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Dual frequency array transducer for ultrasonic-enhanced transcranial thrombolysis

机译:用于超声增强型经颅溶栓的双频阵列换能器

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It is known that ultrasound can enhance thrombolysis with tissue plasminogen activator (tPA). A blood flow monitoring is required for an optimum control of the tPA injection and the therapeutic sonication. In order to transmit ultrasonic waves at two frequencies for imaging and therapy from the same aperture, we propose a probe consisting of a therapeutic array with an imaging array overlaid on it. Between these two arrays, a frequency selective isolation layer was inserted to ensure independent oscillatory motions of the two arrays. The function of this layer is expected to reflect the waves from the imaging array and allow the waves from the therapeutic array to pass through. Numerical simulation was performed using a finite element code, PZFlex. In this model, the imaging and therapeutic array used PZT ceramic with a center frequency of 2 MHz and 500 kHz, respectively. An epoxy resin isolation layer with 50 micro-meters reduced the amplitude of the unwanted response at 2 MHz by 13 dB, while it reduced the amplitude of the therapeutic waves at 500 kHz only by 2 dB.
机译:众所周知,超声可以通过组织纤溶酶原激活剂(tPA)增强溶栓作用。需要血流监测以最佳控制tPA注射和治疗性超声。为了从同一孔径以两个频率传输超声波以进行成像和治疗,我们提出了一种探头,该探头由覆盖有成像阵列的治疗阵列组成。在这两个阵列之间,插入了一个频率选择隔离层,以确保两个阵列的独立振荡运动。预期该层的功能将反射来自成像阵列的波并允许来自治疗阵列的波通过。使用有限元代码PZFlex进行了数值模拟。在此模型中,成像和治疗阵列分别使用中心频率为2 MHz和500 kHz的PZT陶瓷。 50微米的环氧树脂隔离层可将2 MHz处的不良响应幅度降低13 dB,而将500 kHz处的治疗波幅度仅降低2 dB。

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