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Chiari骨盆截骨术中外展肌张力对股骨头软骨生物力学影响的三维有限元分析 被引量:1

Mechanical effect of the hip abductor muscle on the femoral head after Chiari pelvic osteotomy using finite element method
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摘要 目的探讨Chiari骨盆截骨术中外展肌力负荷对股骨头软骨的生物力学影响。方法建立Chiari骨盆截骨术的髋关节三维有限元模型,应用非线性接触压力分析方法,观察不同的外展肌力负荷条件下关节软骨接触压力及软骨下骨应力分布。结果Chiari术后关节软骨的接触压力和股骨头软骨下骨应力明显降低,接触面积明显增加。随着外展肌力负荷的降低,接触压力的重新分布更加明显。对应于原髋臼软骨的压力逐渐降低,新髋臼软骨的压力逐渐升高。股骨头软骨下骨应力也进一步降低。而术后关节软骨的接触面积改变不大。结论外展肌力负荷所引起的生物力学改变在Chiari骨盆截骨术中起重要作用。 Objective To investigate the effect of abductor load to the femoral head in the Chiari pelvic osteotomy by biomechanics. Methods The three-dimensional finite element hip models of Chian pelvic osteotomy was constituted to observe the regularity of stress distribution according different abductor loads using the nonlinear contact analysis. Results It was found that the contact pressure and the peak stress after Chiari pelvic osteotomy decreased remarkably, but the contact area increased clearly. With the decreasing of the abductor loads, contact pressure and peak stress decreased correspondingly. And the contact pressure distribution transferred from the original acetabular area (pressure tuming into low) to the new acetabular area (pressure turning into high) gradually. But the changes of the contact area were not significant after Chiari pelvic osteotomy corresponding to different abductor loads. Conclusion The biomechanics changes owing to abductor load plays an important role in Chiari pelvic osteotomy.
出处 《医用生物力学》 CAS CSCD 2007年第1期79-83,共5页 Journal of Medical Biomechanics
关键词 Chiari骨盆截骨术 髋关节外展肌 有限元法 应力 Chiari pelvic osteotomy Hip abductor muscle Finite Element Method (FEM) Stress
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参考文献10

  • 1李长有,王禹祥,范广宇.髋臼发育不良性髋关节的三维有限元非线性接触压力分析[J].医用生物力学,2005,20(1):18-24. 被引量:17
  • 2Hashemi-Nejad A,Haddad FS,Tong KM,et al.Does Chiari osteotomy compromise subsequent total hip arthroplasty[J].J Arthroplasty.2002,17(6):731-739.
  • 3Arokoski MH,Arokoski JP,Haara M,et al.Hip Muscle strength and muscle cross sectional area in men with and without hip osteoarthritis[J].J Rheumatol,2002,29(10):2187-2195.
  • 4Ito H,Matsuno T,Minami A.Chiari pelvic osteotomy for advanced osteoarthritis in patients with hip dysplasia[J].J Bone Joint Surg (Am),2005,87 Suppl 1(Pt 2):213-225.
  • 5Migaud H,Chantelot C,Giraud F,et al.Long-term survivorship of hip shelf arthroplasty and Chiari osteotomy in adults[J].Clin Orthop Relat Res,2004,418:81-86.
  • 6Howell GE,Biggs RE,Bourne RB.Prevalence of abductor mechanism tears of the hips in patients with osteoarthritis[J].J Arthroplasty,2001,16(1):121-123.
  • 7Lengsfeld M,Kaminsky J,Merz B,et al.Sensitivity of femoral strain pattern analyses to resultant and muscle forces at the hip joint[J].Med Eng Phys,1996,18(1):70-78.
  • 8Radin EL,Maquet P,Parker H.Rationale and indications for the "hanging hip" procudure:a clinical and experimental study[J].Clin Orthop Relat Res,1975,112:221-330.
  • 9Ohashi H,Hirohashi K,Yamano Y.Factors influencing the outcome of Chiari pelvic osteotomy:a long-term follow-up[J].J Bone Joint Surg (Br),2000,82(4):517-525.
  • 10Li CY,Imaishi K,Shiba N,et al.Biomechanical evaluation of foot pressure and loading force during gait in rheumatoid arthritic patients with and without foot orthosis[J].Kurume Med J,2000,47(3):211-217.

