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2300-8733
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Analysis of physical parameters and chemical composition of offal from Puławska fattening pigs raised in deep litter and slatted floor housing systems

Published Online: 12 Jul 2023
Volume & Issue: AHEAD OF PRINT
Page range: -
Received: 22 Nov 2022
Accepted: 29 May 2023
Journal Details
License
Format
Journal
eISSN
2300-8733
First Published
25 Nov 2011
Publication timeframe
4 times per year
Languages
English

Anderson B.A. (1988). Composition and nutritional value of edible meat by-products. In: Edible meat by-products advances in meat research, Pearson A.M., Dutson T.R. (eds). Elsevier Science Publishers Ltd., London, UK, pp. 15–45. Search in Google Scholar

Babicz M., Kasprzyk A. (2019). Comparative analysis of the mineral composition in the meat of wild boar and domestic pig. Ital. J. Anim. Sci., 18: 1013–1020. Search in Google Scholar

Babicz M., Kropiwiec-Domańska K., Skrzypczak E., Szyndler-Nędza, M., Szulc K. (2020). Analysis of Technological and Consumption Quality of Offal and Offal Products Obtained from Pulawska and Polish Landrace Pigs. Animals, 10: 964. Search in Google Scholar

Babicz M., Kropiwiec-Domańska K., Szyndler-Nędza M., Grzebalska A.M., Łuszczewska-Sierakowska I., Wawrzyniak A., Hałabis M. (2018). Physiochemical parameters of selected internal organs of fattening pigs and wild boars. Ann. Anim. Sci., 18: 575–591. Search in Google Scholar

Cygan-Szczegielniak D., Stanek M., Giernatowska E., Janicki B., Gehrke M. (2012). Content of selected mineral elements in heifer hair depending on the region and season. Med. Wet., 68: 293–298. Search in Google Scholar

Despotović A., Tomović V., Šević R., Jokanović M., Stanišić N., Škaljac S., Šojić B., Hromiš N., Stajić S., Petrović J. (2018b). Meat quality traits of M. Longissimusl umborum from White Mangalica and (Duroc x White Mangalica) x White Mangalica pigs reared under intensive conditions and slaughtered at about 180-kg live weight. Ital. J. Anim. Sci., 17: 859–866. Search in Google Scholar

Despotović A., Tomović V., Stanišić N., Jokanović M., Šojić. B., Škaljac S., Kocić-Tanackov S., Tomašević, I., Stajić S., Martinović A., Hromis N. (2018a). Edible offal quality of Swallow-Belly Mangalica pigs reared under an intensive production system Investigations on pigs slaughtered at 100 kg live weight. Fleischwirtschaft, 98: 103–108. Search in Google Scholar

Devine C., Dikeman M.(2014). Encyclopedia of Meat Sciences. Cambridge, USA, Academic Press, 2nd ed., 1712 pp. Search in Google Scholar

Duarte R.T., Carvalho Simões M.C., Sgarbieri V.C. (1999). Bovine blood components: Fractionation, composition, and nutritive value. J. Agric. Food Chem., 47: 231–236. Search in Google Scholar

EU. (2010) Directive 2010/63/EU of the European Parliament and of the Council of 22 September 2010 on the protection of animals used for scientific purposes. Official Journal of European Union, 276: 33–79. Search in Google Scholar

Florek M., Litwińczuk Z., Skałecki P., Kędzierska-Matysek M., Grodzicki T. (2012). Chemical composition and inherent properties of offal from calves maintained under two production systems. Meat Sci., 90: 402–409. Search in Google Scholar

Grau R., Hamm R. (1952). Eine einfache Methode zur Bestimmung der Wasserbindung in Fleisch. Fleischwirtschaft 4: 295–297. Search in Google Scholar

Grela E.R., Skomiał J. (2015). Nutritional Recommendations and Nutritional Value of Feed for Pigs. Jabłonna, Poland, Publisher: Instytut Fizjologii i Żywienia Zwierząt PAN, 2nd ed., 125 pp. (In Polish) Search in Google Scholar

Karpiesiuk K., Kozera W., Bugnacka D., Falkowski J. (2013). Wpływ warunków chowu tuczników na jakość mięsa i profil kwasów tłuszczowych w mięśniu najdłuższym grzbietu. Food. Science. Technology. Quality, 3: 39–50. Search in Google Scholar

