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Design and characterization of a highly directional photoacoustic sensor probe

机译:高度定向光声传感器探头的设计与表征

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We present design and comprehensive characterization of a versatile, small-scale photoacoustic sensor stick. Due to its optimized forward-looking directional characteristic, it is a valuable tool for spatially resolved PA depth scanning and 3D imaging. The pencil-formed, optical fiber-coupled sensor has a diameter of only 6 mm, with a length of 15 cm. For characterization of its fundamental parameters, we applied a pulsed frequency-doubled Nd:YAG laser (532 nm) with a pulse repetition rate of 10 Hz. Different designs of the sensor tip are compared. We present a full characterization of the qualities of the system as imaging tool, i.e. lateral and depth resolution in dependence on light absorption and scattering properties of the samples as well as of the surrounding matrix. Specially tailored phantoms are introduced for these experiments. The phantoms in combination with a xy-scanning stage are applied to produce 2D and 3D images with the sensor. The imaging properties of the endoscope are explored by several methods of characterization. We test the sensitivity to absorbing structures of different size and absorptivity, which can be summarized as contrast. Finally, we present first tomographic images of tissue phantoms resembling the optical properties of human tissue.
机译:我们呈现了多功能,小型光声传感器棒的设计和全面表征。由于其优化的前瞻性方向特性,它是空间解决PA深度扫描和3D成像的宝贵工具。铅笔形成的光纤耦合传感器的直径仅为6毫米,长度为15厘米。为了表征其基本参数,我们施加了一种脉冲频率加倍的Nd:YAG激光器(532nm),脉冲重复率为10 Hz。比较传感器尖端的不同设计。我们完全表征了系统的质量作为成像工具,即横向和深度分辨率,其依赖于样品的光吸收和散射特性以及周围基质。为这些实验介绍了专门定制的幽灵。将幻像与XY扫描阶段组合使用以产生与传感器的2D和3D图像。通过几种表征方法探索内窥镜的成像性质。我们测试对吸收不同大小和吸收率的结构的敏感性,可以总结为对比度。最后,我们介绍了类似于人组织的光学性质的组织幻影的第一断层图像。

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