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References

Aalund, O. (1972). Immune response of sheep, goats, cattle, and swine. In: Immunity to Animal Parasites (ed.

E. J.L. Soulsby), 2-31. New York: Academic Press.

Adam, S.E.I., Wasfi, I.A., and Magzoub, M.

(1977). Chromic copper toxicity in Nubian goats. J. Comp. Pathol.

87: 623-627.

Adams, D.S., Klevjer-Anderson, P., Carlson, J.L. et al. (1983). Transmission and control of caprine arthritis-encephalitis virus. Am. J. Vet. Res. 44 (9): 1670-1675.

Adeoye, S.A.O. (1985). Disease profiles of sheep and goats in two groups of villages in Southwest Nigeria. In: Sheep and Goats in Humid West Africa (ed. J.E. Sumberg and

K. Cassaday), 13-16. Addis Ababa: International Livestock Center for Africa.

Adeyemo, O., Gao, R.J., and Lan, H.C. (1997). Cytokine production in vitro by macrophages of goats with caprine arthritis-encephalitis. Cell. Mol. Biol. 43 (7): 1031-1037.

Agunloye, C.A., Patel, J., Patel, J. et al. (1996). Clinical and serological diagnosis of leptospirosis in aborting west African dwarf goats. Nig. Vet. J. 1 (1): 9-15.

Ahmed, B.M., Taha, K.M., Enan, K.A. et al. (2013). Attenuation of Theileria lestoquardi infected cells and immunization of sheep against malignant ovine theileriosis. Vaccine 31: 4775-4781. https://doi.org/ 10.1016∕j.vaccine.2013.08.004.

Ahmed, O.M.M. and Adam, S.E.I. (1980). The toxicity of Capparis tomentosa in goats. J. Comp. Pathol. 90: 187-195.

Akerejola, O.O., Schillhorn van Veen, T.W., and Njoku, C.O. (1979). Ovine and caprine diseases in Nigeria: a review of economic losses. Bull. Anim. Health Prod. Afr. 27: 65-70.

Akram, T., Shah, R.A., Mudasir, H. et al. (2017). Comparative efficiency of goat mesenchymal stem cell isolation from bone marrow and bone chip. Small Rum. Res. 153: 87-94.

Aktas, M. and Ozubek, S. (2017). A molecular survey of small ruminant hemotropic mycoplasmosis in Turkey, including first laboratory confirmed clinical cases caused by Mycoplasma ovis.

Vet. Microbiol. 208: 217-222. https://doi. org/10.1016/j.vetmic.2017.08.011.

Ali, B. and Adam, S.E.I. (1978). Effects of Acanthospermum hispidum on goats. J. Comp. Pathol. 88: 533-544.

Al-Obaidi, Q.T. and Alsaad, K.M. (2004). Comparative therapeutic efficacy of buparaquone, oxytetratracycline 20% & diminazine-aceturate against theileriosis in sheep. Iraqi J. Vet. Sci. 18 (2): 157-164.

Alonso-Amelot, M.E. (1999). Bracken fern, animal and human health. Rev. Facult. Agron. Univ. Zulia 16 (5): 528-547.

Alves, C.J., Vasconcellos, S.A., Camargo, C.R.A., and Morais, Z.M. (1996). Influence of regional and climatic factors on the proportion of goats seroreactive for leptospirosis at five breeding centres in the northeastern state of Paraiba. Braz Arq. Inst. Biol. (Sao Paulo) 63 (2): 11-18.

Amjadi, A.R. and Ahourai, P. (1975). Pathological aspect of leptospirosis in sheep and goats in Iran. Arch. Inst. Razi 27: 71-80.

Andresen, E. (1984). Blood groups, immunogenetics and biochemical genetics. In: Duke’s Physiology of Domestic Animals, 10e (ed. M.J. Swenson), 51-67. Ithaca, NY: Comstock Publishing Assoc.

Anika, S.M., Nouws, J.F.M., van Gogh, H. et al. (1986a). Chemotherapy and pharmacokinetics of some antimicrobial agents in healthy dwarf goats and those infected with Ehrlichia phagocytophilia (tick-borne fever). Res. Vet. Sci. 41: 386-390.

