scholarly journals Comparison of different ways of handling L-shaped data for integrating sensory and consumer information

2022 ◽  
Vol 96 ◽  
pp. 104426
Author(s):  
Daniele Asioli ◽  
Quoc Cuong Nguyen ◽  
Paula Varela ◽  
Tormod Næs
Keyword(s):  
2012 ◽  
Vol 82 (3) ◽  
pp. 209-215 ◽  
Author(s):  
Simone Bell ◽  
Heikki Pakkala ◽  
Michael P. Finglas

Food composition data (FCD) comprises the description and identification of foods, as well as their nutrient content, other constituents, and food properties. FCD are required for a range of purposes including food labeling, supporting health claims, nutritional and clinical management, consumer information, and research. There have been differences within and beyond Europe in the way FCD are expressed with respect to food description, definition of nutrients and other food properties, and the methods used to generate data. One of the major goals of the EuroFIR NoE project (2005 - 10) was to provide tools to overcome existing differences among member states and parties with respect to documentation and interchange of FCD. The establishment of the CEN’s (European Committee for Standardisation) TC 387 project committee on Food Composition Data, led by the Swedish Standards Institute, and the preparation of the draft Food Data Standard, has addressed these deficiencies by enabling unambiguous identification and description of FCD and their quality, for dissemination and data interchange. Another major achievement of the EuroFIR NoE project was the development and dissemination of a single, authoritative source of FCD in Europe enabling the interchange and update of data between countries, and also giving access to users of FCD.


Author(s):  
Gabriella Vindigni ◽  
Alfredo Pulvirenti ◽  
Salvatore Alaimo ◽  
Clara Monaco ◽  
Daniela Spina ◽  
...  

Fisheries products are some of the most traded commodities world-wide and the potential for fraud is a serious concern. Fish fraud represents a threat to human health and poses serious concerns due to the consumption of toxins, highly allergenic species, contaminates or zoonotic parasites, which may be present in substituted fish. The substitution of more expensive fish by cheaper species, with similar morphological characteristics but different origins, reflects the need for greater transparency and traceability upon which which the security of the entire seafood value-chain depends. Even though EU regulations have made significant progress in consumer information by stringent labelling requirements, fraud is still widespread. Many molecular techniques such as DNA barcoding provide valuable support to enhance the Common Fisheries Policy (CFP) in the protection of consumer interests by unequivocally detecting any kind of fraud. This paper aims to highlight both the engagement of EU fishery policy and the opportunity offered by new biotechnology instruments to mitigate the growing fraud in the globalized fish market and to enforce the food security system to protect consumers’ health. In this paper, after a presentation of EU rules on fish labeling and a general overview on the current state of the global fish market, we discuss the public health implications and the opportunities offered by several techniques based on genetics, reporting a case study to show the efficacy of the DNA barcoding methodology in assessing fish traceability and identification, comparing different species of the Epinephelus genus, Mottled Grouper (Mycteroperca rubra) and Wreckfish (Polyprion americanus), often improperly sold with the commercial name of “grouper”.


2016 ◽  
Vol 47 (2) ◽  
pp. 145-171 ◽  
Author(s):  
Xaq Frohlich

This article traces the history of the US FDA regulation of nutrition labeling, identifying an ‘informational turn’ in the evolving politics of food, diet and health in America. Before nutrition labeling was introduced, regulators actively sought to segregate food markets from drug markets by largely prohibiting health information on food labels, believing such information would ‘confuse’ the ordinary food consumer. Nutrition labeling’s emergence, first in the 1970s as consumer empowerment and then later in the 1990s as a solution to information overload, reflected the belief that it was better to manage markets indirectly through consumer information than directly through command-and-control regulatory architecture. By studying product labels as ‘information infrastructure’, rather than a ‘knowledge fix’, the article shows how labels are situated at the center of a legally constructed terrain of inter-textual references, both educational and promotional, that reflects a mix of market pragmatism and evolving legal thought about mass versus niche markets. A change to the label reaches out across a wide informational environment representing food and has direct material consequences for how food is produced, distributed, and consumed. One legacy of this informational turn has been an increasing focus by policymakers, industry, and arguably consumers on the politics of information in place of the politics of the food itself.


2007 ◽  
Vol 10 (7) ◽  
pp. 690-700 ◽  
Author(s):  
E Labouze ◽  
C Goffi ◽  
L Moulay ◽  
V Azaïs-Braesco

AbstractBackground/objectivesWith obesity and nutrition-related diseases rising, public health authorities have recently insisted nutritional quality be included when advertising and labelling food. The concept of nutritional quality is, however, difficult to define. In this paper we present an innovative, science-based nutrient profiling system, Nutrimap®, which quantifies nutritional assets and weaknesses of foods.MethodsThe position of a food is defined according to its nutritional composition, food category, the consumer's nutritional needs, consumption data and major public health objectives for nutrition. Amounts of each of 15 relevant nutrients (in 100 kcal) are scored according to their ability to ‘rebalance’ or ‘unbalance’ the supply in the whole diet, compared with current recommendations and intakes. These scores are weighted differently in different food categories according to the measured relevance of the category to a nutrient's supply. Positive (assets) and negative (weaknesses) scores are totalled separately.ResultsNutrimap®provides an overall estimate of the nutritional quality of same-category foods, enabling easy comparisons as exemplified for cereals and fruit/vegetables. Results are consistent with major nutritional recommendations and match classifications provided by other systems. Simulations for breakfasts show that Nutrimap®can help design meals of controlled nutritional value.ConclusionsCombining objective scientific bases with pragmatic concerns, Nutrimap®appears to be effective in comparing food items. Decision-makers can set their own limits within the Nutrimap®-defined assets and weaknesses of foods and reach categorisations consistent with their objectives – from regulatory purposes to consumer information or support for designing meals (catering) or new products (food industry).


2014 ◽  
Vol 28 (3) ◽  
pp. 184-195 ◽  
Author(s):  
Tiffany Barnett White ◽  
Thomas P. Novak ◽  
Donna L. Hoffman

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