Three-dimensional Motion Correction Using Speckle and Phase for in Vivo Computed Optical Interferometric Tomography References and Links
Three-dimensional Motion Correction Using Speckle and Phase for in Vivo Computed Optical Interferometric Tomography References and Links
复制标题
DOI:
--
复制
发表时间:
--
期刊:
影响因子:
--
通讯作者:
N. Shemonski;S. Ahn;Y. Liu;F. South;P. S. Carney;S. Boppart;B. Povazay;C. Hofer;B. Torti
中科院分区:
文献类型:
--
作者:
N. Shemonski;S. Ahn;Y. Liu;F. South;P. S. Carney;S. Boppart;B. Povazay;C. Hofer;B. Torti
Over the years, many computed optical interferometric techniques have been developed to perform high-resolution volumetric tomography. By utilizing the phase and amplitude information provided with interferometric detection, post-acquisition corrections for defocus and optical aberrations can be performed. The introduction of the phase, though, can dramatically increase the sensitivity to motion (most prominently along the optical axis). In this paper, we present two algorithms which, together, can correct for motion in all three dimensions with enough accuracy for defocus and aberration correction in computed optical interferometric tomography. The first algorithm utilizes phase differences within the acquired data to correct for motion along the optical axis. The second algorithm utilizes the addition of a speckle tracking system using temporally-and spatially-coherent illumination to measure motion orthogonal to the optical axis. The use of coherent illumination allows for high-contrast speckle patterns even when imaging apparently uniform samples or when highly aberrated beams cannot be avoided. Impact of enhanced resolution, speed and penetration on three-dimensional retinal optical coherence tomography, " Opt. Motion artifacts in optical coherence tomography with frequency-domain ranging, " Opt. Predictive cardiac motion modeling and correction with partial least squares regression, " IEEE Trans. Quantification of left ventricular volumes using three-dimensional echocardiography: Comparison with 64-slice multidetector computed tomography, " J. Med. optics optical coherence tomography with dynamic retinal tracking, " Biomed. Three dimensional tracking for volumetric spectral-domain optical coherence tomography, " Opt. " Adaptive optics SLO/OCT for 3D imaging of human photoreceptors in vivo, " Biomed. " High speed, wide velocity dynamic range Doppler optical coherence tomography (Part I): System design, signal processing, and performance, " Opt. Boer, " In vivo dynamic human retinal blood flow imaging using ultra-high-speed spectral domain optical coherence tomography, " Opt. Computational adaptive optics for broadband optical interferometric tomography of biological tissue, " Proc. Subaperture correlation based digital adaptive optics for full field optical coherence tomography, " Opt. optical interferometric tomography for high-speed volumetric cellular imaging, " Biomed. Motion correction for phase-resolved dynamic optical coherence tomography imaging of rodent cerebral cortex, " Opt. Phase registration based on matching of phase distribution characteristics and its application in FDOCT, " Opt. Statistical properties of phase-decorrelation in phase-resolved Doppler optical coherence tomography, " IEEE Trans. Numerical focusing methods for full field OCT: a comparison based on a common signal model, " Opt.