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Design of smartphone-based spectrometer to assess fresh meat color

机译:基于智能手机的光谱仪评估鲜肉颜色的设计

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Based on its integrated camera, new optical attachment, and inherent computing power, we propose an instrument design and validation that can potentially provide an objective and accurate method to determine surface meat color change and myoglobin redox forms using a smartphone-based spectrometer. System is designed to be used as a reflection spectrometer which mimics the conventional spectrometry commonly used for meat color assessment. We utilize a 3D printing technique to make an optical cradle which holds all of the optical components for light collection, collimation, dispersion, and a suitable chamber. A light, which reflects a sample, enters a pinhole and is subsequently collimated by a convex lens. A diffraction grating spreads the wavelength over the camera's pixels to display a high resolution of spectrum. Pixel values in the smartphone image are translated to calibrate the wavelength values through three laser pointers which have different wavelength; 405, 532, 650 nm. Using an in-house app, the camera images are converted into a spectrum in the visible wavelength range based on the exterior light source. A controlled experiment simulating the refrigeration and shelving of the meat has been conducted and the results showed the capability to accurately measure the color change in quantitative and spectroscopic manner. We expect that this technology can be adapted to any smartphone and used to conduct a field-deployable color spectrum assay as a more practical application tool for various food sectors.
机译:基于其集成的摄像头,新的光学附件和固有的计算能力,我们提出了一种仪器设计和验证,可以使用基于智能手机的光谱仪潜在地提供一种客观,准确的方法来确定表面肉类的颜色变化和肌红蛋白氧化还原形式。该系统旨在用作反射光谱仪,该光谱仪模仿通常用于肉色评估的常规光谱仪。我们利用3D打印技术制造光学支架,该支架可容纳所有用于收集,准直,分散和合适的腔室的光学组件。反射样品的光进入针孔,然后通过凸透镜准直。衍射光栅将波长分布在相机像素上,以显示高分辨率的光谱。通过三个具有不同波长的激光指示器,转换智能手机图像中的像素值以校准波长值。 405、532、650 nm。使用内部应用程序,摄像机图像会根据外部光源转换为可见波长范围内的光谱。进行了模拟实验,对肉类进行冷藏和搁置,结果表明,该方法能够定量和分光地准确测量颜色变化。我们希望该技术可以适用于任何智能手机,并可以进行现场部署的色谱分析,作为各种食品领域的更实用的应用工具。

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