成像体模
高光谱成像
生物医学工程
胰腺肿瘤
肌肉组织
人工智能
肝组织
计算机科学
胰腺癌
医学
放射科
癌症
解剖
内科学
作者
Na Eun Mun,Thi Kim Chi Tran,Dong Hui Park,Jin Hee Im,Jae‐Il Park,Thanh Dat Le,Young Jin Moon,Seong Young Kwon,Su Woong Yoo
出处
期刊:Bioengineering
[MDPI AG]
日期:2024-02-23
卷期号:11 (3): 208-208
被引量:4
标识
DOI:10.3390/bioengineering11030208
摘要
In this study, we developed an endoscopic hyperspectral imaging (eHSI) system and evaluated its performance in analyzing tissues within tissue phantoms and orthotopic mouse pancreatic tumor models. Our custom-built eHSI system incorporated a liquid crystal tunable filter. To assess its tissue discrimination capabilities, we acquired images of tissue phantoms, distinguishing between fat and muscle regions. The system underwent supervised training using labeled samples, and this classification model was then applied to other tissue phantom images for evaluation. In the tissue phantom experiment, the eHSI effectively differentiated muscle from fat and background tissues. The precision scores regarding fat tissue classification were 98.3% for the support vector machine, 97.7% for the neural network, and 96.0% with a light gradient-boosting machine algorithm, respectively. Furthermore, we applied the eHSI system to identify tumors within an orthotopic mouse pancreatic tumor model. The F-score of each pancreatic tumor-bearing model reached 73.1% for the KPC tumor model and 63.1% for the Pan02 tumor models. The refined imaging conditions and optimization of the fine-tuning of classification algorithms enhance the versatility and diagnostic efficacy of eHSI in biomedical applications.
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