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新型可膨胀椎弓根螺钉在骨质疏松性腰椎融合与固定手术中的初步应用 被引量:8

Primary clinical evaluation of a novel expandable pedicle screw in osteoporotic lumbar spine fixation and fusion
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摘要 目的评价新型可膨胀椎弓根螺钉(Thunder钉)在骨质疏松性腰椎椎体中固定的可靠性及其临床疗效。方法随访2006年8月至2007年12月,应用Thunder钉治疗合并骨质疏松症的各种腰椎疾患42例(236枚螺钉),其中腰椎退行性疾病24例,腰椎结核二期后路融合手术8例,腰椎骨质疏松性压缩骨折6例,腰椎翻修手术4例。所有病例术前均行骨密度检查,患者腰椎骨密度平均下降2.6个标准差。术后处理与其他腰椎内固定术后患者相同。术后1周、3个月、半年、1年及2年随访患者,摄X线片并进行CT扫描三维重建,了解椎弓根螺钉稳定性及脊柱融合情况。结果42例患者均获平均16(12-24)个月的随访。术后3、6、12及24个月的影像学检查显示,所有Thunder钉位置良好,无螺钉松动、断裂迹象,评分平均值分别为3.0、3.0、2.9和2.9。脊柱骨融合于术后随时间延长趋于完善,骨融合评分平均值分别为2.3、2.5、3.0、3.0。所有患者l临床症状缓解,疗效满意。结论Thunder钉具有良好的钉一骨界面结合,能够提高螺钉在骨质疏松椎体中的固定强度,为脊柱融合提供良好的基础,临床疗效满意。 Objective To evaluate the clinical effect and reliability of a novel expandable pedicle screw (Thunder screw) in osteoporosis lumbar spine fixation and fusion. Methods From August 2006 to December 2007, 42 lumbar disorder patients with severe osteoporosis received expandable pedicle screw fixation with a total of 236 screws implanted. These patients included lumbar degenerative diseases 24 cases, lumbar tuberculosis 8 cases, lumbar compression fractures 6 cases, and revision surgery 4 cases. All patients underwent bone mineral density (BMD) scan. All patients had severe osteoporosis with a mean decrease of 2.6 standard deviations in BMD. The pre-operative and post-operative evaluation of the patients were collected one week, 3 months, 6 months, 12 months and 24 months after surgery. The plain film and three-dimensional CT scanning were conducted to evaluate the spinal fusion rate and fixation effectiveness of the expandable pedicle screws. Results The mean follow-up period was 16 months (ranged from 12 to 24 months). There was no loosening, broken or pullout of the expandable pediele screws. Three, 6, 12 and 24 months after surgery, the score of screw stabilization was 3.0, 3.0, 2.9 and 2.9 respectively. The bone healing was clearly noticed in the area surrounding the screws, intervertebral bodies and posterolaterally. The fusion index was 2.3, 2.5, 3.0 and 3.0 respectively. The clinical symptoms were totally released and the clinical re- suits were satisfactory. Conclusion The expandable pedicle screw fixation can achieve excellent screwbone interface intergration, increase the fixation strength in osteoporosis lumbar spine, thus facilitate spine fusion. The novel expandable pedicle screws can be a feasible approach for increasing fixation strength of pedicle screw in osteoporosis and revision spine surgeries.
出处 《中华骨科杂志》 CAS CSCD 北大核心 2009年第9期822-826,共5页 Chinese Journal of Orthopaedics
关键词 骨质疏松 骨螺丝 脊柱融合术 Osteoporosis Bone screw Spinal fusion
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参考文献14

