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Parametric imaging of tumor perfusion and neovascular morphology using ultrasound

机译:使用超声对肿瘤灌注和新生血管形态进行参数成像

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A new image processing strategy is detailed for the simultaneous measurement of tumor perfusion and neovascular morphology parameters from a sequence of dynamic contrast-enhanced ultrasound (DCE-US) images. A technique for locally mapping tumor perfusion parameters using skeletonized neovascular data is also introduced. Simulated images were used to test the neovascular skeletonization technique and variance (error) of relevant parametric estimates. Preliminary DCE-US image datasets were collected in 6 female patients diagnosed with invasive breast cancer and using a Philips iU22 ultrasound system equipped with a L9-3 MHz transducer and Definity contrast agent. Simulation data demonstrates that neovascular morphology parametric estimation is reproducible albeit measurement error can occur at a lower signal-to-noise ratio (SNR). Experimental results indicate the feasibility of our approach to performing both tumor perfusion and neovascular morphology measurements from DCE-US images. Future work will expand on our initial clinical findings and also extent our image processing strategy to 3-dimensional space to allow whole tumor characterization.
机译:详细介绍了一种新的图像处理策略,用于从一系列动态对比增强超声(DCE-US)图像中同时测量肿瘤灌注和新血管形态学参数。还介绍了使用骨架化的新血管数据局部绘制肿瘤灌注参数的技术。模拟图像用于测试新血管骨架化技术和相关参数估计值的方差(误差)。使用装备有L9-3 MHz换能器和Definity造影剂的Philips iU22超声系统,收集了6位诊断为浸润性乳腺癌的女性患者的DCE-US初步图像数据集。仿真数据表明,新血管形态学参数估计是可重现的,尽管在较低的信噪比(SNR)下可能会出现测量误差。实验结果表明我们的方法从DCE-US图像执行肿瘤灌注和新血管形态学测量的可行性。未来的工作将扩大我们最初的临床发现,还将我们的图像处理策略扩展到3维空间以实现整个肿瘤的表征。

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