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Optical tomography : ウィキペディア英語版 | Optical tomography
Optical tomography is a form of computed tomography that creates a digital volumetric model of an object by reconstructing images made from light transmitted and scattered through an object. Optical tomography is used mostly in medical imaging research. Optical tomography in industry is used as a sensor of thickness and internal structure of semiconductors.〔^ Wojtek J. Walecki and Fanny Szondy, "(Integrated quantum efficiency, reflectance, topography and stress metrology for solar cell manufacturing )", (Sunrise Optical LLC ), Proc. SPIE 7064, 70640A (2008); 〕 ==Principle== Optical tomography relies on the object under study being at least partially light-transmitting or translucent, so it works best on soft tissue, such as breast and brain tissue. The high scatter-based attenuation involved is generally dealt with by using intense, often pulsed or intensity modulated, light sources, and highly sensitive light sensors, and the use of infrared light at frequencies where body tissues are most transmissive. Soft tissues are highly scattering but weakly absorbing in the near-infrared and red parts of the spectrum, so that this is the wavelength range usually used.
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