Virtual Fluorescence Translation for Biological Tissue by Conditional Generative Adversarial Network
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Xin Liu | Chengcheng Liu | Dean Ta | Boyi Li
[1] Yuta Hiasa,et al. Translation of Cellular Protein Localization Using Convolutional Networks , 2021, Frontiers in Cell and Developmental Biology.
[2] Cho-Jui Hsieh,et al. Investigating heterogeneities of live mesenchymal stromal cells using AI-based label-free imaging , 2021, Scientific Reports.
[3] Qionghai Dai,et al. Unsupervised content-preserving transformation for optical microscopy , 2021, Light: Science & Applications.
[4] Aydogan Ozcan,et al. Emerging Advances to Transform Histopathology Using Virtual Staining , 2020, BME frontiers.
[5] Aydogan Ozcan,et al. Deep learning-based transformation of H&E stained tissues into special stains , 2020, Nature Communications.
[6] L. Tian,et al. Single-cell cytometry via multiplexed fluorescence prediction by label-free reflectance microscopy , 2020, Science Advances.
[7] Jie Tian,et al. Deep Learning for Virtual Histological Staining of Bright-Field Microscopic Images of Unlabeled Carotid Artery Tissue , 2020, Molecular Imaging and Biology.
[8] Julienne LaChance,et al. Practical fluorescence reconstruction microscopy for large samples and low-magnification imaging , 2020, bioRxiv.
[9] Kevin de Haan,et al. Digital synthesis of histological stains using micro-structured and multiplexed virtual staining of label-free tissue , 2020, Light: Science & Applications.
[10] Harini Veeraraghavan,et al. Patch-Based Generative Adversarial Neural Network Models for Head and Neck MR-Only Planning. , 2019, Medical physics.
[11] A. Ozcan,et al. Virtual histological staining of unlabelled tissue-autofluorescence images via deep learning , 2019, Nature Biomedical Engineering.
[12] A. Ozcan,et al. PhaseStain: the digital staining of label-free quantitative phase microscopy images using deep learning , 2018, Light, science & applications.
[13] Samuel J. Yang,et al. In Silico Labeling: Predicting Fluorescent Labels in Unlabeled Images , 2018, Cell.
[14] Geoffrey E. Hinton,et al. Deep Learning , 2015, Nature.
[15] Maria Siebes,et al. Improved detection of fluorescently labeled microspheres and vessel architecture with an imaging cryomicrotome , 2010, Medical & Biological Engineering & Computing.
[16] Sheila S. Hemami,et al. Analyzing the role of visual structure in the recognition of natural image content with multi-scale SSIM , 2008, Electronic Imaging.
[17] Eero P. Simoncelli,et al. Image quality assessment: from error visibility to structural similarity , 2004, IEEE Transactions on Image Processing.
[18] David Salesin,et al. Image Analogies , 2001, SIGGRAPH.
[19] C. Meijer,et al. Histopathological evaluation of colonic mucosal biopsy specimens in chronic inflammatory bowel disease: diagnostic implications. , 1991, Gut.