Anika, S.M., Nouws, J.F.M., Vree, T.B., and Van Miert, A.S.J.P.A.M. (1986b). The efficacy and plasma disposition of chloramphenicol and spiramycin in tick- borne fever-infected dwarf goats. J. Vet. Pharmacol. Ther. 9: 433-435.

Anonymous (1988). Brassica red-water in goats. Goat Health Prod. 2: 8.

Anosa, V.O. and Isoun, T.T. (1976). Serum proteins, blood and plasma volumes in experimental Trypanosoma vivax infections of sheep and goats. Trop. Anim. Health Prod. 8: 14-19.

Arguello, A., Castro, N., Capote, J. et al. (2003). Effects of refrigeration, freezing-thawing and pasteurization on IgG goat colostrum preservation.

Small Rumin. Res. 48 (2): 135-139. https://doi.org/10.1016/S0921-4488(02)00277-8.

Atroshi, F., Sankari, S., and Lindstrom, U.B. (1986). Somatic cell count and milk yield in relation to haemoglobin concentration in Finnish dairy goats. Vet. Res. Commun. 10: 57-63.

Aziz, E.S. and Klesius, P.H. (1985). The effect of selenium deficiency in goats on lymphocyte production of leukocyte migration inhibitory factor. Vet. Immunol. Immunopathol. 10: 381-390.

Aziz, E.S. and Klesius, P.H. (1986). Depressed neutrophil chemotactic stimuli in supernatants of ionophore-treated polymorphonuclear leukocytes from selenium-deficient goats. Am. J. Vet. Res. 47: 148-151.

Aziz, E.S., Klesius, P.H., and Frandsen, J.C. (1984). Effects of selenium on polymorphonuclear leukocyte function in goats. Am. J. Vet. Res. 45: 1715-1718.

Ballingall, K.T. and Todd, H. (2019). An official nomenclature for the major histocompatibility complex allele sequences from the domestic goat (Capra hircus). HLA 93: 36-38. https://doi.org/10.1111/tan.13425.

Banerjee, P.K., Guha, C., and Gupta, R. (1987). A note on incidence of Babesia motasi infection in a goat in West Bengal. Indian Vet. J. 64: 71-73.

Banks, K.L. and Greenlee, A. (1982). Lymphocyte subpopulations of the goat: isolation and identification. Am. J. Vet. Res. 43: 314-317.

Bannister, J.V., Bannister, W.H., Wilson, J.B. et al. (1979). The structure of goat hemoglobins. V. A fourth beta chain variant with decreased oxygen affinity and occurring at a high frequency in Malta. Hemoglobin 3: 57-75.

Barri, M.E., Onsa, T.O., Elawad, A.A. et al. (1983). Toxicity of five Sudanese plants to young ruminants. J. Comp. Pathol. 93: 559-575.

Barry, D.M., and van Niekerk, C.M. (1987a). Anaplasma ovis abortion in Boer goat does: I. Effect on body temperature and haematological picture in infected does. In: Proceedings of the IVInternational Conference on Goats, 1488. Brasilia: EMBRAPA-DDT.

Barry, D.M., and van Niekerk, C.M. (1987b). Anaplasma ovis abortion in Boer goat does: II.

Effect on plasma progesterone concentration and transplacental migration of A. ovis in infected does. In: Proceedings of the IVInternational Conference on Goats, 1489. Brasilia: EMBRAPA-DDT.

Batmaz, H., Kaςar, Y., Topal, O. et al. (2019). Evaluation of passive transfer in goat kids with Brix refractometer and comparison with other semiquantitative tests. Turk. J. Vet. Anim. Sci. 43: 596-602. https://doi.org/10.3906/ vet-1905-31.

Bawm, S., Kakisaka, K., Thu, M.J. et al. (2018). First molecular detection of Theileria luwenshuni from goats in Myanmar. Parasitol. Res. 117: 3361-3364. https://doi. org/10.1007/s00436-018-6073-6.

Bazmani, A., Abolhooshyar, A., Imani-Baran, A., and Akbari,

H. (2018). Semi-nested polymerase chain reaction-based detection of Babesia spp. in small ruminants from Northwest of Iran. Vet. World 11 (3): 268-273. https://doi. org/10.14202/vetworld.2018.268-273.

