首页> 外文期刊>Investigative radiology >Cardiac steady-state free precession CINE magnetic resonance imaging at 3.0 tesla: impact of parallel imaging acceleration on volumetric accuracy and signal parameters.
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Cardiac steady-state free precession CINE magnetic resonance imaging at 3.0 tesla: impact of parallel imaging acceleration on volumetric accuracy and signal parameters.

机译:3.0特斯拉的心脏稳态自由预防凝固磁共振成像:并联成像加速对体积精度和信号参数的影响。

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OBJECTIVES: We sought to evaluate the impact of 3.0 T on accelerated CINE steady-state free precession (SSFP) regarding signal parameters and its volumetric accuracy. MATERIAL AND METHODS: Ten individuals underwent cardiac CINE imaging at 1.5 T and 3.0 T using standard single-slice CINE and multislice TSENSE-accelerated CINE (5 slices/breath-hold) with 4-fold acceleration. Data were evaluated for left ventricular volumetric parameters (EDV, ESV, and EF) as well as for SNR and CNR. Phantom based data allowed for g-factor evaluation for estimation of noise levels for accelerated data sets. Volumetric results and signal parameters were compared with results of single-slice CINE SSFP at 1.5 T as standard of reference (SOR). RESULTS: Single-slice CINE at 3.0 T showed a approximately 90% increase in CNR compared with the SOR (P < 0.001). At 3.0 T, TSENSE CINE showed a less pronounced estimated loss in CNR (-58 +/- 6%) compared with single-slice CINE than at 1.5 T (-71 +/- 2%). 3.0 T TSENSE CINE showed a 21 +/- 18% lower CNR than the nonaccelerated 1.5 T CINE (P < 0.05). EF results for all data sets did not show any significant error while for EDV some errors have been encountered. CONCLUSION: 3.0 T permits compensation for the high CNR loss, which accompanies the 4-fold TSENSE acceleration at 1.5 T and shows volumetric accuracy. The use of parallel imaging may help to alleviate SAR limitations at higher field strength.
机译:目的:我们试图评估3.0 T对加速的Cine稳态自由进出(SSFP)的影响及其体积精度。材料和方法:10个体使用标准单片电线和3.0吨进行心脏调味率,使用标准的单片电影和多层Tsense-Conseerated Cine(5片/呼吸保持),具有4倍的加速度。评估左心室体积参数(EDV,ESV和EF)以及SNR和CNR的数据。基于幻像的数据允许G型因子评估,用于估计加速数据集的噪声水平。将体积结果和信号参数进行比较,与1.5吨的单片电豆SSFP的结果作为参考标准(SOR)。结果:3.0 T的单切片凝块显示,与SOR相比,CNR的增加约90%(P <0.001)。在3.0 t时,Tsense Cine在CNR(-58 +/- 6%)中显示出与单切片浓度相比的估计损失不如1.5 T(-71 +/- 2%)。 3.0 T TSENSE Cine显示CNR比非燃烧的1.5吨凝块降低21 +/- 18%(P <0.05)。所有数据集的EF结果都没有显示任何重大错误,而edv已遇到一些错误。结论:3.0 T允许赔偿高CNR损失,伴随着1.5 T的4倍的Tsense加速度,并显示体积精度。平行成像的使用可以有助于减轻较高场强的SAR限制。

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