首页> 外文期刊>Acta of Bioengineering and Biomechanics >Enamel thickness measurement with a high frequency ultrasonic transducer-based hand-held probe for potential application in the dental veneer placing procedure
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Enamel thickness measurement with a high frequency ultrasonic transducer-based hand-held probe for potential application in the dental veneer placing procedure

机译:使用基于高频超声换能器的手持式探头进行牙釉质厚度测量,可在牙贴面放置过程中潜在应用

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摘要

This study presents a novel approach to measure the enamel thickness potentially applicable to the veneer placing procedure. All experiments have been carried out on the extracted human teeth, using a high frequency ultrasonic transducer (50 MHz, Sonix, Springfield, VA, USA). The enamel thickness measurement results obtained with high positional accuracy by a scanning acoustic microscope (Tessonics AMI 103, Windsor, ON, Canada) were compared with the measurements conducted in a hand-held mode by using the same transducer placed in a custom fixture. Finally, to validate the ultrasonic measuring results, the samples were cut down the long axis to expose the cross-section. The enamel thickness was measured in several points along the selected part of the exposed cross-section by using an optical microscope (Stemi SV 11, Carl Zeiss AG, Jena, Germany). The values of the enamel thickness received by using the hand-held probe vs. the acoustic microscope were in close proximity (-10% difference) and were also satisfactory close to the enamel thickness results obtained from the direct cross-sectional measurements (-12% difference). The authors suggested a measuring procedure that allows avoiding errors related to the ultrasonic beam localization on the tooth surface. The high feasibility of the ultrasonic pulse-echo measurements in a hand-held mode was demonstrated.
机译:这项研究提出了一种新的方法来测量搪瓷厚度可能适用于单板放置程序。所有实验均使用高频超声换能器(50 MHz,Sonix,Springfield,VA,美国)在拔出的人牙齿上进行。将通过扫描声显微镜(加拿大安大略省温莎市的Tessonics AMI 103,Tessonics AMI 103)以高位置精度获得的牙釉质厚度测量结果与通过使用放置在定制夹具中的相同换能器以手持模式进行的测量结果进行比较。最后,为了验证超声测量结果,将样品沿长轴切割以暴露出横截面。通过使用光学显微镜(Stemi SV 11,Carl Zeiss AG,​​Jena,德国),沿着暴露的横截面的选定部分在几个点上测量搪瓷厚度。使用手持式探头与声波显微镜获得的牙釉质厚度值非常接近(相差-10%),并且与直接横截面测量获得的牙釉质厚度结果相近(-12) % 区别)。作者提出了一种测量程序,可以避免与超声波束在牙齿表面定位有关的误差。手持式超声脉冲回波测量具有很高的可行性。

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