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Review of spectral domain-enhanced depth imaging optical coherence tomography of tumors of the retina and retinal pigment epithelium in children and adults

机译:儿童和成人视网膜和视网膜色素上皮肿瘤的光谱域增强深度成像光学相干断层扫描技术综述

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Background:Spectral domain (SD) enhanced depth imaging optical coherence tomography (EDI-OCT) is a useful tool for anatomic, cross-sectional imaging of retinal conditions.Aims:The aim was to identify characteristic patterns of retinal and retinal pigment epithelial tumors on EDI-OCT in children and adults.Settings and Design:Retrospective review.Materials and Methods:Analysis of published reports and personal observations using office-based EDI-OCT for adults and portable hand-held SD OCT for infants and children.Results:Using EDI-OCT, retinal tumors such as small retinoblastoma, astrocytic hamartoma, and hemangioblastoma arose abruptly from the retina, immediately adjacent to normal retina. Small exophytic retinoblastoma and retinal hemangioblastoma showed the full-thickness, homogeneous retinal disorganization with surrounding normal retina “draping” over the margins. Retinoblastoma occasionally had intralesional cavities and surrounding subretinal fluid. Hemangioblastoma often had adjacent intraretinal edema and subretinal fluid. Astrocytic hamartoma arose within the nerve fiber layer and sometimes with a “moth-eaten” or cavitary appearance. Retinal pigment epithelial (RPE) lesions such as congenital hypertrophy of RPE appeared flat with shadowing, occasional subretinal cleft, and abrupt photoreceptor loss. Congenital simple hamartoma showed an abrupt elevation from the inner retina with crisp, dark posterior shadowing. Combined hamartoma of the retina/RPE showed vitreoretinal traction causing “sawtooth mini-peak” or gently “maxi-peak” folding of the retina. RPE adenoma often produces remote macular edema or epiretinal membrane and the tumor has an irregular, “rugged” surface with deep shadowing.Conclusions:Enhanced depth imaging optical coherence tomography shows characteristic patterns that are suggestive of certain retinal and RPE tumors.
机译:背景:光谱域(SD)增强深度成像光学相干断层扫描(EDI-OCT)是用于视网膜状况的解剖,横截面成像的有用工具。目的:目的是确定视网膜上的视网膜和视网膜色素上皮肿瘤的特征性模式儿童和成人EDI-OCT。设置与设计:回顾性审查。材料与方法:使用成人办公室EDI-OCT和便携式婴幼儿手持式SD OCT分析已发表的报告和个人观察结果。 EDI-OCT是从视网膜突然出现的视网膜肿瘤,例如小视网膜母细胞瘤,星形细胞性错构瘤和血管母细胞瘤,紧邻正常视网膜。小型外生性视网膜母细胞瘤和视网膜血管母细胞瘤显示出全层,均匀的视网膜组织紊乱,周围正常视网膜在边缘“悬垂”。视网膜母细胞瘤偶尔有病变内腔和周围的视网膜下液。血管母细胞瘤常有邻近的视网膜内水肿和视网膜下液。星形胶质错构瘤出现在神经纤维层内,有时出现“蛀虫”或空洞的外观。视网膜色素上皮(RPE)病变(如先天性RPE肥大)表现为平坦,有阴影,偶有视网膜下裂和突然的感光细胞丢失。先天性单纯错构瘤从视网膜内部突然升高,后部阴影清晰而暗淡。视网膜/ RPE合并的错构瘤显示出玻璃体视网膜牵引,导致视网膜“锯齿形迷你峰”或轻度“最大峰”折叠。 RPE腺瘤常产生远端黄斑水肿或视网膜前膜,且肿瘤表面呈不规则的“凹凸不平”并带有深阴影。结论:增强的深度成像光学相干断层扫描显示出特征性模式,提示某些视网膜和RPE肿瘤。

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