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关节的磁共振成像:1.5T场强下梯度回波(GRE)技术的分析优化

MR imaging of joints: analytic optimization of GRE techniques at 1.5 T.

作者信息

Yao L, Sinha S, Seeger L L

机构信息

Department of Radiological Sciences, University of California, Los Angeles 90024.

出版信息

AJR Am J Roentgenol. 1992 Feb;158(2):339-45. doi: 10.2214/ajr.158.2.1370362.

Abstract

To clarify the choice of imaging parameters for optimal gradient-recalled echo MR scanning of joints, we analyzed the behavior of contrast-to-noise and signal-to-noise ratios for spoiled (i.e., fast low-angle shot [FLASH] or spoiled GRASS) and steady-state (i.e., gradient-recalled acquisition in the steady state [GRASS] or fast imaging with steady precession) techniques at 1.5 T. The analysis is based on tissue characteristics derived from spin-echo measurements of hyaline cartilage and synovial fluid signal in the patellofemoral joints of 11 volunteers. Separate analysis of contrast-to-noise and signal-to-noise ratios for multiplanar (long TR) acquisitions shows that these parameters are each improved compared with single-slice methods. At TRs greater than 250 msec, there is no significant difference in the contrast behavior of FLASH and GRASS. For optimal contrast-to-noise ratio (synovial fluid-cartilage), the best multiplanar sequence (for TE less than 23 msec) is with a short TE and a large flip angle (e.g., 400/9/73 degrees [TR/TE/flip angle]). If a single-scan or three-dimensional technique is desired, than a GRASS sequence at minimal TR and TE and intermediate flip angle (18/9/32 degrees) is best. For optimal signal-to-noise ratio (for both synovial fluid and hyaline cartilage), the best multiplanar sequence uses a short TE and an intermediate flip angle (e.g., 400/9/30 degrees). If a short TR, high signal-to-noise technique is desired, then GRASS (18/9/13 degrees) is superior to FLASH.

摘要

为明确关节最佳梯度回波磁共振扫描成像参数的选择,我们分析了1.5T场强下扰相(即快速小角度激发[FLASH]或扰相梯度回波序列[GRASS])及稳态(即稳态梯度回波序列[GRASS]或稳态进动快速成像)技术的对比噪声比和信噪比表现。该分析基于11名志愿者髌股关节透明软骨和滑液信号的自旋回波测量所得的组织特征。多平面(长TR)采集的对比噪声比和信噪比的单独分析表明,与单层面方法相比,这些参数均有所改善。在TR大于250毫秒时,FLASH和GRASS的对比表现无显著差异。为获得最佳对比噪声比(滑液-软骨),最佳的多平面序列(TE小于23毫秒)是采用短TE和大翻转角(如400/9/73度[TR/TE/翻转角])。如果需要单次扫描或三维技术,那么最小TR和TE以及中等翻转角(18/9/32度)的GRASS序列最佳。为获得最佳信噪比(滑液和透明软骨两者),最佳的多平面序列采用短TE和中等翻转角(如400/9/30度)。如果需要短TR、高信噪比技术,那么GRASS(18/9/13度)优于FLASH。

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