全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
-  2015 

近排腕骨间不稳的生物力学研究进展

DOI: doi:10.7507/1002-1892.20150022

Keywords: 近排腕骨间不稳, 生物力学, 修复重建

Full-Text   Cite this paper   Add to My Lib

Abstract:

目的综述近排腕骨间不稳的生物力学研究进展。 方法查阅国内外有关近排腕骨间不稳的研究文献,从基础生物力学和临床生物力学两方面入手,分析周围软组织维持其稳定的生物机制,并总结其稳定性修复与功能重建的方法。 结果近排腕骨间的肌肉与韧带对其稳定性起决定性作用,其生物力学作用机制已达成共识,但三角纤维软骨复合体受损后周围软组织对远端尺桡关节稳定性的作用机制、舟月关节韧带的生物力学作用机制仍存在争议。此外,生物力学研究中近排腕骨间不稳重建方法尚无统一标准,影响了其指导临床实践的作用。 结论近排腕骨间不稳在相关肌肉、韧带的基础生物力学研究以及修复重建的临床生物力学研究方面均已取得一定进展,但还不全面,仍需在腕骨本身形态、邻近关节面形态(尤其是桡骨远端的形态)、远端腕骨对近端腕骨产生的压力等方面进行更深入研究

References

[1]  5. Erhart S, Schmoelz W, Arora R, et al. The biomechanical effects of a deepened articular cavity during dynamic motion of the wrist joint. Clin Biomech (Bristol, Avon), 2012, 27(6):557-561.
[2]  6. Maschke SD, Means KR Jr, Parks BG, et al. A radiocarpal ligament reconstruction using brachioradialis for secondary ulnar translation of the carpus following radiocarpal dislocation:a cadaver study. J Hand Surg (Am), 2010, 35(2):256-261.
[3]  11. Kataoka T, Moritomo H, Omokawa S, et al. Ulnar variance:its relationship to ulnar foveal morphology and forearm kinematics. J Hand Surg (Am), 2012, 37(4):729-735.
[4]  13. Kitamura T, Moritomo H, Arimitsu S, et al. The biomechanical effect of the distal interosseous membrane on distal radioulnar joint stability:a preliminary anatomic study. J Hand Surg (Am), 2011, 36(10):1626-1630.
[5]  14. Arimitsu S, Moritomo H, Kitamura T, et al. The stabilizing effect of the distal interosseous membrane on the distal radioulnar joint in an ulnar shortening procedure:a biomechanical study. J Bone Joint Surg (Am), 2011, 93(21):2022-2030.
[6]  15. Omori S, Moritomo H, Murase T, et al. Changes in length of the radioulnar ligament and distal oblique bundle after Colles' fracture. J Plast Surg Hand Surg, 2013, 47(5):409-414.
[7]  17. Kalson NS, Malone PS, Bradley RS, et al. Fibre bundles in the human extensor carpi ulnaris tendon are arranged in a spiral. J Hand Surg Eur Vol, 2012, 37(6):550-554.
[8]  18. Jones CW, Lawson RD. One size does not fit all:distal radioulnar joint dysfunction after volar locking plate fixation. J Wrist Surg, 2014, 3(1):42-45.
[9]  19. Saito T, Nakamura T, Nagura T, et al. The effects of dorsally angulated distal radius fractures on distal radioulnar joint stability:a biomechanical study. J Hand Surg Eur Vol, 2013, 38(7):739-745.
[10]  23. 姜宗圆, 夏江, 马涛, 等. 关节外固定术治疗慢性下尺桡关节背侧不稳定. 中国修复重建外科杂志, 2014, 28(2):209-212.
[11]  26. Nikolopoulos FV, Apergis EP, Poulilios AD, et al. Biomechanical properties of the scapholunate ligament and the importance of its portions in the capitate intrusion injury. Clin Biomech (Bristol, Avon), 2011, 26(8):819-823.
[12]  27. Lee SK, Park J, Baskies M, et al. Differential strain of the axially loaded scapholunate interosseus ligament. J Hand Surg (Am), 2010, 35(2):245-251.
[13]  28. Omori S, Moritomo H, Omokawa S, et al. In vivo 3-dimensional analysis of dorsal intercalated segment instability deformity secondary to scapholunate dissociation:a preliminary report. J Hand Surg(Am), 2013, 38(7):1346-1355.
[14]  30. Endress R, Woon CY, Farnebo SJ, et al. Tissue-engineered collateral ligament composite allografts for scapholunate ligament reconstruction:an experimental study. J Hand Surg (Am), 2012, 37(8):1529-1537.
[15]  32. Jakubietz MG, Zahn R, Gruenert JG, et al. Kirschner wire fixations for scapholunate dissociation:a cadaveric, biomechanical study. J Orthop Surg (Hong Kong), 2012, 20(2):224-229.
[16]  36. León-Lopez MM, Salvà-Coll G, Garcia-Elias M, et al. Role of the extensor carpi ulnaris in the stabilization of the lunotriquetral joint. An experimental study. J Hand Ther, 2013, 26(4):312-317.
