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首页> 外文期刊>Microvascular Research: An International Journal >Segmentation and quantification of blood vessels for OCT-based micro-angiograms using hybrid shape/intensity compounding
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Segmentation and quantification of blood vessels for OCT-based micro-angiograms using hybrid shape/intensity compounding

机译:使用形状/强度混合混合技术对基于OCT的微血管造影进行血管分割和量化

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Optical coherence tomography (OCT) based microangiography is capable of visualizing 3D functional blood vessel networks within microcirculatory tissue beds in vivo. To provide the quantitative information of vasculature from the microangiograms such as vessel diameter and morphology, it is necessary to develop efficient vessel segmentation algorithms. In this paper, we propose to develop a hybrid Hessian/intensity based method to segment and quantify shape and diameter of the blood vessels innervating capillary beds that are imaged by functional OCT in vivo. The proposed method utilizes multi-scale Hessian filters to segment tubular structures such as blood vessels, but compounded by the intensity-based segmentation method to mitigate the limitations of Hessian filters' sensitivity to the selection of scale parameters. Such compounding segmentation scheme takes advantage of the morphological nature of Hessian filters while correcting for the scale parameter selection by intensity-based segmentation. The proposed algorithm is tested on a wound healing model and its performance of segmentation vessels is quantified by a publicly available manual segmentation dataset We believe that this method will play an important role in the quantification of micro-angiograms for microcirculation research in ophthalmology and diagnosing retinal eye diseases involved with microcirculation. (C) 2014 Elsevier Inc. All rights reserved.
机译:基于光学相干断层扫描(OCT)的微血管造影术能够可视化体内微循环组织床内的3D功能血管网络。为了从微血管造影术中提供脉管系统的定量信息,例如血管直径和形态,有必要开发有效的血管分割算法。在本文中,我们提议开发一种基于Hessian /强度的混合方法,以分割和量化支配由功能性OCT在体内成像的毛细血管床的血管的形状和直径。所提出的方法利用多尺度Hessian滤波器对管状结构(例如血管)进行分割,但与基于强度的分割方法相结合,以减轻Hessian滤波器对尺度参数选择的敏感性的局限性。这种复合分割方案利用了Hessian滤波器的形态特性,同时通过基于强度的分割来校正比例参数选择。该算法在伤口愈合模型上进行了测试,并通过公开的手动分割数据集对分割血管的性能进行了量化。我们相信,该方法将在眼科和视网膜诊断中微循环研究的微血管造影定量中发挥重要作用。眼部疾病涉及微循环。 (C)2014 Elsevier Inc.保留所有权利。

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