首页> 外文期刊>The Journal of craniofacial surgery >The Clinical Feasibility of Newly Developed Thin Flat-Type Bioresorbable Osteosynthesis Devices for the Internal Fixation of Zygomatic Fractures: Is There a Difference in Healing Between Bioresorbable Materials and Titanium Osteosynthesis?
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The Clinical Feasibility of Newly Developed Thin Flat-Type Bioresorbable Osteosynthesis Devices for the Internal Fixation of Zygomatic Fractures: Is There a Difference in Healing Between Bioresorbable Materials and Titanium Osteosynthesis?

机译:新开发的扁平扁平生物可吸收骨固定装置在Z骨骨折内固定中的临床可行性:生物可吸收材料和钛骨固定之间的愈合是否有所不同?

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Introduction:In recent years, bioresorbable plates have undergone remarkable development. However, there has been no attendant improvement in their strength, because strength requires thickness, and complications such as palpability are related to the thickness of bioresorbable plate systems. In this clinical study, we compared the surgical management of zygomatic fractures using newly developed thinner bioresorbable materials or conventional titanium miniplates.Methods:Twelve patients with zygomatic fractures were randomly divided equally into 2 groups (6 with new bioresorbable osteosynthesis materials and 6 with standard titanium miniplates). Using computed tomography, we evaluated the thickness of the soft tissue and plate at the zygomaticofrontal sutures in each patient with the help of detailed radiographic computed tomography data at 6 months postoperatively. We compared the amount of soft-tissue volume increase between the uninjured healthy and injured operated sides in each patient.Results:Both groups eventually achieved satisfactory healing, with a favorable restoration of form and function and without any complications, including palpability. The amount of soft-tissue volume increase at the operated side relative to the uninjured healthy side using new thin bioresorbable plates was 131.1% (range: 101.5-165.8). On the other hand, that of titanium miniplates was 126.4% (range: 102.2-167.6). There was no statistically significant difference (P>0.05).Conclusion:This newly developed thinner flat-type bioresorbable plate system could be considered clinically useful in the treatment of zygomatic fractures even in easily palpated areas, such as the infraorbital rim or zygomaticofrontal sutures, without any healing differences in skeleton as compared with conventional titanium miniplates.
机译:简介:近年来,生物吸收板得到了长足的发展。然而,由于强度需要厚度,并且诸如可触知性之类的复杂性与生物可吸收板系统的厚度有关,因此强度没有得到相应的改善。在这项临床研究中,我们比较了使用新开发的较薄的生物可吸收材料或常规钛微型钢板对骨骨折的手术治疗方法。方法:将12例骨骨折患者随机分为2组(6例采用新的生物可吸收骨合成材料,6例采用标准钛金属)小板)。使用计算机断层扫描,我们在术后6个月的详细放射线计算机断层摄影数据的帮助下,评估了每位患者the突额缝合处软组织和板的厚度。我们比较了每例患者未受伤的健康侧和受伤的手术侧之间的软组织体积增加量。结果:两组最终均取得了令人满意的愈合,其形态和功能得到了良好的恢复,并且没有任何并发​​症,包括可触及性。使用新的薄型生物可吸收板,相对于未受伤的健康侧,手术侧的软组织体积增加量为131.1%(范围:101.5-165.8)。另一方面,钛小板的产率为126.4%(范围:102.2-167.6)。结论:这种新开发的较薄的平板型生物可吸收钢板系统即使在容易触及的区域(如眶下缘或骨额骨缝线,与传统的钛合金小板相比,骨骼没有任何愈合差异。

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