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Parallel multi-slice MR imaging to suppress sideband artifacts

机译:并行多层MR成像可抑制边带伪像

摘要

An object (10) placed in an examination volume of a MR device (1) is subject to an imaging sequence including multi-slice RF pulses for simultaneously exciting two or more spatially separate image slices. MR signals are received in parallel via a set of RF coils (11, 12, 13) having different spatial sensitivity profiles within the examination volume. An MR image is reconstructed for each image slice from the acquired MR signals. MR signal contributions from the different image slices are separated on the basis of the spatial sensitivity profiles of the RF coils (11, 12, 13). Side-band artifacts, namely MR signal contributions from regions excited by one or more side-bands of the multi-slice RF pulses, are suppressed in the reconstructed MR images on the basis of the spatial sensitivity profiles of the RF coils (11, 12, 13).
机译:放置在MR设备(1)的检查空间中的对象(10)经受成像序列,该成像序列包括用于同时激发两个或更多个空间上分离的图像切片的多层RF脉冲。 MR信号通过一组在检查区内具有不同空间灵敏度分布的RF线圈(11、12、13)并行接收。从所获取的MR信号中为每个图像切片重建MR图像。来自不同图像切片的MR信号贡献是根据RF线圈(11、12、13)的空间灵敏度分布进行分离的。在重构的MR图像中,基于RF线圈的空间敏感度分布(11、12),抑制了边带伪像,即来自多层RF脉冲一个或多个边带激发的区域的MR信号贡献,13)。

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