Bealby, K.A., Connor, R.J. and Rowlands, G.J. (1996). Trypanosomosis in Goats in Zambia. Nairobi: International Livestock Research Institute.

Begovic, S., Duaic, E., Sacirbegovic, A., and Tafro, A. (1978). Study of etiology and pathogenesis of function disturbances of haematopoietic system in alimentary intoxications with tannins. Vet. Yugoslavia 27 (4): 459-470.

Belford, C.J. and Raven, C.R. (1986). Chronic copper poisoning in Angora kids. Surveillance, New Zealand 13: 4-5.

Bennett, D.G. (1983). Anemia and hypoproteinemia. Vet. Clin. North Am. Large Anim. Pract. 5: 511-524.

Berthelsson, J., Ramabu, S.S., Lysholm, S. et al. (2020). Anaplasma ovis infection in goat flocks around Gaborone, Botswana. Comp. Clin. Pathol. 29 (1): 167-172. https://doi. org/10.1007/s00580-019-03044-4.

Bhatnagar, R.N., Mittal, K.R., Jaiswal, T.N., and Padmanaban, V.D. (1988). Levels of complement activities in the sera of healthy goats. Indian Vet. J. 65: 93-97.

Bianca, W. (1969). Blood volume in young goats at high altitude. Fed. Proc. 28: 1220-1222.

Billinis, C. (2013). Wildlife diseases that pose a risk to small ruminants and their farmers.

Small Rumin. Res. 110: 67-70. https://doi.org/10.1016/j.smallrumres.2012.11.005.

Black, H., Hutton, J.B., Sutherland, R.J., and James, M.P. (1988). White liver disease in goats. N. Z. Vet. J. 36: 15-17.

Boutin, J.P., Debonne, J.M., and Rey, J.L. (1985). Apparition du charbon humain en foret ivoirienne. Med. Trop. 45: 79-81.

Bouzar, B.A., Rea, A., Hoc-Villet, S. et al. (2007). Activation/ proliferation and apoptosis of bystander goat lymphocytes induced by a macrophagetropic chimeric caprine arthritis encephalitis virus expressing SIV Nef. Virology 364 (2): 269-280.

Bozynski, C.C., Evans, T.J., Kim, D.Y. et al. (2009). Copper toxicosis with hemolysis and hemoglobinuric nephrosis in three adult Boer goats. J. Vet. Diagn. Invest:. 21: 395-400.

Brain, L.T.A. (1983). Cobalt deficiency in a young goat. Goat Vet. Soc. J. 4: 45.

Braun, J.P., Tainturier, D., Bezille, P. et al. (1984). Transfer of gamma-glutamyltransferase from mother colostrum to newborn goat and foal. Enzyme 31: 193-196.

Breukink, H.J., Hart, H.C., von Arkel, C. et al. (1972). Congenital afibrinogenemia in goats. Zentralbl. Vet. Med. A 19: 661-676.

Briggs, P.M., Delta, B.G., Keener, S.R. et al. (1988). Human cutaneous anthrax - North Carolina, 1987. Morb. Mort. Weekly Report 37: 413-414.

Brooks, D.L., Tillman, P.C., and Niemi, S.M. (1984). Ungulates as laboratory animals. In: Laboratory Animal Medicine (ed. J.G. Fox, B.J. Cohen and F.M. Loew). Orlando, FL: Academic Press.

Butler, J.E. (1986). Biochemistry and biology of ruminant, immunoglobulins. Prog. Vet. Microbiol. Immunol. 2: 1-53.

Buvanendran, V., Sooriyamoorthy, T., Ogunsusi, R.A., and Adu, I.F. (1981). Haemoglobin polymorphism and resistance to helminths in red Sokoto goats. Trop. Anim. Health Prod. 13: 217-221.

Cain, G.R., East, N., and Moore, P.F. (1994). Myelofibrosis in young pygmy goats. Comp. Haematol. Int. 4: 167-172.

Caro, M.R., Gallego, M.C., Buendia, A.J. et al. (1998). Postnatal evolution of lymphocyte subpopulations in peripheral blood and lymphoid organs in the goat.

