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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Miniscrew design and bone characteristics: An experimental study of primary stability
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Miniscrew design and bone characteristics: An experimental study of primary stability

机译:微螺钉设计和骨骼特性:初步稳定性的实验研究

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摘要

Introduction: The purpose of this study was to evaluate the correlations between bone characteristics, orthodontic miniscrew designs, and primary stability. Methods: Four different miniscrews were placed in pig ribs. The miniscrews were first scanned with a scanning electron microscope to obtain measurable images of their threads. Subsequently, the maximum insertion torque of the screws and the maximum load value in the pullout force tests were measured; furthermore, bone specimen characteristics were analyzed by using cone-beam computed tomography. For each bone sample, the insertion site cortical thickness as well as both cortical and marrow bone density were evaluated. The nonparametric Kendall rank correlation (tau) was used to evaluate the strength of the associations among the characteristics measured. The nonparametric Kruskall-Wallis test was used to evaluate the differences among the groups, and post-hoc comparisons were assessed by using the Nemenyi-Damico-Wolfe-Dunn test. Results: A significant dependence was found between pitch and maximum insertion torque (tau, -0.49). Positive correlations were also found between pullout force and maximum insertion torque (tau, 0.64), cortical thickness (tau, 0.36), and marrow bone density (tau, 0.35). Conclusions: In this in-vitro experimental study, strong correlations were observed among miniscrew geometry, bone characteristics, and primary stability.
机译:简介:这项研究的目的是评估骨骼特征,正畸微螺钉设计和初级稳定性之间的相关性。方法:将四个不同的微型螺钉放在猪肋骨中。首先用扫描电子显微镜对微螺钉进行扫描,以获得其螺纹的可测量图像。随后,测量在拉拔力测试中螺钉的最大插入扭矩和最大载荷值。此外,通过使用锥形束计算机断层摄影术分析骨标本的特征。对于每个骨样品,评估了插入部位的皮质厚度以及皮质和骨髓的骨密度。非参数肯德尔秩相关度(tau)用于评估所测特征之间的关联强度。非参数Kruskall-Wallis检验用于评估组之间的差异,事后比较通过Nemenyi-Damico-Wolfe-Dunn检验进行评估。结果:在螺距和最大插入扭矩之间发现了很大的相关性(tau,-0.49)。在拔出力和最大插入扭矩(tau,0.64),皮层厚度(tau,0.36)和骨髓骨密度(tau,0.35)之间也发现正相关。结论:在这项体外实验研究中,观察到微螺钉的几何形状,骨骼特性和初级稳定性之间存在很强的相关性。

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