二级参考文献10

  • 1Peyron JG. Osteoarthritis. The epdemiologic viewpoint [J]. Clin Orthop, 1986, 213: 13-19.
  • 2Harris WH. Etiology of osteoarthritis of the hip [J]. Clin Orthop, 1986, 213: 20-33.
  • 3Maquet PGJ. Biomechanics of the hip-as applied to osteoarthritis and related conditions [M]. New York:Springer, 1985: 37-41.
  • 4Rapperport DJ, Carter DR, Schurman DJ. Contact finite element stress analysis of the hip joint [J]. J Orthop Res, 1985, 3: 435-446.
  • 5Kempson GE, Spivey C J, Swanson SAV, et al. Patterns of cartilage stiffness on normal and degenerate human femoral heads [J].J Biomech, 1971,4: 597-562.
  • 6Pedley RB, Meachim G. Topographical variation in patellar subarticular calcified tissue density [J]. J Anat, 1979, 128: 737-745.
  • 7Huiskes R. Finite element analysis of acetabular reconstruction noncemented threaded cups [J]. Acta Orthop Scand, 1987, 58:620-625.
  • 8Huiskes R, Strens PHGE, Heck Jv, et al. Interface stresses in the resurfaced hip [J]. Acta Orthop Scand, 1985, 56: 474-478.
  • 9Das DS, Bose K, Balasubramaniam P, et al. Surface morphology of Asian cadaveric hips [J]. J Bone Joint Surg, 1985, 67B: 225-228.
  • 10Smith RW, Egger P, Coggon D, et al. Osteoarthritis of the hip joint and acetabular dysplasia in women [J]. Ann Rheum Dis,1995, 54: 179-181.

共引文献16

同被引文献19

  • 1苏佳灿,张春才,陈学强,王保华,吴建国,丁祖泉.骨盆及髋臼三维有限元模型材料属性设定及其生物力学意义[J].中国临床康复,2005,9(2):71-73. 被引量:19
  • 2戴金龙,李炫升,梁兰丽,陈文斌.改良式股骨转子间外翻截骨术的生物力学研究:三维有限元素分析[J].中华创伤骨科杂志,2007,9(6):510-514. 被引量:2
  • 3Keyak JH, Rossi SA, Jones KA, et al. Prediction of femoralfracture load using automated finite element modeling [J]. JBiomech, 1998, 31(2): 125-133.
  • 4Wang X, Sanyal A, Cawthon PM, et al. Prediction of newclinical vertebral fractures in elderly men using finite elementanalysis of CT scans [J]. J Bone Miner Res, 2012, 27(4):808-816.
  • 5Dall'Ara E, Luisier B, Schmidt R, et al. A nonlinearQCT-based finite element model validation study for thehuman femur tested in two configurations in vitro [J]. Bone,2013, 52(1): 27-38.
  • 6Chen G, Wu FY, Liu ZC, et al. Comparisons of node-basedand element-based approaches of assigning bone materialproperties onto subject-specific finite element models [J].Med Eng Phys, 2015, 37(8): 808-812.
  • 7Lengsfeld M, Schmitt J, Alter P, et al. Comparison ofgeometry-based and CT voxel-based finite element modelingand experimental validation [J]. Med Eng Phys, 1998, 20(7):515-522.
  • 8Completo A, Duarte R, Fonseca F, et al. Biomechanicalevaluation of different reconstructive techniques of proximal tibia in revision total knee arthroplasty: an in-vitro and finiteelement analysis [J]. Clin Biomech, 2013, 28(3): 291-298.
  • 9Gray HA, Taddei F, Zavatsky AB, et al. Experimentalvalidation of a finite element model of a human cadaverictibia [J]. J Biomech Eng, 2008, 130(3): 031016.
  • 10Taddei F, Pancanti A, Viceconti M. An improved method forthe automatic mapping of computed tomography numbersonto finite element models [J]. Med Eng Phys, 2004, 26(1):61-69.

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