INFORMAZIONI SU QUESTO ARTICOLO

Cita

Abd El-Moneim A.E., Sabic E.M., Abu-Taleb A.M. (2019). Influence of dietary supplementation of irradiated or non-irradiated olive pulp on biochemical profile, antioxidant status and immune response of Japanese quails. Biol. Rhythm Res., 53:519–534. Search in Google Scholar

Abd El‐Hack M.E., El‐Saadony M.T., Shafi M.E., Qattan S.Y., Batiha G.E., Khafaga A.F., Abdel‐ Moneim A.M.E., Alagawany M. (2020). Probiotics in poultry feed: A comprehensive review. J. Anim. Physiol. Anim. Nutr., 104: 1835–1850. Search in Google Scholar

Abd El Naby W.S.H., Basha H.A., Ibrahim S.E., Abo-Samaha M.I. (2021). Effects of red and blue light during the incubation of Turkey eggs on hatchability performance and expression pattern of some myogenic regulatory genes. J. World’s Poult. Res., 11:129–135. Search in Google Scholar

Abdel-Moneim A.-M.E., Shehata A.M., Alzahrani S.O., Shafi M.E., Mesalam N.M., Taha A.E., Swelum A.A., Arif M., Fayyaz M., Abd El‐Hack M.E. (2020). The role of polyphenols in poultry nutrition. J. Anim. Physiol. Anim. Nutr., 104:1851–1866. Search in Google Scholar

Abdel-Moneim A.-M.E., Shehata A.M., Khidr R.E., Paswan V.K., Ibrahim N.S., El-Ghoul A.A., Aldhumri S.A., Gabr S.A., Mesalam N.M., Elbaz A.M. (2021). Nutritional manipulation to combat heat stress in poultry–A comprehensive review. J. Therm. Biol., 102915. Search in Google Scholar

Abdelazeem A.F. (2019). Productive and physiological response of broiler chickens exposed to different colored light-emitting diode and reared under different stocking densities. Egypt. Poult. Sci. J., 38:1243–1264. Search in Google Scholar

Abdo S.E., El-Kassas S., El-Nahas A.F., Mahmoud S. (2017). Modulatory effect of monochromatic blue light on heat stress response in commercial broilers. Oxid. Med. Cell. Longev., 2017. Search in Google Scholar

Abdulateef S.M., Al-Bayar M., Majid A., Shawkat S., Tatar A., Al-Ani M. (2021). Effect of exposure to different light colors on embryonic development and neurophysiological traits in the chick embryo. Vet. World, 14:1284. Search in Google Scholar

Abo Ghanima M.M., Abd El-Hack M.E., Othman S.I., Taha A.E., Allam A.A., Abdel-Moneim A.-M.E. (2020a). Impact of different rearing systems on growth, carcass traits, oxidative stress biomarkers, and humoral immunity of broilers exposed to heat stress. Poult. Sci., 99:3070–3078. doi 10.1016/j.psj.2020.03.011 Search in Google Scholar

Abo Ghanima M.M., Bin-Jumah M., Abdel-Moneim A.-M.E., Khafaga A.F., Abd El-Hack M.E., Allam A.A., El-Kasrawy N.I. (2020b). Impacts of Strain Variation on Response to Heat Stress and Boldo Extract Supplementation to Broiler Chickens. Animals, 10:24. Abu-Tabeekh M., Shawkat T.F. (2015). Effect of light color and stocking density on some behavioral traits of broilers and layers. MRJASSS3 (9), 122–130. Search in Google Scholar

Akyüz H.Ç., Onbaşilar E. (2018). Light wavelength on different poultry species. Worlds Poult. Sci. J., 74:79–88. Search in Google Scholar

Archer G. (2017). Exposing broiler eggs to green, red and white light during incubation. Animal, 11:1203–1209. Search in Google Scholar

Archer G.S., Shivaprasad H., Mench J. (2009). Effect of providing light during incubation on the health, productivity, and behavior of broiler chickens. Poult. Sci., 88:29–37. Search in Google Scholar

Atapattu N., Wickramasinghe K. (2007). The use of refused tea as litter material for broiler chickens. Poult. Sci., 86:968–972. Search in Google Scholar

