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Non-equilibrium plasma jet induced thermo-acoustic resistivity imaging for higher contrast and resolution

机译:非平衡等离子体射流诱导的热声电阻率成像可获得更高的对比度和分辨率

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摘要

A thermo-acoustic imaging modality induced by non-equilibrium atmospheric pressure plasma jet is reported. A tiny plasma jet is generated by a fast-rising pulsed dielectric barrier discharge and applied to the surface of the biological tissues. The pulsed conductive current induced by the conductive plasma jet is injected into the biological tissues. The Joule heating inside the tissue stimulates the ultrasound signals effectively. The amplitude of the ultrasound is related to the resistivity of the biological tissues near the contact point and takes the maximum at the certain conductivity of the certain frequency. Accordingly the thermo-acoustic resistivity imaging modality of high contrast and resolution is demonstrated theoretically and experimentally.
机译:报道了由非平衡大气压等离子体射流引起的热声成像方式。通过快速上升的脉冲介电势垒放电产生微小的等离子流,并将其施加到生物组织的表面。由导电等离子体射流感应的脉冲导电电流被注入生物组织。组织内部的焦耳热可有效刺激超声信号。超声波的振幅与接触点附近的生物组织的电阻率有关,并在特定频率的特定电导率下达到最大值。因此,理论和实验证明了高对比度和分辨率的热声电阻率成像方式。

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