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FLIR vs SEEK thermal cameras in biomedicine: comparative diagnosis through infrared thermography.
BMC Bioinformatics ( IF 2.9 ) Pub Date : 2020-03-11 , DOI: 10.1186/s12859-020-3355-7
Ayca Kirimtat 1 , Ondrej Krejcar 1 , Ali Selamat 1, 2, 3, 4 , Enrique Herrera-Viedma 5, 6
Affiliation  

In biomedicine, infrared thermography is the most promising technique among other conventional methods for revealing the differences in skin temperature, resulting from the irregular temperature dispersion, which is the significant signaling of diseases and disorders in human body. Given the process of detecting emitted thermal radiation of human body temperature by infrared imaging, we, in this study, present the current utility of thermal camera models namely FLIR and SEEK in biomedical applications as an extension of our previous article. The most significant result is the differences between image qualities of the thermograms captured by thermal camera models. In other words, the image quality of the thermal images in FLIR One is higher than SEEK Compact PRO. However, the thermal images of FLIR One are noisier than SEEK Compact PRO since the thermal resolution of FLIR One is 160 × 120 while it is 320 × 240 in SEEK Compact PRO. Detecting and revealing the inhomogeneous temperature distribution on the injured toe of the subject, we, in this paper, analyzed the imaging results of two different smartphone-based thermal camera models by making comparison among various thermograms. Utilizing the feasibility of the proposed method for faster and comparative diagnosis in biomedical problems is the main contribution of this study.

中文翻译:


生物医学中的 FLIR 与 SEEK 热像仪:通过红外热成像进行比较诊断。



在生物医学中,红外热成像是其他传统方法中最有前途的技术,用于揭示由于温度分布不规则而导致的皮肤温度差异,这是人体疾病和失调的重要信号。鉴于通过红外成像检测人体温度发射的热辐射的过程,我们在本研究中介绍了热像仪模型(即 FLIR 和 SEEK)在生物医学应用中的当前实用性,作为我们上一篇文章的扩展。最重要的结果是热像仪模型捕获的热分析图的图像质量之间的差异。换句话说,FLIR One 中热图像的图像质量高于 SEEK Compact PRO。然而,FLIR One 的热图像比 SEEK Compact PRO 的噪声更大,因为 FLIR One 的热分辨率为 160 × 120,而 SEEK Compact PRO 的热分辨率为 320 × 240。为了检测和揭示受试者受伤脚趾上的不均匀温度分布,我们在本文中通过比较各种热图来分析两种不同的基于智能手机的热像仪模型的成像结果。利用所提出的方法的可行性对生物医学问题进行更快的比较诊断是本研究的主要贡献。
更新日期:2020-03-16
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