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Fundamental imaging properties of transillumination laser CT using optical fiber applicable to bio-medical sensing

机译:适用于生物医学传感的光纤透照激光CT的基本成像特性

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摘要

We proposed and developed a novel transillumination laser CT imaging system, using optical fibers, based on the optical heterodyne detection method for biomedical use. The use of optical fibers enables portability and robustness against environmental changes such as varying temperature, air-flow shifts, and unexpected vibrations. In addition, motion-artifact-free images can be obtained with the present system as measurements can be performed with the object fixed. We experimentally investigate in detail the fundamental imaging properties of the system, that has a spatial resolution of 500 Μm, a dynamic range of approximately 110 dB, and a minimum-detectable-optical power of 10-14 W as a result of the excellent properties of the heterodyne detection. Based on experimental observations, the proposed system can reconstruct tomographic images of highly scattering objects in the transillumination mode, similar to X-ray CT, at sub-millimeter spatial resolution and can derive quantitative information from the images. Finally, we experimentally demonstrate the first in-situ tomographic images of plants using the fiber-optic-based laser CT system.
机译:我们提出并开发了一种新颖的透照激光CT成像系统,该技术基于光纤,用于生物医学用途的光学外差检测方法。光纤的使用使便携性和耐用性得以抵抗环境变化,例如温度变化,气流变化和意外振动。另外,由于可以在固定物体的情况下进行测量,因此可以通过本系统获得无运动伪像的图像。我们通过实验详细研究了系统的基本成像特性,由于其出色的特性,其空间分辨率为500μm,动态范围约为110 dB,最小可检测光功率为10-14 W外差检测。基于实验观察,该系统可以在透射模式下重建高散射物体的断层图像,类似于X射线CT,其分辨率为亚毫米级,并且可以从图像中获取定量信息。最后,我们通过实验证明了使用基于光纤的激光CT系统对植物进行的第一个原位层析成像。

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