Balabel T., Mohamed R., Saleh M. (2017). Using different light colors as a stress factor on broiler performance in Egypt. Aust. J. Basic and Appl. Sci., 11:165–170. Search in Google Scholar

Baxter M., Joseph N., Osborne V., Bedecarrats G. (2014). Red light is necessary to activate the reproductive axis in chickens independently of the retina of the eye. Poult. Sci., 93:1289–1297. Search in Google Scholar

Bedanova I., Voslarova E., Chloupek P., Pistekova V., Suchy P., Blahova J., Dobsikova R., Vecerek V. (2007). Stress in broilers resulting from shackling. Poult. Sci., 86:1065–1069. Bennato F., Ianni A., Martino C., Grotta L., Martino G. (2021). Evaluation of chemical composition and meat quality of breast muscle in broilers reared under light-emitting diode. Animals, 11:1505. Search in Google Scholar

Bizeray D., Leterrier C., Constantin P., Picard M., Faure J. (2000). Early locomotor behaviour in genetic stocks of chickens with different growth rates. Appl. Anim. Behav. Sci., 68: 231–242. Search in Google Scholar

Cao J., Liu W., Wang Z., Xie D., Jia L., Chen Y. (2008). Green and blue monochromatic lights promote growth and development of broilers via stimulating testosterone secretion and myofiber growth. J. Appl. Poult. Res., 17:211–218. Search in Google Scholar

Cao J., Wang Z., Dong Y., Zhang Z., Li J., Li F., Chen Y. (2012). Effect of combinations of monochromatic lights on growth and productive performance of broilers. Poult. Sci., 91:3013–3018. Search in Google Scholar

Cave N. (1990). Effects of feeding level during pullet-layer transition and of pretransition lighting on performance of broiler breeders. Poult. Sci., 69:1141–1146. Search in Google Scholar

Chang Y.-L., Lu Z.-H. (2013). White organic light-emitting diodes for solid-state lighting. J. Disp. Technol., 9:459–468. Search in Google Scholar

Classen H. (2003). Barn of the future lighting programs. Ministry of Agriculture and Food, Government of Ontario, Canada. Search in Google Scholar

Classen H.L. (2004). Day length affects performance, health and condemnations in broiler chickens. Proc. Proceedings of the 16th Australian Poult. Sci. Symposium, Sydney, New South Wales, Australia, 9–11 February 2004. Search in Google Scholar

Dawson A., King V.M., Bentley G.E., Ball G.F. (2001). Photoperiodic control of seasonality in birds. J. Biol. Rhythms, 16:365–380. Search in Google Scholar

Dharmaretnam M., Rogers L. (2005). Hemispheric specialization and dual processing in strongly versus weakly lateralized chicks. Behav. Brain Res., 162:62–70. Search in Google Scholar

Dishon L., Avital-Cohen N., Zaguri S., Bartman J., Heiblum R., Druyan S., Porter T., Gumulka M., Rozenboim I. (2021a). In ovo green light photostimulation during the late incubation stage affects somatotropic axis activity. Poult. Sci., 100:467–473. Search in Google Scholar

Dishon L., Avital-Cohen N., Zaguri S., Bartman J., Heiblum R., Druyan S., Porter T., Gumułka M., Rozenboim I. (2021b). The effect of selected in ovo green light photostimulation periods on post-hatch broiler growth and somatotropic axis activity. Poult. Sci., 100:101229. Search in Google Scholar

Drozdova A., Okuliarova M., Zeman M. (2019). The effect of different wavelengths of light during incubation on the development of rhythmic pineal melatonin biosynthesis in chick embryos. Animal, 13:1635–1640. Search in Google Scholar

Egbuniwe I., Ayo J. (2016). Physiological roles of avian eyes in light perception and their responses to photoperiodicity. Worlds Poult. Sci. J., 72:605–614. Search in Google Scholar

El-Husseiny O., Hashish S., Arafa S., Madian A. (2000). Response of poultry performance to environmental light colour. Egypt. Poult. Sci. J., 20:385–402. Search in Google Scholar

El-Sabrout K., El-Deek A., Ahmad S., Usman M., Dantas M.R.T., Souza-Junior J.B.F. (2022). Lighting, density, and dietary strategies to improve poultry behavior, health, and production. J. Anim. Behav. Biometeorol., 10:0-0. Search in Google Scholar

