Rabell-Montiel Adela, Thomson Adrian J, Anderson Tom A, Pye Stephen D, Moran Carmel M
Centre for Cardiovascular Science, University of Edinburgh, Edinburgh, United Kingdom.
Centre for Cardiovascular Science, University of Edinburgh, Edinburgh, United Kingdom.
Ultrasound Med Biol. 2018 Mar;44(3):702-713. doi: 10.1016/j.ultrasmedbio.2017.11.003. Epub 2017 Dec 23.
Quality assurance phantoms are made of tissue-mimicking materials (TMMs) the acoustic properties of which mimic those of soft tissue. However, the acoustic properties of many soft tissue types have not been measured at ultrasonic frequencies >9 MHz. With the increasing use of high-frequency ultrasound for both clinical and pre-clinical applications, it is of increasing interest to ensure that TMMs accurately reflect the acoustic properties of soft tissue at these higher frequencies. In this study, the acoustic properties of ex vivo brain, liver and kidney samples from 50 mice were assessed in the frequency range 12-32 MHz. Measurements were performed within 6 min of euthanasia in a phosphate-buffered saline solution maintained at 37.2 ± 0.2 °C. The measured mean values for the speed of sound for all organs were found to be higher than the International Electrotechnical Commission guideline recommended value for TMMs. The attenuation coefficients measured for brain, liver and kidney samples were compared with the results of previous studies at lower frequencies. Only the measured kidney attenuation coefficient was found to be in good agreement with the International Electrotechnical Commission guideline. The information provided in this study can be used as a baseline on which to manufacture a TMM suitable for high-frequency applications.
质量保证体模由组织模拟材料(TMMs)制成,其声学特性模拟软组织的声学特性。然而,许多软组织类型的声学特性尚未在高于9MHz的超声频率下进行测量。随着高频超声在临床和临床前应用中的使用越来越多,确保TMMs在这些更高频率下准确反映软组织的声学特性变得越来越重要。在本研究中,对来自50只小鼠的离体脑、肝和肾样本在12-32MHz频率范围内的声学特性进行了评估。在安乐死后6分钟内,在保持在37.2±0.2°C的磷酸盐缓冲盐溶液中进行测量。发现所有器官的测量声速平均值高于国际电工委员会(International Electrotechnical Commission)对TMMs推荐的指导值。将脑、肝和肾样本测量的衰减系数与先前较低频率研究的结果进行了比较。仅发现测量的肾衰减系数与国际电工委员会的指导方针高度一致。本研究提供的信息可作为制造适用于高频应用的TMM的基线。