Res. Vet. Sci. 65: 145-148.

Castro, N., Capote, J., Alvarez, S., and Arguello, A. (2005). Effects of lyophilized colostrum and different colostrum feeding regimens on passive transfer of immunoglobulin G in Majorera goat kids. J. Dairy Sci. 88 (10): 3650-3654. https://doi.org/10.3168/jds.S0022-0302(05)73050-2.

Castro, N., Arbeio, F.A., Nino, T. et al. (2008). The effects of diet and age on serum complement system activity in goat kids. Livest. Sci. 119 (1/3): 102-106.

Cheevers, W.P., Beyer, J.C., and Knowles, D.P. (1997). Type 1 and type 2 cytokine gene expression by viral gp135 surface protein-activated T lymphocytes in caprine arthritisencephalitis lentivirus infection. J. Virol.

71 (8): 6259-6263.

Clark, C.H. and Kiesel, G.K. (1963). Longevity of red blood cells in interspecies transfusion. J. Am. Vet. Med. Assoc. 143: 400-401.

Coles, E.H. (1986). Veterinary Clinical Pathology, 4e. Philadelphia, PA: W.B. Saunders.

Connor, R.J. and van den Bossche, P. (2004). African animal trypanosomoses. In: Infectious Diseases of Livestock, 2e (ed. J.A.W. Coetzer and R.C. Tustin), 251-296. Cape Town: Oxford University Press.

Constable, P.D., Hinchcliff, K.W., Done, S.H., and Grunberg, W. (2017). Veterinary Medicine. A Textbook of the Diseases of Cattle, Horse, Sheep, Pigs and Goats, 11e. St. Louis, MO: Elsevier.

Constant, S.B., LeBlanc, M.M., Klapstein, E.F. et al. (1994). Serum immunoglobulin G concentration in goat kids fed colostrum or a colostrum substitute. J. Am. Vet. Med. Assoc. 205 (12): 1759-1762.

Cornish, J., Angelos, J., Puschner, B. et al. (2007). Copper toxicosis in a dairy goat herd. J. Am. Vet. Med. Assoc. 231 (4): 586-589.

Credille, B.C. and Epstein, K.L. (2016). Chapter 23. Food and fiber animal transfusion medicine. In: In, Manual of Veterinary Transfusion Medicine and Blood Banking, 1e (ed. K. Yagi and M.K. Holowaychuk), 321-333. Chichester: Wiley.

Cregar, L.C., Wiedmeyer, C.E., Ringen, D.R. et al. (2012). Copper toxicosis in a Boer goat. Vet. Clin. Pathol. 41 (4): 502-508. https://doi.org/10.1111Zj.1939-165x.2012. 00487.x.

Daddow, K.N. (1977). A complement fixation test for the detection of Eperythrozoon infection in sheep. Aust. Vet. J. 53: 139-143.

Daddow, K.N. (1979a). The transmission of a sheep strain of Eperythrozoon ovis to goats and the development of a carrier state in the goats. Aust. Vet. J. 55: 605.

Daddow, K.N. (1979b). The natural occurrence in a goat of an organism resembling Eperythrozoon ovis. Aust. Vet. J. 55: 605-606.

van Dam, R.H., van Kooten, P.J.S., and van der Donk, J.A. (1978). in vitro stimulation of goat peripheral blood lymphocytes: optimization and kinetics of the response to mitogens and to allogeneic lymphocytes. J. Immunol. Methods 21: 217-228.

van Dam, R.H., Van Kooten, P.J.S., Bosman-Kooyman, C.A.M. et al. (1981a). Trypanosome mediated suppression of humoral and cell-mediated immunity in goats. Vet. Parasitol. 8: 1-11.

Damir, H.A., Adam, S.E.I., and Tartour, G. (1987). The effects of Ipomoea carnea on goats and sheep. Vet. Hum. Toxicol. 29: 316-319.

Dargantes, A.P., Campbell, R.S.F., Copeman, D.B., and Reid, S.A. (2005b). Experimental Trypanosoma evansi infection in the goat. II. Pathology. J. Comp. Pathol. 133 (4): 267-276.