El-Sabrout K., Khalil M.H. (2017). Effect of LED lighting on hatchability and chick performance of chicken eggs. Pak. J. Zool., 49. Search in Google Scholar

Erol H., Cantekin Z. (2007). Influence of intermittent lighting on broiler performance, incidence of tibial dyschondroplasia, tonic immobility, some blood parameters and antibody production. Asian-australas. J. Anim. Sci., 20:550–555. Search in Google Scholar

Firouzi S., Nazarpak H.H., Habibi H., Jalali S.S., Nabizadeh Y., Rezaee F., Ardali R., Marzban M. (2014). Effects of color lights on performance, immune response and hematological indices of broilers. J. World’s Poult. Res, 4:52–55. Search in Google Scholar

Franco B.R., Shynkaruk T., Crowe T., Fancher B., French N., Gillingham S., Schwean-Lardner K. (2022a). Does light color during brooding and rearing impact broiler productivity? Poult. Sci., 101:101937. Search in Google Scholar

Franco B.R., Shynkaruk T., Crowe T., Fancher B., French N., Gillingham S., Schwean-Lardner K. (2022b). Light color and the commercial broiler: effect on behavior, fear, and stress. Poult. Sci., 101:102052. Search in Google Scholar

Franco B.R., Shynkaruk T., Crowe T., Fancher B., French N., Gillingham S., Schwean-Lardner K. (2022c). Light wavelength and its impact on broiler health. Poult. Sci., 101:102178. Search in Google Scholar

Fritts C., Waldroup P. (2003). Effect of source and level of vitamin D on live performance and bone development in growing broilers. J. Appl. Poult. Res., 12:45–52. Search in Google Scholar

Fritts C., Waldroup P. (2005). Comparison of cholecalciferol and 25-hydroxycholecalciferol in broiler diets designed to minimize phosphorus excretion. J. Appl. Poult. Res., 14:156–166. Search in Google Scholar

Ghanima M.M.A., Abd El-Hack M.E., Abougabal M.S., Taha A.E., Tufarelli V., Laudadio V., Naiel M.A. (2021). Growth, carcass traits, immunity and oxidative status of broilers exposed to continuous or intermittent lighting programs. Anim. Biosci., 34:1243. Search in Google Scholar

Gržinić G., Piotrowicz-Cieślak A., Klimkowicz-Pawlas A., Górny R.L., Ławniczek-Wałczyk A., Piechowicz L., Olkowska E., Potrykus M., Tankiewicz M., Krupka M. (2023). Intensive poultry farming: A review of the impact on the environment and human health. Sci. Total Environ., 858:160014. Search in Google Scholar

Guevara B., Pech P., Zamora B., Navarrete S., Magaña S. (2015). Performance of broilers reared under monochromatic light emitting diode supplemental lighting. Braz. J. Poult. Sci., 17:553–558. Search in Google Scholar

Hakan B., Ali A. (2005). Effects of light wavelength on broiler performance. Hayvansal Üretim, 46:22–32. Search in Google Scholar

Halevy O., Biran I., Rozenboim I. (1998). Various light source treatments affect body and skeletal muscle growth by affecting skeletal muscle satellite cell proliferation in broilers. Comp. Biochem. Physiol., 120:317–323. Search in Google Scholar

Hassan M.R., Sultana S., Choe H.S., Ryu K.S. (2013). Effect of monochromatic and combined light colour on performance, blood parameters, ovarian morphology and reproductive hormones in laying hens. Ital. J. Anim. Sci., 12:e56. Search in Google Scholar

Hassan M.R., Sultana S., Choe H.S., Ryu K.S. (2014a). A comparison of monochromatic and mixed LED light color on performance, bone mineral density, meat and blood properties, and immunity of broiler chicks. J. Poult. Sci., 51:195–201. Search in Google Scholar

Hassan M.R., Sultana S., Choe H.S., Ryu K.S. (2014b). Effect of combinations of monochromatic LED light color on the performance and behavior of laying hens. J. Poult. Sci., 51:321–326. Search in Google Scholar

