Fast, Reliable 3D Amide Proton Transfer Imaging of Brain Tumors at 3T with Variably-accelerated Sensitivity Encoding (vSENSE).

Yi Zhang, Hye-Young Heo, Shanshan Jiang, Paul A Bottomley, Jinyuan Zhou
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Abstract

The clinical use of amide proton transfer (APT) imaging is hindered by long scan times. Accuracy generally limits the use of conventional sensitivity encoding (SENSE) methods in APT, to an acceleration factor of 2. A novel variably-accelerated sensitivity encoding (vSENSE) method can provide more accurate results and therefore substantially higher overall acceleration factors than conventional SENSE. Here, vSENSE is further developed to eliminate the requirement that one fully-sampled APT frame be acquired, and extended to three dimensions (3D). Furthermore, we combine vSENSE with parallel transmit saturation, and apply it proactively to three normal volunteers and eleven patients with brain tumors.

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可变加速灵敏度编码(vSENSE)快速、可靠的3T脑肿瘤三维酰胺质子转移成像
酰胺质子转移(APT)成像的临床应用受到长扫描时间的阻碍。精度通常限制了APT中传统灵敏度编码(SENSE)方法的使用,其加速因子为2。一种新的可变加速灵敏度编码(vSENSE)方法可以提供更精确的结果,因此比传统的SENSE具有更高的总体加速因子。在这里,vSENSE被进一步开发,以消除获取一个全采样APT帧的要求,并扩展到三维(3D)。将vSENSE与并行传输饱和相结合,主动应用于3名正常志愿者和11名脑肿瘤患者。
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