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Real-time, near-infrared fluorescence imaging system

机译:实时,近红外荧光成像系统

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An infrared camera captures images of objects that emit radiation in the infrared region of the electromagnetic spectrum. In this study, a fluorescence imaging system involving a specifically designed infrared camera was developed. CCDs can detect infrared light in the invisible region of the electromagnetic spectrum (>780 nm); however, a low-pass filter is installed in front of the CCD to filter out most infrared light and prevent the light from affecting the quality of color photos. Although an ordinary camera can take infrared photos when an infrared filter is installed to its lens, a modified camera is impractical because the amount of infrared light entering the CCD is limited, resulting in the requirement of a longer exposure time. Therefore, the principle of modifying a high-speed infrared camera is to remove the low-pass filter and adopt an ordinary shutter speed to take infrared photos.
机译:红外相机捕获对电磁频谱的红外区域中发射辐射的物体的图像。在该研究中,开发了涉及专门设计的红外相机的荧光成像系统。 CCD可以检测电磁光谱(> 780nm)的隐形区域中的红外光;然而,低通滤波器安装在CCD的前面,以滤除大多数红外光并防止光影响颜色照片的质量。虽然普通摄像机可以在红外线过滤器安装到其镜头时可以采用红外照片,但是改进的相机是不切实际的,因为进入CCD的红外光线是有限的,导致更长的曝光时间的要求。因此,修改高速红外相机的原理是去除低通滤波器,采用普通快门速度拍摄红外照片。

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