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Evaluation of tissue mimicking quality of tofu for biomedical ultrasound. | LitMetric

AI Article Synopsis

  • The study evaluated the acoustic properties of tofu to assess its potential as a tissue mimic, focusing on a frequency range from 2 MHz to 18 MHz.
  • Tofu showed density and acoustic velocity similar to soft tissue but exhibited nonlinear attenuation that increased with frequency, impacting temperature rise during ultrasound use.
  • The results indicate that tofu is suitable for use only in a low MHz range due to the limited penetration depth and temperature rise associated with its acoustic properties.

Article Abstract

The tissue mimicking quality of tofu has been evaluated in terms of acoustic properties and acousto/thermal conversion as functions of frequency and diffraction corrected intensity over the 2 MHz to 18 MHz range using three unfocussed transducers with center frequencies of 5 MHz, 10 MHz and 15 MHz. The density and acoustic velocity were close to the American Institute of Ultrasound in Medicine (AIUM) recommended values for the soft tissue, however, the attenuation increases nonlinearly with frequency as alpha = 0.56 x f(1.3). As a result, the temperature rise in tofu due to ultrasound absorption is expressed by the product of the acousto/thermal conversion factor and the attenuation/diffraction corrected acoustic intensity. The decrease of temperature rise with depth measured by embedded thermocouples agrees with the theoretical exponential decrease of the attenuation/diffraction corrected acoustic intensity. The heat capacity per unit mass of tofu is 0.76 cal/g degrees C (equivalent to 3.18 J/g degrees C) of which about 76% is water. The nonlinear frequency dependence of attenuation in tofu as f(1.3) correctly describes the frequency dependence of temperature rise. The present results suggest that tofu may only be used in a limited low MHz range in view of the estimation of temperature rise and penetration depth due to nonlinear frequency dependence of attenuation.

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Source
http://dx.doi.org/10.1016/j.ultrasmedbio.2008.09.005DOI Listing

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