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Composed vibration pulses for ultrasound vibrometry

机译:用于超声振动测定的组合振动脉冲

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Composed vibration pulses are developed to generate ultrasound radiation force for stimulating vibrations in a tissue region with preferred spectral distributions and increasing specific vibration harmonics when the peak radiation power is limited. The new vibration sequence has multiple pulses in one fundamental period of the vibration. The pulses are sparsely sampled from an orthogonal frequency wave composed of several sinusoidal signals. The phase and amplitude of each sinusoidal signal are adjusted to control the shape of the orthogonal frequency wave. Amplitude of the sinusoidal signal is increased as its frequency increases to compensate for higher loss at higher frequency in the tissue region. The new vibration pulses and detection pulses can be interleaved for array transducer applications. The new method is evaluated by studying the shear wave propagation in a chicken liver, in vitro. The experimental results show that the new vibration pulses significantly increase induced tissue vibration with the same peak ultrasound intensity, compared with the binary vibration pulses. The experimental results also show that both pulse amplitude modulation (PAM) and width modulation (PWM) can be implemented in applications.
机译:开发了组合的振动脉冲,以产生超声辐射力,以在具有最佳频谱分布的情况下刺激组织区域中的振动,并在限制峰值辐射功率时增加特定的振动谐波。新的振动序列在振动的一个基本周期中具有多个脉冲。从由几个正弦信号组成的正交频率波中稀疏地采样脉冲。调节每个正弦信号的相位和幅度,以控制正交频率波的形状。正弦信号的振幅随其频率的增加而增加,以补偿组织区域中较高频率下的较高损耗。新的振动脉冲和检测脉冲可以交织以用于阵列换能器应用。通过研究剪切波在鸡肝中的体外传播对新方法进行了评估。实验结果表明,与二元振动脉冲相比,在相同的峰值超声强度下,新的振动脉冲显着增加了诱导的组织振动。实验结果还表明,脉冲幅度调制(PAM)和宽度调制(PWM)均可在应用中实现。

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