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Comparison of biomechanical performance of single-level triangular and quadrilateral profile anterior cervical plates

机译:单级三角形和四边形剖面宫颈板的生物力学性能比较

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The quadrilateral anterior cervical plate (ACP) is used extensively in anterior cervical discectomy and fusion (ACDF) to reconstruct the stability of the cervical spine and prevent cage subsidence. However, there have been no comparison studies on the biomechanical performance of quadrilateral ACP and triangular ACP. The objective of this study is to investigate the functional outcomes of quadrilateral ACP and triangular ACP usage in ACDF surgery. In this study, a finite element model of intact C1-C7 segments was established and verified. Additionally, two implant systems were bui one using triangle anterior cervical plates (TACP) and another using quadrilateral orion anterior cervical plate (QACP). Both models were then compared in terms of their postoperative biomechanical performance, under normal and excessive motion. Compared to QACP, the peak stress of the TACP screws and plates occurred at 359.2 MPa and 97.2 MPa respectively and were the highest during over extension exercises. Alternately, compared to TACP, the endplate peak stress and the cage displacement of QACP were the largest at over extension, with values of 7.5 MPa and 1.2 mm, respectively. Finally, the average stress ratio of bone grafts in TACP was relatively high at 31.6%. In terms of biomechanical performance, TACP can share the load more flexibly and reduce the risks of cage subsidence and slippage but the screws have high peak stress value, thereby increasing the risk of screw slippage and fracture. This disadvantage must be considered when designing a TACP based implant for a potential patient.
机译:四边形前宫颈板(ACP)在前宫颈椎间盘切除术和融合(ACDF)中广泛使用,以重建颈椎的稳定性,防止笼沉降。然而,对四边形ACP和三角ACP的生物力学性能没有比较研究。本研究的目的是探讨ACDF手术中四边形ACP和三角ACP使用的功能结果。在本研究中,建立并验证了完整的C1-C7段的有限元模型。此外,建立了两个植入系统;使用三角形前宫颈板(TACP)和另一种使用四边形ORION前宫颈板(QACP)。然后在正常和过度运动的术后生物力学性能方面比较了两种模型。与QACP相比,TACP螺钉和板的峰值应力分别在359.2MPa和97.2MPa处发生,并且在延长展示期间是最高的。或者,与TACP相比,QACP的端板峰值应力和笼式位移在延伸方面最大,分别为7.5MPa和1.2mm。最后,TACP骨移植物的平均应力比在31.6%中相对较高。在生物力学性能方面,TACP可以更加灵活地与负载相比,降低笼子沉降和滑动的风险,但螺钉具有高峰应力值,从而增加螺钉滑动和骨折的风险。在为潜在患者设计TACP的植入物时,必须考虑这种缺点。

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