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首页> 外文期刊>Journal of materials science >Full Experimental Modelling Of A Liver Tissue Mimicking Phantom For Medical Ultrasound Studies Employing Different Hydrogels
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Full Experimental Modelling Of A Liver Tissue Mimicking Phantom For Medical Ultrasound Studies Employing Different Hydrogels

机译:使用不同水凝胶的医学超声研究肝脏组织模拟体的完整实验模型

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Tissue mimicking phantoms have been widely reported to be an important tool for development, optimisation and performance testing of ultrasound-based diagnostic techniques. In particular, modern applications of tissue mimicking phantoms often include characterisation of the nonlinear behaviour of experimental ultrasound contrast agents. In such cases, the tissue-mimicking materials should be chosen not only based on the values of their density, speed of sound and attenuation coefficient, but also considering their effect on the appearance of "native harmonics" due to nonlinear distortion of ultrasound signal during propagation. In a previous paper it was demonstrated that a cellulose-based hydrogel is suitable to simulate nonlinear acoustical behaviour of liver tissue for thicknesses up to 8 cm. In this paper we present the experimental characterisation of the nonlinear acoustical behaviour of a different polyethylene glycol diacrylate (PEGDA)-based hydrogel, in order to assess whether and how it can improve the performances and overcome some limitations of the cellulose-based hydrogel as liver tissue-mimicking material. Samples of pig liver tissue, cellulose-based hydrogel and PEGDA-based hydro-gel were insonified in a through-transmission set-up, employing 2.25-MHz pulses with different mechanical index (MI) values. Second harmonic and first harmonic amplitudes were extracted from the spectra of received signals and their difference was then used to compare sample behaviours. Obtained results show how a new more accurate and combined experimental model of linear and nonlinear acoustical behaviour of liver tissue is feasible. In fact, a further confirmation of the cellulose-based hydrogel effectiveness to precisely simulate the liver tissue for penetration depths up to 8 cm was provided, and it was also shown that the employment of the PEGDA-based hydrogel can extend the range of useful tissue-mimicking material thicknesses up to 11 cm, moreover allowing a considerable improvement of the time stability and behaviour reliability of the corresponding manufactured phantoms.
机译:组织模仿体模已被广泛报道为基于超声的诊断技术的开发,优化和性能测试的重要工具。特别地,组织模仿体模的现代应用通常包括表征实验超声造影剂的非线性行为。在这种情况下,不仅应根据组织密度,声音速度和衰减系数的值来选择组织模拟材料,还应考虑由于超声信号的非线性失真而对“本征谐波”的出现产生的影响。传播。在以前的论文中,已证明纤维素基水凝胶适用于模拟厚度达8 cm的肝组织的非线性声学行为。在本文中,我们介绍了另一种基于聚乙二醇二丙烯酸酯(PEGDA)的水凝胶的非线性声学行为的实验表征,以评估其是否以及如何改善其性能并克服作为肝脏的纤维素基水凝胶的某些局限性模拟组织的材料。猪肝组织,基于纤维素的水凝胶和基于PEGDA的水凝胶的样品通过具有不同机械指数(MI)值的2.25 MHz脉冲以直通设置进行声处理。从接收信号的频谱中提取二次谐波和一次谐波幅度,然后将它们的差值用于比较样本行为。所得结果表明,新的更准确和组合的肝组织线性和非线性声学行为实验模型是可行的。实际上,进一步证实了基于纤维素的水凝胶可精确模拟肝组织穿透深度达8 cm的有效性,并且还表明使用基于PEGDA的水凝胶可扩展有用组织的范围-模仿材料的厚度达到11厘米,此外,相应的制造体模的时间稳定性和行为可靠性得到了显着改善。

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