新生儿散发性视网膜星形细胞错构瘤模拟视网膜母细胞瘤的多模态成像。

GMS ophthalmology cases Pub Date : 2022-05-20 eCollection Date: 2022-01-01 DOI:10.3205/oc000198
Bilge Batu Oto, Aslihan Yilmaz Çebi, Oguzhan Kiliçarslan, Ahmet Murat Sarici
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摘要

简介:报告一例新生儿偶发星形细胞错构瘤,模拟视网膜母细胞瘤。方法:回顾性分析临床资料。结果:一个3个月大的婴儿,有围产期窒息史,怀疑左眼视网膜母细胞瘤,被转介到我们的眼科肿瘤诊所。扩大眼底镜检查发现一个孤立的肿瘤覆盖视盘在左眼。黄白色病灶清晰、不透明、轻度钙化。b超表现为高内反射率,瘤内钙化后影,瘤内囊性间隙。光学相干断层扫描显示视网膜内肿瘤伴囊性间隙及后影。肿瘤被诊断为星形细胞错构瘤。系统性评价为阴性。病变已观察多模态成像六年,无明显变化。结论:视网膜星形细胞错构瘤是发生在视网膜神经纤维层内的良性肿瘤。鉴别诊断是非常重要的,因为它们可能被误诊为视网膜母细胞瘤,因此可能被过度治疗。视网膜母细胞瘤需要立即治疗,而视网膜星形细胞错构瘤通常需要随访。多模态成像与b超扫描和光学相干断层扫描是有用的,以区分这两个实体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Multimodal imaging of a sporadic retinal astrocytic hamartoma simulating retinoblastoma in a newborn.

Introduction: To report a sporadic astrocytic hamartoma simulating retinoblastoma in a newborn.

Methods: Clinical data was reviewed retrospectively.

Results: A 3-month-old baby with a history of perinatal asphyxia was referred to our ocular oncology clinic with suspected retinoblastoma in the left eye. Dilated fundoscopy revealed a solitary tumor covering the optic disc at the left eye. The whitish-yellow lesion was well-defined, opaque, and minimally calcified. High internal reflectivity and posterior shadowing due to the intralesional calcification, and intratumoral cystic spaces were observed in B-scan ultrasound imaging. Optical coherence tomography imaging showed an intraretinal tumor with cystic spaces and posterior shadowing. The tumor was diagnosed as an astrocytic hamartoma. The systemic evaluation was negative for phacomatoses. The lesion has been observed with multimodal imaging for six years without significant changes.

Conclusions: Retinal astrocytic hamartomas are benign tumors that arise within the retinal nerve fiber layer. Differential diagnosis constitutes high importance since they may be misdiagnosed as retinoblastoma, and therefore may be overtreated. Whereas retinoblastoma requires immediate treatment, retinal astrocytic hamartomas are commonly followed-up. Multimodal imaging with B-scan ultrasonography and optical coherence tomography are useful in distinguishing those two entities.

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