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通过三维径向半回波bSSFP的非共振重建实现超顺磁性氧化铁标记细胞的阳性对比。

Positive contrast of SPIO-labeled cells by off-resonant reconstruction of 3D radial half-echo bSSFP.

作者信息

Diwoky Clemens, Liebmann Daniel, Neumayer Bernhard, Reinisch Andreas, Knoll Florian, Strunk Dirk, Stollberger Rudolf

机构信息

Institute of Medical Engineering, Graz University of Technology, Graz, Austria; BioTechMed-Graz, Graz, Austria.

出版信息

NMR Biomed. 2015 Jan;28(1):79-88. doi: 10.1002/nbm.3229. Epub 2014 Nov 7.

DOI:10.1002/nbm.3229
PMID:25379657
Abstract

This article describes a new acquisition and reconstruction concept for positive contrast imaging of cells labeled with superparamagnetic iron oxides (SPIOs). Overcoming the limitations of a negative contrast representation as gained with gradient echo and fully balanced steady state (bSSFP), the proposed method delivers a spatially localized contrast with high cellular sensitivity not accomplished by other positive contrast methods. Employing a 3D radial bSSFP pulse sequence with half-echo sampling, positive cellular contrast is gained by adding artificial global frequency offsets to each half-echo before image reconstruction. The new contrast regime is highlighted with numerical intravoxel simulations including the point-spread function for 3D half-echo acquisitions. Furthermore, the new method is validated on the basis of in vitro cell phantom measurements on a clinical MRI platform, where the measured contrast-to-noise ratio (CNR) of the new approach exceeds even the negative contrast of bSSFP. Finally, an in vivo proof of principle study based on a mouse model with a clear depiction of labeled cells within a subcutaneous cell islet containing a cell density as low as 7 cells/mm(3) is presented. The resultant isotropic images show robustness to motion and a high CNR, in addition to an enhanced specificity due to the positive contrast of SPIO-labeled cells.

摘要

本文介绍了一种用于超顺磁性氧化铁(SPIO)标记细胞的正性对比成像的新采集和重建概念。该方法克服了梯度回波和完全平衡稳态(bSSFP)所获得的负性对比成像的局限性,提供了一种空间定位对比,具有高细胞敏感性,这是其他正性对比方法所无法实现的。采用具有半回波采样的3D径向bSSFP脉冲序列,在图像重建前通过向每个半回波添加人工全局频率偏移来获得正性细胞对比。通过数值体素内模拟(包括3D半回波采集的点扩散函数)突出了新的对比机制。此外,该新方法在临床MRI平台上的体外细胞模型测量基础上得到了验证,新方法测得的对比噪声比(CNR)甚至超过了bSSFP的负性对比。最后,基于小鼠模型进行了体内原理验证研究,清晰描绘了皮下细胞胰岛内标记的细胞,其中细胞密度低至7个细胞/mm³。所得的各向同性图像除了由于SPIO标记细胞的正性对比而具有更高的特异性外,还显示出对运动的鲁棒性和高CNR。

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