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Multi-frame rate plane wave contrast-enhance ultrasound imaging for tumour vasculature imaging and perfusion quantification

机译:多帧率平面波造影增强超声成像,用于肿瘤血管成像和灌注定量

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A multi-frame rate plane wave imaging strategy is developed to simultaneously image tumor vasculature and quantify tumor perfusion. Customised imaging sequences interleaving a short but high frame rate (HFR) plane wave imaging sequence with a long but low frame rate imaging (LFR) sequence were implemented using a programmable ultrasound research platform. The results from a spatio-temporal coherence processing technique of ours demonstrated a significant improvement in the SNR and vasculature contrast when compared with the existing ultrafast Power Doppler (PD) using the same data. Initial perfusion quantification using LFR imaging was also demonstrated. Mean time intensity curve and some parametric measures were generated. Combining both structural and functional perfusion imaging using the multiframe rate sequences, a better evaluation of the tumour angiogenesis can be assessed.
机译:发展了一种多帧速率平面波成像策略,以同时成像肿瘤脉管系统并量化肿瘤灌注。使用可编程超声研究平台实现了将短但高帧频(HFR)平面波成像序列与长而低帧频成像(LFR)序列交错的定制成像序列。我们的时空相干处理技术的结果表明,与使用相同数据的现有超快功率多普勒(PD)相比,SNR和脉管系统对比度得到了显着改善。还证明了使用LFR成像的初始灌注定量。生成了平均时间强度曲线和一些参数测度。结合使用多帧速率序列的结构和功能灌注成像,可以评估对肿瘤血管生成的更好评估。

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