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在存在造影剂外渗的情况下提高获取肿瘤血流动力学参数的可靠性。

Improving the reliability of obtaining tumor hemodynamic parameters in the presence of contrast agent extravasation.

作者信息

Quarles C C, Ward B D, Schmainda K M

机构信息

Department of Biophysics, Medical College of Wisconsin, Milwaukee, Wisconsin 53226-0509, USA.

出版信息

Magn Reson Med. 2005 Jun;53(6):1307-16. doi: 10.1002/mrm.20497.

Abstract

A new approach to improve the reliability of dynamic susceptibility contrast MRI for the evaluation of brain tumor hemodynamics in the presence of contrast agent extravasation is described. This model-based technique simultaneously estimates the voxel-wise tumor residue function and the temporal extravascular T(1) changes following contrast agent leakage. With these estimates the model corrects the measured MRI signal, which is then used to calculate tumor hemodynamic parameters. The feasibility of this technique is demonstrated with computer simulations that cover a wide range of hemodynamic conditions and by application to eight tumor-bearing rats. The simulations demonstrate that the corrected hemodynamic parameters precisely matched the actual values with a maximum percentage error of 4.2% compared to 68.6% for the uncorrected parameters. The corrected parameters are also essentially independent of the tumor hemodynamic state and degree of contrast extravasation. Consistent with these improvements, significant differences between corrected and uncorrected parameters, calculated from a gradient-echo sequence, are shown in a rat 9L gliosarcoma model. This method combined with the hemodynamic parameters derived from GE and SE sequences shows promise as a new tool to evaluate tumor angiogenesis and its therapy.

摘要

描述了一种新方法,用于在存在造影剂外渗的情况下提高动态对比增强磁共振成像(MRI)评估脑肿瘤血流动力学的可靠性。这种基于模型的技术同时估计体素层面的肿瘤残留函数以及造影剂渗漏后的血管外T(1)时间变化。利用这些估计值,该模型对测量的MRI信号进行校正,然后用于计算肿瘤血流动力学参数。通过涵盖广泛血流动力学条件的计算机模拟以及应用于八只荷瘤大鼠,证明了该技术的可行性。模拟表明,校正后的血流动力学参数与实际值精确匹配,最大百分比误差为4.2%,而未校正参数的最大百分比误差为68.6%。校正后的参数也基本独立于肿瘤血流动力学状态和造影剂外渗程度。与这些改进一致,在大鼠9L胶质肉瘤模型中,显示了从梯度回波序列计算得出的校正参数与未校正参数之间的显著差异。这种方法与从梯度回波(GE)和自旋回波(SE)序列得出的血流动力学参数相结合,有望成为评估肿瘤血管生成及其治疗的新工具。

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