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A Temporal and Spatial Analysis Approach to Automated Segmentation of Microbubble Signals in Contrast-Enhanced Ultrasound Images: Application to Quantification of Active Vascular Density in Human Lower Limbs

机译:对比增强超声图像微泡信号自动分割的时间和空间分析方法:应用于定量人类下肢中有源血管密度的应用

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摘要

Contrast-enhanced ultrasound (CEUS) using microbubble contrast agents has shown great promise in visualising and quantifying active vascular density. Most existing approaches for vascular density quantification using CEUS are calculated based on image intensity and are susceptible to confounding factors and imaging artefact. Poor reproducibility is a key challenge to clinical translation. In this study, a new automated temporal and spatial signal analysis approach is developed for reproducible microbubble segmentation and quantification of contrast enhancement in human lower limbs. The approach is evaluated in vitro on phantoms and in vivo in lower limbs of healthy volunteers before and after physical exercise. In this approach, vascular density is quantified based on the relative areas microbubbles occupy instead of their image intensity. Temporal features of the CEUS image sequences are used to identify pixels that contain microbubble signals. A microbubble track density (MTD) measure, the ratio of the segmented microbubble area to the whole tissue area, is calculated as a surrogate for active capillary density. In vitro results reveal a good correlation (r(2) = 0.89) between the calculated MTD measure and the known bubble concentration. For in vivo results, a significant increase (129% in average) in the MTD measure is found in lower limbs of healthy volunteers after exercise, with excellent repeatability over a series of days (intra-class correlation coefficient = 0.96). This compares to the existing state-of-the-art approach of destruction and replenishment analysis on the same patients (intra-class correlation coefficient ≤0.78). The proposed new approach shows great potential as an accurate and highly reproducible clinical tool for quantification of active vascular density.
机译:使用微泡造影剂的对比度增强超声(CEUS)在可视化和量化有源血管密度方面表现出很大的希望。基于图像强度计算使用CEU的血管密度量化的大多数现有方法,并且易于混淆因素和成像人工。不良的再现性是对临床翻译的关键挑战。在该研究中,开发了一种新的自动时间和空间信号分析方法,用于人低肢体中的可再现微泡分段和对比度增强的定量。该方法是在体外评估体外和体内在体育锻炼之前和后的健康志愿者的下肢中的体内。在这种方法中,基于微泡的相对区域占据而不是它们的图像强度来量化血管密度。 CEUS图像序列的时间特征用于识别包含微泡信号的像素。微泡轨道密度(MTD)测量,将分段微泡面积与整个组织区域的比率为替代因子活性毛细血管密度。体外结果揭示了计算的MTD测量和已知的气泡浓度之间的良好相关性(R(2)= 0.89)。对于体内结果,在运动后的健康志愿者的下肢中发现了MTD测量中的显着增加(平均平均129%),具有优异的重复性,在一系列天(类内相关系数= 0.96)。这与同一患者的现有最先进的破坏和补充分析方法(阶级相关系数≤0.78)。所提出的新方法表现出巨大的潜力作为准确且高度可重复的临床工具,用于定量活性血管密度。

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