Dargantes, A.P., Reid, S.A., and Copeman, D.B. (2005a). Experimental Trypanosoma evansi infection in the goat.

I. Clinical signs and clinical pathology. J. Comp. Pathol. 133 (4): 261-266.

Davis, C.E. (1982). Thrombocytopenia a uniform complication of African trypanosomosis. Acta Trop. 39: 123-134.

Davis, J.W., Libke, K.G., Watson, D.F., and Bibb, T.L. (1976). Experimentally induced lead poisoning in goats: clinical observations and pathologic changes. Cornell Vet. 66: 490-497.

DeMartini, J.C., Banks, K.L., Greenlee, A. et al. (1983). Augmented T lymphocyte responses and abnormal B lymphocyte numbers in goats chronically infected with the retrovirus causing caprine arthritisencephalitis. Am. J. Vet. Res. 44: 2064-2069.

Diamond, L.S. and Rubin, R. (1958). Experimental infection of certain farm animals with a North American strain of Trypanasoma cruzi from the raccoon. Exp. Parasitol. 7: 383-390.

Diesing, L., Ahmed, J.S., Zweygarth, E., and Horchner,

F. (1983). Trypanosoma brucei brucei infection in goats. Response in peripheral blood lymphocytes to mitogen stimulation. Tropenmed. Parasitol. 34: 79-83.

Dobereiner, J., Stolf, L., and Tokarnia, C.H. (1987). Poisonous plants affecting goats. In: Proceedings of the

IV International Conference on Goats, 473-487. Brasilia: EMBRAPA-DDT.

Dollahite, J.W. (1972). The use of sheep and goats to control Senecio poisoning in cattle. Southwest. Vet. 25: 223-226.

Dong, Y., Xie, M., Jiang, Y. et al. (2013). Sequencing and automated whole genome optical mapping of the genome of a domestic goat (Capra hircus). Nat. Biotechnol. 31: 35-141.

Dorr, L., Pearce, P.C., Shine, T., and Hawkey, C.M. (1986). Changes in red cell volume distribution frequency after acute blood loss in goats (Capra hircus). Res. Vet. Sci. 40: 322-327.

Doyle, J.J., Moloo, S.K., and Borowy, N.K. (1984). Development of improved control methods of animal trypanosomiasis: a review. Prev. Vet. Med. 2: 43-52.

Dubey, J.P., Weisbrode, S.E., Speer, C.A., and Sharma, S.P. (1981). Sarcocystosis in goats: clinical signs and pathologic and hematologic findings. J. Am. Vet. Med. Assoc. 178: 683-699.

Dumler, J.S., Barbet, A.F., Bekker, C.P. et al. (2001). Reorganization of genera in the families Rickettsiaceae and Anaplasmataceae in the order Rickettsiales: unification of some species of Ehrlichia with Anaplasma, Cowdria with Ehrlichia and Ehrlichia with Neorickettsia, descriptions of six new species combinations and designation of Ehrlichia equi and “HGE agent” as subjective synonyms of Ehrlichia phagocytophila. Int. J. Syst. Evol. Microbiol. 51: 2145-2165.

Earl, P.R. and Carranza, A.B. (1980). Leukocyte differential counts of the Mexican goat. Int. Goat Sheep Res. 1: 6-10.

Edelsten, R.M. (1975). The distribution and prevalence of Nairobi sheep disease and other tick-borne infections of sheep and goats in northern Somalia. Trop. Anim. Health Prod. 7: 29-34.

Edjtehadi, M. (1978). Age associated changes in the blood picture of the goat. Zentralbl. Vet. Med. A 25: 198-206.

Edwards, E.E., Judd, J.M., and Squire, F.A. (1956).

Observations on trypanosomosis in domestic animals in West Africa. I. The daily index of infection and the weekly haematological values in goats and sheep infected with Trypanosoma vivax, T. congolense, and T brucei. Ann. Tropmed. Parasitol. 50: 223-241.

El Imam, A.H. and Taha, K.M. (2015). Malignant ovine theileriosis (Theileria lestoquardi): a review. Jordan J. Biol. Sci. 8 (3): 165-174.