[17]  1. Chen YR, Tang JB. Changes in contact site of the radiocarpal joint and lengths of the carpal ligaments in forearm rotation:an in vivo study. J Hand Surg (Am), 2013, 38(4):712-720.
[18]  2. Zumstein MA, Hasan AP, McGuire DT, et al. Distal radius attachments of the radiocarpal ligaments:an anatomical study. J Wrist Surg, 2013, 2(4):346-350.
[19]  3. Tang JB, Chen YR. In vivo changes in contact regions of the radiocarpal joint during wrist hyperextension. J Hand Surg (Am), 2012, 37(11):2257-2262.
[20]  4. Rainbow MJ, Kamal RN, Leventhal E, et al. In vivo kinematics of the scaphoid, lunate, capitate, and third metacarpal in extreme wrist flexion and extension. J Hand Surg (Am), 2013, 38(2):278-288.
[21]  7. Gíslason MK, Stansfield B, Bransby-Zachary M, et al. Load transfer through the radiocarpal joint and the effects of partial wrist arthrodesis on carpal bone behaviour:a finite element study. J Hand Surg Eur Vol, 2012, 37(9):871-878.
[22]  8. 朱跃良, 徐永清, 汪新民, 等. 近排腕骨切除术后桡腕关节的解剖学及生物力学变化. 实用手外科杂志, 2008, 22(1):38-39.
[23]  9. Tang P, Wei DH, Ueba H, et al. Scaphoid excision and 4-bone arthrodesis versus proximal row carpectomy:a comparison of contact biomechanics. J Hand Surg (Am), 2012, 37(9):1861-1867.
[24]  12. Moritomo H. The distal interosseous membrane:current concepts in wrist anatomy and biomechanics. J Hand Surg (Am), 2012, 37(7):1501-1507.
[25]  20. Greenberg JA, Werner FW, Smith JM. Biomechanical analysis of the distal metaphyseal ulnar shortening osteotomy. J Hand Surg (Am), 2013, 38(10):1919-1924.
[26]  21. Jones CM, Kam CC, Ouellette EA, et al. Comparison of 2 forearm reconstructions for longitudinal radioulnar dissociation:a cadaver study. J Hand Surg (Am), 2012, 37(4):741-747.
[27]  22. Kataoka T, Moritomo H, Omokawa S, et al. Palmar reconstruction of the triangular fibrocartilage complex for instability of the distal radioulnar joint:a biomechanical study. J Hand Surg Eur Vol, 2013, 38(5):515-522.
[28]  24. Sobczak S, Rotsaert P, Vancabeke M, et al. Effects of proximal row carpectomy on wrist biomechanics:a cadaveric study. Clin Biomech (Bristol, Avon), 2011, 26(7):718-724.
[29]  25. Patterson RM, Yazaki N, Andersen CR, et al. Prediction of ligament length and carpal diastasis during wrist flexion-extension and after simulated scapholunate instability. J Hand Surg (Am), 2013, 38(3):509-518.
[30]  29. Lee SK, Zlotolow DA, Sapienza A, et al. Biomechanical comparison of 3 methods of scapholunate ligament reconstruction. J Hand Surg (Am), 2014, 39(4):643-650.
[31]  31. Ehsan A, Lee DG, Bakker AJ, et al. Scapholunate ligament reconstruction using an acellular dermal matrix:a mechanical study. J Hand Surg (Am), 2012, 37(8):1538-1542.
[32]  33. Short WH, Werner FW, Sutton LG. Dynamic biomechanical evaluation of the dorsal intercarpal ligament repair for scapholunate instability. J Hand Surg (Am), 2009, 34(4):652-659.
[33]  34. 韩利军. 手舟月骨间韧带和月三角骨间韧带的解剖学特点. 中国组织工程研究与临床康复, 2009, 13(37):7318-7321.
[34]  35. Avrahami D. Lunotriquetral instability in a climber-case report and review. J Can Chiropr Assoc, 2010, 54(4):257-263.
[35]  37. Mirza A, Mirza JB, Shin AY, et al. Isolated lunotriquetral ligament tears treated with ulnar shortening osteotomy. J Hand Surg (Am), 2013, 38(8):1492-1497.
[36]  38. Omokawa S, Fujitani R, Inada Y. Dorsal radiocarpal ligament capsulodesis for chronic dynamic lunotriquetral instability. J Hand Surg (Am), 2009, 34(2):237-243.
[37]  10. Lees VC. Functional anatomy of the distal radioulnar joint in health and disease. Ann R Coll Surg Engl, 2013, 95(3):163-170.
[38]  16. Iida A, Omokawa S, Moritomo H, et al. Biomechanical study of the extensor carpi ulnaris as a dynamic wrist stabilizer. J Hand Surg (Am), 2012, 37(12):2456-2461.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133