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Fundamental study on near-axis scattered light and its application to optical computed tomography [Review]

机译:近轴散射光的基础研究及其在光学计算机体层摄影中的应用[综述]

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摘要

To find a basic principle of optical computed tomography (optical CT), a fundamental study was conducted on the use of scattered light in diffuse random media. We call the scattered light that propagates along the optical axis of the incident light beam near-axis scattered light (NASL). The use of NASL for the imaging through a diffuse medium was proposed and its basic characteristics were analyzed. The existence and measurability of NASL were confirmed in the simulation and measurement. To detect NASL efficiently, a technique called the scattering angle differential technique was developed. In CT imaging with a model phantom, the feasibility and effectiveness of the proposed technique were verified. We found that this technique alone was not sufficient to obtain the cross sectional image of an animal body, therefore a technique called the contact technique was devised to overcome the problems of reflection and refraction at the air-tissue interface. Finally, a prototype system was developed which integrated all the proposed techniques. With this system, we could obtain the CT images of a living mouse, in which the blood-rich organs such as liver and kidneys were clearly recognizable. [References: 16]
机译:为了找到光学计算机断层扫描(光学CT)的基本原理,对散射光在漫射随机介质中的使用进行了基础研究。我们将沿着入射光束的光轴传播的散射光称为近轴散射光(NASL)。提出了将NASL用于通过弥散介质成像的方法,并分析了其基本特性。在仿真和测量中证实了NASL的存在和可测量性。为了有效地检测NASL,开发了一种称为散射角微分技术的技术。在带有模型体模的CT成像中,验证了该技术的可行性和有效性。我们发现仅这种技术不足以获取动物体的横截面图像,因此设计了一种称为接触技术的技术来克服在空气-组织界面处的反射和折射问题。最后,开发了一个原型系统,该系统集成了所有提议的技术。有了这个系统,我们可以获得活着的老鼠的CT图像,其中可以清楚地识别出血液丰富的器官,例如肝脏和肾脏。 [参考:16]

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