Ellory, J.C. and Tucker, E.M. (1983). Cation transport in red blood cells. In: Red Blood Cells of Domestic Mammals (ed. N.S. Agar and P.G. Board), 291-312. Amsterdam: Elsevier.

Esmaeilnejad, B., Tavassoli, M., and Asri-Rezaei, S. (2012). Investigation of hematological and biochemical parameters in small ruminants naturally infected with Babesia ovis. Vet. Res. Forum 3 (1): 31-36.

Ezeasor, D.N. and Singh, A. (1988). Histology of the caprine hemal node. Acta Anat. 133: 16-23.

Fairley, N.M., Price, G.S., and Meuten, D.J. (1988). Evaluation of red blood cell fragility in Pygmy goats. Am. J. Vet. Res. 49: 1598-1600.

FAO (2021). Goats. In: Live Animals. Rome: Production Domain of FAOSTAT, Food and Agricultural Organization of the United Nations. http://www.fao.org/faostat/ en/#data/QA (accessed December 23, 2021).

Fetcher, A. (1983). Liver diseases of sheep and goats. Vet.

Clin. North Am. Large Anim. Pract. 5: 525-538.

Fletcher, W.S., Rogers, A.L., and Donaldson, S.S. (1964). The use of the goat as an experimental animal. Lab. Anim. Care 14: 65-90.

Fluri, A., Nenci, C., Zahno, M.-L. et al. (2006). The MHC- haplotype influences primary, but not memory, immune responses to an immunodominant peptide containing T- and B-cell epitopes of the caprine arthritis encephalitis virus Gag protein. Vaccine 24 (5): 597-606.

Foster, W.N.M. and Greig, J.C. (1969). Isolation of tick- borne fever from feral goats in New Galloway. Vet. Rec. 85: 585-586.

Galon, E.M.S., Moument, P.F.A., Ybanez, R.H.D. et al. (2019). Molecular evidence of hemotropic mycoplasmas in goats from Cebu, Philippines. J. Vet. Med. Sci. 81 (6): 869-873. https://doi.org/10.1292/jvms.19-0042.

Garrick, M.D. (1983). Hemoglobin switching. In: Red Blood Cells of Domestic Mammals (ed. N.S. Agar and P.G. Board). Amsterdam: Elsevier.

Garrick, M.D. and Garrick, L.M. (1983). Hemoglobin and globin genes. In: Red Blood Cells of Domestic Mammals (ed. N.S. Agar and P.G. Board), 165. Amsterdam: Elsevier.

Geerts, S., Osaer, S., Goossens, B., and Faye, D. (2009). Trypanotolerance in small ruminants of sub-Saharan Africa. Trends Parasitol. 25 (3): 132-138. https://doi. org/10.1016/j.pt.2008.12.004.

Gray, D., Webster, K., and Berry, J.E. (1988). Evidence of louping ill and tick-borne fever in goats. Vet. Rec. 122: 66.

Gray, G.D., Mickelson, M.M., and Crim, J.A. (1969). The demonstration of two gamma globulin subclasses in the goat. Immunochemistry 6: 641-644.

Greenlagh, J.F.D., Sharman, G.A.M., and Aitken, J.N. (1969). Kale anemia-I. The toxicity to various species of animal of three types of kale. Res. Vet. Sci. 10: 64-72.

Greenlagh, J.F.D., Sharman, G.A.M., and Aitken, J.N. (1970). Kale anemia-II. Further factors concerned in the occurrence of the disease under experimental conditions. Res. Vet. Sci. 11: 232-238.

Greenlee, A. and Banks, K.L. (1985). Cellular and lipopolysaccharide subunit requirements for the caprine lymphoblastogenic response to endotoxin. Am. J. Vet. Res. 46: 75-79.

Griffin, L. (1978). African trypanosomosis in sheep and goats: a review. Vet. Bull. 48: 819-825.

Griffin, L. and Allonby, E.W. (1979a). Studies on the epidemiology of trypanosomiasis in sheep and goats in Kenya. Trop. Anim. Health Prod. 11: 133-142.

Griffin, L. and Allonby, E.W. (1979b). Disease syndromes in sheep and goats naturally infected with Trypanosoma congolense. J. Comp. Pathol. 89: 457-464.

