首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Phase gradient imaging for positive contrast generation to superparamagnetic iron oxide nanoparticle-labeled targets in magnetic resonance imaging
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Phase gradient imaging for positive contrast generation to superparamagnetic iron oxide nanoparticle-labeled targets in magnetic resonance imaging

机译:相梯度成像可在磁共振成像中产生与超顺磁性氧化铁纳米粒子标记的靶标的正对比

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摘要

Positive contrast imaging methods produce enhanced signal at large magnetic field gradient in magnetic resonance imaging. Several postprocessing algorithms, such as susceptibility gradient mapping and phase gradient mapping methods, have been applied for positive contrast generation to detect the cells targeted by superparamagnetic iron oxide nanoparticles. In the phase gradient mapping methods, smoothness condition has to be satisfied to keep the phase gradient unwrapped. Moreover, there has been no discussion about the truncation artifact associated with the algorithm of differentiation that is performed in k-space by the multiplication with frequency value. In this work, phase gradient methods are discussed by considering the wrapping problem when the smoothness condition is not satisfied. A region-growing unwrapping algorithm is used in the phase gradient image to solve the problem. In order to reduce the truncation artifact, a cosine function is multiplied in the k-space to eliminate the abrupt change at the boundaries. Simulation, phantom and in vivo experimental results demonstrate that the modified phase gradient mapping methods may produce improved positive contrast effects by reducing truncation or wrapping artifacts.
机译:正对比度成像方法在磁共振成像中在大磁场梯度下会产生增强的信号。几种后处理算法(例如磁化率梯度映射和相位梯度映射方法)已应用于正对比度生成,以检测超顺磁性氧化铁纳米粒子靶向的细胞。在相位梯度映射方法中,必须满足平滑度条件以保持相位梯度未展开。此外,还没有讨论与通过频率值相乘在k空间中执行的微分算法相关的截断伪像。在这项工作中,通过考虑不满足平滑条件时的包裹问题来讨论相位梯度方法。在相位梯度图像中使用区域增长解包算法来解决该问题。为了减少截断伪影,将余弦函数在k空间中相乘以消除边界处的突变。仿真,幻像和体内实验结果表明,改进的相位梯度映射方法可以通过减少截断或包裹伪影来产生改善的正对比度效果。

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