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Quantitative analysis of collagen morphology in breast cancer from millimeter scale using multiphoton microscopy
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作者 Yulan Liu Shunwu Xu +8 位作者 Deyong Kang Xingxin Huang Shuoyu Xu Lianhuang Li Liqin Zheng Lida Qiu Zhenlin Zhan xiahui han Jianxin Chen 《Journal of Innovative Optical Health Sciences》 SCIE EI CSCD 2023年第4期48-57,共10页
The tumor microenvironment(TME)is now recognized as an important participant of tumor progression.As the most abundant extracellular matrix component in TME,collagen plays an important role in tumor development.The im... The tumor microenvironment(TME)is now recognized as an important participant of tumor progression.As the most abundant extracellular matrix component in TME,collagen plays an important role in tumor development.The imaging study of collagen morphological feature in TME is of great significance for understanding the state of tumor.Multiphoton microscopy(MPM),based on second harmonic generation(SHG)and two-photon excitation fluorescence(TPEF),can be used to monitor the morphological changes of biological tissues without labeling.In this study,we used MPM for large-scale imaging of early invasive breast cancer from the tumor center to normal tissues far from the tumor.We found that there were signi¯cant di®erences in collagen morphology between breast cancer tumor boundary,near tumor transition region and normal tissues far from the tumor.Furthermore,the morphological feature of eight collagen¯bers was extracted to quantify the variation trend of collagen in three regions.These results may provide a new perspective for the optimal negative margin width of breast-conserving surgery and the understanding of tumor metastasis. 展开更多
关键词 Breast cancer tumor microenvironment collagen¯ber morphology multiphoton microscopy
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多光子显微技术在乳腺癌预后预测的应用
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作者 罗添忆 詹惠玲 +8 位作者 许铭宇 徐顺武 何佳佳 李连煌 韩侠辉 郑莉琴 陈建新 卓双木 席刚琴 《福光技术》 2022年第1期19-26,共8页
乳腺癌是全世界最广泛的女性癌症类型,同样也是女性癌症死亡的主要原因。2020年乳腺癌发病数已经超过肺癌,成为了全球第一大癌。多光子显微技术(MPM)是基于激光与生物组织相互作用发生的多光子激发荧光和谐波等非线性光学效应的一种先... 乳腺癌是全世界最广泛的女性癌症类型,同样也是女性癌症死亡的主要原因。2020年乳腺癌发病数已经超过肺癌,成为了全球第一大癌。多光子显微技术(MPM)是基于激光与生物组织相互作用发生的多光子激发荧光和谐波等非线性光学效应的一种先进医学成像技术。多光子显微技术不但在成像分辨率上具有与组织病理学分辨率相当的优势,而且具有无标记、免切片、光学层析成像、反映细胞的功能代谢信息、三维靶向消融能力、较低的光漂白与光损伤、高成像对比度等优势。因此,多光子显微技术在医学病理诊断,特别是肿瘤病理诊断临床转化的基础研究和应用研究领域一直受到广泛的关注。本文详细阐述了多光子显微技术在乳腺肿瘤微环境预后预测研究中的应用进展,并展望了其未来发展前景。 展开更多
关键词 医用光学 多光子显微技术 乳腺癌 肿瘤微环境 预后预测
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