  • 1Coe JD, Warden KE, Herzig MA, et al. Influence of bone mineral density on the fixation of thoracolumbar implants. A comparative study of transpedicular screws, laminar hooks, and spinous process wires. Spine, 1990, 15(9): 902-907.
  • 2Polly DW Jr, Orchowski JR, Ellenbogen RG. Revision pedicle screws. Bigger, longer shims--what is best? Spine, 1998, 23(12): 1374-1379.
  • 3Al-Hadithi M, Hughes SP, Amis AA. The effect of different insertion points on the security of pedicle screw fixation in bovine vertebrae. Spine, 2008, 33(2): 169-172.
  • 4Burkus JK, Dorchak JD, Sanders DL. Radiographic assessment of interbody fusion using recombinant human bone morphogenetic protein type 2. Spine, 2003, 28(4): 372-377.
  • 5Singh K, Smucker JD, Gill S, et al. Use of recombinant human bone morphogenetic protein-2 as an adjunct in posterolateral lumbar spine fusion: a prospective CT-scan analysis at one and two years. J Spinal Disord Tech, 2006, 19(6): 416-423.
  • 6Cook SD, Salkeld SL, Whitecloud TS 3rd, et al. Biomechanical evaluation and preliminary clinical experience with an expansive pedicle screw design. J Spinal Disord, 2000, 13(3): 230-236.
  • 7Wittenberg RH, Lee KS, Shea M, et al. Effect of screw diameter, insertion technique, and bone cement augmentation of pedicular screw fixation strength. Clin Orthop Relat Res, 1993 (296): 278- 287.
  • 8Barber JW, Boden SD, Ganey T, et al. Biomechanical study of lumbar pedicle screws: does convergence affect axial pullout strength? J Spinal Disord, 1998, 11(3): 215-220.
  • 9Ngu BB, Belkoff SM, Gelb DE, et al. A biomechanical comparison of sacral pedicle screw salvage techniques. Spine, 2006, 31 (6): E166-168.
  • 10Burval DJ, McLain RF, Milks R, et al. Primary pedicle screw augmentation in osteoporotic lumbar vertebrae: biomechanical analysis of pedicle fixation strength. Spine, 2007, 32 (10): 1077- 1083.

二级参考文献13

  • 1Dickman CA, Fessler RG,MacMillan M, et al. Transpedicular screw-rod fixateon of the lumbar spine:operative technique and outcome in 104 cases[J].Neurosurg, 1992,77(6):860-870.
  • 2Zdeblick TA. A prospective, randomized study of lumbar fusion :preliminary results[J].Spine, 1993,18(8):983-991.
  • 3Polly DW, Orchowski JR, Ellenbogen RG. Revision pedicle screws:bigger,longer shims-what is best [J]? Spine,1998,23(12):1374-1379.
  • 4Christoph AL,Urs S,Dieter W,et al. Comparison of the in vitro holding strengths of conical and cylindrical pedicle screws in a fully inserted setting and backed out 180°[J].Spinal Disord,2000,13(3) :259-266.
  • 5Mckinely TD, Mclain RF,Yerby SA,et al. Characteristics of pedicle screw loading:effect of surgical technique on intravertebral and intrapediclar bending moments [J].Spine,1999,24(1):18-24.
  • 6Wittenberg RH,Lee KS,Shea M,et al. Effect of screw diameter,insertion technique,and bone cement augmentation of pedicular screw fixation strength [J].Clin Orthop,1993,26(11):278-287.
  • 7Lotz JC.Hu SS.Chiu DF.et al. Carbonated apatite cement augmentation of pedicle screw fixation in the lumbar spine[J].Spine, 1997,22(23) :2716-2723.
  • 8Krag MH,Beynnon BD,Pope MH,et al. Depth of insertion of transpedicular vertebral screws into human vertebrae:effect upon screw-vertebra interface strength [J].J Spinal Disord,1988,1 (4) :287-294.
  • 9Pfeifer BA,Krag MH,Johnson C. Repair of failed transpedicle screw fixation:a biomechanical study comparing polymethylmethacry late,milled bone,and matchstick bone reconstruction [J].Spine, 1994,19(3) :350-353.
  • 10Ycrby SA,Toh E,Mclain RF.Revision of failed pedicle screws using hydroxylapatite cement :a biomechanical analysis [J].Spine, 1998,23(15): 1657-1661.

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