Abstract
A blood mimicking fluid (BMF) has been developed for the acoustic and thermal characterizations of high intensity focused ultrasound (HIFU) ablation devices. The BMF is based on a degassed and de-ionized water solution dispersed with low density polyethylene microspheres, nylon particles, gellan gum, and glycerol. A broad range of physical parameters, including attenuation coefficient, speed of sound, viscosity, thermal conductivity, and diffusivity, were characterized as a function of temperature (20–70°C). The nonlinear parameter B∕A and backscatter coefficient were also measured at room temperature. Importantly, the attenuation coefficient is linearly proportional to the frequency (2–8MHz) with a slope of about 0.2dBcm−1MHz−1 in the 20–70°C range as in the case of human blood. Furthermore, sound speed and bloodlike backscattering indicate the usefulness of the BMF for ultrasound flow imaging and ultrasound-guided HIFU applications. Most of the other temperature-dependent physical parameters are also close to the reported values in human blood. These properties make it a unique HIFU research tool for developing standardized exposimetry techniques, validating numerical models, and determining the safety and efficacy of HIFU ablation devices.
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CITATION STYLE
Liu, Y., Maruvada, S., King, R. L., Herman, B. A., & Wear, K. A. (2008). Development and characterization of a blood mimicking fluid for high intensity focused ultrasound. The Journal of the Acoustical Society of America, 124(3), 1803–1810. https://doi.org/10.1121/1.2956469
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