首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >DESIGN OF BIOMECHANICAL TESTING METHODS AND METRICS TO EVALUATE THE PERFORMANCE OF SYNTHETIC SPINAL IMPLANTS VERSUS BONE GRAFT FOR LUMBAR CORPECTOMY
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DESIGN OF BIOMECHANICAL TESTING METHODS AND METRICS TO EVALUATE THE PERFORMANCE OF SYNTHETIC SPINAL IMPLANTS VERSUS BONE GRAFT FOR LUMBAR CORPECTOMY

机译:评估腰椎组织综合性脊柱植入物与骨移植物性能的生物力学测试方法和方法的设计

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摘要

The human spine is a mechanically complex system of joints crucial for stable posture and movement. The ultimate goal of a vertebral body replacement following a spinal injury that necessitates such a procedure is to have the replacement strut fully incorporate into the spine. This incorporation process is known as bony "fusion", which facilitates the restoration of stability. Bone graft and metallic implants have been used for vertebral body replacement procedures. Both methods have been associated with failure of fusion and recurrence of instability. The development and rationale of the mechanical testing procedures implemented to best differentiate the stability afforded by bone graft versus expandable titanium cage is presented.
机译:人体脊柱是关节的机械复杂系统,对于稳定的姿势和运动至关重要。脊椎损伤后需要进行这种手术的椎体置换的最终目标是使置换支杆完全合并到脊柱中。该掺入过程被称为骨“融合”,其有助于恢复稳定性。骨移植物和金属植入物已用于椎体置换手术。两种方法都与融合失败和不稳定性复发有关。介绍了机械测试程序的发展和原理,以最好地区分骨移植与可扩张钛笼提供的稳定性。

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