Hassan M.R., Sultana S., Kim S.H., Ryu K. (2016). Effect of monochromatic and combined LED light colours on performance, blood characteristics, meat fatty acid composition and immunity of broiler chicks. Europ. Poult. Sci, 80:1–17. Search in Google Scholar

Helva I., Aksit M., Yalcin S. (2019). Effects of monochromatic light on growth performance, welfare and hormone levels in broiler chickens. Europ. Poult. Sci., 83. Search in Google Scholar

Hesham M., El Shereen A., Enas S. (2018). Impact of different light colors in behavior, welfare parameters and growth performance of Fayoumi broiler chickens strain. J. Hell. Vet. Med. Soc., 69:951–958. Search in Google Scholar

Hluchý S., Toman R., Cabaj M., Adamkovičová M. (2012). The effect of white and monochromatic lights on chicken hatching. Scientific Papers: J. Anim. Sci. Biotechnol., 45:408–410. Search in Google Scholar

Hogshead B. 2015. The Effects of light color on the performance and immune response of broiler chickens. Doctoral dissertation. The Ohio State University. Search in Google Scholar

Hunt D.M., Carvalho L.S., Cowing J.A., Davies W.L. (2009). Evolution and spectral tuning of visual pigments in birds and mammals. Philos. Trans. R. Soc. Lond., B, Biol. Sci., 364:2941–2955. Search in Google Scholar

Iribarren R., Rozema J.J., Schaeffel F., Morgan I.G. (2014). Calculation of crystalline lens power in chickens with a customized version of Bennett’s equation. Vis. Res., 96:33–38. Search in Google Scholar

James C., Asher L., Herborn K., Wiseman J. (2018). The effect of supplementary ultraviolet wavelengths on broiler chicken welfare indicators. Appl. Anim. Behav. Sci., 209:55–64. Search in Google Scholar

Jiang J., Pan J., Wang Y., Ye Z., Ying Y. (Year). Effect of light color on growth and waste emission of broilers. Proc. 2012 IX Int. Livestock Environ. Symp. (ILES IX). Search in Google Scholar

Jiang N., Wang Z., Cao J., Dong Y., Chen Y. (2016). Role of monochromatic light on daily variation of clock gene expression in the pineal gland of chick. J. Photochem. Photobiol. B, Biol., 164:57–64. Search in Google Scholar

Jiao Y., Lau T., Hatzikirou H., Meyer-Hermann M., Corbo J.C., Torquato S. (2014). Avian photoreceptor patterns represent a disordered hyperuniform solution to a multiscale packing problem. Phys. Rev. E., 89:022721. Search in Google Scholar

José Paixão S., Mendes A.S., Possenti M.A., Sikorski R.R., do Vale M.M., de Souza C., Guimarães B.E., de Moura D.J., de Alencar Nääs I., Nunes I.B. (2022). Broiler behavior differs from males to females when under different light wavelengths. Trop. Anim. Health Prod., 54:1–9. Search in Google Scholar

Kalia S., K Bharti V., Gogoi D., Giri A., Kumar B. (2017). Studies on the growth performance of different broiler strains at high altitude and evaluation of probiotic effect on their survivability. Sci. Rep., 7:1–8. Search in Google Scholar

Karim E.-S. (2017). Effect of LED lighting during incubation of Fayoumi eggs on hatchability and chick performance. Kafkas Üniversitesi Veteriner Fakültesi Dergisi, 23. Search in Google Scholar

Khosravinia H. (2007). Preference of broiler chicks for color of lighting and feed. J. Poult. Sci., 44:213–219. Search in Google Scholar

Kim M., Parvin R., Mushtaq M., Hwangbo J., Kim J., Na J., Kim D., Kang H., Kim C., Cho K. (2013). Growth performance and hematological traits of broiler chickens reared under assorted monochromatic light sources. Poult. Sci., 92:1461–1466. Search in Google Scholar

Kram Y.A., Mantey S., Corbo J.C. (2010). Avian cone photoreceptors tile the retina as five independent, self-organizing mosaics. PLoS One, 5:e8992. Search in Google Scholar

Kristensen H.H., Prescott N.B., Perry G.C., Ladewig J., Ersbøll A.K., Overvad K.C., Wathes C.M. (2007). The behaviour of broiler chickens in different light sources and illuminances. Appl. Anim. Behav. Sci., 103:75–89. Search in Google Scholar

