期刊文献+

足内侧弹簧韧带复合体的临床研究进展

原文传递
导出
摘要 弹簧韧带复合体(跟舟韧带)是足弓的重要静态稳定结构之一,它与跖长韧带。跖短韧带及跖腱膜共同维持足弓的高度,尤其是在维持足内侧纵弓上发挥着重要的作用。弹簧韧带复合体从跟骨发出,止于舟骨,形成一个”吊床”样的结构包绕着距舟关节,该韧带过度拉伸或断裂,就会导致距骨头下陷、内移,最终会产生严重的平足畸形,
出处 《中国综合临床》 2013年第5期558-560,共3页 Clinical Medicine of China
  • 相关文献

参考文献20

  • 1Desai KR,Beltran LS,Bencardino JT, et al. The spring ligamentrecess of the talocalcaneonavicular joint : depiction on MR imageswith cadaveric and histologic correlation [ J]. AJR Am JRoentgenol,2011,196 (5) : 1145 -1150.
  • 2Deland JT . The adult acquired flatfoot and spring ligamentcomplex. Pathology and implications for treatment [J]. Foot AnkleClin’2001’6(1) :129-135.
  • 3Davis WH,Sobel M,DiCarlo EF,et al. Gross,histological,andmicrovascular anatomy and biomechanical testing of the springligament complex [J]. Foot Ankle Int, 1996,17(2) :95-102.
  • 4Taniguchi A,Tanaka Y,Takakura Y, et al. Anatomy of the springligament [ J]. J Bone Joint Surg Am,2003 ,85-A( 11 ) :2174-2178.
  • 5Melao L, Canella C,Weber M, et al. Ligaments of the transversetarsal joint complex: MRI-anatomic correlation in cadavers [J].AJR Am J Roentgenol,2009,193(3) ;662-671.
  • 6Gazdag AR,Cracchiolo A 3rd. Rupture of the posterior tibialtendon. Evaluation of injury of the spring ligament and clinicalassessment of tendon transfer and ligament repair [ J ]. J Bone JointSurg Am,1997,79(5) :675-681.
  • 7Callander CL, AnSon BT. Colander' s surgical anatomy [ M].Saunders,1958 : 1086-1089.
  • 8杨云峰,俞光荣,周家钤,陈雁西,袁锋,贾永伟,牛文鑫,丁祖泉.足底主要韧带损伤对足纵弓应力分布的影响[J].中华创伤杂志,2008,24(5):327-330. 被引量:4
  • 9Huang CK,Kitaoka HB,An KN,et al. Biomechanical evaluation oflongitudinal arch stability [J]. Foot Ankle, 1993,14(6) :353-357.
  • 10Crary JL, Hollis JM, Manoli A 2nd. The effect of plantar fasciarelease on strain in the spring and long plantar ligaments [ J]. FootAnkle Int,2003,24(3) :245-250.

二级参考文献12

  • 1杨霞.避免温漂对测量结果的影响[J].企业标准化,2006(9):52-52. 被引量:4
  • 2王杭,陈孟诗,汤炜,田卫东.下颌角骨折坚强内固定的生物力学分析[J].华西口腔医学杂志,2006,24(5):393-396. 被引量:6
  • 3Matheson GO, Clement DB, McKenzie DC, et al. Stress fractures in athletes: a study of 320 cases. Am J Sports Med, 1987, 15( 1 ) :46 -58.
  • 4Gehrmann RM, Renard RL. Current concepts review: stress fractures of the foot. Foot Ankle Int, 2006, 27(9) :750 -757.
  • 5Milgrom C, Finestone A, Hamel A, et al. A comparison of bone strain measurements at anatomically relevant sites using surface gauges versus strain gauged bone staples. J Biomech, 2004, 37 (6) : 947 - 952.
  • 6Perusek GP, Davis BL, Sferra JJ, et al. An extensometer for global measurement of bone strain suitable for use in vivo in humans. J Biomech, 2001, 34(3):385-391.
  • 7Mei - Dan O, Kahn G, Zeev A, et al. The medial longitudinal arch as a possible risk factor for ankle sprains: a prospective study in 83 female infantry recruits. Foot Ankle Int, 2005, 26(2) :180 - 183.
  • 8Friedman MA, Draganich LF, Toolan B, et al. The effects of adult acquired flatfoot deformity on tibiotalar joint contact characteristics. Foot Ankle Int, 2001, 22(3) :241 -246.
  • 9McCormack AP, Ching RP, Sangeorzan BJ. Biomechanics of pro- cedures used in adult flatfoot deformity. Foot Ankle Clin, 2001,6 (1) :15 -23.
  • 10陈执平,张俐,张安祯.不同屈膝角度下髌骨应力的生物力学研究[J].中国骨伤,1997,10(1):12-14. 被引量:11

共引文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部