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Estimation of regional pulmonary perfusion parameters from microfocal angiograms

机译:从微焦血管造影估计局部肺灌注参数

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Abstract: An important application of functional imaging is the estimation of regional blood flow and volume using residue detection of vascular indicators. An indicator-dilution model applicable to tissue regions distal from the inlet site was developed. Theoretical methods for determining regional blood flow, volume, and mean transit time parameters from time-absorbance curves arise from this model. The robustness of the parameter estimation methods was evaluated using a computer-simulated vessel network model. Flow through arterioles, networks of capillaries, and venules was simulated. Parameter identification and practical implementation issues were addressed. The shape of the inlet concentration curve and moderate amounts of random noise did not effect the ability of the method to recover accurate parameter estimates. The parameter estimates degraded in the presence of significant dispersion of the measured inlet concentration curve as it traveled through arteries upstream from the microvascular region. The methods were applied to image data obtained using microfocal x-ray angiography to study the pulmonary microcirculation. Time- absorbance curves were acquired from a small feeding artery, the surrounding microvasculature and a draining vein of an isolated dog lung as contrast material passed through the field-of-view. Changes in regional microvascular volume were determined from these curves. !17
机译:摘要:功能成像的重要应用是利用血管指示剂的残留检测来估计局部血流和血容量。建立了适用于远离入口部位的组织区域的指示剂稀释模型。从时间吸收曲线确定区域血流量,体积和平均通过时间参数的理论方法来自该模型。参数估计方法的鲁棒性是使用计算机模拟的容器网络模型进行评估的。模拟通过小动脉,毛细血管网络和小静脉的流量。解决了参数识别和实际实施问题。入口浓度曲线的形状和适度的随机噪声不会影响该方法恢复准确参数估计值的能力。当所测量的入口浓度曲线通过微血管区域上游的动脉时,在存在明显的分散的进口浓度曲线的情况下,该参数估计值会降低。将该方法应用于使用微焦点X射线血管造影术获得的图像数据,以研究肺微循环。时间吸收曲线是从一条小的喂食动脉,周围的微脉管系统和一条孤立的狗肺的引流静脉获得的,作为对比材料通过了视野。由这些曲线确定区域微血管体积的变化。 !17

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