Kuenzel W.J., Kang S.W., Zhou Z.J. (2015). Exploring avian deep-brain photoreceptors and their role in activating the neuroendocrine regulation of gonadal development. Poult. Sci., 94:786–798. Search in Google Scholar

Kumar S., Gupta R.K., Sharma A., Singh Y., Mehta N., Kashyap N. (2017). Performance and carcass characteristics of broiler chickens reared under light emitting diodes (LEDs) light vis-a-vis Incandescent light supplemental lighting programme. J. Anim. Res., 7:1157-1163. Search in Google Scholar

Lan X., Li D., Wang V., Zhao X., Liu Y., Zhu Q. (2013). Effect of monochromatic light on the crown performance of chickens. Indian J. Anim. Res., 47:175–177. Search in Google Scholar

Leigh M., McFadden T., Schumacher L., Firman J. (2017). Efficacy of various wavelengths of monochromatic light emitting diode illumination on growth and performance of broiler chickens. Int. J. Poult. Sci, 16:475–480. Search in Google Scholar

Levenick C., Leighton Jr A. (1988). Effects of Photoperiod and Filtered Light on Growth, Reproduction, and Mating Behavior of Turkeys.: 1. Growth Performance of Two Lines of Males and Females. Poult. Sci., 67:1505–1513. Search in Google Scholar

Lewis P. (2010). Lighting, ventilation and temperature. British Poult. Sci., 51:35–43. Search in Google Scholar

Lewis P., Gous R. (2009). Responses of poultry to ultraviolet radiation. Worlds Poult. Sci. J., 65:499–510. Search in Google Scholar

Lewis P., Morris T. (1998). Responses of domestic poultry to various light sources. Worlds Poult. Sci. J., 54:7–25. Search in Google Scholar

Lewis P., Morris T. (2000). Poultry and coloured light. Worlds Poult. Sci. J., 56:189–207. Lewis P.D., Morris T.R. 2006. Poultry lighting: the theory and practice. Northcot. Search in Google Scholar

Li X., Rathgeber B., McLean N., MacIsaac J. (2021). Providing colored photoperiodic light stimulation during incubation: 1. Effects on embryo development and hatching performance in broiler hatching eggs. Poult. Sci., 100:101336. Search in Google Scholar

Liu W., Chen Y., Wang Z., Dong Y., Cao J., Xie D., Jia L. (2008). Effect of monochromatic light on the muscle growth and muscle fiber development and testosterone secretion in broilers. Acta Veterinaria et Zootechnica Sinica, 39:1759–1764. Search in Google Scholar

Liu W., Wang Z., Chen Y. (2010). Effects of monochromatic light on developmental changes in satellite cell population of pectoral muscle in broilers during early posthatch period. Anat. Rec.: Adv. Integr. Anat. Evol. Biol., 293:1315–1324. Search in Google Scholar

Lucena A.C., Pandorfi H., Almeida G.L., Guiselini C., Araújo J.E., Rodrigues T.P.d.S. (2020). Behavior of broilers subjected to different light spectra and illuminances. Revista Brasileira de Engenharia Agrícola e Ambiental, 24:415–421. Search in Google Scholar

Maddocks S.A., Cuthill I.C., Goldsmith A.R., Sherwin C.M. (2001). Behavioural and physiological effects of absence of ultraviolet wavelengths for domestic chicks. Anim. Behav., 62:1013–1019. Search in Google Scholar

Mendes A.S., Paixão S.J., Restelatto R., Morello G.M., de Moura D.J., Possenti J.C. (2013). Performance and preference of broiler chickens exposed to different lighting sources. J. Appl. Poult. Res., 22:62–70. Search in Google Scholar

Mills E., Jacobson A. (2011). From carbon to light: a new framework for estimating greenhouse gas emissions reductions from replacing fuel-based lighting with LED systems. Energy Efficiency, 4:523–546. Search in Google Scholar

Mo Q., Kulyar M.F.-e.-A., Quan C., Ding Y., Zhang Y., Zhang L., Pan H., Li J. (2023). Thiram-induced hyperglycemia causes tibial dyschondroplasia by triggering aberrant ECM remodeling via the gut-pancreas axis in broiler chickens. J. Hazard. Mater., 444:130368. Search in Google Scholar

