首页> 外文会议>2016 International Conference on Optoelectronics and Image Processing >The analysis of tissue temperature rise caused by linear array transducers with Program Spheresum
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The analysis of tissue temperature rise caused by linear array transducers with Program Spheresum

机译:用Program Spheresum分析线性阵列换能器引起的组织温升

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Diagnostic ultrasounds transmit sound waves into the body, and thus reveal important information about it. Because the transmitted sound waves cause tissue heating, diagnostic ultrasounds can produce adverse biologic effects in tissue, namely, thermal bioeffect. Both tissue characters and ultrasound parameters affect the amount of temperature rise on the tissue. Program Spheresum [1] gives the temperature rise on the tissue scanned by a diagnostic ultrasound. This study compares tissue temperature rise due to linear array transducers with different parameters by using Spheresum. The results show that the maximum temperature rise is generally near the source surface in the linear array transducer application with high frequency for different focal points. Especially in tissue with a high absorption coefficient and for the linear array transducer with high frequency, tissue temperature rise near the source surface should be considered as the image resolution.
机译:诊断超声波将声波传送到体内,从而揭示有关该信息的重要信息。由于传输的声波会引起组织发热,因此超声诊断会在组织中产生不利的生物效应,即热生物效应。组织特征和超声参数都会影响组织上的温度升高量。程序Spheresum [1]给出通过诊断超声扫描的组织的温度升高。这项研究通过使用Spheresum比较了具有不同参数的线性阵列换能器引起的组织温度升高。结果表明,在线性阵列换能器应用中,对于不同的焦点,最大温度升高通常在源表面附近,且频率较高。尤其是在具有高吸收系数的组织中以及对于高频的线性阵列换能器,应将源表面附近的组织温度升高视为图像分辨率。

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