Kaswan S., Patel B. H. M., Singh M., Dutt T., Gaur G. K., Kamal R., Godara A. S. (2016). Carcass traits of crossbred (Landrace x Desi) barrows reared with different floor space allowances under intensive system. Indian J. Anim. Sci., 86: 335–340. Search in Google Scholar

Kunachowicz H., Nadolna I., Iwanow K., Przygoda B. (2017). Nutritional value of selected food products and typical dishes. Warsaw, Poland, PZWL, 7th ed., 150 pp . Search in Google Scholar

Kurt S., Zorba O. (2007). Emulsion characteristics of beef and sheep offal. J. Muscle Foods., 18: 129–142. Search in Google Scholar

Lawrie R.A., Ledward D.A. (2006). Lawrie’s meat science. Cambridge, England, Woodhead Publishing Limited, 7th ed., 464 pp. Search in Google Scholar

Loeffler K., Gäbel G. (2018). Anatomie und Physiologie der Haustiere. Stuttgart, Germany, UTB. 13 th ed., 374 pp. Search in Google Scholar

Ludwiczak A., Skrzypczak E., Składanowska-Baryza J., Stanisz M., Ślósarz P., Racewicz P. (2021). How Housing Conditions Determine the Welfare of Pigs. Animals, 11: 3484. Search in Google Scholar

Mękus M., Respondek W. (2013). Iron-an essential nutrient. Hum Nutr. Metab., 40: 16–29. Search in Google Scholar

Mihułka M., Chuto J., Wrońska D., Nowakowska A., Perłakowska M. (2003). Technological characteristics of poultry and pig farming in the European Union. Warsaw, Poland, Ministry of the Environment, 59 pp. Search in Google Scholar

Morrison R.S., Johnston L.J., Hilbrands A.M. (2007). The behaviour, growth performance and meat quality of pigs housed in a deep-litter, large group housing systems compared to a conventional confinement system. Appl. Anim. Behav. Sci., 103: 12–24. Search in Google Scholar

Kamyczek M., Tyra M. (2020) . Expertise in the preparation of parameters for the storage of straw and finished feed to be used in the work on the draft regulation on detailed conditions and procedures for granting and disbursing financial aid for operations of the type "Investments preventing the destruction of agricultural production potential" under the sub-measure “Support investment in preventive measures aimed at limiting the impact probable natural disasters, adverse climatic events and disasters” covered by the Rural Development Program for 2014–2020. Balice, Poland, Publisher: National Research Inst1tute of Animal Production, 17 pp. (In Polish) Search in Google Scholar

Nishito Y., Kambe T. (2018). Absorption mechanisms of iron, copper, and zinc: an overview. J. Nutr. Sci. Vitaminol., 64: 1–7. Search in Google Scholar

Ockerman H.W. Basu L. (2004). Edible for Human Consumption. In: Encyclopedia of Meat Sciences, Jensen W.K., Devine C., Dikeman M. (eds). Elsevier Science Ltd., Oxford, UK, pp. 104–112. Search in Google Scholar

OJ L 131, 17.5.2019 Commission Implementing Regulation (EU) 2019/627 of 15 March 2019 Laying Down Uniform Practical Arrangements for the Performance of Official Controls on Products of Animal Origin Intended for Human Consumption in Accordance with Regulation (EU) 2017/625 of the European Parliament and of the Council and Amending Commission Regulation (EC) No 2074/2005 as Regards Official Controls. Brussels, Belgium. Off. J. Eur. Union, p. 51–100. Search in Google Scholar

OJ L 266 15.01 .2015 Act of 15 January 2015 on the Protection of Animals Used for Scientific Purposes. Warsaw, Poland, Chancellery of the Parliament, p. 1–49. Search in Google Scholar

OJ L 3, 5.1.2005 Council Regulation (EC) No 1/2005 Of 22 December 2004 On The Protection Of Animals During Transport And related operations and amending Directives 64/432/EEC and 93/119/EC and Regulation (EC) No 1255/97. Brussels, Belgium. Off. J. Eur. Union, p. 1–44. Search in Google Scholar

OJ L 56/344, 15.2.2010 – Ordinance of the Minister of Agriculture and Rural Development of February 15, 2010 on the Requirements and Procedures for Maintaining Livestock Species for Which Protection Standards Have Been Laid Down in European Union Provisions. Warsaw, Poland, Ministry of Agriculture and Rural Development, p. 5020–5027. Search in Google Scholar

