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Use of a laser displacement sensor with a non-contact electromagnetic vibration device for assessment of simulated periodontal tissue conditions

机译:带有非接触式电磁振动装置的激光位移传感器在评估模拟牙周组织状况中的用途

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A non-contact electromagnetic vibration device (NEVD) was previously developed to monitor the condition of periodontal tissues by assessing mechanical parameters. This system requires placement of an accelerometer on the target tooth, to detect vibration. Using experimental tooth models, we evaluated the performance of an NEVD system with a laser displacement sensor (LDS), which does not need an accelerometer. Simulated teeth (polyacetal rods) were submerged at various depths in simulated bone (polyurethane or polyurethane foam) containing simulated periodontal ligament (tissue conditioner). Then, mechanical parameters (resonant frequency, elastic modulus, and viscosity coefficient) were assessed using the NEVD with the following detection methods: Group 1, measurement with an accelerometer; Group 2, measurement with an LDS in the presence of the accelerometer; and Group 3, measurement with an LDS in the absence of the accelerometer. Statistical analyses were performed using nonparametric methods ( n = 5) ( P < 0.05). The three mechanical parameters significantly increased with increasing depth. In addition, the mechanical parameters significantly differed between the polyurethane and polyurethane foam models. Although Groups 1 and 2 did not significantly differ, most all mechanical parameters in Group 3 were significantly larger and more distinguishable than those in Groups 1 and 2. The LDS was more accurate in measuring mechanical parameters and better able to differentiate periodontal tissue conditions. (J Oral Sci 58, 93-99, 2016)
机译:以前开发了一种非接触式电磁振动装置(NEVD),以通过评估机械参数来监测牙周组织的状况。该系统需要在目标牙齿上放置一个加速度计,以检测振动。使用实验牙齿模型,我们评估了带有激光位移传感器(LDS)的NEVD系统的性能,该传感器不需要加速计。将模拟牙齿(聚缩醛棒)浸入含有模拟牙周韧带(组织调节剂)的模拟骨骼(聚氨酯或聚氨酯泡沫)中的不同深度。然后,使用NEVD通过以下检测方法评估机械参数(共振频率,弹性模量和粘度系数):第1组,使用加速度计进行测量;第2组,在有加速度计的情况下使用LDS进行测量;第三组,在没有加速度计的情况下使用LDS进行测量。使用非参数方法进行统计学分析(n = 5)(P <0.05)。随着深度的增加,三个机械参数显着增加。此外,聚氨酯和聚氨酯泡沫模型之间的机械参数明显不同。尽管第1组和第2组没有显着差异,但第3组中的大多数机械参数都比第1组和第2组中的机械参数显着更大并且更具可分辨性。LDS在测量机械参数方面更准确,并且能够更好地区分牙周组织状况。 (J Oral Sci 58,93-99,2016)

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