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通过光学相干断层扫描(OCT)成像和人工智能识别的变应性眼病的独特角膜断层扫描特征。

Unique corneal tomography features of allergic eye disease identified by OCT imaging and artificial intelligence.

作者信息

Matalia Himanshu, Matalia Jyoti, Pisharody Anchana, Patel Yash, Chinnappaiah Nandini, Salomao Marcella, Ambrosio Renato, Sinha Roy Abhijit

机构信息

Department of corneal and refractive surgery, Narayana Nethralaya, Bangalore, India.

Department of Pediatric services, Narayana Nethralaya, Bangalore, India.

出版信息

J Biophotonics. 2020 Oct;13(10):e202000156. doi: 10.1002/jbio.202000156. Epub 2020 Aug 12.

Abstract

The purpose of this study was to assess unique corneal tomographic parameters of allergic eye disease (AED) using optical coherence tomography (OCT) and artificial intelligence (AI). A total of 57 eyes diagnosed with AED were included. The curvature and aberrations of the air-epithelium (A-E) and epithelium-Bowman's layer (E-B) interfaces were calculated. Random forest AI models were built combing this data with the parameters of healthy, forme fruste keratoconus (FFKC) and KC eyes. The AI models were cross-validated with 3-fold random sampling. Each model was limited to 10 trees. The AI model incorporating both A-E and E-B parameters provided the best classification of AED eyes (area under the curve = 0.958, sensitivity = 80.7%, specificity = 98.5%, precision = 88.2%). Further, the E-B interface parameters provided the highest information gain in the AI model. A few AED eyes (n = 9) had tomography parameters similar to FFKC and KC eyes and may be at risk of progression to KC.

摘要

本研究的目的是利用光学相干断层扫描(OCT)和人工智能(AI)评估变应性眼病(AED)独特的角膜断层扫描参数。共纳入57只诊断为AED的眼睛。计算了空气-上皮(A-E)和上皮-鲍曼层(E-B)界面的曲率和像差。将这些数据与健康、顿挫型圆锥角膜(FFKC)和圆锥角膜(KC)眼睛的参数相结合,建立随机森林AI模型。AI模型采用3折随机抽样进行交叉验证。每个模型限制为10棵树。结合A-E和E-B参数的AI模型对AED眼睛的分类效果最佳(曲线下面积=0.958,灵敏度=80.7%,特异性=98.5%,精确度=88.2%)。此外,E-B界面参数在AI模型中提供了最高的信息增益。少数AED眼睛(n = 9)的断层扫描参数与FFKC和KC眼睛相似,可能有进展为KC的风险。

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