Patton B., Huff-Lonergan E., Honeyman M., Crouse J., Kerr B., Lonergan S. (2008). Effects of deep-bedded finishing system on market pig performance, composition and pork quality. Animal, 2: 459–470. Search in Google Scholar

PN-A-82109. (2002). Polish Standard. Meat and Meat Preparations—Determination of the Content of Ingredients, Protein and Water — Near Infrared Transmission Spectrometry (NIT) with the Function of Chemical Calibration of Neural Networks (ANN); Warsaw, Poland, Polish Committee for Standardization, 10 pp. (In Polish) Search in Google Scholar

Pohja N.S., Niinivaara F.P. (1957). Die Bestimmung der Wasserbindungim Fleischesmittels der Konstantdrück methode. Fleischwirtschaft, 43: 193–195. Search in Google Scholar

Przybylski W., Kaczor D., Żelechowska E., Jaworska D., Kajak-Siemaszko K., Boruszewska K., Jankiewicz U. (2016). Sarcoplasmic Protein Profile from Drip Loss in Relation to Pork Quality. Food Chem., 81: 2320–2326. Search in Google Scholar

Seong P. N. Cho S. H., Park K. M., Kang G. H., Park B. Y., Moon S. S., Ba H. V. (2015). Characterization of chicken by-products by mean of proximate and nutritional compositions. Korean J Food Sci. Anim. Resour., 35: 179–188. Search in Google Scholar

Seong P.N., Park K.M., Cho S.H., Kang S.M., Kang G.H., Park B.Y., Moon S.S., Ba H.V. (2014). Characterization of edible pork by-products by means of yield and nutritional composition. Korean J. Food Sci. Anim. Resour., 34: 297–306. Search in Google Scholar

Spooncer W.F. (1993). Types of offal. In: Encyclopaedia of Food Science, Food Technology and Nutrition, Macrae R., Robinson R.K., Sadler M.J. (eds). Academic Press, London, UK, pp. 4246–4251. Search in Google Scholar

The National Academy of Sciences (2019). Dietary Reference Intakes Tables and Application. The Health and Medicine Division, USA. http://nationalacademies.org/hmd/Activities/Nutrition/SummaryDRIs/DRI-Tables.aspx. (accessed on 3 October 2022). Search in Google Scholar

The US Department of Agriculture’s (2009). Agricultural Research Service. Food Data Central. https://fdc.nal.usda.gov/ (accessed on 3 October 2022). Search in Google Scholar

Toldrá F., Aristoym M. C., Moram L., Reig M. (2012). Innovations in value-addition of edible meat by-products. Meat Sci., 92: 290–296. Search in Google Scholar

Tomović V., Šojić B., Jokanović M., Škaljac S., Ivić M., Tomović M., Tomašević I., Stajić S., Martinović A. (2019). Mineral contents in pork and edible offal from indigenous pigs. J Manage. Eng., 11: 66–72. Search in Google Scholar

Tomović V., Žlender B., Jokanović M., Tomović M., Šojić B., Škaljac S., Kevrešan Ž., Tasić T., Ikonić P. Okanović D. (2016a). Physical and chemical characteristics of edible offal from free-range reared Swallow-Belly Mangalica pigs. Acta Alimentaria, 45: 190–197. Search in Google Scholar

Tomović V.M., Šević R., Jokanović M., Šojić B., Škaljac S., Tasić T., Ikonić P., Lušnic Polak M., Polak T., Demšar L. (2016b). Quality traits of longissimus lumborummuscle from White Mangalica, Duroc x White Mangalica and Large White pigs reared under intensive conditions and slaughtered at 150 kg live weight: a comparative study. Arch. Anim. Breed., 59: 401–415. Search in Google Scholar

Van de Weerd H.A., Docking C.M., Day J.L., Breuer K., Edwards S.A. (2006). Effects of species-relevant environmental enrichment on the behaviour and productivity of finishing pigs. Appl. Anim. Behav. Sci, 99: 230–247. Search in Google Scholar

Verma A.K., Lakshmanan V., Das A.K., Mendiratta S.K., Anjaneyulu A.S.R. (2008). Physico-chemical and functional quality of buffalo head meat and heart meat. Am. J. Food Technol., 3: 134–140. Search in Google Scholar

Zhou C., Hu J., Zhang B., Tan Z. (2015). Gaseous emissions, growth performance and pork quality of pigs housed in deep-litter system compared to concrete‐floor system. Anim. Sci. J., 86: 422–427. Search in Google Scholar

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