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Titlebook: Optical Coherence Tomography; Technology and Appli Wolfgang Drexler,James G. Fujimoto Reference work 2015Latest edition Springer Internatio

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Optical Design for OCTmmon to OCT and relevant optical design criteria. Second, we review several fundamental optical design principles important for OCT designs. Finally, we discuss a number of examples of designed optical systems for OCT.
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Data Analysis and Signal Postprocessing for Optical Coherence Tomography to numerically infer properties of the object being studied. While a great deal of insight can be gained by understanding OCT intuitively as a range-finding mechanism, more sophisticated analysis can reveal additional detail and features to the extent data quality allows. To maximize the utility of
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DSP Technology and Methods for OCTf-care systems. Innovations in the semiconductor technologies have been a major driving factor for such evolution. Today, optical coherence tomography (OCT) systems are mostly cart-based or desktop systems. Portable and hand-held OCT systems will open up new opportunities for their use. Recent advan
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Image Processing in Intravascular OCT imaging modality for characterization of atherosclerotic plaques and evaluation of coronary stenting. OCT has several unique advantages over alternative technologies, such as intravascular ultrasound (IVUS), due to its better resolution and contrast. For example, OCT is currently the only imaging m
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Superluminescent Diode Light Sources for OCTst in “superluminescent” light output from laser diode structures slightly below threshold that might be considerably enhanced by “damping” of the laser resonator. SLD design efforts were intensified in early 1980s when it was proved that they are “light sources of choice” for fiber-optic gyroscopes
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Springer International Publishing Switzerland 2015
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https://doi.org/10.1007/978-3-319-06419-2Holographic Optical Coherence Imaging; Light-tissue Interaction; Medical Imaging; Non-invasive Optical
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