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利用超高分辨率光相干断层扫描和自适应光学技术对视网膜毛细血管进行成像。

Imaging retinal capillaries using ultrahigh-resolution optical coherence tomography and adaptive optics.

机构信息

School of Optometry, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

Invest Ophthalmol Vis Sci. 2011 Aug 9;52(9):6292-9. doi: 10.1167/iovs.10-6424.

Abstract

PURPOSE

Ultrahigh-resolution optical coherence tomography (UHR-OCT) with adaptive optics (AO) provides micrometer-scale 3D resolution that is attractive for imaging the retinal microvasculature. Such imaging may be useful for early detection of pathologic changes as in diabetic retinopathy. Here the authors investigate this potential for detecting individual capillaries in healthy subjects.

METHODS

UHR-AO-OCT volumes centered on the fovea were acquired from seven subjects (age range, 25-61 years) with three preselected with no foveal avascular zone (FAZ). Images were compared with entoptic diagrams using the capillaries at the rim of the FAZ. Methods of comparison were testing for the presence of a FAZ, noting distinct features in the capillary pattern, and measuring the size of the FAZ. Additional analysis included measurements of capillary diameter and depth range with retinal eccentricity.

RESULTS

UHR-AO-OCT results are consistent with entoptic observations for all three methods of comparison. FAZ diameters measured by UHR-AO-OCT and entoptic imaging are strongly correlated (R(2) = 0.86). Average capillary diameter near the FAZ rim is 5.1 (4.6) ± 1.4 μm, with the value in parentheses accounting for axial image blur. This is consistent with histology (average, ~4.7 μm). Depth range of the capillaries increases monotonically with eccentricity (0°-1.25°) and is larger and more variable for subjects without FAZ.

CONCLUSIONS

UHR-AO-OCT permits observation of many of the capillaries proximal to the FAZ, including those of average size based on published histology. This supports the view that the vast majority of capillaries in the retina are likely detectable with UHR-AO-OCT.

摘要

目的

具有自适应光学(AO)的超高分辨率光相干断层扫描(UHR-OCT)提供了具有吸引力的微米级 3D 分辨率,可用于视网膜微血管成像。这种成像可能有助于早期发现糖尿病视网膜病变等病理变化。作者在此研究了其在健康受试者中检测单个毛细血管的潜力。

方法

从 7 名受试者(年龄 25-61 岁)的中央凹采集 UHR-AO-OCT 体积,其中 3 名预先选择了没有中央凹无血管区(FAZ)。通过 FAZ 边缘的毛细血管将图像与内眼图进行比较。比较方法包括检测 FAZ 的存在,注意毛细血管模式中的明显特征以及测量 FAZ 的大小。额外的分析包括随视网膜偏心度测量毛细血管直径和深度范围。

结果

UHR-AO-OCT 结果与所有三种比较方法的内眼观察结果一致。UHR-AO-OCT 和内眼成像测量的 FAZ 直径具有很强的相关性(R(2) = 0.86)。FAZ 边缘附近的平均毛细血管直径为 5.1(4.6)±1.4μm,括号中的值是考虑到轴向图像模糊。这与组织学一致(平均约为 4.7μm)。毛细血管的深度范围随偏心度单调增加(0°-1.25°),并且对于没有 FAZ 的受试者更大且更可变。

结论

UHR-AO-OCT 允许观察到 FAZ 附近的许多毛细血管,包括基于已发表的组织学的平均大小的毛细血管。这支持了这样的观点,即视网膜中的绝大多数毛细血管都可能通过 UHR-AO-OCT 检测到。

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