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Comparative biomechanical stability of titanium bone fixation systems in metacarpal fractures.

作者信息

Prevel C D, McCarty M, Katona T, Moore K, Jackson J R, Eppley B L, Sood R

机构信息

Department of Surgery, Indiana University Medical Center, Indianapolis, USA.

出版信息

Ann Plast Surg. 1995 Jul;35(1):6-14. doi: 10.1097/00000637-199507000-00002.

DOI:10.1097/00000637-199507000-00002
PMID:7574288
Abstract

The biomechanical properties of apex bending and torsional rigidity of 11 different titanium mini- and microplates (Leibinger and Synthes) were examined to evaluate the effects of plate design and thickness and screw size and design. Two hundred sixteen fresh-frozen human cadaveric metacarpal bones underwent a midshaft transverse osteotomy followed by application of one of the following plates: Synthes 1.5-mm and 2.0-mm five-hole linear plates; Leibinger linear 1.2-mm 5-hole, 1.7-mm 4-hole, 2.3-mm 4-hole plates; or Leibinger three-dimensional 1.2-mm 4-hole, 1.2-mm 8-hole, 1.7-mm 4-hole, 1.7-mm 8-hole, 2.3-mm 4-hole, and 2.3-mm 8-hole plates. The specimens were subjected to a three-point bending test with apex dorsal or apex volar loading or torsional loading. Analysis of variance statistical analysis revealed that increasing plate thickness and, more significantly, three-dimensional design were associated with increased rigidity.

摘要

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Biomechanical evaluation of metacarpal fracture fixation: application of a 90° internal fixation model.掌骨骨折内固定的生物力学评估:90°内固定模型的应用
Hand (N Y). 2015 Mar;10(1):94-9. doi: 10.1007/s11552-014-9673-3.
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Plating of metacarpal fractures with locked or nonlocked screws, a biomechanical study: how many cortices are really necessary?
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