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Accelerated 3D MRI of vocal tract shaping using compressed sensing and parallel imaging

机译:使用压缩感测和并行成像的声道成形加速3D MRI

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3D MRI of the upper airway has provided valuable insights into vocal tract shaping and data for the modeling of speech production. Small movements of articulators can lead to large changes in the produced sound, therefore improving the resolution of these datasets, within the constraints of a sustained sound (6-12 seconds), is an important area for investigation. This paper provides the first application of compressed sensing (CS) with parallel imaging to high-resolution 3D upper airway MRI. We use spatial finite difference as the sparsifying transform, and investigate the use of high-resolution phase information as a constraint during CS reconstruction. In a retrospective subsampling experiment with no sound production, 5x undersampling produced acceptable image quality when using phase-constrained CS reconstruction. The prospective use of this accelerated acquisition enabled 3D vocal-tract MRI during sustained production of English /s/,/int/,/i/,/r/ with 1.33times1.33times1.33-mm
机译:上呼吸道的3D MRI提供了对声道形成和数据进行语音建模的宝贵见解。咬合架的微小移动会导致产生的声音发生较大变化,因此,在持续声音(6-12秒)的约束下,提高这些数据集的分辨率是一个重要的研究领域。本文提供了具有并行成像功能的压缩传感(CS)在高分辨率3D上呼吸道MRI上的首次应用。我们使用空间有限差分作为稀疏变换,并研究在CS重建过程中使用高分辨率相位信息作为约束。在没有声音产生的回顾性二次采样实验中,当使用相位受限的CS重建时,5倍欠采样可产生可接受的图像质量。在持续产生英语/ s /,/ int /,/ i /,/ r /的过程中,这种加速采集的预期用途使3D声带MRI能够达到1.33×1.33×1.33-mm

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