Tissue mimicking phantoms for fluorescence imaging
暂无分享,去创建一个
Viktor Dremin | Valery Shupletsov | Ksenia Kandurova | Dmitry Stavtsev | Aleksandr Stolbov | Elena Potapova | Andrey Vinokurov | Konstantin Podmaster’ev | Andrey Dunaev | D. Stavtsev | E. Potapova | V. Dremin | A. Dunaev | V. Shupletsov | K. Kandurova | A. Stolbov | A. Vinokurov | K. Podmaster’ev
[1] P. Hegemann,et al. pH dependence of the absorption and emission behaviour of riboflavin in aqueous solution , 2002 .
[2] Andrey V. Dunaev,et al. Fiber-Optic System for Intraoperative Study of Abdominal Organs during Minimally Invasive Surgical Interventions , 2019, Applied Sciences.
[3] A. Kienle,et al. Investigation of two-layered turbid media with time-resolved reflectance. , 1998, Applied optics.
[4] Ekaterina Borisova,et al. Multispectral autoflourescence detection of skin neoplasia using steady-state techniques , 2019, International School on Quantum Electronics: Laser Physics and Applications.
[5] I. Meglinski,et al. Quantitative assessment of skin layers absorption and skin reflectance spectra simulation in the visible and near-infrared spectral regions. , 2002, Physiological measurement.
[6] M. Vanoni,et al. Identifying and quantitating FAD and FMN in simple and in iron-sulfur-containing flavoproteins. , 1999, Methods in molecular biology.
[7] N Ramanujam,et al. Fluorescence spectroscopy: a diagnostic tool for cervical intraepithelial neoplasia (CIN). , 1994, Gynecologic oncology.
[8] Valery P Zakharov,et al. Portable spectroscopic system for in vivo skin neoplasms diagnostics by Raman and autofluorescence analysis , 2019, Journal of biophotonics.
[9] Jianan Y Qu,et al. Autofluorescence spectroscopy of epithelial tissues. , 2006, Journal of biomedical optics.
[10] Michele Follen,et al. Model-based analysis of clinical fluorescence spectroscopy for in vivo detection of cervical intraepithelial dysplasia. , 2006, Journal of biomedical optics.
[11] Christian Depeursinge,et al. In vivo endoscopic tissue diagnostics based on spectroscopic absorption, scattering, and phase function properties. , 2003, Journal of biomedical optics.
[12] R. Richards-Kortum,et al. Microanatomical and Biochemical Origins of Normal and Precancerous Cervical Autofluorescence Using Laser-scanning Fluorescence Confocal Microscopy¶ , 2003, Photochemistry and photobiology.
[13] Igor Meglinski,et al. Hyperspectral imaging of human skin aided by artificial neural networks. , 2019, Biomedical optics express.
[14] M. Shirmanova,et al. Metabolic Imaging in the Study of Oncological Processes (Review) , 2016 .
[15] Angelina I. Zherebtsova,et al. Noninvasive control of the transport function of fluorescent coloured liposomal nanoparticles , 2017 .
[16] Craig B. Thompson,et al. Fuel feeds function: energy metabolism and the T-cell response , 2005, Nature Reviews Immunology.
[17] R M Cothren,et al. Laser-induced fluorescence microscopy of normal colon and dysplasia in colonic adenomas: implications for spectroscopic diagnosis. , 1995, The American journal of gastroenterology.
[18] Robert V Farese,et al. Cellular fatty acid metabolism and cancer. , 2013, Cell metabolism.
[19] C. Mathers,et al. GLOBOCAN 2012 v1.0, Cancer Incidence and Mortality Worldwide: IARC CancerBase No. 11 [Internet]. Lyon, France: International Agency for Research on Cancer , 2013 .
[20] K. T. Moesta,et al. Protoporphyrin IX occurs naturally in colorectal cancers and their metastases. , 2001, Cancer research.
[21] A. Rück,et al. Design and Characterisation of a Tissue Phantom System for Optical Diagnostics , 1998, Lasers in Medical Science.
[22] H E Savage,et al. Native cellular fluorescence can identify changes in epithelial thickness in-vivo in the upper aerodigestive tract. , 1995, American journal of surgery.
[23] Peng Xi,et al. Depth-resolved fluorescence spectroscopy of normal and dysplastic cervical tissue. , 2005, Optics express.
[24] N. A. Stewart,et al. Individual variability analysis of fluorescence parameters measured in skin with different levels of nutritive blood flow. , 2015, Medical engineering & physics.
[25] V Dietz,et al. The influence of a clear layer on near-infrared spectrophotometry measurements using a liquid neonatal head phantom. , 1999, Physics in medicine and biology.
[26] D. Choy,et al. Fluorescence spectra from cancerous and normal human breast and lung tissues , 1987, Annual Meeting Optical Society of America.
[27] S L Jacques,et al. Time-resolved photon emission from layered turbid media. , 1996, Applied optics.
[28] I. Meglinski,et al. Allocation of rhodamine-loaded nanocapsules from blood circulatory system to adjacent tissues assessedin vivoby fluorescence spectroscopy , 2018, Laser Physics Letters.