Mohamed R., Abou-Elnaga A., Ghazy E., Mohammed H., Shukry M., Farrag F., Mohammed G., Bahattab O. (2020). Effect of different monochromatic LED light colour and intensity on growth performance, physiological response and fear reactions in broiler chicken. Ital. J. Anim. Sci., 19:1099–1107. Search in Google Scholar

Mohamed R., Eltholth M., El-Saidy N. (2014). Rearing broiler chickens under monochromatic blue light improve performance and reduce fear and stress during pre-slaughter handling and transportation. Biotechnol. Anim. Husb., 30:457–471. Search in Google Scholar

Mohamed R.A., El-Kholya S.Z., Shukry M., El-Kassas S., El Saidy N.R. (2017). Manipulation of Broiler Growth Performance, Physiological and Fear Responses Using Three Monochromatic LED lights. Alex. J. Vet. Sci., 53. Search in Google Scholar

Montiani-Ferreira F., Li T., Kiupel M., Howland H., Hocking P., Curtis R., Petersen-Jones S. (2003). Clinical features of the retinopathy, globe enlarged (rge) chick phenotype. Vis. Res., 43:2009–2018. Search in Google Scholar

Mosa R.K., Abbas R.J., Tabeekh M.A.A. (2014). The effect of color light and stocking density on some traits of broiler carcasses. MRVSA, 3:24–35. Search in Google Scholar

North M.O., Bell D.D. 1990. Commercial chicken production manual. Van Nostrand Reinhold. Nuboer J. 1993. Visual ecology in poultry houses. Utrecht Biophysics Research Institute, Division: Comparative Physiology, Utrecht University. Search in Google Scholar

Oke O., Oni A., Adebambo P., Oso O., Adeoye M., Lawal T., Afolayan T., Ogunbajo O., Ojelade D., Bakre O. (2021). Evaluation of light colour manipulation on physiological response and growth performance of broiler chickens. Trop. Anim. Health Prod., 53:1–9. Search in Google Scholar

Olanrewaju H., Miller W., Maslin W., Collier S., Purswell J., Branton S. (2018). Influence of light sources and photoperiod on growth performance, carcass characteristics, and health indices of broilers grown to heavy weights. Poult. Sci., 97:1109–1116. Search in Google Scholar

Olanrewaju H., Purswell J., Collier S., Branton S. (2011). Effect of varying light intensity on growth performance and carcass characteristics of broiler chickens grown to heavy weights. Int. J. Poult. Sci., 10:921–926. Search in Google Scholar

Olkowski A., Classen H. (1998). High incidence of cardiac arrhythmias in broiler chickens. J. Vet. Med. Series A, 45:83–91. Search in Google Scholar

Ozkan M., Simsek U.G. (2022). The effect of light/dark cycles on performance and welfare in broiler. Ann. Anim. Sci., 22:795–802. Search in Google Scholar

Parvin R., Mushtaq M., Kim M., Choi H. (2014). Light emitting diode (LED) as a source of monochromatic light: a novel lighting approach for behaviour, physiology and welfare of poultry. Worlds Poult. Sci. J., 70:543–556. Search in Google Scholar

Prescott N., Wathes C.M., Jarvis J. (2003). Light, vision and the welfare of poultry. Anim. Welf., 12:269–288. Search in Google Scholar

Rana M.S., Campbell D.L. (2021). Application of ultraviolet light for poultry production: a review of impacts on behavior, physiology, and production. Front. Anim. Sci., 2:699262. Remonato Franco B., Leis M.L., Wong M., Shynkaruk T., Crowe T., Fancher B., French N., Search in Google Scholar

Gillingham S., Schwean-Lardner K. (2022). Light color and the commercial broiler: effect on ocular health and visual acuity. Front. Physiol., 13:413. Search in Google Scholar

Rogers A.G., Pritchett E.M., Alphin R.L., Brannick E.M., Benson E.R. (2015). I. Evaluation of the impact of alternative light technology on male broiler chicken growth, feed conversion, and allometric characteristics. Poult. Sci., 94:408–414. Search in Google Scholar

