热成像
光学相干层析成像
反褶积
无损检测
光热治疗
连贯性(哲学赌博策略)
材料科学
红外线的
光学
医学影像学
图像处理
人工智能
断层摄影术
成像技术
计算机科学
计算机视觉
灵敏度(控制系统)
图像分辨率
先验与后验
降噪
温度测量
迭代重建
成像技术
自动测试设备
生物医学工程
热的
图像质量
作者
Pengfei Zhu,Ziang Wei,Ahmad Osman,Clemente Ibarra-Castanedo,Andreas Mandelis,Xavier Maldague,Hai Zhang
标识
DOI:10.1109/tim.2025.3647992
摘要
Infrared thermography (IRT) and photothermal coherence tomography (PCT) exhibit potential in non-destructive testing and biomedical fields. However, the inevitable heat diffusion significantly affects the sensitivity and resolution of IRT and PCT. Conventional image processing techniques rely on capturing complete thermal sequences, which limits their ability to achieve real-time processes. Here, we construct a real-time super-resolution imaging system based on zero-shot learning strategy for the non-invasive infrared thermography and photothermal coherence tomography techniques. To validate the feasibility and accuracy of this super-resolution imaging system, IRT systems were employed to test several industrial samples and one biomedical sample. The results demonstrated high contrast in the region of interest (ROI) and uncovered valuable information otherwise obscured by thermal diffusion. Furthermore, three-dimensional photothermal coherence tomography was used to validate the excellent denoising and deconvolution capabilities of the proposed real-time super-resolution imaging system.
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