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A Comparison of Optic Nerve Head Morphology Viewed by Spectral Domain Optical Coherence Tomography and by Serial Histology

机译:光谱域光学相干断层扫描和串行组织学观察的视神经头部形态比较

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Purpose.: To compare serial optic nerve head (ONH) histology with interpolated B-scans generated from a three-dimensional (3-D) spectral domain (SD)-OCT ONH volume acquired in vivo from the same normal monkey eye. Methods.: A 15?° ONH SD-OCT volume was acquired in a normal monkey eye, with IOP manometrically controlled at 10 mm Hg. After perfusion fixation at 10 mm Hg, the ONH was trephined, the specimen embedded in a paraffin block, and serial sagittal sections cut at 4-??m intervals. The location of each histologic section was identified within the optic disc photograph by matching the position of the retinal vessels and of Bruch's membrane opening. By altering the angles of rotation and incidence, interpolated B-scans matching the location of the histologic sections were generated with custom software. Structures identified in the histologic sections were compared with signals identified in the matched B-scans. Results.: Close matches between histologic sections and interpolated B-scans were identified throughout the extent of the ONH. SD-OCT identified the neural canal opening as the termination of the Bruch's membranea??retinal pigment complex and border tissue as the innermost termination of the choroidal signal. The anterior lamina cribrosa and its continuity with the prelaminar glial columns were also detected by SD-OCT. Conclusions.: Volumetric SD-OCT imaging of the ONH generates interpolated B-scans that accurately match serial histologic sections. SD-OCT captures the anterior laminar surface, which is likely to be a key structure in the detection of early ONH damage in ocular hypertension and glaucoma.
机译:目的:将串行视神经乳头(ONH)组织学与从同一只正常猴眼体内获得的三维(3-D)光谱域(SD)-OCT ONH体积生成的内插B扫描进行比较。方法:在正常猴眼中获得15?°ONH SD-OCT体积,IOP测压控制在10 mm Hg。在10 mm Hg的灌注固定后,将ONH翻盖,将标本包埋在石蜡块中,并以4?m的间隔切下连续的矢状切面。通过匹配视网膜血管的位置和布鲁赫膜的开口,可以在视盘照片中识别出每个组织学切片的位置。通过改变旋转角度和入射角,用定制软件生成与组织切片位置匹配的内插B扫描。将组织学切片中鉴定的结构与匹配的B扫描中鉴定的信号进行比较。结果:在整个ONH范围内,组织学切片和内插B扫描之间的匹配程度很高。 SD-OCT将神经管开口确定为Bruch膜-视网膜色素复合物的终止,将边界组织确定为脉络膜信号的最内部终止。 SD-OCT还可以检测出前筛板筛网及其与层状胶质柱的连续性。结论:ONH的体积SD-OCT成像会生成内插B扫描,这些B扫描可精确匹配系列组织学切片。 SD-OCT捕获前层表面,这可能是检测高眼压和青光眼早期ONH损伤的关键结构。

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