Former food products (FFPs) represent a way by which leftovers from the food industry (e.g., biscuits, bread, breakfast cereals, chocolate bars, pasta, savoury snacks, and sweets) are converted into ingredients for the feed industry, thereby keeping food losses in the food chain. FFPs represent an alternative source of nutrients for animal feeding. However, beyond their nutritional value, the use of FFPs in animal feeding implies also safety issues, such as those related to the presence of packaging remnants. These contaminants might reside in FFP during food processing (e.g., collection, unpacking, mixing, grinding, and drying). Nowadays, artificial senses are widely used for the detection of foreign material in food and all of them involve computer vision. Computer vision technique provides detailed pixel-based characterizations of colours spectrum of food products, suitable for quality evaluation. The application of computer vision for a rapid qualitative screening of FFP's safety features, in particular for the detection of packaging remnants, has been recently tested. This paper presents the basic principles, the advantages, and disadvantages of the computer vision method with an evaluation of its potential in the detection of packaging remnants in FFP.

Former Food Products Safety Evaluation : Computer Vision as an Innovative Approach for the Packaging Remnants Detection / M. Tretola, M. Ottoboni, A.R. Di Rosa, C. Giromini, E. Fusi, R. Rebucci, F. Leone, V. Dell’Orto, V. Chiofalo, L. Pinotti. - In: JOURNAL OF FOOD QUALITY. - ISSN 0146-9428. - 2017(2017), pp. UNSP 1064580.1-UNSP 1064580.6. [10.1155/2017/1064580]

Former Food Products Safety Evaluation : Computer Vision as an Innovative Approach for the Packaging Remnants Detection

M. Tretola
Primo
;
M. Ottoboni
Secondo
;
C. Giromini;E. Fusi;R. Rebucci;V. Dell’Orto;L. Pinotti
Ultimo
2017

Abstract

Former food products (FFPs) represent a way by which leftovers from the food industry (e.g., biscuits, bread, breakfast cereals, chocolate bars, pasta, savoury snacks, and sweets) are converted into ingredients for the feed industry, thereby keeping food losses in the food chain. FFPs represent an alternative source of nutrients for animal feeding. However, beyond their nutritional value, the use of FFPs in animal feeding implies also safety issues, such as those related to the presence of packaging remnants. These contaminants might reside in FFP during food processing (e.g., collection, unpacking, mixing, grinding, and drying). Nowadays, artificial senses are widely used for the detection of foreign material in food and all of them involve computer vision. Computer vision technique provides detailed pixel-based characterizations of colours spectrum of food products, suitable for quality evaluation. The application of computer vision for a rapid qualitative screening of FFP's safety features, in particular for the detection of packaging remnants, has been recently tested. This paper presents the basic principles, the advantages, and disadvantages of the computer vision method with an evaluation of its potential in the detection of packaging remnants in FFP.
No
English
Settore AGR/18 - Nutrizione e Alimentazione Animale
Review essay
Esperti anonimi
Ricerca applicata
Pubblicazione scientifica
2017
Food & Nutrition Press
2017
UNSP 1064580
1
6
6
Pubblicato
Periodico con rilevanza internazionale
crossref
Aderisco
info:eu-repo/semantics/article
Former Food Products Safety Evaluation : Computer Vision as an Innovative Approach for the Packaging Remnants Detection / M. Tretola, M. Ottoboni, A.R. Di Rosa, C. Giromini, E. Fusi, R. Rebucci, F. Leone, V. Dell’Orto, V. Chiofalo, L. Pinotti. - In: JOURNAL OF FOOD QUALITY. - ISSN 0146-9428. - 2017(2017), pp. UNSP 1064580.1-UNSP 1064580.6. [10.1155/2017/1064580]
open
Prodotti della ricerca::01 - Articolo su periodico
10
262
Article (author)
no
M. Tretola, M. Ottoboni, A.R. Di Rosa, C. Giromini, E. Fusi, R. Rebucci, F. Leone, V. Dell’Orto, V. Chiofalo, L. Pinotti
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/504471
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