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用于放射治疗准备的3D磁共振成像中压缩感知与并行成像加速中的可控混叠比较

Comparison of compressed sensing and controlled aliasing in parallel imaging acceleration for 3D magnetic resonance imaging for radiotherapy preparation.

作者信息

Crop Frederik, Guillaud Ophélie, Ben Haj Amor Mariem, Gaignierre Alexandre, Barre Carole, Fayard Cindy, Vandendorpe Benjamin, Lodyga Kaoutar, Mouttet-Audouard Raphaëlle, Mirabel Xavier

机构信息

Medical Physics, Centre Oscar Lambret, Lille, 3 Rue Frédéric Combemale, 59000 Lille, France.

Radiology, Centre Oscar Lambret, Lille, 3 Rue Frédéric Combemale, 59000 Lille, France.

出版信息

Phys Imaging Radiat Oncol. 2022 Jun 23;23:44-47. doi: 10.1016/j.phro.2022.06.008. eCollection 2022 Jul.

Abstract

Magnetic resonance imaging (MRI) for radiotherapy is often based on 3D acquisitions, but suffers from low signal-to-noise ratio due to immobilization device and flexible coil use. The aim of this study was to investigate if Compressed Sensing (CS) improves image quality for 3D Turbo Spin Echo acquisitions compared with Controlled Aliasing k-space-based parallel imaging in equivalent acquisition time for intracranial T1, T2-Fluid-Attenuated Inversion Recovery (FLAIR) and pelvic T2 imaging. Qualitative ratings suffered from large inter-rater variability. CS-T1 brain MRI was superior numerically and qualitatively. CS-T2-FLAIR brain MRI was numerically superior, but rater equivalent. CS-T2 pelvic MRI was equivalent without gain.

摘要

用于放射治疗的磁共振成像(MRI)通常基于三维采集,但由于使用了固定装置和柔性线圈,其信噪比很低。本研究的目的是探讨在颅内T1、T2液体衰减反转恢复序列(FLAIR)和盆腔T2成像的等效采集时间内,与基于可控混叠的k空间并行成像相比,压缩感知(CS)是否能提高三维快速自旋回波采集的图像质量。定性评分存在较大的评分者间差异。CS-T1脑MRI在数值和定性方面均更优。CS-T2-FLAIR脑MRI在数值上更优,但评分者评价相当。CS-T2盆腔MRI在无增益的情况下相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9a9/9249804/6c5930043195/gr1.jpg

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