首页> 外文会议>Conference on Biomedical Optoacoustics Ⅲ Jan 20-21, 2002 San Jose, USA >Detection of Optoacoustic Transients with a Rectangular Transducer of Finite Dimension
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Detection of Optoacoustic Transients with a Rectangular Transducer of Finite Dimension

机译:用有限尺寸的矩形传感器检测光声瞬变

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Laser optoacoustic tomography system (LOIS) for breast cancer detection and diagnostics utilizes optical generation of acoustic pressure profiles in tumors and piezoelectric detection of these pressure transients within an ultra-wideband of ultrasonic frequencies. Temporal profile of optoacoustic pulses provides information on tumor dimensions and its location inside the breast. A finite spatial dimension of receiving transducers results in distortions of the optoacoustic profile and corresponding reduction of the resolution in LOIS. The impulse response approach for calculation of the pulse profiles originated from a uniformly absorbing sphere and detected with a rectangular transducer was employed. The pressure profiles were expressed as convolution integrals of velocity-potential distribution over the transducer surface with the corresponding impulse response function. The impulse response function was evaluated for different locations of optoacoustic sources with respect to the receiving transducer. Numerical simulations were performed for acoustic transducers with dimensions of 1x10 mm and located on the cylindrical surface with radius of 60-mm. Results demonstrated that detected N-shaped pressure profiles become smoother and their duration increases with increased linear dimensions of the transducer. This effect depends on relative position of the spherical acoustic source and the detector.
机译:用于乳腺癌检测和诊断的激光光声层析成像系统(LOIS)利用光学方法产生肿瘤中的声压分布图,并在超宽带超声频率内对这些压力瞬变进行压电检测。光声脉冲的时间分布可提供有关肿瘤尺寸及其在乳房内位置的信息。接收换能器的有限空间尺寸会导致光声轮廓失真,并相应降低LOIS的分辨率。脉冲响应方法用于计算脉冲轮廓,该脉冲轮廓源自均匀吸收的球体,并使用矩形换能器进行检测。压力曲线表示为换能器表面速度势分布的卷积积分,具有相应的脉冲响应函数。针对光声源相对于接收换能器的不同位置,评估了脉冲响应函数。对尺寸为1x10 mm并位于半径为60 mm的圆柱表面上的声换能器进行了数值模拟。结果表明,检测到的N形压力曲线变得更平滑,并且其持续时间随着换能器线性尺寸的增加而增加。该效果取决于球形声源和检测器的相对位置。

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