光学
光学相干层析成像
衍射
物理
干涉测量
连贯性(哲学赌博策略)
贝塞尔光束
相互连贯
傅里叶变换
相干理论
衍射层析成像
断层摄影术
几何光学
极化(电化学)
物理光学
计算机科学
贝塞尔函数
空间频率
统一场论
切趾
脉冲响应
傅里叶分析
高斯光束
傅里叶光学
连贯度
形式主义(音乐)
作者
Kevin C. Zhou,Ruobing Qian,Al-Hafeez Dhalla,Sina Farsiu,Joseph A. Izatt
摘要
We present a general theory of optical coherence tomography (OCT), which synthesizes the fundamental concepts and implementations of OCT under a common 3D k -space framework. At the heart of this analysis is the Fourier diffraction theorem, which relates the coherent interaction between a sample and plane wave to the Ewald sphere in the 3D k -space representation of the sample. While only the axial dimension of OCT is typically analyzed in k -space, we show that embracing a fully 3D k -space formalism allows explanation of nearly every fundamental physical phenomenon or property of OCT, including contrast mechanism, resolution, dispersion, aberration, limited depth of focus, and speckle. The theory also unifies diffraction tomography, confocal microscopy, point-scanning OCT, line-field OCT, full-field OCT, Bessel beam OCT, transillumination OCT, interferometric synthetic aperture microscopy (ISAM), and optical coherence refraction tomography (OCRT), among others. Our unified theory not only enables clear understanding of existing techniques but also suggests new research directions to continue advancing the field of OCT.
科研通智能强力驱动
Strongly Powered by AbleSci AI