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首页> 外文期刊>Applied optics >Backward-mode multiwavelength photoacoustic scanner using a planar Fabry-Perot polymer film ultrasound sensor for high-resolution three-dimensional imaging of biological tissues
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Backward-mode multiwavelength photoacoustic scanner using a planar Fabry-Perot polymer film ultrasound sensor for high-resolution three-dimensional imaging of biological tissues

机译:使用平面Fabry-Perot聚合物膜超声传感器的后向模式多波长光声扫描仪,用于生物组织的高分辨率三维成像

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摘要

A multiwavelength backward-mode planar photoacoustic scanner for 3D imaging of soft tissues to depths of several millimeters with a spatial resolution in the tens to hundreds of micrometers range is described. The system comprises a tunable optical parametric oscillator laser system that provides nanosecond laser pulses between 600 and 1200 nm for generating the photoacoustic signals and an optical ultrasound mapping system based upon a Fabry-Perot polymer film sensor for detecting them. The system enables photoacoustic signals to be mapped in 2D over a 50 mm diameter aperture in steps of 10 (mu)m with an optically defined element size of 64 (mu)m. Two sensors were used, one with a 22 (mu)m thick polymer film spacer and the other with a 38 (mu)m thick spacer providing -3 dB acoustic bandwidths of 39 and 22 MHz, respectively. The measured noise equivalent pressure of the 38 (mu)m sensor was 0.21 kPa over a 20 MHz measurement bandwidth. The instrument line-spread function (LSF) was measured as a function of position and the minimum lateral and vertical LSFs found to be 38 and 15 (mu)m, respectively. To demonstrate the ability of the system to provide high-resolution 3D images, a range of absorbing objects were imaged. Among these was a blood vessel phantom that comprised a network of blood filled tubes of diameters ranging from 62 to 300 (mu)m immersed in an optically scattering liquid. In addition, to demonstrate the applicability of the system to spectroscopic imaging, a phantom comprising tubes filled with dyes of different spectral characteristics was imaged at a range of wavelengths. It is considered that this type of instrument may provide a practicable alternative to piezoelectric-based photoacoustic systems for high-resolution structural and functional imaging of the skin microvasculature and other superficial structures.
机译:描述了一种多波长向后模式平面光声扫描仪,用于对软组织进行3D成像,深度达到几毫米,空间分辨率在几十到几百微米的范围内。该系统包括可调谐光学参量振荡器激光系统,该系统提供600至1200 nm之间的纳秒激光脉冲以生成光声信号,以及基于Fabry-Perot聚合物薄膜传感器的光学超声测绘系统,用于检测光声信号。该系统使光声信号能够以10μm的步长在直径为50 mm的孔径上以2D映射,光学定义的元件尺寸为64μm。使用了两个传感器,一个带有22μm厚的聚合物膜隔离物,另一个带有38μm厚的隔离物,分别提供了-3dB的39和22MHz的声带宽。在20 MHz的测量带宽上,测得的38μm传感器的噪声等效压力为0.21 kPa。测量仪器的线扩展函数(LSF)作为位置的函数,最小横向和纵向LSF分别为38和15μm。为了演示系统提供高分辨率3D图像的能力,对一系列吸收对象进行了成像。其中之一是血管模型,其包括浸入光散射液体中的直径为62至300μm的充满血液的管网。另外,为了证明该系统对光谱成像的适用性,在一个波长范围内对包括装有不同光谱特性的染料的试管的体模成像。人们认为,这种类型的仪器可以为基于压电的光声系统提供实用的替代方法,用于对皮肤微脉管系统和其他浅表结构进行高分辨率的结构和功能成像。

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