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传输敏感成像技术

Transmit SENSE.

作者信息

Katscher Ulrich, Börnert Peter, Leussler Christoph, van den Brink Johan S

机构信息

Philips Research Laboratories, Hamburg, Germany.

出版信息

Magn Reson Med. 2003 Jan;49(1):144-50. doi: 10.1002/mrm.10353.

Abstract

The idea of using parallel imaging to shorten the acquisition time by the simultaneous use of multiple receive coils can be adapted for the parallel transmission of a spatially-selective multidimensional RF pulse. As in data acquisition, a multidimensional RF pulse follows a certain k-space trajectory. Shortening this trajectory shortens the pulse duration. The use of multiple transmit coils, each with its own time-dependent waveform and spatial sensitivity, can compensate for the missing parts of the excitation k-space. This results in a maintained spatial definition of the pulse profile, while its duration is reduced. This work introduces the concept of parallel transmission with arbitrarily shaped transmit coils (termed "Transmit SENSE"). Results of numerical studies demonstrate the theoretical feasibility of the approach. The experimental proof of principle is provided on a commercial MR scanner. The lack of multiple independent transmit channels was addressed by combining the excitation patterns from two separate subexperiments with different transmit setups. Shortening multidimensional RF pulses could be an interesting means of making 3D RF pulses feasible even for fast T(2)(*) relaxing species or strong main field inhomogeneities. Other applications might benefit from the ability of Transmit SENSE to improve the spatial resolution of the pulse profile while maintaining the transmit duration.

摘要

通过同时使用多个接收线圈利用并行成像来缩短采集时间的想法,可适用于空间选择性多维射频脉冲的并行传输。与数据采集中一样,多维射频脉冲遵循特定的k空间轨迹。缩短此轨迹可缩短脉冲持续时间。使用多个发射线圈,每个发射线圈具有其自身随时间变化的波形和空间灵敏度,可补偿激发k空间中缺失的部分。这导致在保持脉冲轮廓空间定义的同时,其持续时间得以缩短。本文介绍了使用任意形状发射线圈的并行传输概念(称为“发射敏感编码”)。数值研究结果证明了该方法的理论可行性。在商用磁共振扫描仪上提供了原理性实验证明。通过将来自两个具有不同发射设置的单独子实验的激发模式相结合,解决了缺乏多个独立发射通道的问题。缩短多维射频脉冲可能是使三维射频脉冲即使对于快速T(2)(*)弛豫物质或强主磁场不均匀性也可行的一种有趣方法。其他应用可能会受益于发射敏感编码在保持发射持续时间的同时提高脉冲轮廓空间分辨率的能力。

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