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A Robust Method for Estimating B0 Inhomogeneity Field in the Liver by Mitigating Fat Signals and Phase-Wrapping

机译:一种通过减轻脂肪信号和相位包裹来估计肝脏B0不均匀性场的稳健方法

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摘要

We developed an optimized and robust method to estimate liver B0 field inhomogeneity for monitoring and correcting susceptibility-induced geometric distortion in magnetic resonance images for precision therapy. A triple-gradient-echo acquisition was optimized for the whole liver B0 field estimation within a single-exhale breath-hold scan on a 3 T scanner. To eliminate chemical-shift artifacts, fat signals were chosen in-phase between 2 echoes with an echo time difference (ΔTE) of 2.3 milliseconds. To avoid phase-wrapping, other 2 echoes provided a large field dynamic range (1/ΔTE) to cover the B0 field inhomogeneity. In addition, using high parallel imaging factor of 4 and a readout-bandwidth of 1955 Hz/pixel, an ∼18-second acquisition time for breath-held scans was achieved. A 2-step, 1-dimensional regularized method for the ΔB0 field map estimation was developed, tested and validated in phantom and patient studies. Our method was validated on a water phantom with fat components and air pockets; it yielded ΔB0-field maps that had no chemical-shift and phase-wrapping artifacts, and it had a <0.5 mm of geometric distortion near the air pockets. The ΔB0-field maps of the patients' abdominal regions were also free from phase-wrapping and chemical-shift artifacts. The maximum field inhomogeneity was found near the lung–liver interface, up to ∼300 Hz, resulting in ∼2 mm of distortions in anatomical images with a readout-bandwidth of 440 Hz/pixel. The field mapping method in the abdominal region is robust; it can be easily integrated in clinical workflow for patient-based quality control of magnetic resonance imaging geometric integrity.
机译:我们开发了一种优化且强大的方法来估计肝脏B0场的不均匀性,以监测和校正磁共振图像中药敏性诱发的几何畸变,以进行精密治疗。在3 T扫描仪的一次呼气屏气扫描中,针对整个肝脏B0场估计优化了三梯度回波采集。为了消除化学位移伪影,在2个回波之间同相选择脂肪信号,回波时间差(ΔTE)为2.3毫秒。为了避免相位缠绕,其他两个回波提供了较大的场动态范围(1 /ΔTE),以覆盖B0场的不均匀性。另外,使用4的高并行成像因子和1955 Hz /像素的读出带宽,屏住呼吸的扫描获得了约18秒的采集时间。在幻像和患者研究中开发,测试和验证了一种用于ΔB0场图估计的两步,一维正则化方法。我们的方法在带有脂肪成分和气袋的水体模上得到了验证。它产生的ΔB0场图没有化学位移和相位包裹伪像,并且在气穴附近的几何变形小于0.5 mm。患者腹部区域的ΔB0场图也没有相位包裹和化学位移伪影。在肺-肝界面附近发现了最大的场不均匀性,高达〜300 Hz,导致解剖学图像中〜2 mm的失真,读出带宽为440 Hz /像素。腹部区域的场图绘制方法是可靠的。它可以轻松地集成到临床工作流程中,以实现基于患者的磁共振成像几何完整性的质量控制。

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