肯尼亚奈瓦沙湖水动力驱动力分析

J. Ndungu, Wenlong Chen, D. Augustijn, S. Hulscher
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引用次数: 4

摘要

压合种植体的初始固定取决于过盈配合、表面形态和骨材料特性。为了了解每个因素的生物力学效应及其相互作用,我们在不同密度的小梁骨中测试了七种CoCrMo锥形种植体,四种不同的干涉配合,三种不同的表面形态(低、中、高粗糙度),以及两个时间点(0和30分钟)的拔出强度。过盈配合对拉拔强度的影响取决于表面形貌和时间。与我们的预期相反,具有较高粗糙度的样品具有较低的拉出强度。我们发现不同表面形态的骨损伤程度相似,但损伤类型不同,分别是低摩擦表面和高摩擦表面的骨压实和骨磨损。这解释了后一组固定强度对骨密度的敏感性降低。此外,在等待一段时间后,固定强度的降低只发生在低摩擦试件上。我们的研究表明,评估不同因素之间的相互作用是至关重要的,并强调了在天然骨中进行测试的重要性,以优化压合种植体的初始稳定性。
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Analysis of the Driving Force of Hydrodynamics in Lake Naivasha, Kenya
Initial fixation of press-fit implants depends on interference fit, surface morphology, and bone material properties. To understand the biomechanical effect of each factor and their interactions, the pull-out strength of seven types of CoCrMo tapered implants, with four different interference fits, three different surface morphologies (low, medium and high roughness), and at two time points (0 and 30 min) were tested in trabecular bone with varying density. The effect of interference fit on pull-out strength depended on the surface morphology and time. In contrast with our expectations, samples with a higher roughness had a lower pull-out strength. We found a similar magnitude of bone damage for the different surface morphologies, but the type of damage was different, with bone compaction versus bone abrasion for low and high frictional surfaces, respectively. This explains a reduced sensitivity of fixation strength to bone mineral density in the latter group. In addition, a reduction in fixation strength after a waiting period only occurred for the low frictional specimens. Our study demonstrates that it is essential to evaluate the interplay between different factors and emphasizes the importance of testing in natural bone in order to optimize the initial stability of press-fit implants.
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