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光学分辨光声显微镜成像在图像重建算法下对早期口腔癌的检测。

Optical Resolution Photoacoustic Microscopy Imaging in the Detection of Early Oral Cancer under Image Reconstruction Algorithm.

机构信息

Department of Oral and Maxillofacial Surgery, Qilu Medical College of Shandong University (Qingdao), Qingdao, 266035 Shandong, China.

出版信息

Comput Math Methods Med. 2022 Jun 17;2022:6077748. doi: 10.1155/2022/6077748. eCollection 2022.

Abstract

This research was intended to explore the application value of photoacoustic imaging technology based on image intelligent iterative reconstruction algorithm in the detection and diagnosis of early oral cancer. An iterative algorithm model was constructed and systematically analyzed. The algorithm was used to debug the detection of B-scan images on the diameter of the imaging area. The results showed that the sensitivity of line-focused ultrasound detector was 86.72% and the specificity was 80.79%, while the sensitivity of the flat-field ultrasound detector was 63.15% and the specificity was 71.79%. The photoacoustic microscopy imaging technology can clearly observe the rich capillary network on human lips. A part of the vascular network at the depth of 100 m, 500 m, and 1000 m grew out of the reticular capillaries and extended out of the loop-like capillaries, and the diameter gradually expanded. The imaging experiment of the sublingual capillary network in the human body showed that loop-like capillaries were observed, but there were some large blood vessels, which corresponded to the densely distributed blood vessel network under the tongue. The morphological changes of loop-like capillaries can be well observed by photoacoustic microscopy. In conclusion, the reconstructed photoacoustic microscopy imaging technology can realize high-resolution imaging of human oral capillaries and observe the morphological changes of loop-like capillaries, which had a certain application value for the early detection of oral cancer.

摘要

本研究旨在探讨基于图像智能迭代重建算法的光声成象技术在早期口腔癌检测和诊断中的应用价值。构建了迭代算法模型,并进行了系统分析。该算法用于调试对成像区域直径的 B 扫描图像的检测。结果表明,线聚焦超声探测器的灵敏度为 86.72%,特异性为 80.79%,而平面场超声探测器的灵敏度为 63.15%,特异性为 71.79%。光声显微镜成象技术可以清楚地观察到人类嘴唇上丰富的毛细血管网络。在 100μm、500μm 和 1000μm 深度处的一部分血管网络从网状毛细血管中生长出来,并延伸出环状毛细血管,直径逐渐扩大。对人体舌下毛细管网络的成象实验表明,观察到了环状毛细血管,但存在一些大血管,这与舌下密集分布的血管网络相对应。光声显微镜可以很好地观察到环状毛细血管的形态变化。总之,重建的光声显微镜成象技术可以实现对人口腔毛细血管的高分辨率成像,并观察到环状毛细血管的形态变化,这对早期口腔癌的检测具有一定的应用价值。

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