omission on construction stiffness and bone surface strain in the application of bone plates to cadaveric bone.

机译:在将骨板应用于尸体骨时,螺钉遗漏对结构刚度和骨表面应变的影响。

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摘要

Biological fracture repair is becoming an increasingly popular means of fracture fixation. This technique involves a reduction in the amount of surgical trauma thereby preserving vascular supply and soft-tissue integrity combined with the implantation of less hardware. The aim is the stimulation of callus formation as the means by which fracture union occurs. This paper describes the mechanical effect of the symmetrical omission of screws on construction stiffness and bone surface strain following the application of bone plates to cadaveric bone. The influence of the pattern of screw omission was evaluated in both intact and osteotomized bone specimens. The application of bone plates using certain patterns of screw omission did not significantly effect the stiffness of the final construction whilst inherent bone surface strain was increased. It was concluded that the omission of screws in certain defined patterns for a given plate-bone construction may meet the criteria for 'biological fixation'. There was no apparent deleterious effect on structural stiffness following the omission of 40% of the total screw complement from a plate-bone construction.
机译:生物骨折修复正成为越来越普遍的骨折固定方法。该技术涉及减少外科手术创伤的量,从而与更少的硬件植入相结合地保持血管供应和软组织完整性。目的是刺激愈伤组织的形成,作为发生骨折愈合的手段。本文描述了在将骨板应用到尸体骨之后,对称地省略螺钉对结构刚度和骨表面应变的机械作用。在完整和截骨的骨标本中均评估了螺钉遗漏模式的影响。使用某些螺钉遗漏模式的骨板应用不会显着影响最终结构的刚度,而固有骨表面应变会增加。结论是,对于给定的板骨结构,在某些定义的模式中省略螺钉可能符合“生物固定”的标准。从板骨结构中减去总螺钉补件的40%之后,对结构刚度没有明显的有害影响。

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