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Generation of wide-directivity broadband ultrasound by short laser pulses

机译:通过短激光脉冲产生宽方向宽带超声波

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A three-dimensional mouse imaging system combining optoacoustic tomography and laser ultrasound (LOUIS-3DM) has been developed. It features broadband laser ultrasound emitters positioned opposite an array of transducers. This imaging geometry allows reconstruction of images that either depicts the speed of sound distribution from measured time of flight data, or acoustic attenuation from the measured signal amplitude. We have investigated the performance of two laser ultrasound source designs, both easily adaptable to a commercial imaging system: small diameter source (600 μm) generated off a flat surface, and larger diameter (3 mm) spherical source. Laser energy requirements are modest, well below 1 mJ per pulse for either design. Their performance at normal incidence is comparable both in amplitude and frequency response. However, off-axis generation differs dramatically and the shortcomings of the simple flat emitter design are evident. We show that, in order to achieve optimal performance through proper illumination of the detector array, spherical wave front characteristics are desired.
机译:已经开发了一种三维鼠标成像系统,形成了光声断层扫描和激光超声(Louis-3DM)。它具有宽带激光超声发射器,位于换能器阵列相对。该成像几何形状允许重建描绘从测量的飞行数据的声音分布的速度,或者从测量的信号幅度的声学衰减。我们研究了两个激光超声源设计的性能,既容易适应商业成像系统:从平坦表面上产生的小直径源(600μm),较大直径(3mm)球形源。激光能量需求适度,远低于1 MJ的设计,可为设计。它们在正常入射时的性能在幅度和频率响应中具有可比性。然而,轴外产生急剧地不同,简单的平坦发射器设计的缺点是显而易见的。我们表明,为了通过适当照明检测器阵列来实现最佳性能,需要球形波前方特性。

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