Suppr超能文献

并行成像中的可控混叠实现更高加速(CAIPIRINHA)用于多切片成像。

Controlled aliasing in parallel imaging results in higher acceleration (CAIPIRINHA) for multi-slice imaging.

作者信息

Breuer Felix A, Blaimer Martin, Heidemann Robin M, Mueller Matthias F, Griswold Mark A, Jakob Peter M

机构信息

Department of Physics, University of Würzburg, EP 5, Am Hubland, 97074 Würzburg, Germany.

出版信息

Magn Reson Med. 2005 Mar;53(3):684-91. doi: 10.1002/mrm.20401.

Abstract

In all current parallel imaging techniques, aliasing artifacts resulting from an undersampled acquisition are removed by means of a specialized image reconstruction algorithm. In this study a new approach termed "controlled aliasing in parallel imaging results in higher acceleration" (CAIPIRINHA) is presented. This technique modifies the appearance of aliasing artifacts during the acquisition to improve the subsequent parallel image reconstruction procedure. This new parallel multi-slice technique is more efficient compared to other multi-slice parallel imaging concepts that use only a pure postprocessing approach. In this new approach, multiple slices of arbitrary thickness and distance are excited simultaneously with the use of multi-band radiofrequency (RF) pulses similar to Hadamard pulses. These data are then undersampled, yielding superimposed slices that appear shifted with respect to each other. The shift of the aliased slices is controlled by modulating the phase of the individual slices in the multi-band excitation pulse from echo to echo. We show that the reconstruction quality of the aliased slices is better using this shift. This may potentially allow one to use higher acceleration factors than are used in techniques without this excitation scheme. Additionally, slices that have essentially the same coil sensitivity profiles can be separated with this technique.

摘要

在所有当前的并行成像技术中,欠采样采集产生的混叠伪影通过专门的图像重建算法来去除。在本研究中,提出了一种新的方法,称为“并行成像中的可控混叠导致更高加速”(CAIPIRINHA)。该技术在采集过程中改变混叠伪影的表现形式,以改进后续的并行图像重建过程。与仅使用纯后处理方法的其他多切片并行成像概念相比,这种新的并行多切片技术效率更高。在这种新方法中,使用类似于哈达玛脉冲的多频段射频(RF)脉冲同时激发任意厚度和间距的多个切片。然后对这些数据进行欠采样,产生相互之间看起来有位移的叠加切片。通过在多频段激发脉冲中逐回波调制各个切片的相位来控制混叠切片的位移。我们表明,利用这种位移,混叠切片的重建质量更好。这可能潜在地允许使用比没有这种激发方案的技术更高的加速因子。此外,利用该技术可以分离具有基本相同线圈灵敏度分布的切片。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验