Pellegrini Marco, Staurenghi Giovanni, Preziosa Chiara
Department of Biomedical and Clinical Science "Luigi Sacco," Eye Clinic, Luigi Sacco Hospital, University of Milan, Milan, Italy.
Ocul Oncol Pathol. 2022 Jun;8(2):79-87. doi: 10.1159/000520951. Epub 2021 Nov 17.
Optical coherence tomography angiography (OCTA) is a valuable imaging tool for the diagnosis of several retinal and choroidal diseases. Its role in ocular oncology is clinically promising but still controversial. In this review, we report the main applications and limits of the use of OCTA for the study of intraocular tumors.
OCTA allows a rapid, safe, low-cost, and high-resolution visualization of the retinal and choroidal vasculature. Attempts have been made to use this technology in ocular oncology to differentiate benign and malignant lesions and to assist physicians in the evaluation and monitoring of post-treatment complications. Main limitations include failure in correct segmentation due to the tumor inner profile or thickness, poor penetration of the laser into the lesion, masking effect from overlying fluid, media opacities and poor fixation.
The main applications of OCTA in ocular oncology consist of the documentation of tumor-associated choroidal neovascularizations and the study of vascular changes following tumor treatments. In particular, the diffusion of wide-field protocols makes OCTA suitable for the diagnosis and follow-up of radiation chorio-retinopathy, allowing a detailed visualization of both macular and peripheral ischemic changes. Optimistically, future innovations in OCTA technology may offer new perspectives in the diagnosis and follow-up of intraocular tumors.
光学相干断层扫描血管造影(OCTA)是诊断多种视网膜和脉络膜疾病的重要成像工具。其在眼部肿瘤学中的作用在临床上前景广阔,但仍存在争议。在本综述中,我们报告了OCTA在眼内肿瘤研究中的主要应用和局限性。
OCTA能够快速、安全、低成本且高分辨率地显示视网膜和脉络膜血管系统。人们已尝试将该技术用于眼部肿瘤学,以鉴别良性和恶性病变,并协助医生评估和监测治疗后并发症。主要局限性包括因肿瘤内部轮廓或厚度导致的分割错误、激光对病变的穿透性差、上方液体的掩盖效应、介质混浊以及固定不佳。
OCTA在眼部肿瘤学中的主要应用包括记录肿瘤相关的脉络膜新生血管以及研究肿瘤治疗后的血管变化。特别是,广域方案的普及使OCTA适用于放射性脉络膜视网膜病变的诊断和随访,能够详细显示黄斑和周边缺血性改变。乐观地讲,OCTA技术未来的创新可能为眼内肿瘤的诊断和随访提供新的视角。