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Use of 3.0-T MR imaging for evaluation of the abdomen.

机译:使用3.0-T MR成像评估腹部。

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摘要

The most important advantage of 3.0-T magnetic resonance (MR) imaging systems is their increased signal-to-noise ratio (SNR) compared with 1.5-T systems. The higher SNR can be used to shorten acquisition time, achieve higher spatial resolution, or a combination of the two, thereby improving image quality and clinical diagnosis. In fact, 3.0-T MR imaging systems have already proved superior to 1.5-T systems in neuroradiologic and musculoskeletal applications. In the abdomen, 3.0-T MR imaging is uniquely beneficial for techniques such as enhanced and nonenhanced hepatic imaging, diffusion-weighted imaging, angiography, MR pancreatography, and colonography. Admittedly, 3.0-T abdominal imaging has important technical limitations, such as standing wave artifact, chemical shift artifact, susceptibility artifact, and safety issues such as increased energy deposition within the patient's body. Furthermore, 3.0-T abdominal MR imaging is still in the early stages of development and requires substantial modifications of the pulse sequences and hardware components used for 1.5-T imaging. Nevertheless, the ability to obtain physiologic and functional information within reasonably short acquisition times with 3.0-T abdominal MR imaging bodies well for the future of this imaging technique.
机译:3.0-T磁共振(MR)成像系统的最重要优点是与1.5-T系统相比,它们提高了信噪比(SNR)。较高的SNR可用于缩短采集时间,实现较高的空间分辨率或将两者结合使用,从而改善图像质量和临床诊断。实际上,在神经放射学和肌肉骨骼应用中,已经证明3.0-T MR成像系统优于1.5-T系统。在腹部,3.0-T MR成像对诸如增强和不增强肝成像,弥散加权成像,血管造影,MR胰腺成像和结肠造影等技术具有独特优势。诚然,3.0-T腹部成像具有重要的技术局限性,例如驻波伪影,化学位移伪影,磁化伪影以及安全性问题,例如增加了患者体内的能量沉积。此外,3.0-T腹部MR成像仍处于开发的早期阶段,需要对用于1.5-T成像的脉冲序列和硬件组件进行实质性修改。尽管如此,对于这种成像技术的未来,使用3.0-T腹部MR成像体在相当短的采集时间内获得生理和功能信息的能力就很好。

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