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Development of implant movement checker for determining dental implant stability.

机译:开发用于确定牙科植入物稳定性的植入物移动检查器。

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摘要

Noninvasive and nondestructive mobility assessment of dental implants is very important and useful for dental implantation diagnostic-aids. The development of implant movement (IM) checker based on microcontroller is presented in this paper. Data acquisition system and bender-type piezoelectric probe were used to improve measurement quality to the original tooth mobility (TM) tester. The adoption of a microcontroller and the use of a dental drill-sized measuring probe were sufficient in the reproducibility and reliability of the IM checker. When the implant was subjected to a constant force and amplitude, the acceleration of the model was detected using the measuring probe. The data acquisition system controlled for obtaining the appropriate acceleration signals based on the preload detection during measurement. Dental implant models of Molteno and Rigolac were made at different stiffness and were used to verify the reliability and validity of measurements. The values of measurements obtained by the IMchecker were reliable and precise. The maximum error for perpendicular measurements was less than 12% measured by a new operator and decreased to 2% by an experienced operator. The IM checker was applied to monitor the stability of dental implantation, which compared the relative IM score of the new 5 implant with the adjacent old 6 implant that had been used functionally for 3 years.
机译:牙植入物的非侵入性和非破坏性迁移率评估对于牙植入物诊断辅助非常重要且有用。本文介绍了基于微控制器的植入物运动检查器的开发。数据采集​​系统和弯曲型压电探头用于提高原始牙齿移动性(TM)测试仪的测量质量。采用微控制器和使用牙钻尺寸的测量探针就足以确保IM检查器的可重复性和可靠性。当植入物受到恒定的力和振幅时,使用测量探针检测模型的加速度。数据采集​​系统被控制用于基于测量期间的预载荷检测来获得适当的加速度信号。 Molteno和Rigolac的牙种植体模型具有不同的刚度,并用于验证测量的可靠性和有效性。 IMchecker获得的测量值是可靠且精确的。垂直测量的最大误差由新操作员测量,小于12%,有经验的操作员减小至2%。 IM Checker用于监视牙齿植入的稳定性,该功能将新5种植体与相邻已使用3年的旧6种植体的相对IM得分进行了比较。

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