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Ultrasound-modulated optical tomography of absorbing objects buried in dense tissue-simulating turbid media

机译:超声调制光学层析成像技术,用于吸收被掩埋在模拟组织的浑浊介质中的物体

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Continuous-wave ultrasonic modulation of scattered laser light was used to image objects buried in tissue-simulating turbid media. The buried object had an absorption coefficient greater than the background turbid medium. The ultrasonic wave that was focused into the turbid media modulated the laser light that passed through the ultrasonic field. The modulated laser light that was collected by a photomultiplier tube reflected the local mechanical and optical properties in the zone of ultrasonic modulation. Objects buried in the middle plane of 5-cm-thick dense turbid media were imaged with millimeter resolution through the scanning and detecting alterations of the ultrasound-modulated optical signal. The optical properties of the dense turbid media included an absorption coefficient of 9.1 cm-l and a reduced scattering coefficient of 10 cm(-1) and were comparable with those of biological tissues in the visible and near-IR ranges. The dependence of the ultrasound-modulated optical signal on the off-axis distance of the detector from the optic axis and the area-of the detector was studied as well. (C) 1997 Optical Society of America.
机译:散射激光的连续波超声调制用于成像掩埋在组织模拟混浊介质中的物体。掩埋物体的吸收系数大于背景混浊介质。聚焦到混浊介质中的超声波调制了通过超声场的激光。由光电倍增管收集的调制激光反射了超声调制区域中的局部机械和光学特性。通过扫描和检测超声调制的光信号的变化,以毫米为分辨率对埋在5厘米厚的致密混浊介质中间平面中的物体成像。致密混浊介质的光学特性包括9.1 cm-1的吸收系数和10 cm(-1)的降低的散射系数,在可见光和近红外范围内可与生物组织的光学性能相比。还研究了超声调制的光信号对探测器离光轴的离轴距离和探测器面积的依赖性。 (C)1997年美国眼镜学会。

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