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Theoretical study of multispectral structured illumination for depth resolved imaging of non-stationary objects: focus on retinal imaging

机译:非平稳物体深度分辨成像的多光谱结构照明的理论研究:专注于视网膜成像

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Current implementations of structured illumination microscopy for depth-resolved (three-dimensional) imaging have limitations that restrict its use; specifically, they are not applicable to non-stationary objects imaged with relatively poor condenser optics and in non-fluorescent mode. This includes in-vivo retinal imaging. A novel implementation of structured illumination microscopy is presented that overcomes these issues. A three-wavelength illumination technique is used to obtain the three sub-images required for structured illumination simultaneously rather than sequentially, enabling use on non-stationary objects. An illumination method is presented that produces an incoherent pattern through interference, bypassing the limitations imposed by the aberrations of the condenser lens and thus enabling axial sectioning in non-fluorescent imaging. The application to retinal imaging can lead to a device with similar sectioning capabilities to confocal microscopy without the optical complexity (and cost) required for scanning systems.
机译:用于深度分辨(三维)成像的结构化照明显微镜的当前实现存在限制其使用的局限性。特别是,它们不适用于以相对较差的聚光镜和非荧光模式成像的静止物体。这包括体内视网膜成像。提出了克服这些问题的结构化照明显微镜的新颖实现。三波长照明技术用于同时(而不是顺序)获取结构化照明所需的三个子图像,从而可以在非静止物体上使用。提出了一种照明方法,该方法通过干涉产生不连贯的图案,绕过了聚光镜的像差所施加的限制,从而实现了非荧光成像中的轴向切片。视网膜成像的应用可以使设备具有与共聚焦显微镜类似的切片能力,而无需扫描系统所需的光学复杂性(和成本)。

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