Rozenboim I., Biran I., Chaiseha Y., Yahav S., Rosenstrauch A., Sklan D., Halevy O. (2004). The effect of a green and blue monochromatic light combination on broiler growth and development. Poult. Sci., 83:842–845. Search in Google Scholar

Rozenboim I., Biran I., Uni Z., Robinzon B., Halevy O. (1999). The effect of monochromatic light on broiler growth and development. Poult. Sci., 78:135–138. Search in Google Scholar

Rucker F. (2019). Monochromatic and white light and the regulation of eye growth. Exper. Eye Res., 184:172–182. Search in Google Scholar

Saleh A.A., Shukry M., Farrag F., Soliman M.M., Abdel-Moneim A.-M.E. (2021). Effect of Feeding Wet Feed or Wet Feed Fermented by Bacillus licheniformis on Growth Performance, Histopathology and Growth and Lipid Metabolism Marker Genes in Broiler Chickens. Animals, 11:83. Search in Google Scholar

Santana M.R.d., Garcia R.G., Naas I.d.A., Paz I.C., Caldara F.R., Barreto B. (2014). Light emitting diode (LED) use in artificial lighting for broiler chicken production. Engenharia Agrícola, 34:422–427. Search in Google Scholar

Schachar R.A. (2004). Qualitative effect of zonular tension on freshly extracted intact human crystalline lenses: implications for the mechanism of accommodation. Investigative ophthalmology & visual science, 45:2691–2695. Search in Google Scholar

Seifert M., Baden T., Osorio D. (2020). The retinal basis of vision in chicken. Proc. Seminars in cell & developmental biology, 106:106–115. Search in Google Scholar

Senaratna D., Samarakone T., Atapattu N., Nayanasiri H. (2008). Effect of the colour of light on growth performance, behaviour and bone parameters of broiler chicken. Trop. Agri. Res., 20:185–195. Search in Google Scholar

Senaratna D., Samarakone T., Gunawardena W. (2016). Red color light at different intensities affects the performance, behavioral activities and welfare of broilers. Asian-australas. J. Anim. Sci., 29:1052. Search in Google Scholar

Senaratna D., Samarakone T., Madusanka A., Gunawardane W. (2012). Performance, behaviour and welfare aspects of broilers as affected by different colours of artificial light. Trop. Agri. Res. Exten., 14. Search in Google Scholar

Seo H.-S., Kang M., Yoon R.-H., Roh J.-H., Wei B., Ryu K.S., Cha S.-Y., Jang H.-K. (2015). Effects of various LED light colors on growth and immune response in broilers. J. Poult. Sci., 53:76–81. Search in Google Scholar

Seyidoğlu N., Belenli D., MERHAN O., Bozukluhan K. (2020). The effects of different monochromatic colors on oxidant antioxidant balance in broilers. J. Res. Vet. Med., 39:21–25. Search in Google Scholar

Shafey T., Al-Mohsen T. (2002). Embryonic growth, hatching time and hatchability performance of meat breeder eggs incubated under continuous green light. Asian-australas. J. Anim. Sci., 15:1702–1707. Search in Google Scholar

Sissine F. (Year). Energy Independence and Security Act of 2007: a summary of major provisions. Soliman E.S., Hassan R.A. (2019). Impact of lighting color and duration on productive performance and Newcastle disease vaccination efficiency in broiler chickens. Vet. World, 12:1052. Search in Google Scholar

Soliman F.N., El-Sabrout K. (2020). Light wavelengths/colors: Future prospects for broiler behavior and production. J. Vet. Behav., 36:34–39. Search in Google Scholar

Sultana S., Hassan M.R., Choe H.S., Ryu K.S. (2013). The effect of monochromatic and mixed LED light colour on the behaviour and fear responses of broiler chicken. Avian Biol. Res., 6:207–214. Search in Google Scholar

Tabeekh M. (2016). An investigation on the effect of light color and stocking density on some blood parameters of broilers and layers. Donnish J. Agri. Res., 3:8–12. Search in Google Scholar

Vasdal G., Kittelsen K.E., Tahamtani F., Nilsson D.-E. (2022). Description of Light environment in broiler breeder houses with different light sources—And how it differs from natural forest light. Animals, 12:3408. Search in Google Scholar

