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A new method for the evaluation of dental implant stability using an inductive sensor

机译:一种使用感应传感器评估牙种植体稳定性的新方法

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摘要

We developed a new method for the measurement of dental implant stability by analyzing the impulse response of the implant. The movement of the implant was measured by an inductive sensor with a dedicated adaptor. The large inductance of the adapter amplified the small displacement signal of the implant. The Periotest (Siemens, Bensheim, Germany) was used as a source of excitation force to acquire the impact response of the implant. Power spectrum analysis was applied to the impact response of the implant. The peak frequency of the spectrum was used as a measure of the implant stability. The performance of the system was tested and verified through simulation of the implant-bone interface in an in vitro model. Various implant-bone interfacial conditions were assessed. Holes of varying depth and diameter were drilled into a dental implantation model. Two types of impression materials (EXAMIXFINE, Regisil Rigid) with different degrees of hardness were used to fix the implant into the hole. The implant stability was also measured using the ISQ (implant stability quotient) by resonance frequency analysis on the Osstell Mentor (Integration Diagnostics AB, Goteborgsvagen, Sweden) for comparison. Linear regression analysis of the peak frequency as a stability parameter showed a linear relationship with both the depth and the diameter of the hole (p0.05). When EXAMIXFINE was used, the peak frequency was linearly associated with the depth (R 2=0.443) and diameter (R 2=0.396) of the hole. When Regisil Rigid was used, the peak frequency also showed a linear relationship with the depth (R 2=0.555) and diameter (R 2=0.350) of the hole. The peak frequency also increased as the hardness of the impression material increased. Differentiability of the system was evaluated by an ANOVA test. A statistically significant difference (p0.01) was found between all implantation conditions, except in one case using the Regisil Rigid material. In contrast, the ISQ value did not consistently differentiate under several implantation conditions. The developed method could differentiate the stability changes in simulated implantation conditions with a wider dynamic range and with higher resolution than the ISQ value.
机译:我们通过分析种植体的脉冲响应,开发了一种用于测量牙种植体稳定性的新方法。植入物的运动是通过带有专用适配器的感应传感器测量的。适配器的大电感放大了植入物的小位移信号。 Periotest(德国本斯海姆的西门子)被用作激发力的来源,以获取植入物的冲击响应。功率谱分析应用于植入物的冲击响应。频谱的峰值频率用作植入物稳定性的量度。通过在体外模型中模拟植入物-骨界面来测试和验证系统的性能。评估了各种植入物-骨界面情况。将不同深度和直径的孔钻入牙齿植入模型中。使用两种硬度不同的压印材料(EXAMIXFINE,Regisil Rigid)将植入物固定在孔中。还使用ISQ(植入物稳定性商)通过在Osstell Mentor(Integration Diagnostics AB,Goteborgsvagen,瑞典)上进行共振频率分析来测量植入物稳定性,以进行比较。峰频率作为稳定性参数的线性回归分析表明,它与孔的深度和直径均呈线性关系(p <0.05)。使用EXAMIXFINE时,峰值频率与孔的深度(R 2 = 0.443)和直径(R 2 = 0.396)线性相关。当使用Regisil Rigid时,峰值频率也与孔的深度(R 2 = 0.555)和直径(R 2 = 0.350)呈线性关系。峰值频率也随着压印材料硬度的增加而增加。通过ANOVA测试评估系统的可区分性。在所有植入条件之间发现了统计学上的显着差异(p <0.01),除了在一种情况下使用Regisil Rigid材料。相反,ISQ值在几种植入条件下并不一致。所开发的方法可以以比ISQ值更大的动态范围和更高的分辨率区分模拟植入条件下的稳定性变化。

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