{"title":"Research on registration method for enface image using multi-feature fusion.","authors":"Lingjiao Pan, Zhongwang Cai, Derong Hu, Weifang Zhu, Fei Shi, Weige Tao, Quanyu Wu, Shuyan Xiao, Xinjian Chen","doi":"10.1088/1361-6560/ad87a5","DOIUrl":null,"url":null,"abstract":"<p><p><i>Objective.</i>The purpose of this work is to accurately and quickly register the Optical coherence tomography (OCT) projection (enface) images at adjacent time points, and to solve the problem of interference caused by CNV lesions on the registration features.<i>Approach.</i>In this work, a multi-feature registration strategy was proposed, in which a combined feature (com-feature) containing 3D information, intersection information and SURF feature was designed. Firstly, the coordinates of all feature points were extracted as combined features, and then these feature coordinates were added to the initial vascular coordinate set simplified by the Douglas-Peucker algorithm as the point set for registration. Finally, the coherent point drift registration algorithm was used to register the enface coordinate point sets of adjacent time series.<i>Main results.</i>The newly designed features significantly improve the success rate of global registration of vascular networks in enface images, while the simplification step greatly improves the registration speed on the basis of preserving vascular features. The MSE, DSC and time complexity of the proposed method are 0.07993, 0.9693 and 42.7016 s, respectively.<i>Significance.</i>CNV is a serious retinal disease in ophthalmology. The registration of OCT enface images at adjacent time points can timely monitor the progress of the disease and assist doctors in making diagnoses. The proposed method not only improves the accuracy of OCT enface image registration, but also significantly reduces the time complexity. It has good registration results in clinical routine and provides a more efficient method for clinical diagnosis and treatment.</p>","PeriodicalId":20185,"journal":{"name":"Physics in medicine and biology","volume":" ","pages":""},"PeriodicalIF":3.3000,"publicationDate":"2024-10-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Physics in medicine and biology","FirstCategoryId":"5","ListUrlMain":"https://doi.org/10.1088/1361-6560/ad87a5","RegionNum":3,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"ENGINEERING, BIOMEDICAL","Score":null,"Total":0}
引用次数: 0
Abstract
Objective.The purpose of this work is to accurately and quickly register the Optical coherence tomography (OCT) projection (enface) images at adjacent time points, and to solve the problem of interference caused by CNV lesions on the registration features.Approach.In this work, a multi-feature registration strategy was proposed, in which a combined feature (com-feature) containing 3D information, intersection information and SURF feature was designed. Firstly, the coordinates of all feature points were extracted as combined features, and then these feature coordinates were added to the initial vascular coordinate set simplified by the Douglas-Peucker algorithm as the point set for registration. Finally, the coherent point drift registration algorithm was used to register the enface coordinate point sets of adjacent time series.Main results.The newly designed features significantly improve the success rate of global registration of vascular networks in enface images, while the simplification step greatly improves the registration speed on the basis of preserving vascular features. The MSE, DSC and time complexity of the proposed method are 0.07993, 0.9693 and 42.7016 s, respectively.Significance.CNV is a serious retinal disease in ophthalmology. The registration of OCT enface images at adjacent time points can timely monitor the progress of the disease and assist doctors in making diagnoses. The proposed method not only improves the accuracy of OCT enface image registration, but also significantly reduces the time complexity. It has good registration results in clinical routine and provides a more efficient method for clinical diagnosis and treatment.
目的:这项工作的目的是准确、快速地配准相邻时间点的 OCT 投影(enface)图像,并解决 CNV 病变对配准特征的干扰问题:方法:本文提出了一种多特征配准策略,即设计一种包含三维信息、交点信息和 SURF 特征的组合特征(com-feature)。首先,提取所有特征点的坐标作为组合特征,然后将这些特征坐标添加到通过 Douglas-Peucker 算法简化的初始血管坐标集,作为配准的点集。最后,使用相干点漂移(CPD)配准算法配准相邻时间序列的面坐标点集:主要结果:新设计的特征大大提高了内表面图像中血管网络的全局配准成功率,而简化步骤在保留血管特征的基础上大大提高了配准速度。所提方法的MSE、DSC和时间复杂度分别为0.07993、0.9693和42.7016s:CNV 是眼科中一种严重的视网膜疾病。相邻时间点的 OCT 界面图像配准可以及时监测疾病的进展,帮助医生做出诊断。所提出的方法不仅提高了 OCT 表面图像配准的准确性,而且大大降低了时间复杂性。该方法在临床常规应用中取得了良好的配准效果,为临床诊断和治疗提供了更有效的方法。
期刊介绍:
The development and application of theoretical, computational and experimental physics to medicine, physiology and biology. Topics covered are: therapy physics (including ionizing and non-ionizing radiation); biomedical imaging (e.g. x-ray, magnetic resonance, ultrasound, optical and nuclear imaging); image-guided interventions; image reconstruction and analysis (including kinetic modelling); artificial intelligence in biomedical physics and analysis; nanoparticles in imaging and therapy; radiobiology; radiation protection and patient dose monitoring; radiation dosimetry