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全景 X 光图像中的颌骨和牙齿分割用于牙科人类识别。

Jaw and Teeth Segmentation on the Panoramic X-Ray Images for Dental Human Identification.

机构信息

Software Engineering Department, Of Technology Faculty, Karadeniz Technical University, Trabzon, Turkey.

Electrical and Electronics Eng. Department, Engineering Faculty, Ondokuz Mayis University, Samsun, Turkey.

出版信息

J Digit Imaging. 2020 Dec;33(6):1410-1427. doi: 10.1007/s10278-020-00380-8. Epub 2020 Aug 6.

Abstract

Due to the damage to biometric properties in the event of natural disasters, like fire or earthquakes, it is very difficult to identify human remains. As teeth are more durable than other biometric properties, identifying information obtained from them is much more reliable. Therefore, in cases where alternative biometric properties cannot be obtained or used, information taken from teeth may be used to identify a person's remains. In recent years, many studies have shown how the identification process, previously performed manually by a forensic dental specialist, can be made faster and more reliable with the assistance of computers and technology. In these studies, the x-ray image is subdivided into meaningful parts, including jaws and teeth, and dental properties are extracted and matched. In order to extract the features accurately and ensure better matching, it is important to segment images properly. In this study, (i) lower and upper jaw and (ii) tooth separation was performed to segment panoramic dental x-ray images to assist in identifying human remains. To separate the jaws, a novel meta-heuristic optimization-based model is proposed. To separate teeth, a user-assisted, semi-automatic approach is presented. The proposed methods have been performed with a computer program. The results of the implementation of these methods of jaw and tooth separation in panoramic tooth images are encouraging.

摘要

由于自然灾害(如火灾或地震)会对生物识别特性造成损害,因此很难识别人类遗骸。由于牙齿比其他生物识别特性更耐用,因此从它们获得的识别信息更加可靠。因此,在无法获得或使用其他生物识别特性的情况下,可以使用从牙齿中获取的信息来识别一个人的遗骸。近年来,许多研究表明,以前由法医牙科专家手动进行的识别过程如何借助计算机和技术变得更快、更可靠。在这些研究中,将 X 射线图像细分为有意义的部分,包括颌骨和牙齿,并提取和匹配牙齿特性。为了准确提取特征并确保更好的匹配,正确分割图像很重要。在这项研究中,(i)进行了上下颌和(ii)牙齿分离,以分割全景牙科 X 射线图像,以协助识别人类遗骸。为了分离颌骨,提出了一种基于新颖元启发式优化的模型。为了分离牙齿,提出了一种用户辅助的半自动方法。已经使用计算机程序执行了这些方法。在全景牙图像中实施这些颌骨和牙齿分离方法的结果令人鼓舞。

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