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首页> 外文期刊>Biophysics >Thermoelastic excitation of acoustic waves in biological models exposed to high-peak-power pulsed electromagnetic radiation of extremely high frequency
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Thermoelastic excitation of acoustic waves in biological models exposed to high-peak-power pulsed electromagnetic radiation of extremely high frequency

机译:暴露于极高频率的高峰值功率脉冲电磁辐射下的生物模型中声波的热弹性激发

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摘要

We experimentally demonstrated for the first time that high-peak-power pulsed electromagnetic radiation of extremely high frequency (35.27 GHz; pulse widths, 100 and 600 ns; peak power, 20 kW) is capable of thermoelastic excitation of acoustic waves in model water-containing objects and muscle tissue of animals. The amplitude and duration of excited acoustic pulses are within the limits of accuracy of theoretical estimates and are a complex nonlinear function of electromagnetic energy input. The propagation velocities of acoustic pulses in water-gelatin models and isolated muscle tissue of animals are close to reference data. The excitation of acoustic waves in biological systems exposed to high-peak-power pulsed microwaves is an important phenomenon that makes an essential contribution to understanding the mechanisms of biological effects in these electromagnetic fields.
机译:我们首次通过实验证明,极高频率(35.27 GHz;脉冲宽度分别为100和600 ns;峰值功率为20 kW)的高峰值功率脉冲电磁辐射能够在模型水中对声波进行热弹性激发。包含动物的物体和肌肉组织。激发声脉冲的幅度和持续时间在理论估计值的精度范围内,并且是电磁能量输入的复杂非线性函数。水-明胶模型和动物离体的肌肉组织中声脉冲的传播速度接近参考数据。暴露于高峰值功率脉冲微波的生物系统中声波的激发是一种重要现象,对理解这些电磁场中生物效应的机理做出了重要贡献。

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