Suppr超能文献

桡骨远端骨折掌侧锁定钢板固定术后使用磷酸钙骨水泥增强可显著提高稳定性。

Calcium phosphate cement augmentation after volar locking plating of distal radius fracture significantly increases stability.

作者信息

Kainz Hans, Dall'Ara Enrico, Antoni Anna, Redl Heinz, Zysset Philippe, Weninger Patrick

机构信息

Ludwig Boltzmann Institute for Experimental and Clinical Traumatology, Donaueschingenstraße 13, 1200, Vienna, Austria.

出版信息

Eur J Orthop Surg Traumatol. 2014 Aug;24(6):869-75. doi: 10.1007/s00590-013-1285-z. Epub 2013 Aug 4.

Abstract

PURPOSE

Distal radius fractures represent the most common fractures in adults. Volar locking plating to correct unstable fractures has become increasingly popular. Although reasonable primary reduction is possible in most cases, maintenance of reduction until the fracture is healed is often problematic in osteoporotic bone. To our knowledge, no biomechanical studies have compared the effect of enhancement with biomaterial on two different volar fixed-angle plates.

METHODS

Human fresh-frozen cadaver pairs of radii were used to simulate an AO/OTA 23-A3 fracture. In a total of four groups (n = 7 for each group), two volar fixed-angle plates (Aptus 2.5 mm locking fracture plate, Medartis, Switzerland and VA-LCP two-column distal radius plate 2.4, volar, Synthes, Switzerland) with or without an additional injection of a biomaterial (Hydroset Injectable HA Bone Substitute, Stryker, Switzerland) into the dorsal comminution zone were used to fix the distal metaphyseal fragment. Each specimen was tested load-controlled under cyclic loading with a servo-hydraulic material testing machine. Displacement, stiffness, dissipated work and failure mode were recorded.

RESULTS

Improved mechanical properties (decreased displacement, increased stiffness, decreased dissipated work) were found in both plates if the biomaterial was additionally injected. Improvement of mechanical parameters after biomaterial injection was more evident in the Synthes plate compared to the Aptus plate. Pushing out of the screws was noticed as a failure mode only in samples lacking supplementary biomaterial.

CONCLUSIONS

Injection of a biomaterial into the dorsal comminution zone increases stability after volar locking plating of distal radius fractures in vitro.

摘要

目的

桡骨远端骨折是成人中最常见的骨折。采用掌侧锁定钢板治疗不稳定骨折越来越普遍。尽管在大多数情况下可以实现合理的初次复位,但在骨质疏松性骨中,维持复位直至骨折愈合往往存在问题。据我们所知,尚无生物力学研究比较生物材料增强对两种不同掌侧固定角度钢板的影响。

方法

使用成对的人体新鲜冷冻桡骨模拟AO/OTA 23-A3骨折。总共分为四组(每组n = 7),使用两种掌侧固定角度钢板(瑞士Medartis公司的Aptus 2.5 mm锁定骨折钢板和瑞士Synthes公司的VA-LCP两柱桡骨远端掌侧钢板2.4),在背侧粉碎区域有或没有额外注射生物材料(瑞士Stryker公司的Hydroset可注射型HA骨替代物)来固定远侧干骺端骨折块。每个标本在伺服液压材料试验机上进行循环加载下的载荷控制测试。记录位移、刚度、耗散功和失效模式。

结果

如果额外注射生物材料,两种钢板的力学性能均得到改善(位移减小、刚度增加、耗散功减小)。与Aptus钢板相比,生物材料注射后Synthes钢板的力学参数改善更明显。仅在缺乏补充生物材料的样本中,观察到螺钉推出作为失效模式。

结论

在体外,向背侧粉碎区域注射生物材料可增加桡骨远端骨折掌侧锁定钢板固定后的稳定性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验