Makita Shuichi, Hong Youngjoo, Yamanari Masahiro, Yatagai Toyohiko, Yasuno Yoshiaki
Opt Express. 2006 Aug 21;14(17):7821-40. doi: 10.1364/oe.14.007821.
Noninvasive angiography is demonstrated for the in vivo human eye. Three-dimensional flow imaging has been performed with high-speed spectral-domain optical coherence tomography. Sample motion is compensated by two algorithms. Axial motion between adjacent A-lines within one OCT image is compensated by the Doppler shift due to bulk sample motion. Axial displacements between neighboring images are compensated by a correlation-based algorithm. Three-dimensional vasculature of ocular vessels has been visualized. By integrating volume sets of flow images, two-dimensional images of blood vessels are obtained. Retinal and choroidal blood vessel images are simultaneously obtained by separating the volume set into retinal part and choroidal parts. These are corresponding to fluorescein angiogram and indocyanine angiogram.
已在人眼活体上展示了无创血管造影术。利用高速光谱域光学相干断层扫描进行了三维血流成像。通过两种算法对样本运动进行补偿。在一幅光学相干断层扫描(OCT)图像内,相邻A线之间的轴向运动通过整体样本运动产生的多普勒频移进行补偿。相邻图像之间的轴向位移通过基于相关性的算法进行补偿。眼部血管的三维脉管系统已可视化。通过整合血流图像的体积集,获得了血管的二维图像。通过将体积集分离为视网膜部分和脉络膜部分,同时获得了视网膜和脉络膜血管图像。这些分别对应于荧光素血管造影和吲哚菁绿血管造影。