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Monitoring leafy vegetables through packaging films with

机译:通过包装膜监控带叶蔬菜

摘要

Fresh-cut or minimally processed fruit and vegetables have been physically modified from its original form (by peeling, trimming, washing and cutting) to obtain a 100% edible product that is subsequently packaged (usually under modified atmosphere packaging –MAP) and kept inudrefrigerated storage. In fresh-cut products, physiological activity and microbiological spoilage, determine their deterioration and shelf-life. The major preservation techniques applied to delay spoilage are chilling storage and MAP, combined with chemical treatments antimicrobial solutions antibrowning, acidulants, antioxidants, etc.). The industry looks for safer alternatives. Consequently, the sector is asking for innovative, fast, cheap andudobjective techniques to evaluate the overall quality and safety of fresh-cut products in order to obtain decision tools for implementing new packaging materials and procedures. In recent years, hyperspectral imaging technique has been regarded as a tool for analyses conductedudfor quality evaluation of food products in research, control and industries. The hyperspectral imaging system allows integrating spectroscopic and imaging techniques to enable direct identification of different components or quality characteristics and their spatial distribution inudthe tested sample.udThe objective of this work is to develop hyperspectral image processing methods for the supervision through plastic films of changes related to quality deterioration in packed readyto-use leafy vegetables during shelf life.udThe evolutions of ready-to-use spinach and watercress samples covered with three different common transparent plastic films were studied. Samples were stored at 4 ºC during the monitoring period (until 21 days). More than 60 hyperspectral images (from 400 to 1000 nm) per species were analyzed using ad hoc routines and commercial toolboxes of MatLab®. Besides common spectral treatments for removing additive and multiplicative effects, additional correction, previously to any other correction, was performed in the images of leaves in order to avoid the modification in their spectra due to the presence of the plastic transparent film. Findings from this study suggest that the developed images analysis system is able to deal with the effects caused in the images by the presence of plastic films in the supervision of shelf-life in leafy vegetables, in which different stages of quality has been identified.
机译:将鲜切或经过最少加工的水果和蔬菜从其原始形态进行物理修饰(通过去皮,修剪,洗涤和切割),以获得100%可食用的产品,然后将其包装(通常在大气调节包装下-MAP)并保存在 ud冷藏存储。在鲜切产品中,生理活性和微生物变质决定了它们的变质和保质期。延迟变质的主要保鲜技术是冷藏和MAP,结合化学处理,抗微生物溶液,抗褐变,酸化剂,抗氧化剂等)。业界正在寻找更安全的替代方案。因此,该部门正在寻求创新,快速,廉价和不客观的技术来评估鲜切产品的整体质量和安全性,以获得用于实施新包装材料和程序的决策工具。近年来,高光谱成像技术已被视为分析,控制和工业食品质量评估的工具。高光谱成像系统允许集成光谱学和成像技术,从而能够直接识别被测样品中的不同成分或质量特征及其空间分布。 ud这项工作的目的是开发用于通过塑料薄膜进行监控的高光谱图像处理方法。包装后的即用蔬菜叶质量在货架期内的质量变化有关。 ud研究了用三种不同的透明塑料薄膜覆盖的即食菠菜和豆瓣菜样品的演变。在监测期间(直到21天),样品被存储在4ºC下。使用特设例行程序和MatLab®的商业工具箱,每个物种分析了60多个高光谱图像(400至1000 nm)。除了消除附加和乘积效应的常用光谱处理之外,在叶片图像中还进行了其他任何校正之前的其他校正,以避免由于塑料透明膜的存在而导致其光谱发生变化。这项研究的发现表明,已开发的图像分析系统能够处理塑料薄膜的存在,从而在图像中对蔬菜的货架期进行监督,而塑料膜的存在已在其中确定了不同的质量阶段。

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