Wabeck C., Skoglund W. (1974). Influence of radiant energy from fluorescent light sources on growth, mortality, and feed conversion of broilers. Poult. Sci., 53:2055–2059. Search in Google Scholar

Wang P., Sun Y., Fan J., Zong Y., Li Y., Shi L., Isa A.M., Wang Y., Ni A., Ge P. (2020). Effects of monochromatic green light stimulation during embryogenesis on hatching and posthatch performance of four strains of layer breeder. Poult. Sci., 99:5501–5508. Search in Google Scholar

Wang P., Sun Y., Li Y., Fan J., Zong Y., Isa A.M., Shi L., Wang Y., Ni A., Ge P. (2021). Monochromatic green light stimulation during incubation shortened the hatching time via pineal function in White Leghorn eggs. J. Anim. Sci. Biotechnol., 12:1–10. Search in Google Scholar

Wei Y., Zheng W., Li B., Tong Q., Shi H. (2020). Effects of a two-phase mixed color lighting program using light-emitting diode lights on layer chickens during brooding and rearing periods. Poult. Sci., 99:4695–4703. Search in Google Scholar

Wilson M., Lindstrom S.H. (2011). What the bird’s brain tells the bird’s eye: the function of descending input to the avian retina. Visual Neuroscience, 28:337–350. Search in Google Scholar

Wu Y., Huang J., Quan S., Yang Y. (2022). Light regimen on health and growth of broilers: an update review. Poult. Sci., 101:101545. Search in Google Scholar

Xie D., Li J., Wang Z., Cao J., Li T., Chen J., Chen Y. (2011). Effects of monochromatic light on mucosal mechanical and immunological barriers in the small intestine of broilers. Poult. Sci., 90:2697–2704. Search in Google Scholar

Xie D., Wang Z., Dong Y., Cao J., Wang J., Chen J., Chen Y. (2008). Effects of monochromatic light on immune response of broilers. Poult. Sci., 87:1535–1539. Search in Google Scholar

Yang Y., Jiang J., Wang Y., Liu K., Yu Y., Pan J., Ying Y. (2016a). Light-emitting diode spectral sensitivity relationship with growth, feed intake, meat, and manure characteristics in broilers. Transactions of the ASABE, 59:1361–1370. Search in Google Scholar

Yang Y., Yu Y., Pan J., Ying Y., Zhou H. (2016b). A new method to manipulate broiler chicken growth and metabolism: Response to mixed LED light system. Sci. Rep., 6:1–10. Search in Google Scholar

Yarger J., Saunders C., McNaughton J., Quarles C., Hollis B., Gray R. (1995). Comparison of dietary 25-hydroxycholecalciferol and cholecalciferol in broiler chickens. Poult. Sci., 74:1159–1167. Search in Google Scholar

Zahoor M.S., Ahmad S., Usman M., Dawood M., El-Sabrout K., Hashmi S.G.M.D., Khan E.U., Hussain M., Maqsood M.A., Latif H.R.A. (2022). Effects of mirror and coloured balls as environmental enrichment tools on performance, welfare and meat quality traits of commercial broiler. Trop. Anim. Health Prod., 54:151. Search in Google Scholar

Zhang L., Zhang H., Qiao X., Yue H., Wu S., Yao J., Qi G. (2012). Effect of monochromatic light stimuli during embryogenesis on muscular growth, chemical composition, and meat quality of breast muscle in male broilers. Poult. Sci., 91:1026–1031. Search in Google Scholar

Zhang L., Zhu X., Wang X., Li J., Gao F., Zhou G. (2016). Green light-emitting diodes light stimuli during incubation enhances posthatch growth without disrupting normal eye development of broiler embryos and hatchlings. Asian-australas. J. Anim. Sci., 29:1562. Search in Google Scholar

Zhang Z., Cao J., Wang Z., Dong Y., Chen Y. (2014). Effect of a combination of green and blue monochromatic light on broiler immune response. J. Photochem. Photobiol. B, Biol., 138:118–123. Search in Google Scholar

eISSN:
2300-8733
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Life Sciences, Biotechnology, Zoology, Medicine, Veterinary Medicine