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A portable 671 nm Raman sensor system for rapid meat spoilage identification

机译:用于快速肉类腐败识别的便携式671 nm拉曼传感器系统

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This paper presents a portable Raman sensor system based on a miniaturized optical bench with integrated 671 nm microsystem diode laser as excitation light source for the rapid in situ detection of meat spoilage. The system comprises three main components. A handheld measurement head with a dimension of210mmx 240 mm x 60 mm containing a laser driver electronics board, the Raman optical bench, and a battery pack as power supply serves for excitation as well as collection of the Raman signals in backscat-tering geometry. The signal detection is realized by a custom-designed miniature spectrometer with an optical resolution of 8 cm~(-1) and a dimension of 200 mm × 190 mm × 70 mm which is fiber-optically connected to the measurement head. To control the spectrometer as well as for data storage a netbook is applied. To point out the ability of the sensor system for the rapid identification of meat spoilage porcine musculus fongisstmus dorsi (LD) and musculus semimembranosus (SM) were used as test samples. Stored refrigerated at 5 °C the meat cuts were investigated in time-dependent measurement series up to 3 weeks after slaughter. Meat Raman spectra with an integration time of 10 s can be detected with an excitation laser power of 100 mW at the sample. The spectral changes of the Raman data set during storage were analyzed by principal components analysis. Specific periods of age could be discriminated in the Raman spectra which correlate very well with bacterial growth kinetics determined by microbial reference analyses. Thus, fresh meat with low bacterial load can be identified and a discrimination of spoiled samples exceeding the threshold of 10~6cfu/cm~2 around day 7 post-mortem for both examined meat cuts was possible.
机译:本文介绍了一种基于小型化光学台面的便携式拉曼传感器系统,其中具有集成的671nm Microsysystem二极管激光器作为快速原位检测肉类腐败的激发光源。该系统包括三个主要组件。一种手持式测量头,尺寸为210mmx 240 mm x 60 mm,包含激光驱动器电子板,拉曼光学台和电池组,因为电源用于励磁以及在后退几何形状中的拉曼信号的集合。通过定制设计的微光谱仪实现信号检测,光学分辨率为8cm〜(-1),尺寸为200mm×190mm×70mm,其光纤连接到测量头。控制光谱仪以及数据存储应用了上网本。要指出传感器系统为了快速鉴定肉类腐败猪的能力,Musculus Fongisstmus Dorsi(LD)和Musculus Semimmbranosus(SM)用作试样。在5℃下储存冷藏在屠宰后的时间依赖测量系列中,在时间依赖的测量系列中进行了肉切割。通过在样品处的100mW的激发激光功率可以检测具有10秒的整合时间的肉拉曼光谱。通过主成分分析分析存储期间拉曼数据集的光谱变化。可以在拉曼光谱中歧视特定时期,其与微生物参考分析测定的细菌生长动力学相比非常好。因此,可以鉴定具有低细菌载荷的鲜肉,并且可能存在超过10〜6cfu / cm〜2的阈值的抗损坏样品的辨别。

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