Griffin, L., Allonby, E.W., and Preston, J.M. (1981a). The interaction of Trypanosoma congolense and Haemonchus contortus infections in 2 breeds of goat. 1. Parasitology.

J. Comp. Pathol. 91: 85-95.

Griffin, L., Allonby, E.W., and Preston, J.M. (1981b). The interaction of Trypanosoma congolense and Haemonchus contortus infections in 2 breeds of goat. 2. Haematology. J. Comp. Pathol. 91: 97-103.

Griffin, L., Waghela, S., and Allonby, E.W. (1980). The immunosuppressive effects of experimental T. congolense infections in goats. Vet. Parasitol. 7 (1): 11-18.

Griot-Wenk, M.E., Obexer-Ruff, G., Fluri, A., and

Marti, E. (2000). Partial sequences of feline and caprine immunoglobulin epsilon heavy chain cDNA and comparative binding studies of recombinant IgE fragment­specific antibodies across different species. Vet. Immunol. Immunopathol. 75 (1/2): 59-69.

Guerrra-Maupome, M., Slate, J.R., and McGill, J.L. (2019). Gamma delta T cell function in ruminants. Vet. Clin. North Am. Food Anim. Pract. 35 (3): 453-469. https://doi. org/10.1016/j.cvfa.2019.08.001.

Gulliani, G.L., Chanana, A.D., Cronkite, E.P. et al. (1975). Survival of chromium-51-labeled autologous and homologous erythrocytes in goats. Am. J. Vet. Res. 36: 1469-1471.

Gutierrez, C., Corbera, J.A., Bayou, K., and van Gool,

F. (2008). Use of cymelarsan in goats chronically infected with Trypanosoma evansi. Ann. N. Y. Acad. Sci. 1149: 331-333. https://doi.org/10.1196/annals.1428.095.

Gutierrez, C., Corbera, J.A., Morales, M., and Buscher,

P. (2006). Trypanosomosis in goats: current status. Ann.

N. Y. Acad. Sci. 1081: 300-310. https://doi.org/10.1196/ annals.1373.040.

Hadlow, W.J. (1978). High prevalence of thymoma in the dairy goat: report of 17 cases. Vet. Pathol. 15: 153-169.

Hagstad, H.V., Hubbert, W.T., and Craig, L.M. (1984). Health status as related to management practices in Louisiana goat herds. Int. Goat Sheep Res. 2: 238-242.

Hamond, C., Martins, G., Loureiro, A.P. et al. (2014). Urinary PCR as an increasingly useful tool for an accurate diagnosis of leptospirosis in livestock. Vet. Res. Commun. 38: 81-85. https://doi.org/10.1007/s11259-013-9582-x.

Harrison, A., Brown, K.J., and Montgomery, W.I. (2012). Anaplasma phagocytophilum in feral goats in Northern Ireland. Vet. Rec. 170 (23): 602-603. https://doi. org/10.1136/vr.e3938.

Hedden, J.A., Thomas, C.M., Songer, J.G., and Olson,

G. B. (1986). Characterization of lectin-binding lymphocytes in goats with caseous lymphadenitis. Am.

J. Vet. Res. 47: 1265-1267.

Herrera, L., D'Andrea, P.S., Xavier, S.C.C. et al. (2005). Trypanosoma cruzi infection in wild mammals of the National Park ‘Serra da Capivara' and its surroundings (Piau'ι, Brazil), an area endemic for Chagas disease. Trans. R. Soc. Trop. Med. Hyg. 99: 379-388. https://doi. org/10.1016/j.trstmh.2004.07.006.

Hill, J.A., Fubini, S.L., and Hackett, R.P. (2017). Clinical features, treatment, and outcome in goats with thymomas: 13 cases (1990-2014). J. Am. Vet. Med. Assoc. 251 (7): 829-834. https://doi.org/10.2460/javma.251.7.829.

Holman, H.H. and Dew, S.M. (1964). The blood picture of the goat. II. Changes in erythrocyte shape, size and number associated with age. Res. Vet. Sci. 5: 274-285.

