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血流和 B(1)-场不均匀性对轴位 3D 扰相梯度回波动态对比增强 MRI 中动脉输入函数测量的影响。

The effect of blood inflow and B(1)-field inhomogeneity on measurement of the arterial input function in axial 3D spoiled gradient echo dynamic contrast-enhanced MRI.

机构信息

Imaging Science and Biomedical Engineering, School of Cancer and Enabling Sciences, The University of Manchester, Manchester, United Kingdom.

出版信息

Magn Reson Med. 2011 Jan;65(1):108-19. doi: 10.1002/mrm.22593.

Abstract

A major potential confound in axial 3D dynamic contrast-enhanced magnetic resonance imaging studies is the blood inflow effect; therefore, the choice of slice location for arterial input function measurement within the imaging volume must be considered carefully. The objective of this study was to use computer simulations, flow phantom, and in vivo studies to describe and understand the effect of blood inflow on the measurement of the arterial input function. All experiments were done at 1.5 T using a typical 3D dynamic contrast-enhanced magnetic resonance imaging sequence, and arterial input functions were extracted for each slice in the imaging volume. We simulated a set of arterial input functions based on the same imaging parameters and accounted for blood inflow and radiofrequency field inhomogeneities. Measured arterial input functions along the vessel length from both in vivo and the flow phantom agreed with simulated arterial input functions and show large overestimations in the arterial input function in the first 30 mm of the vessel, whereas arterial input functions measured more centrally achieve accurate contrast agent concentrations. Use of inflow-affected arterial input functions in tracer kinetic modeling shows potential errors of up to 80% in tissue microvascular parameters. These errors emphasize the importance of careful placement of the arterial input function definition location to avoid the effects of blood inflow.

摘要

在轴面 3D 动态对比增强磁共振成像研究中,一个主要的潜在混杂因素是血流效应;因此,必须仔细考虑在成像体积内测量动脉输入函数的切片位置选择。本研究的目的是使用计算机模拟、血流体模和体内研究来描述和理解血流对动脉输入函数测量的影响。所有实验均在 1.5T 下使用典型的 3D 动态对比增强磁共振成像序列进行,并且为成像体积中的每个切片提取了动脉输入函数。我们基于相同的成像参数模拟了一组动脉输入函数,并考虑了血流和射频场不均匀性。从体内和血流体模获得的沿血管长度的测量动脉输入函数与模拟动脉输入函数一致,并显示在血管的前 30mm 处动脉输入函数存在较大的高估,而测量更中心位置的动脉输入函数则可获得准确的对比剂浓度。在示踪动力学建模中使用受血流影响的动脉输入函数会导致组织微血管参数出现高达 80%的潜在误差。这些误差强调了仔细放置动脉输入函数定义位置以避免血流影响的重要性。

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