首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Assessment of tumor blood perfusion by high-resolution dynamic contrast-enhanced MRI: a preclinical study of human melanoma xenografts.
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Assessment of tumor blood perfusion by high-resolution dynamic contrast-enhanced MRI: a preclinical study of human melanoma xenografts.

机译:通过高分辨率动态对比增强MRI评估肿瘤血液灌注:人类黑素瘤异种移植的临床前研究。

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A noninvasive method to obtain high-resolution images of tumor blood perfusion is needed for individualized cancer treatments. In this study we investigated the potential usefulness of dynamic contrast-enhanced MRI (DCE-MRI), using human melanoma xenografts as models of human cancer. Gadopentetate dimeglumine (Gd-DTPA) was used as the contrast agent, and DCE-MRI was performed at a voxel size of 0.5 x 0.2 x 2.0 mm3 with spoiled gradient-recalled sequences. We obtained images of E. F (where E is the extraction fraction, and F is perfusion) by subjecting DCE-MR images to Kety analysis. We obtained highly reproducible E. F images, which we verified by imaging heterogeneous tumors twice. We hypothesized that the extraction fraction of Gd-DTPA would be high and would not vary significantly in tumor tissue, implying that E. F should be a well-suited parameter for describing tumor blood perfusion. Observations consistent with this hypothesis were made by comparison of E. F-images with immunostained histological preparations from the imaged sections. The E. F images mirrored the histological appearance of the tumor tissue perfectly. Quantitative studies showed that E. F was highest in nonhypoxic tissue with high microvascular density, second highest in nonhypoxic tissue with low microvascular density, third highest in hypoxic tissue, and lowest in necrotic tissue. Moreover, the radial heterogeneity in E. F was almost identical to that in the blood supply, as assessed by the use of Na99mTcO4 as a perfusion tracer. Taken together, our observations show that high-resolution images reflecting tumor blood perfusion can be obtained by DCE-MRI.
机译:对于个体化的癌症治疗,需要一种非侵入性的方法来获得高分辨率的血液灌注图像。在这项研究中,我们调查了使用人类黑色素瘤异种移植物作为人类癌症模型的动态对比增强MRI(DCE-MRI)的潜在实用性。 ado戊二酸二聚丁二胺(Gd-DTPA)被用作造影剂,并且DCE-MRI在体素大小为0.5 x 0.2 x 2.0 mm3的情况下进行,梯度梯度被破坏。我们通过对DCE-MR图像进行Kety分析,获得了E. F的图像(其中E为提取分数,F为灌注)。我们获得了高度可重复的E.F图像,并通过对异质性肿瘤成像两次进行了验证。我们假设在肿瘤组织中Gd-DTPA的提取率很高,不会有明显变化,这表明E. F应该是描述肿瘤血液灌注的合适参数。通过将E.F图像与来自成像切片的免疫染色组织学制剂进行比较,得出与该假设一致的观察结果。 E. F图像完美地反映了肿瘤组织的组织学外观。定量研究表明,E。F在微血管密度高的非低氧组织中最高,在微血管密度低的非低氧组织中第二高,在低氧组织中第三高,在坏死组织中最低。此外,通过使用Na99mTcO4作为灌注示踪剂评估,E。F中的径向异质性几乎与血液供应中的异质性相同。综上所述,我们的观察结果表明,可以通过DCE-MRI获得反映肿瘤血液灌注的高分辨率图像。

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