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高通量多光谱图像处理及其在食品科学中的应用

High Throughput Multispectral Image Processing with Applications in Food Science.

作者信息

Tsakanikas Panagiotis, Pavlidis Dimitris, Nychas George-John

机构信息

Laboratory of Microbiology and Biotechnology of Foods, Department of Food Science and Human Nutrition, School of Food, Biotechnology and Development, Agricultural University of Athens, Athens, Greece.

出版信息

PLoS One. 2015 Oct 14;10(10):e0140122. doi: 10.1371/journal.pone.0140122. eCollection 2015.

Abstract

Recently, machine vision is gaining attention in food science as well as in food industry concerning food quality assessment and monitoring. Into the framework of implementation of Process Analytical Technology (PAT) in the food industry, image processing can be used not only in estimation and even prediction of food quality but also in detection of adulteration. Towards these applications on food science, we present here a novel methodology for automated image analysis of several kinds of food products e.g. meat, vanilla crème and table olives, so as to increase objectivity, data reproducibility, low cost information extraction and faster quality assessment, without human intervention. Image processing's outcome will be propagated to the downstream analysis. The developed multispectral image processing method is based on unsupervised machine learning approach (Gaussian Mixture Models) and a novel unsupervised scheme of spectral band selection for segmentation process optimization. Through the evaluation we prove its efficiency and robustness against the currently available semi-manual software, showing that the developed method is a high throughput approach appropriate for massive data extraction from food samples.

摘要

最近,机器视觉在食品科学以及食品工业中受到关注,涉及食品质量评估和监测。在食品工业中实施过程分析技术(PAT)的框架内,图像处理不仅可用于估计甚至预测食品质量,还可用于检测掺假。针对食品科学中的这些应用,我们在此提出一种新颖的方法,用于对几种食品(如肉类、香草奶油和食用橄榄)进行自动图像分析,以提高客观性、数据可重复性、低成本信息提取和更快的质量评估,且无需人工干预。图像处理的结果将传播到下游分析中。所开发的多光谱图像处理方法基于无监督机器学习方法(高斯混合模型)以及一种用于分割过程优化的新颖无监督光谱带选择方案。通过评估,我们证明了其相对于当前可用的半自动软件的效率和鲁棒性,表明所开发的方法是一种适用于从食品样本中大量提取数据的高通量方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da9c/4605757/4bfe8aa15e0e/pone.0140122.g001.jpg

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