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首页> 外文期刊>Ultrasound in Medicine and Biology >An Improved Tissue-Mimicking Polyacrylamide Hydrogel Phantom for Visualizing Thermal Lesions with High-Intensity Focused Ultrasound
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An Improved Tissue-Mimicking Polyacrylamide Hydrogel Phantom for Visualizing Thermal Lesions with High-Intensity Focused Ultrasound

机译:一种改进的模仿组织的聚丙烯酰胺水凝胶体模,用于以高强度聚焦超声可视化热病变

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A recipe was created to improve the tissue-mimicking (TM) bovine serum albumin (BSA) polyacrylamide hydrogel (PAG) reported in our previous study (Choi MJ, Guntur SR, Lee KI, Paeng DG, Coleman AJ. Ultrasound Med Biol 2013; 29:439-448). In that work, the concentration of acrylamide in TM BSA PAG was increased to make its attenuation coefficient the same as that of a tissue. However, this increase made the PAG stiffer and less homogeneous. In addition, the increase in acrylamide caused a significant increase in temperature over the denaturation threshold of BSA during polymerization, which required forced cooling so that the PAG did not become opaque at room temperature after polymerization. To eliminate those shortcomings, we substituted the increased acrylamide with a viscous polysaccharide liquid (corn syrup). The concentration of corn syrup was optimized to 20% (w/v, tested in the volume of 50mL), so that the acoustic properties of the PAG would be close to those of human liver. The improved TM (iTM) BSA PAG constructed in this study had a speed of sound of 1588±9m/s, an attenuation coefficient of 0.51±0.06dBcm-1 at 1MHz and a backscattering coefficient of 0.22±0.09×10-3 sr-1cm-1MHz-1. The density and acoustic impedance were 1057kg/m3 and 1.68 MRayl, respectively, and the non-linear parameter (B/A) was 5.9±0.3. The thermal, optical and mechanical properties were almost the same as those of the BSA PAG (Lafon etal.2005). Experimental verification indicated that the thermal lesions visualized in the proposed iTM BSA PAG by high-intensity focused ultrasound were highly reproducible. In conclusion, iTM BSA PAG was proven to eliminate TM BSA PAG shortcomings effectively and is expected to be a promising test phantom for clinical high-intensity focused ultrasound device.
机译:在我们先前的研究中报告了一种改善组织模仿(TM)牛血清白蛋白(BSA)聚丙烯酰胺水凝胶(PAG)的配方(Choi MJ,Guntur SR,Lee KI,Paeng DG,Coleman AJ。Ultrasound Med Biol 2013; 29:439-448)。在这项工作中,增加了TM BSA PAG中丙烯酰胺的浓度,使其衰减系数与组织的衰减系数相同。但是,这种增加使PAG变得更硬,更不均匀。此外,丙烯酰胺的增加导致聚合过程中超过BSA变性阈值的温度显着升高,这需要强制冷却,以使PAG在聚合后在室温下不会变得不透明。为了消除这些缺点,我们用粘性多糖液体(玉米糖浆)代替了增加的丙烯酰胺。玉米糖浆的浓度被优化为20%(w / v,以50mL的体积测试),因此PAG的声学特性将接近人类肝脏的声学特性。本研究中构造的改进型TM(iTM)BSA PAG的声速为1588±9m / s,在1MHz处的衰减系数为0.51±0.06dBcm-1,后向散射系数为0.22±0.09×10-3 sr- 1cm-1MHz-1。密度和声阻抗分别为1057kg / m3和1.68 MRayl,非线性参数(B / A)为5.9±0.3。热,光学和机械性能几乎与BSA PAG的相同(Lafon等,2005)。实验验证表明,通过高强度聚焦超声在提出的iTM BSA PAG中可视化的热损伤是高度可重现的。总之,事实证明,iTM BSA PAG可有效消除TM BSA PAG的缺点,并有望成为临床高强度聚焦超声设备的有希望的测试模型。

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