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首页> 外文期刊>Medical Physics >Effect of echo spacing and readout bandwidth on basic performances of EPI-fMRI acquisition sequences implemented on two 1.5 T MR scanner systems.
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Effect of echo spacing and readout bandwidth on basic performances of EPI-fMRI acquisition sequences implemented on two 1.5 T MR scanner systems.

机译:回波间距和读出带宽对在两个1.5 T MR扫描仪系统上实现的EPI-fMRI采集序列的基本性能的影响。

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摘要

PURPOSE: Although in EPI-fMRI analyses typical acquisition parameters (TR, TE, matrix, slice thickness, etc.) are generally employed, various readout bandwidth (BW) values are used as a function of gradients characteristics of the MR scanner. Echo spacing (ES) is another fundamental parameter of EPI-fMRI acquisition sequences but the employed ES value is not usually reported in fMRI studies. In the present work, the authors investigated the effect of ES and BW on basic performances of EPI-fMRI sequences in terms of temporal stability and overall image quality of time series acquisition. METHODS: EPI-fMRI acquisitions of the same water phantom were performed using two clinical MR scanner systems (scanners A and B) with different gradient characteristics and functional designs of radiofrequency coils. For both scanners, the employed ES values ranged from 0.75 to 1.33 ms. The used BW values ranged from 125.0 to 250.0 kHz/64pixels and from 78.1 to 185.2 kHz/64pixels for scanners A and B, respectively. The temporal stability of EPI-fMRI sequence was assessed measuring the signal-to-fluctuation noise ratio (SFNR) and signal drift (DR), while the overall image quality was assessed evaluating the signal-to-noise ratio (SNR(ts)) and nonuniformity (NU(ts)) of the time series acquisition. RESULTS: For both scanners, no significant effect of ES and BW on signal drift was revealed. The SFNR, NU(ts) and SNR(ts) values of scanner A did not significantly vary with ES. On the other hand, the SFNR, NU(ts), and SNR(ts) values of scanner B significantly varied with ES. SFNR (5.8%) and SNR(ts) (5.9%) increased with increasing ES. SFNR (25% scanner A, 32% scanner B) and SNR(ts) (26.2% scanner A, 30.1% scanner B) values of both scanners significantly decreased with increasing BW. NU(ts) values of scanners A and B were less than 3% for all BW and ES values. Nonetheless, scanner A was characterized by a significant upward trend (3% percentage of variation) of time series nonuniformity with increasing BW while NU(ts) of scanner B significantly increased (19% percentage of variation) with increasing ES. CONCLUSIONS: Temporal stability (SFNR and DR) and overall image quality (NU(ts) and SNR(ts)) of EPI-fMRI time series can significantly vary with echo spacing and readout bandwidth. The specific pattern of variation may depend on the performance of each single MR scanner system in terms of gradients characteristics, EPI sequence calibrations (eddy currents, shimming, etc.), and functional design of radiofrequency coil. Our results indicate that the employment of low BW improves not only the signal-to-noise ratio of EPI-fMRI time series but also the temporal stability of functional acquisitions. The use of minimum ES values is not entirely advantageous when the MR scanner system is characterized by gradients with low performances and suboptimal EPI sequence calibration. Since differences in basic performances of MR scanner system are potential source of variability for fMRI activation, phantom measurements of SFNR, DR, NU(ts), and SNR(ts) can be executed before subjects acquisitions to monitor the stability of MR scanner performances in clinical group comparison and longitudinal studies.
机译:目的:尽管在EPI-fMRI分析中通常使用典型的采集参数(TR,TE,矩阵,切片厚度等),但各种读取带宽(BW)值仍用作MR扫描仪的梯度特性的函数。回声间隔(ES)是EPI-fMRI采集序列的另一个基本参数,但是在fMRI研究中通常不报告采用的ES值。在目前的工作中,作者从时间序列的时间稳定性和整体图像质量方面研究了ES和BW对EPI-fMRI序列基本性能的影响。方法:使用两个具有不同梯度特性和射频线圈功能设计的临床MR扫描仪系统(扫描仪A和B)对同一水体模进行EPI-fMRI采集。对于这两种扫描仪,采用的ES值范围为0.75到1.33 ms。扫描仪A和B的BW值分别在125.0至250.0 kHz / 64像素和78.1至185.2 kHz / 64像素的范围内。通过测量信噪比(SFNR)和信号漂移(DR)来评估EPI-fMRI序列的时间稳定性,同时通过评估信噪比(SNR(ts))来评估整体图像质量时间序列获取的不均匀性(NU(ts))。结果:对于这两种扫描仪,没有发现ES和BW对信号漂移的显着影响。扫描仪A的SFNR,NU(ts)和SNR(ts)值不随ES显着变化。另一方面,扫描仪B的SFNR,NU(ts)和SNR(ts)值随ES显着变化。 SFNR(5.8%)和SNR(ts)(5.9%)随着ES的增加而增加。随着带宽的增加,两个扫描器的SFNR(25%扫描仪A,32%扫描仪B)和SNR(ts)(26.2%扫描仪A,30.1%扫描仪B)值均显着降低。对于所有BW和ES值,扫描仪A和B的NU(ts)值均小于3%。尽管如此,扫描仪A的特征是随着BW的增加,时间序列不均匀性显着上升(变化百分比为3%),而扫描仪B的NU(ts)随着ES的增加而显着增加(变化百分比为19%)。结论:EPI-fMRI时间序列的时间稳定性(SFNR和DR)以及整体图像质量(NU(ts)和SNR(ts))会随着回声间隔和读出带宽而显着变化。特定的变化模式可能取决于每个单个MR扫描仪系统在梯度特性,EPI序列校准(涡流,匀场等)以及射频线圈的功能设计方面的性能。我们的结果表明,低体重的使用不仅改善了EPI-fMRI时间序列的信噪比,而且还改善了功能获取的时间稳定性。当MR扫描仪系统的特点是性能低下的梯度和次优EPI序列校准时,使用最小ES值并不完全有利。由于MR扫描仪系统基本性能的差异是fMRI激活的潜在可变性来源,因此可以在采集受试者之前对SFNR,DR,NU(ts)和SNR(ts)进行幻像测量,以监控MR扫描仪性能的稳定性。临床组比较和纵向研究。

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