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使用新型全身磁共振成像系统获取的人体心脏即时图像。

Instant images of the human heart using a new, whole-body MR imaging system.

作者信息

Rzedzian R R, Pykett I L

出版信息

AJR Am J Roentgenol. 1987 Aug;149(2):245-50. doi: 10.2214/ajr.149.2.245.

Abstract

An extremely rapid MR imaging technique is described, and its use on a new 2.0-T high-speed MR system is demonstrated. This implementation permits complete filling of the two-dimensional spatial-frequency domain (k-space) within an acquisition window of 26 msec. With this acquisition window placed under the spin-echo signal envelope generated by a 90-180 degree pulse pair, the image contrast is the same as that of a conventional spin-echo pulse sequence. Resultant proton images have a motion-independent voxel resolution of 0.08 cm3 and a signal-to-noise ratio for cardiac muscle of approximately 30:1 (for TE = 30 msec) with no signal averaging. The pulse sequence yields images that are chemical shift-resolved. The total proton density distribution is optionally presented with lipid and water signals displayed in two different colors. Cardiac function is observed by displaying multiple images, acquired at different times in successive cardiac periods, in a cyclic movie format. Such motion pictures are obtained within a single period of suspended respiration, thereby assuring freedom from respiratory related motion artifacts. As preliminary examples, we present MR images of the normal adult human heart that have total acquisition times of only 40 msec/image and that show the major cardiac anatomy. Frames from movie loops show contraction of cardiac chambers and left ventricular wall thickening. The extremely rapid acquisition time of this technique suggests that it may hold promise for the routine and cost-effective evaluation of cardiac anatomy and function.

摘要

本文描述了一种极其快速的磁共振成像技术,并展示了其在新型2.0-T高速磁共振系统上的应用。这种实现方式允许在26毫秒的采集窗口内完全填充二维空间频率域(k空间)。将此采集窗口置于由90 - 180度脉冲对产生的自旋回波信号包络之下,图像对比度与传统自旋回波脉冲序列相同。所得质子图像具有与运动无关的体素分辨率,为0.08立方厘米,心肌的信噪比约为30:1(对于TE = 30毫秒),无需信号平均。该脉冲序列可产生化学位移分辨的图像。总质子密度分布可选择以两种不同颜色显示脂质和水信号。通过以循环电影格式显示在连续心动周期的不同时间采集的多个图像来观察心脏功能。这种动态图像在单次屏气期间获得,从而确保免受呼吸相关运动伪影的影响。作为初步示例,我们展示了正常成年人心脏的磁共振图像,其每幅图像的总采集时间仅为40毫秒,并显示了主要心脏解剖结构。电影循环中的帧显示了心腔的收缩和左心室壁增厚。该技术极快的采集时间表明,它可能在心脏解剖结构和功能的常规且经济有效的评估方面具有前景。

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