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Automated assessment and tracking of human body thermal variations using unsupervised clustering

机译:使用无保化聚类自动评估和跟踪人体热变化

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摘要

The presented approach addresses a review of the overheating that occurs during radiological examinations, such as magnetic resonance imaging, and a series of thermal experiments to determine a thermally suitable fabric material that should be used for radiological gowns. Moreover, an automatic system for detecting and tracking of the thermal fluctuation is presented. It applies hue-saturated-value-based kernelled k-means clustering, which initializes and controls the points that lie on the region-of-interest (ROI) boundary. Afterward, a particle filter tracks the targeted ROI during the video sequence independently of previous locations of overheating spots. The proposed approach was tested during experiments and under conditions very similar to those used during real radiology exams. Six subjects have voluntarily participated in these experiments. To simulate the hot spots occurring during radiology, a controllable heat source was utilized near the subject's body. The results indicate promising accuracy for the proposed approach to track hot spots. Some approximations were used regarding the transmittance of the atmosphere, and emissivity of the fabric could be neglected because of the independence of the proposed approach for these parameters. The approach can track the heating spots continuously and correctly, even for moving subjects, and provides considerable robustness against motion artifact, which occurs during most medical radiology procedures. (C) 2016 Optical Society of America
机译:本方法解决了在放射检查期间发生的过热的审查,例如磁共振成像,以及一系列热实验,以确定应用于放射性礼服的热合适的织物材料。此外,介绍了用于检测和跟踪热波动的自动系统。它应用基于色调饱和值的内核K-means集群,该族群体群集初始化和控制位于兴趣区域(ROI)边界的点。之后,粒子滤波器在视频序列中独立于过热点的先前位置跟踪目标ROI。在实验期间和在与真实放射学考试期间使用的条件下,测试了所提出的方法。六个受试者自愿参加这些实验。为了模拟放射学中发生的热点,在受试者的身体附近使用可控的热源。结果表明了追踪热点的提出方法的有希望的准确性。对于大气的透射率,使用一些近似,并且由于这些参数的所提出方法的独立性,可以忽略织物的发射率。即使对于移动对象,该方法也可以连续地跟踪加热点,并为运动伪像提供相当大的鲁棒性,在大多数医学放射学过程中发生这种情况。 (c)2016年美国光学学会

著录项

  • 来源
    《Applied optics》 |2016年第34期|共11页
  • 作者单位

    Univ Laval Dept Elect &

    Comp Engn Quebec City PQ G1V 0A6 Canada;

    Univ Laval Dept Elect &

    Comp Engn Quebec City PQ G1V 0A6 Canada;

    Univ Laval Dept Elect &

    Comp Engn Quebec City PQ G1V 0A6 Canada;

    Univ Laval Dept Elect &

    Comp Engn Quebec City PQ G1V 0A6 Canada;

    RT Thermal Co 7167 Elkhorn Dr W Palm Beach FL 33411 USA;

    Visiooimage Inc 2560 Rue Lapointe Quebec City PQ G1W 1A8 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
  • 关键词

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