Han Shuo, Sarunic Marinko V, Wu Jigang, Humayun Mark, Yang Changhuei
California Institute of Technology, Department of Electrical Engineering, Pasadena, California 91125, USA.
J Biomed Opt. 2008 Mar-Apr;13(2):020505. doi: 10.1117/1.2904664.
We report the narrowest to-date (21 gauge, 820-microm-diam) handheld forward-imaging optical coherence tomography (OCT) needle endoscope and demonstrate its feasibility for ophthalmic OCT inspection. The probe design is based on paired-angle-rotation scanning (PARS), which enables a linear B-scan pattern in front of the probe tip by using two counterrotating angle polished gradient-index (GRIN) lenses. Despite its small size, the probe can provide a numerical apertune (NA) of 0.22 and an experimental sensitivity of 92 dB at 0.5 frames. The feasibility of retinal imaging is tested on enucleated ex vivo porcine eyes, where structural features including remnant vitreous humor, retina, and choroid can be clearly distinguished. Due to its imaging quality comparable to a commercial OCT system and compatibility with the current ophthalmic surgery standard, the probe can potentially serve as a better alternative to traditional visual inspection by white light illumination during vitreoretinal surgery (e.g., vitrectomy).
我们报告了迄今为止最细的(21号,直径820微米)手持式前向成像光学相干断层扫描(OCT)针状内窥镜,并展示了其用于眼科OCT检查的可行性。该探头设计基于双角度旋转扫描(PARS),通过使用两个反向旋转的角度抛光梯度折射率(GRIN)透镜,在探头尖端前方实现线性B扫描模式。尽管尺寸小,但该探头可提供数值孔径(NA)为0.22,在0.5帧时的实验灵敏度为92 dB。在摘除的离体猪眼上测试了视网膜成像的可行性,其中包括残余玻璃体、视网膜和脉络膜在内的结构特征可清晰分辨。由于其成像质量与商业OCT系统相当,且与当前眼科手术标准兼容,该探头有可能成为玻璃体视网膜手术(如玻璃体切除术)中传统白光照明目视检查的更好替代方案。