首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Image correction during large and rapid B-0 variations in an open MRI system with permanent magnets using navigator echoes and phase compensation
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Image correction during large and rapid B-0 variations in an open MRI system with permanent magnets using navigator echoes and phase compensation

机译:使用导航器回波和相位补偿在带有永久磁铁的开放式MRI系统中进行大而快速的B-0变化期间的图像校正

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摘要

An open permanent magnet system with vertical B-0 field and without self-shielding can be quite susceptible to perturbations from external magnetic sources. B-0 variation in such a system located close to a subway station was measured to be greater than 0.7 mu T by both MRI and a fluxgate magnetometer. This B-0 variation caused image artifacts. A navigator echo approach that monitored and compensated the view-to-view variation in magnetic resonance signal phase was developed to correct for image artifacts. Human brain imaging experiments using a multislice gradient-echo sequence demonstrated that the ghosting and blurring artifacts associated with B-0 variations were effectively removed using the navigator method.
机译:具有垂直B-0磁场且没有自屏蔽功能的开放式永磁系统很容易受到外部磁源的干扰。通过MRI和磁通门磁强计测得,在靠近地铁站的这种系统中B-0的变化均大于0.7μT。这种B-0变化会导致图像伪影。开发了一种导航回波方法,该方法可以监视和补偿磁共振信号相位的视图间差异,以校正图像伪影。使用多层梯度回波序列的人脑成像实验表明,使用导航器方法可以有效消除与B-0变异相关的重影和模糊伪影。

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