Department of Bioengineering, Imperial College, London, UK.
IEEE Trans Ultrason Ferroelectr Freq Control. 2010 Apr;57(4):818-29. doi: 10.1109/TUFFC.2010.1487.
Microbubble ultrasound contrast agents allow blood perfusion to be imaged at the cost of an increased attenuation that is not properly handled by existing time gain compensation methods. An automatic TGC has been developed that is able to account for different microbubble concentrations. The technique is an extension of a previously tested approach for modeling the nonlinear dependence of microbubble backscattering upon insonating pressure. The proposed method involves modeling in amplitude of the nonlinear attenuation for both forward and backward propagation, and the solution is achieved through an approximation set to overestimate the attenuation. The resulting equations are used to model and compensate amplitude modulation (AM) images; they are tested on radiofrequency data acquired using a clinical scanner from a gelatin tissue-mimicking phantom submerged in a contrast agent solution in the 0.08 MI to 0.51 MI range at 2 MHz. The nonlinear estimation equation presented here provides a significantly improved amplification profile compared with standard TGC algorithms, resulting in more accurate attenuation correction of the AM image.
微泡超声对比剂可使血液灌注成像,但代价是增加了衰减,而现有的时程增益补偿方法无法正确处理这种衰减。已经开发出一种自动时程增益补偿方法,能够考虑到不同的微泡浓度。该技术是对以前测试过的一种方法的扩展,用于模拟微泡背向散射对激发压力的非线性依赖性。所提出的方法涉及正向和反向传播的非线性衰减幅度的建模,并且通过设置为高估衰减的近似值来实现解决方案。所得到的方程用于对幅度调制 (AM) 图像进行建模和补偿;它们在使用临床扫描仪从明胶组织模拟体模获得的射频数据上进行了测试,该体模浸没在对比剂溶液中,在 2MHz 时的 0.08MI 至 0.51MI 范围内。与标准 TGC 算法相比,这里提出的非线性估计方程提供了显著改进的放大谱,从而更准确地对 AM 图像进行衰减校正。