4D Free-Breathing Sequence For The Study Of Pancreatic Lesions In MRI 3 Tesla

Curatolo Calogero, Siino Manfredi, Cannella Roberto, Loverro Giuseppe, Brancatelli Giuseppe
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Abstract

Pancreatic cancer is the fourth leading cause of cancer death in both the United States and Europe. A fundamental role in the characterization, early diagnosis, and staging of pancreatic cancer is played by Magnetic Resonance. An innovative and recently implemented sequence, the 4D Free-Breathing sequence, is demonstrating remarkable efficiency in the characterization of pancreatic lesions, as it allows to obtain images with high temporal resolution on the arterial phase, maintaining high spatial and temporal resolution, with the patient free breathing and with compensation of respiratory movement artifacts. The aim of this study was to analyze the 4D Free-Breathing sequence technique and to evaluate its advantages in terms of image quality and diagnostic value in the characterization of pancreatic lesions. The 4D Free Breathing sequence replaces the acquisition of the classic arterial post-contrast phase obtained with the 3D-THRIVE sequence: after a first acquisition of the k-space data in the non-contrast phase (lasting 58 seconds), multiple arterial subphases, each one lasting about 5 seconds, will be acquired with a complete coverage of the post-contrast phase of about 90 seconds. This sequence exploits the k-space sampling technique called "Stack of Stars", based on a radial sampling in the XY plane. In detail, along the slice phase-encoding direction (kz), uniform Cartesian-grid sampling is maintained. Within each kz-encoded plane, radial data is collected with consecutive views (1 per sequence repetition time TR) rotated by a golden-angle of 111.25°, allowing the sampling of a complete circle, also determining a considerably reduced presence of breath artifacts.
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4D自由呼吸序列对MRI 3特斯拉胰腺病变的研究
胰腺癌是美国和欧洲癌症死亡的第四大原因。磁共振在胰腺癌的特征、早期诊断和分期中起着重要作用。最近实施的一项创新序列,4D自由呼吸序列,在胰腺病变表征方面显示出显著的效率,因为它允许在动脉期获得高时间分辨率的图像,保持高空间和时间分辨率,患者自由呼吸并补偿呼吸运动伪像。本研究的目的是分析4D自由呼吸序列技术,并评估其在图像质量和诊断胰腺病变特征方面的优势。4D自由呼吸序列取代了3D-THRIVE序列获得的经典动脉造影后期的采集:在非造影期(持续58秒)首次采集k空间数据后,将获得多个动脉亚期,每个亚期持续约5秒,并获得约90秒的造影后期的完整覆盖。这个序列利用了k空间采样技术,称为“星星堆栈”,基于XY平面的径向采样。详细地说,沿着切片相位编码方向(kz),保持均匀的笛卡尔网格采样。在每个kz编码平面内,径向数据是通过连续视图(每个序列重复时间TR 1)以111.25°的黄金角度旋转收集的,允许对一个完整的圆圈进行采样,也确定大大减少了呼吸伪影的存在。
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