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首页> 外文期刊>IEEE Transactions on Medical Imaging >Regional Lung Perfusion Analysis in Experimental ARDS by Electrical Impedance and Computed Tomography
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Regional Lung Perfusion Analysis in Experimental ARDS by Electrical Impedance and Computed Tomography

机译:电阻抗和计算机断层扫描实验ARDS的区域肺灌注分析

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摘要

Electrical impedance tomography is clinically used to trace ventilation related changes in electrical conductivity of lung tissue. Estimating regional pulmonary perfusion using electrical impedance tomography is still a matter of research. To support clinical decision making, reliable bedside information of pulmonary perfusion is needed. We introduce a method to robustly detect pulmonary perfusion based on indicator-enhanced electrical impedance tomography and validate it by dynamic multidetector computed tomography in two experimental models of acute respiratory distress syndrome. The acute injury was induced in a sublobar segment of the right lung by saline lavage or endotoxin instillation in eight anesthetized mechanically ventilated pigs. For electrical impedance tomography measurements, a conductive bolus (10% saline solution) was injected into the right ventricle during breath hold. Electrical impedance tomography perfusion images were reconstructed by linear and normalized Gauss-Newton reconstruction on a finite element mesh with subsequent element-wise signal and feature analysis. An iodinated contrast agent was used to compute pulmonary blood flow via dynamic multidetector computed tomography. Spatial perfusion was estimated based on first-pass indicator dilution for both electrical impedance and multidetector computed tomography and compared by Pearson correlation and Bland-Altman analysis. Strong correlation was found in dorsoventral (r = 0.92) and in right-to-left directions (r = 0.85) with good limits of agreement of 8.74% in eight lung segments. With a robust electrical impedance tomography perfusion estimation method, we found strong agreement between multidetector computed and electrical impedance tomography perfusion in healthy and regionally injured lungs and demonstrated feasibility of electrical impedance tomography perfusion imaging.
机译:电阻抗断层扫描在临床上用于跟踪肺组织电导率的通风相关变化。使用电阻断层扫描估算区域肺灌注仍然是一个研究问题。为了支持临床决策,需要可靠的床边信息的肺灌注。我们介绍一种基于指示器增强的电阻抗断层扫描的肺灌注来促进一种方法,并通过动态多选传感器计算机断层扫描在急性呼吸窘迫综合征的两种实验模型中验证。在8个麻醉机械通风猪的盐水灌洗或内毒素滴注中,急性损伤在右肺的副肺部诱导中诱导。对于电阻抗断层扫描测量,在呼吸保持过程中将导电推注(10%盐溶液)注入右心室。通过线性和标准化的高斯 - 牛顿重建在有限元网上重建电阻抗断层扫描灌注图像,其随后的元素 - 方向信号和特征分析。使用碘化造影剂通过动态多校票计算断层扫描来计算肺血流。基于用于电阻抗和多传输器计算机断层扫描的第一遍指示因子稀释,并通过Pearson相关和Bland-Altman分析进行了空间灌注。在Dorsoventral(R = 0.92)和左右方向(R = 0.85)中发现了强烈的相关性,八个肺部段的良好恰当的8.74%。具有强大的电阻抗断层扫描灌注方法,我们在健康和区域受损肺部的多校架计算和电气阻抗断层扫描灌注之间发现了强有力的一致性,并证明了电阻抗断层扫描灌注成像的可行性。

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