Neuroimaging of brain tumors: back to the standardized MRI-protocol

N. Zakharova, I. Pronin, A. I. Batalov, I. Chekhonin, A. N. Tyurina
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Abstract

Despite the widespread application of MRI in brain tumor MR-imaging, the standardized MRI protocol has not yet been approved. This fact creates obstacles for interpreting of the obtained data and even limits the diagnostic power of MRI. Standardization of MRI studies facilitates successful planning of surgery, chemotherapy, or radiation therapy and provides more reliable follow-up. In this regard, unification of image acquisition parameters and protocols remains relevant. We propose a standard MRI protocol that includes axial and coronal T2-weighted images, axial or 3D T2-FLAIR, 3D T2* (gradient echo), diffusion-weighted imaging, axial T1-weighted images, contrast-enhanced spin-echo T1-weighted images (either axial or three planes) and obligatory subsequent isotropic 3D T1 images. The following combination of sequences facilitates the correct diagnosis and follow-up. The least magnetic field strength should be 1.5 T.
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脑肿瘤的神经成像:回归标准化 MRI 方案
尽管核磁共振成像在脑肿瘤核磁共振成像中应用广泛,但标准化的核磁共振成像方案尚未获得批准。这给解读所获数据造成了障碍,甚至限制了磁共振成像的诊断能力。核磁共振成像研究的标准化有助于成功规划手术、化疗或放疗,并提供更可靠的后续治疗。在这方面,统一图像采集参数和方案仍然具有重要意义。我们提出了一套标准的磁共振成像方案,包括轴向和冠状T2加权图像、轴向或三维T2-FLAIR、三维T2*(梯度回波)、二重灌注加权成像、轴向T1加权图像、对比增强自旋回波T1加权图像(轴向或三个平面),以及随后必须的各向同性三维T1图像。以下序列组合有助于正确诊断和随访。最小磁场强度应为 1.5 T。
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