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使用并行磁共振成像和实时图像重建的主动导管跟踪

Active catheter tracking using parallel MRI and real-time image reconstruction.

作者信息

Bock Michael, Müller Sven, Zuehlsdorff Sven, Speier Peter, Fink Christian, Hallscheidt Peter, Umathum Reiner, Semmler Wolfhard

机构信息

Deutsches Krebsforschungszentrum, Heidelberg, Germany.

出版信息

Magn Reson Med. 2006 Jun;55(6):1454-9. doi: 10.1002/mrm.20902.

Abstract

In this work active MR catheter tracking with automatic slice alignment was combined with an autocalibrated parallel imaging technique. Using an optimized generalized autocalibrating partially parallel acquisitions (GRAPPA) algorithm with an acceleration factor of 2, we were able to reduce the acquisition time per image by 34%. To accelerate real-time GRAPPA image reconstruction, the coil sensitivities were updated only after slice reorientation. For a 2D trueFISP acquisition (160 x 256 matrix, 80% phase matrix, half Fourier acquisition, TR = 3.7 ms, GRAPPA factor = 2) real-time image reconstruction was achieved with up to six imaging coils. In a single animal experiment the method was used to steer a catheter from the vena cava through the beating heart into the pulmonary vasculature at an image update rate of about five images per second. Under all slice orientations, parallel image reconstruction was accomplished with only minor image artifacts, and the increased temporal resolution provided a sharp delineation of intracardial structures, such as the papillary muscle.

摘要

在这项工作中,将具有自动切片对准功能的主动式磁共振导管跟踪技术与自动校准并行成像技术相结合。使用加速因子为2的优化广义自校准部分并行采集(GRAPPA)算法,我们能够将每张图像的采集时间减少34%。为了加速实时GRAPPA图像重建,仅在切片重新定位后更新线圈灵敏度。对于二维真实稳态进动快速成像(trueFISP)采集(160×256矩阵,80%相位矩阵,半傅里叶采集,TR = 3.7 ms,GRAPPA因子 = 2),使用多达六个成像线圈实现了实时图像重建。在一项单动物实验中,该方法用于以约每秒五幅图像的更新速率引导导管从腔静脉穿过跳动的心脏进入肺血管系统。在所有切片方向下,并行图像重建仅产生轻微的图像伪影,并且提高的时间分辨率清晰地描绘了心内结构,如乳头肌。

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