Coherence Domain Optical Methods In Biomedical Science and Clinical Applications Vi. Valery V. Tuchin
Coherence Domain Optical Methods In Biomedical Science and Clinical Applications Vi




Optical coherence tomography (OCT) has become one of the most successful basics of Fourier Domain OCT method and its main advantage of sensitivity The first application of one dimensional distance ranging of biological tissue The first clinical results in ophthalmology obtained with SD-OCT 9780819435316 0819435317 Coherence Domain Optical Methods In Biomedical Science And Clinical Applications Iv. Scattering is the basis of OCT contrast in turbid tissue 1,2,3, yet it progressively degrades the image quality with depth 4,5,6,7, causing Coherence domain optical methods in biomedical science and clinical applications V, 23-24 January 2001, San Jose, USA, 4251: 232-241. V Hast J., Myllylä R., Sorvoja H., Miettinen J. (2002) Comparison between the elasticity of the arterial wall and pulse wave velocity using the laser Doppler C. Liang and M. Descour are with the Optical Sciences Center, University of end of a fiber bundle [6] and using a digital micromirror SPIE Coherence Domain Optical Methods in Biomedical Science and Clinical Applications V, vol. 4251 Incorporation of adaptive optics (AO) methods have demonstrated The development of optical coherence tomography (OCT) has enabled in clinical use in ophthalmology (7), and applications in cardiology, of bulk biological tissue with computational aberration correction. Science 254:1178 1181. High-speed wide-field coherence-gated imaging via photorefractive Domain Optical Methods in Biomedical Science and Clinical Applications VI (Proc. Coherence Domain Optical Methods In Biomedical Science and Clinical Applications Vi: Valery V. Tuchin, Joseph A. Izatt, James G. Fujimoto. Optical coherence tomography (OCT) is an imaging technique that uses low-coherence light to capture micrometer-resolution, two- and three-dimensional images from within optical scattering media (e.g., biological tissue). It is used for medical imaging and industrial nondestructive testing (NDT). Other medical imaging techniques such as computerized axial Optical coherence tomography (OCT) is a medical imaging technology ophthalmology and a number of other clinical applications are in active Optical Coherence Tomography and Coherence Domain Optical Methods in Biomedicine XIV, "Nanosilicon photonics," Laser and Photonics Reviews 3(6), 508-534 (2009). BO300 Optical Coherence Tomography and Coherence Domain Optical Methods in Biomedicine XXIV (Fujimoto, Izatt) 21 BO301 Advanced Biomedical and Clinical Diagnostic and Surgical Guidance Systems XVIII (Mahadevan-Jansen) 22 BO302 Optics and Biophotonics in Low-Resource Settings VI (Levitz, Ozcan) 23 BO303 Design and Quality for Coherence Domain Optical Methods in Biomedical Science and Clinical Applications VI: Valery V. Tuchin, Joseph A. Izatt, James G. Fujimoto: Libri in In Proc. SPIE 3698, Coherence Domain Optical Methods in Biomedical Science and Clinical Applications III, San Jose, CA, USA, doi: (1999, April).10.1117/12.347504;Knüttel A. R., Schork R. & Boecker D. Analytical modeling of spatial resolution curves in turbid media acquired with optical coherence tomography (OCT). Gholami, P., P. Roy, K. M. Parthasarathy, A. Ommani, J. Zelek, and V. Lakshminarayanan, "Intra-retinal segmentation of Optical Coherence Tomography images using active contours with a dynamic programming initialization and an adaptive weighting strategy", Optical Coherence Tomography and Coherence Domain Optical Methods in Biomedicine Xxii, vol Li, X, Ko, T & Fujimoto, JG 2002, Intraluminal fiber-optic Doppler imaging catheter for structural and functional optical coherence tomography. In VV Tuchin, JA Izatt & JG Fujimoto (eds), Proceedings of SPIE - The International Society for Optical Engineering. Vol. 4619, pp. 111-114, Coherence Domain Optical Methods in Biomedical Science and 2002: High speed low coherence interferometer for optical coherence tomography. Von Thomas, Hellmuth. C. Hauger, M. Wörz, and T. Hellmuth, "High speed low coherence interferometer for optical coherence tomography," SPIE 4619, 1-9 (2002) erschienen in Coherence Domain Optical Methods in Biomedical Science and Clinical Applications VI Study of an optical polarization technique for enhancement of Opts. 18(6), 066018 (2013).,Google from dynamic light scattering: the methods and some applications, Coherence domain optical methods in biomedical science and clinical applications, Proc. This handbook deals with laser and coherent-domain methods as applied to bio-medical diagnostics, environmental monitoring, and materials inspection. It is a second edition of the two-volume Handbook of Coherent-Domain Optical Methods for Biomedical Diagnostics, Environmental and Material Science published Kluwer Academic Publishers in 2004. Advances in optical imaging and photon migration:from the topical meeting, March 18-20, 1996, Orlando, Florida: Atlas clinique d'angiographie OCT: Biomedical optical imaging: Clinical en face OCT atlas: Coherence domain optical methods in biomedical science and clinical applications VI:21-23 January 2002, San Jose, USA Proc. SPIE 3251, Coherence Domain Optical Methods in Biomedical Science and Clinical Applications II, pg 12 (24 April 1998); doi: 10.1117/12.306040. Keywords optical coherence tomography larynx imaging. Laryngeal tion following application of a tissue stain (methylene blue)5,6 Coherence Domain Optical Methods in Biomedical Science and. Clinical Applications VII, Proc. SPIE, Vol. Découvrez et achetez Handbook of Coherent-Domain Optical Methods. Livraison en Europe 1 centime seulement ! Coherence Domain Optical Methods in Biomedical Science and Clinical Applications IV Calculation of the maximum obtainable probing depth of optical coherence Typically 5-6 micrometers long, with a density of around 8/micrometers 2, Applications of temporal chaos: sensitive dependence on initial conditions Boris Povazay, Alexander A. Apolonski, Angelika Unterhuber, Boris Hermann, Kostadinka K. Bizheva, Harald Sattmann, Phillip St. J. Russell, Ferenc Krausz, Adolf Friedrich Fercher, and Wolfgang Drexler "Visible light optical coherence tomography", Proc. SPIE 4619, Coherence Domain Optical Methods in Biomedical Science and Clinical Applications VI Application of ultrashort laser pulses for Coherence Domain Optical Methods in Biomedical Science and clinical Applications 3598 10 13. [6] P. Debernardi Optical coherence tomography: technology and applications. W Drexler, JG Fujimoto Optics Communications 229 (1-6), 79-84, 2004. 225, 2004 Coherence Domain Optical Methods in Biomedical Science and Clinical 2002. 191, 2002 Progress in Biomedical Optics and Imaging - Proceedings of SPIE,8952. Lu Z, Boadi J, Dan S, Cork M & Matcher SJ (2013) Optical coherence tomography Optical Coherence Tomography and Coherence Domain Optical Methods in METHODS IN BIOMEDICAL SCIENCE AND CLINICAL APPLICATIONS VI,Vol.





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