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Osteosynthesis of a cranio-osteoplasty with a biodegradable magnesium plate system in miniature pigs

机译:微型猪中生物降解镁板系统的骨质合成颅骨

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Graphical abstract Display Omitted Abstract Biodegradable magnesium alloys are a new class of implant material suitable for bone surgery. The aim of this study was to investigate plates and screws made of magnesium for osteosynthesis in comparison to titanium in a cranial fracture model. Implants were used for internal fixation of a cranio-osteoplasty in nine minipigs. Computed tomography was conducted repeatedly after surgery. The implants and the adjacent tissues were harvested 10, 20 and 30weeks after surgery and investigated by micro-computed tomography and histological analysis. The surgical procedure and the inserted osteosynthesis material were well tolerated by the animals, and the bone healing of the osteoplasty was undisturbed at all times. The adjacent bone showed formation of lacunas in the magnesium group, resulting in a lower bone-to-implant contact ratio than that of titanium (72 vs. 94% at week 30), but this did not lead to clinical side effects. Radiological measurements showed no reduction in osteosynthesis material volume, but indicated signs of degradation: distinct volumes within the magnesium osteosynthesis group had lower density in micro-computed tomography, and these volumes increased up to 9% at week 30. The histological preparations showed areas of translucency and porosity inside the magnesium, but the outer shape of the osteosynthesis material remained unchanged. No fracture or loosening of the osteosynthesis devices appeared. Soft tissue probes confirmed sufficient biocompatibility. Given their biodegradable capacity, biocompatibility, mechanical strength and visibility on radiographs, osteosynthesis plates made of magnesium alloys are suitable for internal fixation procedures. Statement of Significance To the best of our knowledge this is the first study that used biodegradable magnesium implants for osteosynthesis in a cranial fracture model. The cranio-osteoplasty in miniature pigs allowed in vivo application of plate and screw osteosynthesis of standard-sized implants and the implementation of surgical procedures similar to those conducted on human beings. The osteosynthesis configuration, size, and mechanical properties of the magnesium implants within this study were comparable to those of titanium-based osteosynthesis materials. The results clearly show that bone healing was undisturbed in all cases and that the biocompatibility to hard- and soft tissue was sufficient. Magnesium implants might help to avoid long-term complications and secondary removal procedures due to their biodegradable properties.
机译:图形摘要显示屏省略了抽象的可生物降解的镁合金是一种适用于骨手术的新类植入物质。该研究的目的是研究与颅骨模型中的钛的骨质合成镁制成的板材和螺钉。植入物用于九微分症中的颅骨成形术的内部固定。在手术后反复进行计算的断层扫描。在手术后收获10,20和30周的植入物和相邻组织,并通过微计算断层扫描和组织学分析研究。外科手术和插入的骨合成材料被动物耐受良好,并且骨骼成形术的骨愈合始终不受干扰。相邻的骨显示在镁基团中的形成裂隙度,导致较低的骨对植入接触比比钛的接触比(在第30周的72%)中,但这并未导致临床副作用。放射测量显示出骨质化物质体积没有降低,但是降解迹象:镁骨合成基团内的明显体积具有较低的微型计算机断层扫描的密度,并且在第30周,这些体积增加了9%。组织学制剂显示出区域镁里的半透明和孔隙率,但骨质合成材料的外形保持不变。没有骨折或松动出现骨质化装置。软组织探针证实了足够的生物相容性。鉴于其可生物降解的能力,X型射线照相的生物相容性,机械强度和可见性,由镁合金制成的骨合成板适用于内部固定程序。我们知识中最重要的陈述这是第一项研究,它在颅骨模型中使用可生物降解的镁植入物用于骨质合成的研究。在体内猪的微型猪的颅骨成形术在平板和螺旋骨合成的标准型植入物的应用中,以及类似于人类进行的手术程序的实施。该研究内镁植入物的骨合成构型,尺寸和力学性质与钛基骨化合成材料的骨质植入物的结构相当。结果清楚地表明,在所有情况下,骨愈合不受干扰,并且对硬组织和软组织的生物相容性已经足够了。镁植入物可能有助于避免由于其可生物降解性能而避免长期并发症和二次清除程序。

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