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涉及颏孔骨折处理中钢板设计的有限元分析比较

Finite element analysis comparison of plate designs in managing fractures involving the mental foramen.

作者信息

Mahathi Neralla, Azariah Emmanuel, Ravindran C

机构信息

Faculty of Dental Sciences, Department of Oral and Maxillofacial Surgery, Sri Ramachandra University, Chennai, Tamilnadu, India.

出版信息

Craniomaxillofac Trauma Reconstr. 2013 Jun;6(2):93-8. doi: 10.1055/s-0033-1343789. Epub 2013 Apr 30.

Abstract

Introduction The aim of the study was to propose an ideal plating design for fractures running through the mental foramen. Methods The study compared three plating designs-two four-hole miniplates, 2 × 2-hole three-dimensional (3D) plate, and modified 2 × 2-hole 3D plate (posterior strut removed)-using finite element analysis. Von Mises stresses generated around the plates and bone were measured, as well as the mobility that is generated between the fracture fragments by applying muscle forces to generate bite force in one test and applying a force of 500 N over the premolars and first molar region in the second test. Results Von Mises stress in bone with miniplates measured 9.24 MPa in test 1 and 131.99 MPa in test 2. The stress with unmodified 3D plates measured 34.9 MPa in test 1 and150.03 MPa in test 2. The stress with modified 3D plates measured 24.98 MPa in test 1 and 150.59 MPa in test 2. Von Mises stress on the plates and screws measured 28.23 MPa, 95.97 MPa, 72.93 MPa in test 1 and 458.63 MPa, 779.01 MPa, 742.39 MPa in test 2 on miniplates, unmodified 3D plates, and modified 3D plates, respectively. The fracture mobility generated in the model with miniplates measured 0.001 mm in test 1 and 0.01 mm in test 2 and 0.007 mm and 0.02 mm in the model with unmodified 3D plates in test 1 and in test 2, respectively. In the model with modified 3D plates, the value was 0.001 mm and 0.01 mm in tests 1 and 2, respectively. Conclusion The ideal plate design is the two-plate technique with minimal stress generation on the bone and the hardware. The modified 3D plate has adequate strength to be used in the region but needs to be studied in detail.

摘要

引言 本研究的目的是为贯穿颏孔的骨折提出一种理想的接骨板设计。方法 本研究使用有限元分析比较了三种接骨板设计——两种四孔微型接骨板、2×2孔三维(3D)接骨板和改良的2×2孔3D接骨板(去除后支柱)。测量接骨板和骨骼周围产生的von Mises应力,以及在一项测试中通过施加肌肉力以产生咬合力,在第二项测试中在双尖牙和第一磨牙区域施加500 N力时骨折碎片之间产生的移动性。结果 在测试1中,微型接骨板在骨骼中的von Mises应力为9.24 MPa,在测试2中为131.99 MPa。未改良的3D接骨板在测试1中的应力为34.9 MPa,在测试2中为150.03 MPa。改良的3D接骨板在测试1中的应力为24.98 MPa,在测试2中为150.59 MPa。在测试1中,微型接骨板、未改良的3D接骨板和改良的3D接骨板上接骨板和螺钉的von Mises应力分别为28.23 MPa、95.97 MPa、72.93 MPa,在测试2中分别为458.63 MPa、779.01 MPa、742.39 MPa。在测试1中,微型接骨板模型产生的骨折移动性为0.001 mm,在测试2中为0.01 mm;在测试1和测试2中,未改良的3D接骨板模型产生的骨折移动性分别为0.007 mm和0.02 mm。在改良的3D接骨板模型中,测试1和测试2中的值分别为0.001 mm和0.01 mm。结论 理想的接骨板设计是双接骨板技术,在骨骼和硬件上产生的应力最小。改良的3D接骨板在该区域具有足够的强度可供使用,但需要进行详细研究。

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