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首页> 外文期刊>Magnetic Resonance Materials in Physics, Biology and Medicine >Effect of Concentration of SH U 555A Labeled Human Melanoma Cells on MR Spin Echo and Gradient Echo Signal Decay at 0.2, 1.5, and 3T
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Effect of Concentration of SH U 555A Labeled Human Melanoma Cells on MR Spin Echo and Gradient Echo Signal Decay at 0.2, 1.5, and 3T

机译:SH U 555A标记的人黑色素瘤细胞浓度对0.2、1.5和3T时MR自旋回波和梯度回波信号衰减的影响

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摘要

In the current study the effect of increasing concentrations of superparamagnetic iron oxide labeled cells on the MRI signal decay at magnetic field strengths of 0.2, 1.5, and 3 T was evaluated. The spin echo and gradient echo cellular transverse relaxivity was systematically studied for various concentrations (N = 1, 5, 10, 20, 40, and 80 cells/μlgel) of homogeneously suspended SH U 555A labeled SK-Mel28 human melanoma cells. For all field strengths investigated a linear relationship between cellular transverse relaxation enhancement and cell concentration was found. In the spin echo case, the cellular relaxivities [i.e., d(ΔR 2)/dN] were determined to 0.12 s−1 (cell/μl)−1 at 0.2 T, 0.16 s−1 (cell/μl)−1 at 1.5 T, and 0.17 s−1 (cell/μl) at 3 T. In the gradient echo case, the calculated cellular relaxivities (i.e., d(ΔR 2 * )/dN) were 0.51 s−1 (cell/μl)−1 at 0.2 T, 0.69 s−1 (cell/μl)−1 at 1.5 T, and 0.71 s−1 (cell/μl)−1 at 3 T. The proposed preparation technique has proven to be a simple and reliable approach to quantify effects of magnetically labeled cells in vitro. On the basis of this quantification well suited tissue specific models can be derived.
机译:在当前的研究中,评估了在0.2、1.5和3 T的磁场强度下,超顺磁性氧化铁标记的细胞浓度增加对MRI信号衰减的影响。系统研究了自旋回波和梯度回波的细胞横向弛豫性,研究了不同浓度(N = 1、5、10、20、40和80个细胞/微升凝胶)的均相悬浮的SH U 555A标记的SK-Mel28人黑素瘤。细胞。对于所研究的所有场强,发现了细胞横向弛豫增强与细胞浓度之间的线性关系。在自旋回波情况下,在0.2 T下,细胞弛豫度[即d(ΔR2 )/ dN]确定为0.12 s-1 (cell /μl)-1 ,在1.5 T时为0.16 s-1 (cell /μl)-1 ,在3 T时为0.17 s-1 (cell /μl)。在梯度回波情况下,计算得到的细胞弛豫度(即d(ΔR2 * )/ dN)在0.2 T下为0.51 s-1 (cell /μl)-1 ,0.69 s-1 <在1.5 T时为/ sup>(cell /μl)-1 ,在3 T时为0.71 s-1 (cell /μl)-1 。一种简单可靠的方法来量化体外磁性标记细胞的作用。基于这种量化,可以得出非常合适的组织特异性模型。

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    Department of Diagnostic Radiology Section on Experimental Radiology University Hospital Tübingen Hoppe-Seyler-Str.3 Tubingen 72076 Germany;

    Department of Diagnostic Radiology Section on Experimental Radiology University Hospital Tübingen Hoppe-Seyler-Str.3 Tubingen 72076 Germany;

    Department of Diagnostic Radiology Section on Experimental Radiology University Hospital Tübingen Hoppe-Seyler-Str.3 Tubingen 72076 Germany;

    Department of Diagnostic Radiology Section on Experimental Radiology University Hospital Tübingen Hoppe-Seyler-Str.3 Tubingen 72076 Germany;

    Department of Diagnostic Radiology Section on Experimental Radiology University Hospital Tübingen Hoppe-Seyler-Str.3 Tubingen 72076 Germany;

    Department of Diagnostic Radiology Section on Experimental Radiology University Hospital Tübingen Hoppe-Seyler-Str.3 Tubingen 72076 Germany;

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