Zitieren

1. ALLEONI A.C.C., ANTUNES A.J., 2001 – Haugh unit as a measure of the quality of hen eggs stored under refrigeration. Scientia Agricola 58(4), 681-685.Search in Google Scholar

2. ALMEIDA PAZ I.C.L., MENDES A.A., BALOG A., KOMIYAMA C.M., TAKAHASHI S.E., ALMEIDA I.C.L., CARDOSO K.F.G., 2009 – Calcium effect in bone and egg quality of the hens. Archivos de Zootecnia 58(222), 173-183.Search in Google Scholar

3. ARAÚJO G.M., VIEITES F.M., SOUZA C.S., 2012 – Importance of bone development in poultry. Archivos de Zootecnia 61(237), 79-89.Search in Google Scholar

4. BADECA S.R., KAIQUE VALENTIM J., GARÓFALLO GARCIA R., DE SOUZA EBERHART B., CARDOSO SERPA F., BRITO PEREIRA I.D., MENDES FERNANDES A.R., 2022 – Lithothamnium calcareum in the diet of Japanese quails improves the external quality of eggs. Bulgarian Journal of Agricultural Science 28(3), 494 - 501.Search in Google Scholar

5. BERTECHINI A.G., 2012 – Monogastric Nutrition. Lavras: Editora UFLA – MG, 255p.Search in Google Scholar

6. BROSSI C., CONTRERAS-CASTILLO C.J., AMAZONAS E.D.A., MENTEN J.F.M., 2009 – Heat stress during the preslaughter on broiler chicken. Ciência Rural 39(4), 1284-1293.Search in Google Scholar

7. CAPITELLI R., CROSTA L., 2013 – Overview of psittacine blood analysis and comparative retrospective study of clinical diagnosis, hematology and blood chemistry in selected psittacine species. Veterinary Clinics of North America: Exotic Animal Practice 16(1), 71-120.Search in Google Scholar

8. CARLOS,A.C., SAKOMURA,N.K., PINHEIRO S.R.F., TOLEDANO F.M.M., GIACOMETTI R. SILVA JÚNIOR J.W.D., 2011 – Use of algae Lithothamnium calcareum as alternative source of calcium in diets for broiler chickens. Ciência e Agrotecnologia 35, 833-839.Search in Google Scholar

9. CARVALHO R. F., MAZON M. R., SILVA A.P.D.S., OLIVEIRA L.S., ZOTTI C.A., SILVA S.D.L. LEME P.R., 2016 – Use of calcareous algae and monensin in Nellore cattle subjected to an abrupt change in diet. Ciência Rural 46(4), 713-718.Search in Google Scholar

10. CASTELLÓ J.A.L., PONTES M., GONZÁLEZ F.F., 1989 – Producción de huevos. 1. ed. Barcelona: Real Escuela de Avicultura 367 p.Search in Google Scholar

11. CEDRO T.M.M., CALIXTO L.F.L. GASPAR A., AGOSTINHO T.S.P., 2011 – Proportions between polyunsaturated fatty acids in conventional commercial and enriched eggs with omega-3. Ciência Rural 41(4), 706-711.Search in Google Scholar

12. DE OLIVEIRA A.G., FURTADO D.A., RIBEIRO N.L., MARQUES J.I., LEITE P.G., MASCARENHAS N.M.H., ... CHIODI J.E., 2023 – Marine macroalgae as an alternative in the feeding of broiler quails in an environment of thermal stress. Food Science and Technology 43, e116122.Search in Google Scholar

13. DIAS G.T.M., 2000 – Marine bioclasts: calcareous algae. Revista Brasileira de Geofísica 18(3), 1-19.Search in Google Scholar

14. EGG – Grading Manual. 2000. Washington: Department of Agriculture/Agricultural Marketing Services. Agriculture Hand.Search in Google Scholar

15. FARIA G.Q., LIMA H.J.D.Á., DA SILVA COSTA L., MIRANDA J.A., ROCHA G.M.F., ALCANTARA D.C., PEREIRA I.D.B., 2020 – Dietary calcium levels on productive and reproductive traits of european quails. Research, Society and Development 9(1), e111911723.Search in Google Scholar

16. FIGUEIREDO JÚNIOR J.P., COSTA F.G.P., GIVISIEZ P.E.N., SANTANA M.H.M., SANTOS É.G.D., 2018 – Calcium and phosphorus transporters in laying hens. Campo Digital 13(1), 70-81.Search in Google Scholar

17. FREITAS E.R. FARIAS N.N.P., DO NASCIMENTO G.A.J., RODRIGUES A.M., DE QUEIROZ M.G.R., RAQUEL D.L., LIMA R.C., 2013 – Blood and bone parameters of quails fed different levels of sodium. Semina: Ciências Agrárias 34(2), 845-852.Search in Google Scholar

18. GOMES P.C., RUNHO R.C., D’AGOSTINI P., ROSTAGNO H.S., ALBINO L.F.T., LOPES P.S., 2004 – Available phosphorus requirement of male and female broilers from 22 to 42 and from 43 to 53 days of age. Revista Brasileira de Zootecnia 33, 1734-1746.Search in Google Scholar

