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Method to approximate intra oral scanner noise and resolution

机译:近似口腔口腔扫描仪噪声和分辨率的方法

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In dentistry, 3D IOS (intra-oral scanners) are gaining an increasing popularity essentially for the production of dentalprostheses. Until now, there is no normalized procedure to determine the resolution of IOS. Such a procedure couldbe a positive parameter for the IOS market and a first step in their normalization.The aim of this study is to present a reproducible methodology to estimate the noise and resolution of any type ofIOS. For the noise, we used the IOS Trios 2 (3Shape) and the Carestream 3500 (Carestream) for noise andresolution.As reference, we used an ultra-flat and ultra-smooth alumina. Being perfectly flat, any record of roughness should beinterpreted as noise.In this study, the root mean square (RMS) values obtained are ranged between 5.29 and 12.58 micrometers.Significant differences have been found between the central part and the whole mesh. This is due to edge effect:deviation from a flat surface is more important on the edge of meshes than the internal part.To evaluate the resolution, a ceramic tip, well-polished was recorded with the IOS’s and compared to the meshobtained with micro tomography (5 micrometer resolution). We measured the distance between the two plans of thetip, considered as the small detail recorded. We found a distance from 89 to 121 micrometers with IOS studied and25 micrometers with micro CT.Those methods, simple and reproducible, could be perfectly suitable to evaluate and compare commercial all typesof IOS’s.
机译:在牙科,3D iOS(口腔口腔扫描仪)基本上越来越受到牙科的生产假体。到目前为止,没有规范化的过程来确定iOS的分辨率。这样的程序可以是iOS市场的积极参数,并将其归一化的第一步。本研究的目的是呈现可重复的方法,以估计任何类型的噪声和分辨率ios。对于噪音,我们使用iOS Trios 2(3Shape)和Carestream 3500(Carestream)进行噪音和解析度。作为参考,我们使用了超平面和超光滑的氧化铝。完全平坦,任何粗糙的记录都应该是被解释为噪音。在该研究中,所获得的根平均正方形(RMS)值在5.29和12.58微米之间。中央部分和整个网格之间发现了显着差异。这是由于边缘效果:与平坦表面的偏差在网眼的边缘比内部部分更重要。为了评估分辨率,陶瓷尖端,用iOS记录良好的抛光,并与网格相比用微型层析术(5微米分辨率)获得。我们测量了两个计划之间的距离提示,被视为记录的小细节。我们发现距离89到121微米的距离与iOS学习和25微米,微米CT。这些方法,简单且可重复,可以完全适合评估和比较商业所有类型ios的。

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