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Experimental characterization of fundamental and second harmonic beams for a high-frequency ultrasound transducer.

机译:高频超声换能器的基波和二次谐波光束的实验表征。

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In the diagnostic frequency range, nonlinear imaging has been shown to improve image contrast and decrease artefacts. The extension of these techniques to high-frequency imaging (>15 MHz) was investigated. The second harmonic beam at 40 MHz of a high-frequency focused transducer (aperture 6 mm, focal distance 10 mm, f-number 1.67) was measured experimentally in water, in transmission and pulse-echo, and compared with the fundamental beams at 20 MHz and 40 MHz. Measurements were performed at peak negative pressures of 0.8 to 4.7 MPa. Transmission measurements were performed with a custom hydrophone with a 25-&mgr;m spot size to limit beam averaging. Over the range of peak negative pressures, the transmitted harmonic (40 MHz) beam had an average lateral beam width (-3 dB) of 77 &mgr;m and an average depth-of-field of 0.93 mm, whereas the fundamental beam had a corresponding beam width of 137 &mgr;m and a depth-of-field of 1.59 mm. The harmonic beam showed a 3-dB decrease in side lobe levels. Preliminary second harmonic images of mouse tissue in vitro are presented and compared to fundamental imaging at 20 and 40 MHz. (E-mail: emmanuel.cherin
机译:在诊断频率范围内,非线性成像已被证明可以改善图像对比度并减少伪影。研究了这些技术对高频成像(> 15 MHz)的扩展。在水中,传输和脉冲回波中,通过实验测量了高频聚焦换能器(孔径为6 mm,焦距为10 mm,f值为1.67)在40 MHz时的二次谐波光束,并将其与20 MHz和40 MHz。在0.8至4.7MPa的峰值负压下进行测量。传输测量是使用定制水听器进行的,该水听器的光斑大小为25μm以限制波束平均。在峰值负压范围内,透射谐波(40 MHz)光束的平均横向光束宽度(-3 dB)为77μm,平均景深为0.93 mm,而基本光束的横向光束宽度为相应的光束宽度为137μm,景深为1.59 mm。谐波束旁瓣电平降低了3 dB。介绍了小鼠组织的初步二次谐波图像,并将其与20和40 MHz的基本成像进行了比较。 (电子邮件:emmanuel.cherin

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