19. HAKAMI Z., AL SULAIMAN A.R., ALHARTHI A.S., CASSERLY R., BOUWHUIS M.A., ABUDABOS A.M., 2022 – Growth performance, carcass and meat quality, bone strength, and immune response of broilers fed low-calcium diets supplemented with marine mineral complex and phytase. Poultry Science 101(6), 101849.Search in Google Scholar

20. LOBAUGH B., JOSHUA J.G., MUZLLER W.J., 1981 – Regulation of calcium appetite in broiler chickens. Jornal of Nutrition Philadelphia 111, 298-306.Search in Google Scholar

21. LONDERO A., 2019 – Organic microminerals, chelated calcium or algae on performance, egg quality, incubation and sperm quality in poultry breeders. Doctoral dissertation, Universidade Federal de Santa Maria.Search in Google Scholar

22. MCDOWELL L.R. 1992 – Minerals in animal and human nutrition. New York: Academic Press, 523 p.Search in Google Scholar

23. MELO T.V., MOURA A.M.A., 2009 – Use of seawed flour in the animal feeding. Archivos de Zootecnia 58(2), 99-107.Search in Google Scholar

24. MELO T.V., FERREIRA R.A., OLIVEIRA V.C., CARNEIRO J.B.A., MOURA A.M.A., SILVA C.S., AND NERY V.L.H., 2008 – Quail egg quality using seaweed flour and monoammonium phosphate. Archivos de Zootecnia 57(219), 313-319.Search in Google Scholar

25. MOURA G.R.S., REIS R.D.S., MENDONÇA M.D.O., SALGADO H.R., ABREU K.D.S., MADELLA G D.S., LIMA M.B.D., 2020 – Substitution of limestone for eggshell powder in the diet of Japanese laying quails. Revista Brasileira de Saúde e Produção Animal 21, 01 - 13, e210152020.Search in Google Scholar

26. OLGU, O., AYGUN A., 2016 – Nutritional factors affecting the breaking strength of bone in laying hens. World Poultry Science Journal 72(4), 821-832.Search in Google Scholar

27. PINTO S., BARROS C.S., SLOMP M.N., LÁZZARO R., COSTA L.F., BRUNO L.D.G., 2012 – Calcium and phosphorus in the diet of laying hens: a review. Scientia Agraria Paranaensis 11(1), 5-18.Search in Google Scholar

28. REZENDE E.B., VALENTIM J.K., GARCIA R.G., DE CASTRO BURBARELLI M.F., SERPA F. C., ZANELLA J., ... DE OLIVEIRA H.F., 2022 – Carcass characteristics and meat quality of growing japanese quails fed diets containing calcareous algae. Revista Electronica de Veterinária 76-84.Search in Google Scholar

29. ROSTAGNO H.S., ALBINO L.F.T., HANNAS M.I., DONZELE J.L., SAKOMURA N.K., PERAZZO F.G., BRITO C.O., 2017 – Brazilian tables for poultry and swine: food composition and nutritional requirements, 4, 488 p. Departamento de Zootecnia-UFV, Viçosa, MG, BR.Search in Google Scholar

30. SOUZA C.S., DE TOLEDO BARRETO S. L., VIEITES F.M., CALDERANO A.A., DE MORAES G.H.K., DE ALMEIDA OLIVEIRA M.G., 2017 – Calcium and phosphorus in the nutrition of laying japanese quails. Science and Animal Health 5(3), 260-281.Search in Google Scholar

31. SPANIVELLO G.R., GARCIA R.G., BURBARELLI M.F.D.C., PRZYBULINSKI B.B., KOMIYAM C.M., EBERHART B.D.S., CASTILHO V.A.R.D., 2022 – Calcareous seaweed flour in the diet of Japanese quails and its effects on egg conservation. Revista Brasileira de Saúde e Produção Animal (RBSPA) 23, 1-13.Search in Google Scholar

32. THRALL M.A., BAKER D.C., CAMPBELL T.W., 2004 – Veterinary Hematology and Clinical Chemistry. Lippincott: Williams & Wilkins. 618.Search in Google Scholar

33. TOSCANO M.J., DUNN I.C., CHRISTENSEN J.P., PETOW S., KITTELSEN K., ULRICH R., 2020 - Explanations for keel bone fractures in laying hens: are there explanations in addition to elevated egg production?. Poultry Science 99(9), 4183-4194.Search in Google Scholar

34. VALENTIM J.K., GARCIA R.G., BURBARELLI M.F.D.C., KOMIYAMA C.M., SERPA F.C., CALDARA F.R., ... ALBINO L.F.T., 2023 – Vegetable lipid sources in the diet of japanese quails in the rearing phase and effects on the initial phase of production. Ciência Animal Brasileira 24, 1-7.Search in Google Scholar

35. YAN F., KEEN C.A., ZHANG K.Y., WALDROUP P.W., 2005 – Comparison of methods to evaluate bone mineralization. Journal of Applied Poultry Research 14(3), 492-498.Search in Google Scholar

36. ZHAO S.C., TENG X.Q., XU D.L., CHI X., GE M., XU S.W., 2020 – Influences of low level of dietary calcium on bone characters in laying hens. Poultry Science 99(12), 7084-7091.Search in Google Scholar

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