论文标题
由多斑磁粒子成像中的暂时性示踪剂分布引起的运动伪影的抑制
Suppression of Motion Artifacts Caused by Temporally Recurring Tracer Distributions in Multi-Patch Magnetic Particle Imaging
论文作者
论文摘要
磁性粒子成像是一种基于示踪剂的成像技术,可确定具有高空间和时间分辨率的超帕磁铁氧化铁纳米颗粒的空间分布。由于生理限制,成像体积的尺寸受到限制,较大的体积被相对于对象和成像体积相对于彼此而覆盖。这会导致时间分辨率减少,从而在成像动态示踪剂分布时会导致运动伪像。这种动态分布的一个常见来源是体内实验中的心脏和呼吸运动,它们的近似值很近期。我们提出了一种原始数据处理技术,该技术将数据片段结合到与动态运动的特定状态相对应的虚拟框架中。根据从两个不同旋转频率下的旋转幻影获得的测量数据来评估该技术。这些频率是根据原始数据确定的,而无需重建,也没有其他导航器信号。重建的图像给出了在几种不同的运动状态下冷冻的旋转幻影的合理表示,而运动伪影则被抑制。
Magnetic particle imaging is a tracer based imaging technique to determine the spatial distribution of superparamagnetic iron oxide nanoparticles with a high spatial and temporal resolution. Due to physiological constraints, the imaging volume is restricted in size and larger volumes are covered by shifting object and imaging volume relative to each other. This results in reduced temporal resolution, which can lead to motion artifacts when imaging dynamic tracer distributions. A common source of such dynamic distributions are cardiac and respiratory motion in in-vivo experiments, which are in good approximation periodic. We present a raw data processing technique that combines data snippets into virtual frames corresponding to a specific state of the dynamic motion. The technique is evaluated on the basis of measurement data obtained from a rotational phantom at two different rotational frequencies. These frequencies are determined from the raw data without reconstruction and without an additional navigator signal. The reconstructed images give reasonable representations of the rotational phantom frozen in several different states of motion while motion artifacts are suppressed.