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描述在视图共享时间分辨三维磁共振血管造影中运动物体的对照实验研究。

Controlled experimental study depicting moving objects in view-shared time-resolved 3D MRA.

作者信息

Mostardi Petrice M, Haider Clifton R, Rossman Phillip J, Borisch Eric A, Riederer Stephen J

机构信息

MR Research Laboratory, Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

Magn Reson Med. 2009 Jul;62(1):85-95. doi: 10.1002/mrm.21993.

Abstract

Various methods have been used for time-resolved contrast-enhanced magnetic resonance angiography (CE-MRA), many involving view sharing. However, the extent to which the resultant image time series represents the actual dynamic behavior of the contrast bolus is not always clear. Although numerical simulations can be used to estimate performance, an experimental study can allow more realistic characterization. The purpose of this work was to use a computer-controlled motion phantom for study of the temporal fidelity of three-dimensional (3D) time-resolved sequences in depicting a contrast bolus. It is hypothesized that the view order of the acquisition and the selection of views in the reconstruction can affect the positional accuracy and sharpness of the leading edge of the bolus and artifactual signal preceding the edge. Phantom studies were performed using dilute gadolinium-filled vials that were moved along tabletop tracks by a computer-controlled motor. Several view orders were tested using view-sharing and Cartesian sampling. Compactness of measuring the k-space center, consistency of view ordering within each reconstruction frame, and sampling the k-space center near the end of the temporal footprint were shown to be important in accurate portrayal of the leading edge of the bolus. A number of findings were confirmed in an in vivo CE-MRA study.

摘要

时间分辨对比增强磁共振血管造影(CE-MRA)已采用了多种方法,其中许多涉及视图共享。然而,所得图像时间序列在多大程度上代表了对比剂团注的实际动态行为并不总是明确的。虽然数值模拟可用于估计性能,但实验研究能实现更真实的特性描述。这项工作的目的是使用计算机控制的运动模型来研究三维(3D)时间分辨序列在描绘对比剂团注时的时间保真度。据推测,采集的视图顺序和重建中视图的选择会影响团注前缘的位置准确性和清晰度以及前缘之前的伪影信号。使用装有稀释钆的小瓶进行模型研究,这些小瓶由计算机控制的电机沿桌面轨道移动。使用视图共享和笛卡尔采样测试了几种视图顺序。结果表明,测量k空间中心的紧凑性、每个重建帧内视图排序的一致性以及在时间足迹末尾附近对k空间中心进行采样对于准确描绘团注前缘很重要。在一项体内CE-MRA研究中证实了许多发现。

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