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HOW EXTREME LOCKING OF INTRAMEDULLARY NAILS AFFECTS THE OVERALL BIOMECHANICS OF INTRAMEDULLARY NAIL SYSTEMS

机译:髓内钉的极端锁定如何影响髓内钉系统的整体生物力学

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摘要

Intramedullary nails are tube-like implantable medical devices that are commonly used to treat long bone fractures. Interlocking screws, that pass from one side of the bone to the other, through holes at either end of the nail, provide additional stability. Newer designs of intramedullary nails have screws placed more extremely. The aim of this study was to use mechanics to analytically investigate how extreme locking of intramedullary nails affects the overall biomechanics of intramedullary nail systems. The nail was modelled as a tube of various sizes. The deflection of the nail from axial compression, bending and torsion was determined as the working length of the nail was varied. The screw was modelled as a simple beam, built-in at both ends. The deflection of the screw was determined as the medullary width was varied. Placing interlocking screws more extremely in intramedullary nails increases the working length of the nail and leads to the use of longer screws, since at the bone extremities, the width of the medullary cavity increases. An increased working length leads to increased rotation of the nail. The use of longer screws leads to increased deflection of the screw and an increased bending moment that has to be resisted by the bone cortex. Extreme locking of intramedullary nails changes the biomechanics of the nail system, and may well have clinical implications in terms of fracture healing.
机译:髓内钉是管状的可植入医疗器械,通常用于治疗长形骨折。从骨头的一侧到另一侧的互锁螺钉通过钉子任一端的孔提供了额外的稳定性。较新的髓内钉设计将螺钉放置得更加牢固。这项研究的目的是使用力学来分析性研究髓内钉的极端锁定如何影响髓内钉系统的整体生物力学。指甲被建模为各种尺寸的管子。随着钉子的工作长度变化,确定钉子由于轴向压缩,弯曲和扭转而产生的挠曲。螺钉建模为两端均内置的简单梁。确定了髓的宽度变化时螺钉的挠度。在髓内钉中更极端地放置互锁螺钉会增加钉的工作长度,并导致使用更长的螺钉,因为在骨末端处,髓腔的宽度会增加。工作长度增加导致指甲旋转增加。使用较长的螺钉会导致螺钉挠曲增加,并且弯曲力矩增加,而弯曲力矩必须由骨皮质抵抗。髓内钉的极度锁定会改变指甲系统的生物力学,并且可能在骨折愈合方面具有临床意义。

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