Potential Climate Change Impacts on Livestock and Food Security …
449
33. Balog JM (2003) Ascites syndrome (pulmonary hypertension syndrome) in broiler chickens:
are we seeing the light at the end of the tunnel? Avian Poult Biol Rev 14(3):99–126
34. Decuypere E, Buyse J, Buys N (2000) Ascites in broiler chickens: exogenous and endogenous
structural and functional causal factors. World Polt Sci J 56:367–377
35. Maxwell MH, Spence S, Robertson GW, Mitchell MA (1990) Haematological and morphological response of broiler chickens to hypoxia. Avian Pathol 19:23–40
36. Wideman RF Jr, Wing T, Kirby YK, Forman MF, Marson N, Tackett CD, Ruiz-Feria CA (1998)
Evaluation of minimally invasive indices for predicting ascites susceptibility in three successive
hatches of broilers exposed to cool temperatures. Poult Sci 11:565–1573
37. Luger D, Shinder D, Rzepakovsky V, Rusal M, Yahav S (2001) Association between weight
gain, blood parameters, and thyroid hormones and the development of ascites syndrome in
broiler chickens. Poult Sci 80:965–971
38. Akester AR (1984) The cardiovascular system. In: Freeman BM (ed) Physiology and
biochemistry of the domestic fowl, vol 5. Academic Press, London, p 215
39. Henriksen JH, Siemssen O, Krintel JJ, Malchow-Moller A, Bendsten F, Ring-Larsen H (2001)
Dynamics of albumin in plasma and ascitic fluid in patients with cirrhosis. J Hepatol 34:53–60
40. Jones GPD (1994) Energy and nitrogen metabolism and oxygen use by broilers susceptible to
ascites and grown at three environmental temperatures
41. Julian RJ (2000) Physiological, management nad environmental triggers of the ascites
syndrome: a review. Avian Pathol 29:519–527
42. Global Agriculture information network (GAIN) Report (2017) Ali abdi 2017: strengthening
Egyptian pound to ease beef prices. Consumption and imports to rise in 2018
43. Herrero M, Thornton PK, Notenbaert AM, Wood S, Msangi S, Freeman HA et al (2010) Smart
investments in sustainable food production: revisiting mixed crop-livestock systems. Science
327:822–825
44. Hahlani CD, Garwi J (2014) Operational challenges to smallholder dairy farming: the case of
Mayfield dairy settlement scheme in Chipinge district of Zimbabwe. IOSR J Human Soc Sci
(IOSR-JHSS) 19:87–94
45. Abdel Aziz A, Sadek RR (1999) Policy issues in the dairy sub-sector. Workshop on production,
processing and marketing policy issues in the dairy sub-sector, 46 p
46. Singh B, Gauhan SK, Chauhan MS, Singla SK (2015) Textbook of animal biotechnology. The
Energy and Resources Institute (TERI), New Delhi, India, 678 p
47. Arefaine H, Kashwa M (2015) A review on strategies for sustainable buffalo milk production
in Egypt. J Biol Agricult Healthcare 5:63–67
48. Hemme T, Otte J (2010) Status of and prospects for smallholder milk production—a global
perspective. FAO, Rome, p 185
49. Dunn RJH, Mead NE, Willett KM, Parker DE (2014) Analysis of heat stress in UK dairy cattle
and impact on milk yields. Environ Res Lett 9:064006, 11 pp
50. Ernabucci U, Calamari L (1998) Effect of heat stress on bovine milk yield and composition.
Zootec Nutr Anim 24:247–257
51. Ozrenk E, Inci SS (2008) The effect of seasonal variation on the composition of cow milk in
Van Province. Pak J Nutr 7:161–164
52. Bernabucci U, Basiricò L, Morera P (2013) Impact of hot environment on colostrum and milk
composition. Cell Mol Biol 59(1):67–83
53. Kume S, Takahashi S, Kurihara M, Aii T (1989) The effects of a hot environment on the major
mineral content in milk. Jpn J Zootech Sci 60:341–345
54. Ngongoni NT, Mapiye C, Mwale M, Mupeta B (2006) Factors affecting milk production in
the smallholder dairy sector in Zimbabwe. Livestock Res Rural Dev 18(05). http://www.cipav.
