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Compression Nailing of Long Bones

机译:长骨压缩钉

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摘要

The biomechanical concept of compression nailing consists of the use of an intra medullary device that is inserted into the medullary cavity without jamming and that allows a relative movement of the fragments after locking. First, the implant is firmly attached to the distal main fragment, using conventional locking screws at the nail tip. Next, the other main fragment, which contains the nail entry portal, is fixed via a locking screw in a longitudinal slot in the nail. The compression screw is inserted, and produces distraction between the proximal part of the nail and the locking screw in the slot. This distraction results in relative movement between the intramedullary nail and the proximal fragment, compressing the fixed distal fragment against the proximal. Whether or not compression nailing can be used depends on the axial stability of the fracture or osteotomy. Therefore, simple fracture patterns, nonunions and elective osteotomies are excellent indications. The same is true for fusions of the knee or the ankle joint, providing that there are no major bone defects.Benefits: The chief benefits of compression nailing are controlled fragment apposition, and superior stability, especially to rotational forces, as compared with conventional intramedullary nailing techniques. The favorable biomechanical conditions provided allow early full weight bearing, and ensure a high rate of bony union. With implants and instruments optimized for compression nailing, this technique should widen the scope and enhance the outcome of intramedullary nailing.
机译:压钉的生物力学概念包括使用髓内装置,该装置被插入髓腔而不会发生阻塞,并在锁定后允许碎片的相对运动。首先,使用指甲尖端的常规锁定螺钉将植入物牢固地附着在远端主片段上。接下来,另一个包含指甲进入口的主要碎片通过锁紧螺钉固定在指甲的纵向槽中。插入压缩螺钉,并在钉子的近端部分和插槽中的锁定螺钉之间产生牵张。这种分心导致髓内钉和近端片段之间的相对运动,从而将固定的远端片段压向近端。是否可以使用加压钉取决于骨折或截骨的轴向稳定性。因此,简单的骨折类型,骨不连和选择性截骨术是很好的适应症。膝关节或踝关节的融合也是如此,前提是不存在主要的骨缺损。优点:与常规髓内相比,压钉的主要好处是可控的骨折块位置,以及优越的稳定性,特别是对旋转力的稳定性钉技术。提供的有利的生物力学条件可以尽早承受全重,并确保较高的骨结合率。通过针对压钉进行了优化的植入物和器械,该技术应扩大范围并增强髓内钉的治疗效果。

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