首页> 外文期刊>Transactions of the ASABE >HYPERSPECTRAL, TIME-RESOLVED, FLUORESCENCE IMAGING SYSTEM FOR LARGE SAMPLE SIZES: PART I. DEVELOPMENT OF A HIGH-ENERGY LINE-ILLUMINATION SOURCE
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HYPERSPECTRAL, TIME-RESOLVED, FLUORESCENCE IMAGING SYSTEM FOR LARGE SAMPLE SIZES: PART I. DEVELOPMENT OF A HIGH-ENERGY LINE-ILLUMINATION SOURCE

机译:用于大型样本尺寸的高光谱,时间分辨,荧光成像系统:第I部分。高能线照明源的开发

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To reduce the risk of foodborne illnesses, produce fields are visually surveyed prior to harvest for signs of fecal contamination. To improve the efficacy of surveys, a hyperspectral, line-scan, laser-induced fluorescence imaging system was developed. The goal is to incorporate the imaging system into a field-deployable apparatus to survey produce fields. The system includes a gated intensified camera, a spectral adapter, a 355 nm pulsed laser, and a Powell lens that is used to expand the laser beam into a line-illumination source. Software was developed to facilitate alignment of the Powell lens with the laser beam and the resulting line-illumination profile with the line-imaging field. Comparisons were made of uniformity and efficiency measures for regions within illumination profiles that corresponded to the camera field of view for the Powell lens and previously developed simple and homogenizing expansion optics. Spatial and temporal uniformity measures were similar for the Powell and homogenizing optics, and both were better than for simple optics; however, total efficiency was better for Powell compared to homogenizing optics at 28.5% and 3.0%, respectively. After spectral calibrations, theoretical and measured spectral peaks of five fluorescent standards were identical. Images of apples and spinach artificially contaminated with dilutions of dairy manure demonstrated high contrast. By selecting appropriate gate timing parameters, it was possible to create images in which responses from contamination sites were still evident but responses from normal surfaces were effectively extinguished. These results demonstrate that the system has potential to be used to detect sites of fecal contamination in produce fields.
机译:为了降低食源性疾病的风险,在收获粪便污染的迹象之前,在预先接受视觉调查生产领域。为了提高调查的功效,开发了高光谱,线扫描激光诱导的荧光成像系统。目标是将成像系统纳入现场部署的设备以进行调查生成字段。该系统包括栅极强化相机,光谱适配器,355nm脉冲激光器,以及用于将激光束扩展到线照明源中的鲍威透镜。开发了软件,以便于与线成像场与激光束和所得线照明轮廓对准。对应于鲍威尔透镜的照相视野的照明轮廓内的区域内的均匀性和效率措施进行了比较,并且先前开发了简单均匀的膨胀光学器件。鲍威尔和均质化光学器件相似的空间和时间均匀度措施,两者都比简单的光学更好;然而,与均质化光学器件分别为28.5%和3.0%,总效率更好。光谱校准后,五种荧光标准的理论和测量光谱峰是相同的。苹果和菠菜用稀释乳制肥料污染的苹果和菠菜呈现出高对比度。通过选择适当的栅极定时参数,可以创建图像中的图像,其中来自污染部位的响应仍然明显,但是从正常表面的反应有效地熄灭。这些结果表明,该系统具有用于检测产生领域的粪便污染的部位。

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