Imaging Sciences Department, Faculty of Medicine, Imperial College, London W12 0NN, UK.
Ultrasonics. 2011 Jan;51(1):102-6. doi: 10.1016/j.ultras.2010.06.004. Epub 2010 Jun 25.
The objective of this study was to assess the impact of dynamic range and gain on perfusion quantification using linearized log-compressed data. An indicator-dilution experiment was developed with an in vitro flow phantom setup used with SonoVue contrast agent (Bracco SpA, Milan, Italy). Imaging was performed with a Philips iU22 scanner and a C5-1 curvilinear transducer using a contrast-specific nonlinear pulse sequence (power modulation) at 1.7MHz. Clinical dynamic contrast-enhanced ultrasound image loops of liver tumors were also collected for preliminary validation of the in vitro findings. Time-intensity curves were extracted from image loops with two different approaches: from linearized log-compressed data and from linear (uncompressed) data. The error of time-intensity curve parameters derived from linearized log-compressed data (deviation from linear data) was found to be less than 2.1% and 5.4% for all studied parameters in the in vitro experiment and in the clinical study, respectively, when a high dynamic range setting (at least 50dB on the iU22) is used. The gain must be carefully adjusted to ensure a high signal-to-noise ratio and to avoid signal saturation. From the time-intensity curve analysis it was also found that rise time of the bolus time-intensity curve is the least variable of all the studied time-intensity curve parameters.
本研究旨在评估使用对数压缩线性化数据对灌注定量的动态范围和增益的影响。采用 SonoVue 造影剂(意大利米兰 Bracco SpA)的体外血流体模装置进行指示剂稀释实验。使用飞利浦 iU22 扫描仪和 C5-1 线阵探头,以 1.7MHz 的对比特异性非线性脉冲序列(功率调制)进行成像。还收集了肝脏肿瘤的临床动态对比增强超声图像循环,以初步验证体外发现。从图像循环中提取时间-强度曲线,采用两种不同的方法:从线性化对数压缩数据和从线性(未压缩)数据。在体外实验和临床研究中,当使用高动态范围设置(在 iU22 上至少 50dB)时,从线性化对数压缩数据得出的时间-强度曲线参数的误差(与线性数据的偏差)分别小于所有研究参数的 2.1%和 5.4%。必须仔细调整增益,以确保高信噪比并避免信号饱和。从时间-强度曲线分析中还发现,所有研究的时间-强度曲线参数中,上升时间是最具变化性的。