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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Quantitative analysis of vascular parameters for micro-CT imaging of vascular networks with multi-resolution
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Quantitative analysis of vascular parameters for micro-CT imaging of vascular networks with multi-resolution

机译:多分辨率血管网络微型CT成像的血管参数的定量分析

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摘要

Previous studies showed that all the vascular parameters from both the morphological and topological parameters were affected with the altering of imaging resolutions. However, neither the sensitivity analysis of the vascular parameters at multiple resolutions nor the distinguishability estimation of vascular parameters from different data groups has been discussed. In this paper, we proposed a quantitative analysis method of vascular parameters for vascular networks of multi-resolution, by analyzing the sensitivity of vascular parameters at multiple resolutions and estimating the distinguishability of vascular parameters from different data groups. Combining the sensitivity and distinguishability, we designed a hybrid formulation to estimate the integrated performance of vascular parameters in a multi-resolution framework. Among the vascular parameters, degree of anisotropy and junction degree were two insensitive parameters that were nearly irrelevant with resolution degradation; vascular area, connectivity density, vascular length, vascular junction and segment number were five parameters that could better distinguish the vascular networks from different groups and abide by the ground truth. Vascular area, connectivity density, vascular length and segment number not only were insensitive to multi-resolution but could also better distinguish vascular networks from different groups, which provided guidance for the quantification of the vascular networks in multi-resolution frameworks.
机译:以前的研究表明,从成像分辨率的改变,所有来自形态学和拓扑参数的血管参数都会受到影响。然而,已经讨论了多分辨率的血管参数的敏感性分析,也没有讨论来自不同数据组的血管参数的可区分性估计。在本文中,我们提出了多分辨率血管网络的定量分析方法,通过分析多分辨率的血管参数灵敏度并估算来自不同数据组的血管参数的区分性。结合灵敏度和可分辨性,我们设计了一种混合配方,以估计多分辨率框架中的血管参数的综合性能。在血管参数中,各向异性和结程度是两个不敏感的参数,几乎与分辨率降解无关;血管面积,连接密度,血管长度,血管结和段数为五个参数,可以更好地将血管网络与不同群体的血管网络区分开来遵守地面真理。血管区域,连接密度,血管长度和段数不仅对多分辨率不敏感,而且还可以更好地区分来自不同组的血管网络,这为多分辨率框架中的血管网络量化提供了指导。

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