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Study of PET intrinsic spatial resolution and contrast recovery improvement for PET/MRI systems

机译:PET / MRI系统PET固有空间分辨率和对比度恢复改进的研究

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This paper studied PET intrinsic spatial resolution and contrast recovery improvement for PET/MRI dual modality systems. A Monte Carlo simulation tool was developed to study positron diffusion in tissues with and without a magnetic field for six commonly used isotopes ( 18F, 11C, 13N, 15O, 68Ga and 82Rb). A convolution process was implemented to investigate PET intrinsic spatial resolution, taking into account three factors: positron diffusion range, collinear photon annihilation and finite detector element width. The resolution improvement was studied quantitatively as a function of magnetic field strength for three PET system configurations (whole-body, brain-dedicated and small-animal PET). When the magnetic field strength increases up to 10 T, the system spatial resolution in directions orthogonal to the field for 15O, 68Ga and 82Rb is comparable to that of 18F without the magnetic field. Beyond 10 T, no significant improvement of spatial resolution was observed. In addition, the modulation transfer function was studied to predict the intrinsic contrast recovery improvement for several existing and promising PET/MRI configurations.
机译:本文研究了PET / MRI双模态系统的PET固有空间分辨率和对比度恢复改进。开发了一种蒙特卡洛模拟工具,以研究在有和没有磁场的情况下六种常用同位素(18F,11C,13N,15O,68Ga和82Rb)在组织中的正电子扩散。考虑到三个因素:正电子扩散范围,共线光子an灭和有限的检测器元件宽度,实施了卷积过程以研究PET的固有空间分辨率。对于三种PET系统配置(全身,大脑专用和小动物PET),根据磁场强度对分辨率的提高进行了定量研究。当磁场强度增加到10 T时,与15O,68Ga和82Rb的磁场正交的系统空间分辨率与没有磁场的18F相当。超过10 T,没有观察到空间分辨率的显着提高。此外,对调制传递函数进行了研究,以预测几种现有和有前途的PET / MRI配置对内在对比度恢复的改善。

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