Cross-Sensor Micro-Texture Material Classification and Smartphone Acquisition do not go well together

Johannes Schuiki, Christof Kauba, H. Hofbauer, A. Uhl
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Abstract

Intrinsic, non-invasive product authentication is still an important topic as it does not generate additional costs during the production process. This topic is of specific interest for medical products as non-genuine products can directly effect the patients’ health. This work investigates micro-texture classification as a mean of proving the authenticity of zircon oxide blocks (for dental implants). Samples of three different manufacturers were acquired using four smartphone devices with a clip-on macro lens. In addition, an existing drug packaging material database was utilized. While the intra-sensor microtexture classification worked well, the cross-sensor classification results were less promising. In an attempt to track down the limiting factors, intrinsic sensor features usually used in device identification were investigated as well.
跨传感器微纹理材料分类和智能手机采集不能很好地结合在一起
内在的、非侵入性的产品认证仍然是一个重要的话题,因为它在生产过程中不会产生额外的成本。这个话题对医疗产品特别感兴趣,因为非正品产品会直接影响患者的健康。这项工作调查了微纹理分类作为证明氧化锆块(用于牙科植入物)真实性的手段。三个不同的制造商的样本是使用四个智能手机设备与夹在微距镜头。此外,还利用了现有的药品包装材料数据库。虽然传感器内的微纹理分类效果很好,但传感器间的分类结果却不太理想。为了找出限制因素,研究了器件识别中常用的传感器固有特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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