Quantitative stem cell imaging with magnetic particle imaging

B. Zheng, T. Vazin, W. Yang, P. Goodwill, E. Saritas, L. Croft, D. Schaffer, S. Conolly
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引用次数: 15

Abstract

MPI stem cell imaging - sensitivity and linearity: 9 pelletized, labeled hESC-derived cell populations (Fig. 2A) with varying cell numbers were imaged successively in the FFL imager. Fig. 2B shows the maximum image intensity from each reconstructed cell pellet image as a function of cell number. When a linear fit was applied, we found a strong linear correlation between MPI signal intensity and cell number, with R2 > 0.99. Additionally, the detection sensitivity of the projection MPI system was found to be slightly over 104 cells. We found no detectable MPI signal from unlabeled cell populations. Mice imaging: A MPI image of postmortem cell injections containing 4×105 and 6×105 is shown in Fig. 2C. The MPI image shows excellent contrast with minimal tissue effects. Additionally, the ratio of total MPI signal between the 6×105 and 4×105 injection regions was found to be 1.5, as expected.
定量干细胞成像与磁颗粒成像
MPI干细胞成像-灵敏度和线性:在FFL成像仪中依次成像9个球状,标记的hesc来源的细胞群(图2A),细胞数量不同。图2B显示了每个重构细胞颗粒图像的最大图像强度与细胞数的关系。当应用线性拟合时,我们发现MPI信号强度与细胞数量之间存在很强的线性相关性,R2 > 0.99。此外,发现投影MPI系统的检测灵敏度略高于104个细胞。我们在未标记的细胞群中没有发现可检测的MPI信号。小鼠成像:死后细胞注射含有4×105和6×105的MPI图像如图2C所示。MPI图像显示良好的对比度和最小的组织影响。此外,发现6×105和4×105注射区之间的总MPI信号之比为1.5,与预期一致。
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