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动力髋螺钉固定股骨转子间骨折的有限元分析 被引量:7

Finite element analysis of the intertrochanteric fractures fixed with dynamic hip screw
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摘要 目的研究后内侧骨折块对股骨转子间骨折动力髋螺钉(DHS)固定后的生物力学影响。方法利用股骨CT数据建立一组股骨近端的三维有限元模型,在此基础上制作股骨转子间骨折累及小转子和内侧骨皮质的骨折模型,对骨折模型进行DHS固定,并对DHS固定模型进行有限元分析。结果股骨转子间骨折累及单纯小转子骨折后,股骨内侧皮质应力和外侧DHS钢板所承受的应力大小无明显变化。当累及1/2内侧皮质时,内侧应力升高约28%,外侧DHS钢板所承受的应力升高约9%;当内侧皮质完全累及时,前内侧皮质的交界处应力升高约125%,外侧DHS钢板所承受的应力升高约96%。结论股骨转子间骨折伴单纯小转子骨折可以不予固定;而当内侧皮质累及时,无论是累及1/2还是累及全部内侧骨皮质,均需复位固定后内侧骨皮质。 Objective To research the biomechanical influence of posteriomedial fi'actures on the intertrochanteric fractures fixed with dynamic hip screw(DHS). Methods Three dimensional finite element models of intact and osteotomied proximal femurs were established from computerized tomographic (CT) scanning images, and finite element analysis was undertaken. Results The stress of the DHS endured and the medial femoral cortex was not significantly changed after isolated lesser trochanteric fracture. With half of the medial cortex involved, the stress of the DHS enlured and the medial femoral cortex increased by 9% and 28% . When the entire medial cortex was involved, the slress of the DHS endured and the medial femoral cortex increased by 96% and 125%. Conclusions Intertroehanteric fractures with isolated lesser trochanteric fracture will not be fixed is safe. And when the medial cortex involved, both inwlving half of or involving entire medial cortex, need to restore the continuity of the cortex.
出处 《临床骨科杂志》 2012年第4期458-461,共4页 Journal of Clinical Orthopaedics
关键词 股骨转子间骨折 生物力学 有限元分析 femoral intertrochanterie fractures biomechanies finite element analysis
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参考文献11

  • 1Bong M R,Patel V,Iesaka K,et al.Comparison of a sliding hip screw with a trochanteric lateral support plate to an intramedullary hip screw for fixation of unstable intertrochanteric hip fractures:a cadaver study[J].J Trauma,2004,56(4):791-794. 被引量:1
  • 2Koval K J.Intramedullary nailing of proximal femur fractures[J].Am J Orthop,2007,36(4):4-7. 被引量:1
  • 3Kaplan K,Miyamoto R,Levine B R,et al.Surgical management of hip fractures:an evidence-based review of the literature Ⅱ:intertrochanteric fractures[J].J Am Acad Orthop Surg,2008,16(11):665-673. 被引量:1
  • 4Kuzyk P R,Shah S,Zdero R,et al.A biomechanical comparison of static versus dynamic lag screw modes for cephalomedullary nails used to fix unstable peritrochanteric fractures[J].J Trauma Acute Care Surg,2012,72(2):65-70. 被引量:1
  • 5方华,黄杰,陈丰,蒋林.动力髋螺钉治疗不稳定股骨转子间骨折:两种方法处理内侧弓的比较[J].临床骨科杂志,2010,13(2):157-159. 被引量:4
  • 6彭亮,曾小丽,白净.基于CT数据的股骨三维有限元建模方法[J].清华大学学报(自然科学版),2007,47(3):416-419. 被引量:23
  • 7Keaveny T M,Wachtel E F,Ford C M,et al.Differences between the tensile and compressive strengths of bovine tibial trabecular depend on modulus[J].J Biomech,1994,27(9):1137-1146. 被引量:1
  • 8Bayraktar H H,Morgan E F,Niebur G L,et al.Comparison of the elastic and yield properties of human femoral trabecular and cortical bone tissue[J].J Biomech,2004,37(1):27-35. 被引量:1
  • 9王震宇,戴克戎.股骨距与股骨上段有效髓腔的几何形态学研究[J].中华骨科杂志,1994,14(7):436-440. 被引量:33
  • 10Audige L,Hanson B,Swiontkowski M F.Implant-related complications in the treatment of unstable intertrochanteric fractures:meta-analysis of dynamic screw-plate versus dynamic screw-intramedullary nail devices[J].Int Orthop,2003,27(4):197-203. 被引量:1

二级参考文献15

  • 1Adams C I,Robinson C M,Court Brown C M,et al.Prospective randomized controlled trial of an intramedullary nail versus dynamic screw and plate for intertrochanteric fractures of the femur[J].J Orthop Trauma,2001,15(6):394-400. 被引量:1
  • 2Kim W Y,Han C H,Park J I,et al.Failure of intertrochanteric fracture fixation with a dynamic hip screw in relation to preoperative fracture stability and osteoporosis[J].Int Orthop,2001,25(6):360-362. 被引量:1
  • 3Taeger G,Schmid C,Zettl R,et al.Stable and unstable pertrochanteric femoral fractures,Differentiated indications for the dynamic hip screw[J].Unfallchirurg,2000,103(9):741-748. 被引量:1
  • 4汪臻,CT技术及其临床应用,1988年 被引量:1
  • 5Lengsfeld M,Schmitt J,Alter P,et al.Comparison of geometry-based and CT voxel-based finite element modelling and experimental validation[J].Med Eng Phys,1998,20(7):515-522. 被引量:1
  • 6Rho J Y,Hobatho M C,Ashman R B.Relations of mechanical-properties to density and CT numbers in human bone[J].Med Eng Phys,1995,17(5):347-355. 被引量:1
  • 7Wirtz D C,Schiffers N,Pandorf T,et al.Critical evaluation of known bone material properties to realize anisotropic FE-simulation of the proximal femur[J].J Biomech,2000,33(10):1325-1330. 被引量:1
  • 8Spitzer V,Ackerman M J,Scherzinger A L,et al.The visible human male:A technical report[J].J Am Med Inf ASSOC,1996,3(2):118-130. 被引量:1
  • 9Taylor W R,Roland E,Ploeg H,et al.Determination of orthotropic bone elastic constants using FEA and modal analysis[J].J Biomech,2002,35(6):767-773. 被引量:1
  • 10Pitzen T,Geisler F,Matthis D,et al.A finite element model for predicting the biomechanical behaviour of the human lumbar spine[J].Control Eng Practice,2002,10(1):83-90. 被引量:1

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