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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Quantification of endothelial permeability, leakage space, and blood volume in brain tumors using combined T1 and T2* contrast-enhanced dynamic MR imaging.
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Quantification of endothelial permeability, leakage space, and blood volume in brain tumors using combined T1 and T2* contrast-enhanced dynamic MR imaging.

机译:使用组合T1和T2 *对比度增强动态MR成像量化脑肿瘤内皮渗透性,泄漏空间和血量的定量。

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This study describes a method for imaging brain tumors that combines T1-weighted (T1W) and T2*-weighted (T2*W) dynamic contrast-enhanced acquisitions. Several technical improvements have been made to produce high-quality three-dimensional mapping of endothelial permeability surface area product (k) and leakage space (vl), based on T1W data. Tumor blood volume maps are obtained from T2*W images with a complete removal of residual relaxivity effects. The method was employed in 15 patients with brain tumors (5 gliomas, 5 meningioma, and 5 acoustic schwannoma). Mean values of vl were significantly greater in acoustic schwannomas (53% +/- 9%) than in meningiomas (34% +/- 7%) or gliomas (22% +/- 4%). Mean values of vl in meningioma were significantly greater than those of gliomas. Mean values of rCBV correlated closely with k. There was also a positive correlation between k and vl for pixels with low k values. This relationship was weaker in areas of high k. The highest mean ratios of k to vl (k(ep)) were seen in two patients with glioblastoma, one patient with transitional cell meningioma, and one patient with angioblastic meningioma. Pixel-by-pixel comparison showed a strong correlation between rCBV and k in 11 of 15 patients. However, decoupling between pixel-wise rCBV and k was found in four patients who had lesions with moderate k and vl elevation but no increase of rCBV. Results from this study suggest that in assessing the angiogenic activities in brain tumors it is advisable to monitor simultaneously changes in tumor blood volume, vessel permeability, and leakage space of tumor neovasculature. Copyright 2000 Wiley-Liss, Inc.
机译:本研究描述了一种用于成像脑肿瘤的方法,所述脑肿瘤结合T1加权(T1W)和T2 * - 重量(T2 * W)动态对比度的采集。基于T1W数据,已经制定了几种技术改进以产生高质量的内皮渗透表面区域产品(K)和泄漏空间(VL)的高质量三维映射。肿瘤血容量图是从T2 * W图像获得的,完全去除残留的松弛效应。该方法在15名脑肿瘤(5个胶质瘤,5个脑膜瘤和5个声学SCHWANNOMA)中使用。声学Schwannomas(53%+/- 9%)的VL的平均值显着大于脑膜瘤(34%+/- 7%)或胶质瘤(22%+/- 4%)。脑膜瘤中VL的平均值明显大于Gliomas。 RCBV的平均值与K紧密相关。 K和VL之间也存在正相关的像素,具有低k值。这种关系在高k的区域较弱。在两名胶质母细胞瘤患者中,一名患有过渡性细胞脑膜瘤的患者,一名患有血管脑细胞脑膜瘤的患者,k至VL(k(k(k))的最高平均比率。逐个像素比较显示RCBV和k在15名患者中11例之间的强相关性。然而,在具有中度K和VL高度的病变的四个患者中发现像素明智的RCBV和K之间的去耦,但没有增加RCBV。本研究的结果表明,在评估脑肿瘤中的血管生成活动时,建议监测肿瘤血管,血管渗透性和肿瘤新生动物泄漏空间的同时变化。版权所有2000 Wiley-Liss,Inc。

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