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首页> 外文期刊>Ultrasound in Medicine and Biology >A Tissue Mimicking Polyacrylamide Hydrogel Phantom for Visualizing Thermal Lesions Generated by High Intensity Focused Ultrasound
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A Tissue Mimicking Polyacrylamide Hydrogel Phantom for Visualizing Thermal Lesions Generated by High Intensity Focused Ultrasound

机译:组织模仿聚丙烯酰胺水凝胶幻像的可视化由高强度聚焦超声产生的热损伤。

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摘要

An optically transparent tissue-mimicking (TM) phantom whose acoustic properties are close to those of tissue was constructed for visualizing therapeutic effects by high intensity focused ultrasound (HIFU). The TM phantom was designed to improve a widely used standard bovine serum albumin (BSA) polyacrylamide hydrogel (PAG), which attenuated ultrasound far less than tissue and, unlike tissue, did not scatter ultrasound. A modified recipe has been proposed in the study by adding scattering glass beads with diameters of 40-80 μm (0.002% w/v) and by raising the concentration of acrylamide (30% v/v). The TM BSA-PAG constructed has an acoustic impedance of 1.67 MRayls, a speed of sound of 1576 m/s, an attenuation coefficient of 0.52 dB/cm at 1 MHz, a backscattering coefficient of 0.242 × 10-3 1/sr/cm at 1 MHz and a nonlinear parameter (B/A) of 5.7. These parameters are close to those of liver. The thermal and optical properties are almost the same as the standard BSA-PAG. The characteristic features of the thermal lesions by HIFU were observed to be more accurately visualized in the TM BSA-PAG than in the standard BSA-PAG. In conclusion, the proposed TM BSA-PAG acoustically mimics tissue better than the standard BSA-PAG and is expected to be preferentially used for assuring if a clinical HIFU device produces the thermal lesion as planned.
机译:为了使高强度聚焦超声(HIFU)的治疗效果可视化,构造了一种光学透明的组织模仿(TM)体模,其声学特性接近组织的声学特性。 TM体模旨在改善广泛使用的标准牛血清白蛋白(BSA)聚丙烯酰胺水凝胶(PAG),该技术对超声的衰减远小于组织,并且与组织不同,它不会散射超声。通过添加直径为40-80μm(0.002%w / v)的散射玻璃珠并提高丙烯酰胺的浓度(30%v / v),研究中提出了一种改进的配方。构造的TM BSA-PAG的声阻抗为1.67 MRayls,声速为1576 m / s,在1 MHz时的衰减系数为0.52 dB / cm,后向散射系数为0.242×10-3 1 / sr / cm 1 MHz时的非线性参数(B / A)为5.7。这些参数接近于肝脏。热学和光学性质与标准BSA-PAG几乎相同。与标准的BSA-PAG相比,在TM BSA-PAG中可以更准确地看到HIFU造成的热损伤的特征。总之,拟议的TM BSA-PAG在声学上比标准BSA-PAG更好地模仿组织,并且有望优先用于确保临床HIFU设备是否按计划产生了热损伤。

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