Podoleanu Adrian G, Dobre George M, Cernat Ramona, Rogers John A, Pedro Justin, Rosen Richard B, Garcia Patricia
University of Kent at Canterbury, Applied Optics Group, School of Physical Sciences, Canterbury CT2 7NH, United Kingdom.
J Biomed Opt. 2007 Jan-Feb;12(1):014019. doi: 10.1117/1.2434970.
We develop a dual-channel optical coherence tomography/indocyanine green (OCT/ICG) fluorescence system based on our previously reported ophthalmic OCT/confocal imaging system. The confocal channel is tuned to the fluorescence wavelength range of the ICG dye and light from the same optical source is used to generate the OCT image and to excite the ICG fluorescence. The system enables the clinician to visualize simultaneously en face OCT slices and corresponding ICG angiograms of the ocular fundus, displayed side by side. C-scan (constant depth) and B-scan (cross section) images are collected by fast en face scanning (T-scan). The pixel-to-pixel correspondence between the OCT and angiography images enables the user to precisely capture OCT B-scans at selected points on the ICG confocal images.
我们基于之前报道的眼科光学相干断层扫描/共聚焦成像系统,开发了一种双通道光学相干断层扫描/吲哚菁绿(OCT/ICG)荧光系统。共聚焦通道被调谐到ICG染料的荧光波长范围,并且来自同一光源的光被用于生成OCT图像以及激发ICG荧光。该系统使临床医生能够同时并排可视化眼底的OCT正面切片和相应的ICG血管造影图像。通过快速正面扫描(T扫描)收集C扫描(恒定深度)和B扫描(横截面)图像。OCT图像与血管造影图像之间的逐像素对应关系,使得用户能够在ICG共聚焦图像上的选定点精确采集OCT B扫描图像。