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Mechanisms of attenuation and heating dissipation of ultrasound in the skull bone: Comparison between simulation models and experiments

机译:头骨中超声的衰减和散热机制:仿真模型与实验的比较

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Ultrasonic transmission measurements show that the ultrasound beam undergoes significant attenuation while propagating through the skull sample with values ranging from −12.6±1.33 dB. Simulations results indicate that scattering and mode conversion are responsible for the majority of the total acoustic attenuation (−11.2 dB). Absorption of the skull at 1 MHz was determined to be 2 dB/cm for the compression wave and 4 dB/cm for the shear wave to match the experimental attenuation measurements. Based on this absorption value, temperature rises (up to 11.6°C) were numerically computed using the 3D thermal simulation and were in good agreement with the experimental infrared camera measurements.
机译:超声波传输测量结果表明,超声波束在穿过头骨样本传播时经历了显着的衰减,范围为-12.6±1.33 dB。仿真结果表明,散射和模式转换是总声衰减(-11.2 dB)的大部分。确定头骨在1 MHz处的吸收率对于压缩波为2 dB / cm,对于剪切波为4 dB / cm,以匹配实验衰减测量值。基于此吸收值,使用3D热模拟对温度升高(最高11.6°C)进行了数值计算,并与红外热像仪的实验测量结果非常吻合。

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