org.co/lrrd/lrrd18/5/ngon18072.htm
55. Marai IFM, El-Darawany AA, Fadiel A, Abdel-Hafez MAM (2007) Physiological traits as
affected by heat stress in sheep—a review. Small Rumin Res 71:1–12
56. Economic Research Service/USDA website. www.ers.usda.gov. Accessed on 17 Feb 2018
57. Hoffmann I (2005) Research and investment in poultry genetic resource—challenges and
options for sustainable use. World’s Poult Sci J 61(10):57–70
449
33. Balog JM (2003) Ascites syndrome (pulmonary hypertension syndrome) in broiler chickens:
are we seeing the light at the end of the tunnel? Avian Poult Biol Rev 14(3):99–126
34. Decuypere E, Buyse J, Buys N (2000) Ascites in broiler chickens: exogenous and endogenous
structural and functional causal factors. World Polt Sci J 56:367–377
35. Maxwell MH, Spence S, Robertson GW, Mitchell MA (1990) Haematological and morphological response of broiler chickens to hypoxia. Avian Pathol 19:23–40
36. Wideman RF Jr, Wing T, Kirby YK, Forman MF, Marson N, Tackett CD, Ruiz-Feria CA (1998)
Evaluation of minimally invasive indices for predicting ascites susceptibility in three successive
hatches of broilers exposed to cool temperatures. Poult Sci 11:565–1573
37. Luger D, Shinder D, Rzepakovsky V, Rusal M, Yahav S (2001) Association between weight
gain, blood parameters, and thyroid hormones and the development of ascites syndrome in
broiler chickens. Poult Sci 80:965–971
38. Akester AR (1984) The cardiovascular system. In: Freeman BM (ed) Physiology and
biochemistry of the domestic fowl, vol 5. Academic Press, London, p 215
39. Henriksen JH, Siemssen O, Krintel JJ, Malchow-Moller A, Bendsten F, Ring-Larsen H (2001)
Dynamics of albumin in plasma and ascitic fluid in patients with cirrhosis. J Hepatol 34:53–60
40. Jones GPD (1994) Energy and nitrogen metabolism and oxygen use by broilers susceptible to
ascites and grown at three environmental temperatures
41. Julian RJ (2000) Physiological, management nad environmental triggers of the ascites
syndrome: a review. Avian Pathol 29:519–527
42. Global Agriculture information network (GAIN) Report (2017) Ali abdi 2017: strengthening
Egyptian pound to ease beef prices. Consumption and imports to rise in 2018
43. Herrero M, Thornton PK, Notenbaert AM, Wood S, Msangi S, Freeman HA et al (2010) Smart
investments in sustainable food production: revisiting mixed crop-livestock systems. Science
327:822–825
44. Hahlani CD, Garwi J (2014) Operational challenges to smallholder dairy farming: the case of
Mayfield dairy settlement scheme in Chipinge district of Zimbabwe. IOSR J Human Soc Sci
(IOSR-JHSS) 19:87–94
45. Abdel Aziz A, Sadek RR (1999) Policy issues in the dairy sub-sector. Workshop on production,
processing and marketing policy issues in the dairy sub-sector, 46 p
46. Singh B, Gauhan SK, Chauhan MS, Singla SK (2015) Textbook of animal biotechnology. The
Energy and Resources Institute (TERI), New Delhi, India, 678 p
47. Arefaine H, Kashwa M (2015) A review on strategies for sustainable buffalo milk production
in Egypt. J Biol Agricult Healthcare 5:63–67
48. Hemme T, Otte J (2010) Status of and prospects for smallholder milk production—a global
perspective. FAO, Rome, p 185
49. Dunn RJH, Mead NE, Willett KM, Parker DE (2014) Analysis of heat stress in UK dairy cattle
and impact on milk yields. Environ Res Lett 9:064006, 11 pp
50. Ernabucci U, Calamari L (1998) Effect of heat stress on bovine milk yield and composition.
Zootec Nutr Anim 24:247–257
51. Ozrenk E, Inci SS (2008) The effect of seasonal variation on the composition of cow milk in
Van Province. Pak J Nutr 7:161–164
52. Bernabucci U, Basiricò L, Morera P (2013) Impact of hot environment on colostrum and milk
composition. Cell Mol Biol 59(1):67–83
53. Kume S, Takahashi S, Kurihara M, Aii T (1989) The effects of a hot environment on the major
mineral content in milk. Jpn J Zootech Sci 60:341–345
54. Ngongoni NT, Mapiye C, Mwale M, Mupeta B (2006) Factors affecting milk production in
the smallholder dairy sector in Zimbabwe. Livestock Res Rural Dev 18(05). http://www.cipav.
org.co/lrrd/lrrd18/5/ngon18072.htm
55. Marai IFM, El-Darawany AA, Fadiel A, Abdel-Hafez MAM (2007) Physiological traits as
affected by heat stress in sheep—a review. Small Rumin Res 71:1–12
56. Economic Research Service/USDA website. www.ers.usda.gov. Accessed on 17 Feb 2018
57. Hoffmann I (2005) Research and investment in poultry genetic resource—challenges and
options for sustainable use. World’s Poult Sci J 61(10):57–70
