Cense Barry, Chen Teresa C, Park B Hyle, Pierce Mark C, de Boer Johannes F
Wellman Laboratories of Photomedicine, Harvard Medical School and Massachusetts General Hospital, 50 Blossom Street BAR 714, Boston, MA 02114, USA.
J Biomed Opt. 2004 Jan-Feb;9(1):121-5. doi: 10.1117/1.1627774.
Glaucoma causes damage of the nerve fiber layer, which may cause loss of retinal birefringence. Therefore, PS-OCT is a potentially useful technique for the early detection of glaucoma. We built a fiber-based PS-OCT setup that produces real-time images of the human retina in vivo, coregistered with retinal video images of the location of PS-OCT scans. Preliminary measurements of a healthy volunteer show that the double-pass phase retardation per unit of depth of the RNFL is not constant and varies with location, with values between 0.18 and 0.37 deg/microm. A trend in the preliminary measurements shows that the nerve fiber layer located inferior and superior to the optic nerve head is more birefringent than the thinner layer of nerve fiber tissue in the temporal and nasal regions.
青光眼会导致神经纤维层受损,这可能会引起视网膜双折射丧失。因此,偏振敏感光学相干断层扫描(PS-OCT)是一种早期检测青光眼的潜在有用技术。我们构建了一种基于光纤的PS-OCT装置,该装置可在体内生成人视网膜的实时图像,并与PS-OCT扫描位置的视网膜视频图像进行配准。对一名健康志愿者的初步测量表明,视网膜神经纤维层(RNFL)每单位深度的双程相位延迟并不恒定,且随位置而变化,其值在0.18至0.37度/微米之间。初步测量的一个趋势表明,位于视神经乳头上下的神经纤维层比颞侧和鼻侧较薄的神经纤维组织层具有更高的双折射。