首页> 外文期刊>The International journal of oral & maxillofacial implants >Correlation Between Bone Density and Instantaneous Torque at Implant Site Preparation: A Validation on Polyurethane Foam Blocks of a Device Assessing Density of Jawbones
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Correlation Between Bone Density and Instantaneous Torque at Implant Site Preparation: A Validation on Polyurethane Foam Blocks of a Device Assessing Density of Jawbones

机译:植入部位准备过程中骨密度与瞬时扭矩之间的相关性:评估颚骨密度的装置的聚氨酯泡沫块的验证

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Purpose: Bone density at implant placement sites is one of the key factors affecting implant primary stability, which is a determinant for implant osseointegration and rehabilitation success. Site-specific bone density assessment is, therefore, of paramount importance. Recently, an implant micromotor endowed with an instantaneous torque-measuring system has been introduced. The aim of this study was to assess the reliability of this system. Materials and Methods: Five blocks with different densities (0.16, 0.26, 0.33, 0.49, and 0.65 g/cm(3)) were used. A single trained operator measured the density of one of them (0.33 g/cm(3)), by means of five different devices (20 measurements/device). The five resulting datasets were analyzed through the analysis of variance (ANOVA) model to investigate interdevice variability. As differences were not significant (P=.41), the five devices were each assigned to a different operator, who collected 20 density measurements for each block, both under irrigation (I) and without irrigation (NI). Measurements were pooled and averaged for each block, and their correlation with the actual block-density values was investigated using linear regression analysis. The possible effect of irrigation on density measurement was additionally assessed. Results: Different devices provided reproducible, homogenous results. No significant interoperator variability was observed. Within the physiologic range of densities (>0.30 g/cm(3)), the linear regression analysis showed a significant linear correlation between the mean torque measurements and the actual bone densities under both drilling conditions (r = 0.990 [I], r = 0.999 [NI]). Calibration lines were drawn under both conditions. Values collected under irrigation were lower than those collected without irrigation at all densities. The NI/I mean torque ratio was shown to decrease linearly with density (r = 0.998). The mean error introduced by the device-operator system was less than 10% in the range of normal jawbone density. Conclusion: Measurements performed with the device were linearly correlated with the blocks' bone densities. The results validate the device as an objective intraoperative tool for bone-density assessment that may contribute to proper jawbone-density evaluation and implant-insertion planning.
机译:目的:植入物放置部位的骨密度是影响植入物基本稳定性的关键因素之一,这是植入物骨整合和修复成功的决定因素。因此,特定部位的骨密度评估至关重要。近来,已经引入了具有瞬时扭矩测量系统的植入物微电机。这项研究的目的是评估该系统的可靠性。材料和方法:使用了五个具有不同密度(0.16、0.26、0.33、0.49和0.65 g / cm(3))的块。一位受过训练的操作员通过五个不同的设备(每个设备20个测量值)测量了其中一个的密度(0.33 g / cm(3))。通过方差分析(ANOVA)模型分析了五个结果数据集,以研究设备间的可变性。由于差异不显着(P = .41),因此将五个设备分别分配给不同的操作员,在灌溉(I)和不灌溉(NI)的情况下,每个块收集了20个密度测量值。汇总每个块的测量值并取平均值,然后使用线性回归分析研究它们与实际块密度值的相关性。另外评估了灌溉对密度测量的可能影响。结果:不同的设备提供了可重现的均匀结果。没有观察到明显的互操作性差异。在密度的生理范围内(> 0.30 g / cm(3)),线性回归分析显示,在两种钻孔条件下,平均扭矩测量值与实际骨密度之间均存在显着的线性相关性(r = 0.990 [I],r = 0.999 [NI])。在两种条件下都绘制了校准线。在所有密度下,灌溉下收集的值均低于未灌溉下收集的值。结果表明,NI / I平均转矩比随密度线性降低(r = 0.998)。在正常的颚骨密度范围内,设备-操作员系统引入的平均误差小于10%。结论:使用该设备进行的测量与模块的骨密度线性相关。结果证明该设备是客观的术中骨密度评估工具,可能有助于正确的颌骨密度评估和植入物插入计划。

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