Holman, H.H. and Dew, S.M. (1965a). The blood picture of the goat. III. Changes in haemoglobin concentration and physical measurements occurring with age. Res. Vet. Sci. 6: 245-253.

Holman, H.H. and Dew, S.M. (1965b). The blood picture of the goat. IV. Changes in coagulation times, platelet counts and leucocyte numbers associated with age. Res. Vet. Sci. 6: 510-521.

Holman, H.H. and Dew, S.M. (1966). Effect of an injection of irondextran complex on blood constituents and bodyweight of young kids. Vet. Rec. 78: 772-776.

Hooshmand-Rad, P. and Hawa, N.J. (1973). Malignant theileriosis of sheep and goats. Trop. Anim. Health Prod. 5: 97-102.

Hope, J.C., Sopp, P., Wattegedera, S., and Entrican, G. (2012). Tools and reagents for caprine immunology. Small Rumin. Res. 103: 23-27. https://doi.org/10.1016/j. smallrumres.2011.10.015.

Hornok, S., Hajtos, I., Meli, M.L. et al. (2012). First molecular identification of Mycoplasma ovis and Candidatus

M. haemoovis from goat, with lack of haemoplasma PCR-positivity in lice. Acta Vet. Hung. 60 (355-360): https://doi.org/10.1556/AVet.2012.030.

Hsu, C.K. (1976). Immunology. In: Handbook of Laboratory Animal Science, vol. III (ed. E.C. Melby and N.H. Altman), 479-518. Cleveland, OH: CRC Press.

Huisman, T.H.J. (1974). Structural aspects of fetal and adult hemoglobins from nonanemic ruminants. Annals

N. Y. Acad. Sci. 241: 392-410.

Huisman, T.H.J., Lewis, J.P., Blunt, M.H. et al. (1969). Hemoglobin C in newborn sheep and goats: a possible explanation for its function and biosynthesis. Pediat. Res.

J. 3: 189-198.

Humphries, W.R., Morrice, P.C., and Mitchell, A.N. (1987). Copper poisoning in Angora goats. Vet. Rec. 121: 231.

Hussein, K.S.M., Jones, B.-E.V., and Frank, A. (1985).

Selenium copper interactions in goats. Zbl. Vet. Med. A 32: 321-330.

Ijaz, M., Rehman, A., Ali, M. et al. (2013). Clinico-epidemiology and therapeutical trials on babesiosis in sheep and goats in Lahore, Pakistan. J. Anim. Plant Sci. 23 (2): 666-669.

Ilemobade, A.A. (1986). Trypanosomiasis (nagana, samore, tsetse fly disease). In: Current Veterinary Therapy, Food Animal Practice, 2e (ed. J.L. Howard), 642-645. Philadelphia, PA: W.B. Saunders.

Illemobade, A.A. and Blotkamp, C. (1978). Clinico pathological study of heartwater in goats. Tropenmed. Parasitol. 29: 71-76.

Ismail, H.I., Hashimoto, Y., Kon, Y. et al. (1996). Lymphocyte subpopulations in the mammary gland of the goat. Vet. Immunol. Innnunopathol. 52: 201-212.

Jagannath, M.S., Hegde, K.S., Shivaram, K., and Nagaraja,

K. V. (1974). An outbreak of babesiosis in sheep and goats and its control. Mysore J. Agric. Sci. 8 (3): 441-443.

Jain, N.C. (1986). Schalm’s Veterinary Hematology, 4e, 225-239. Philadelphia, PA: Lea and Febiger.

Jain, N.C., Kono, C.S., Myers, A., and Bottomly, K. (1980).

Fusiform erythrocytes resembling sickle cells in Angora goats: observations on osmotic and mechanical fragilities and reversal of cell shape during anaemia. Res. Vet. Sci. 28 (1): 25-35.

Jesse, F.F.A., Jazid, N.H.B.A., Mohammed, K. et al. (2015). Hemotropic Mycoplasma ovis infection in goats with concurrent gastrointestinal parasitism in Malaysia. J. Adv. Vet. Anim. Res. 2 (4): 464-468. https://doi.org/10.5455/ javar.2015.b119.

Johnson, E.H., Nam, D., and Al-Busaidy, R. (2002). Observations on haemoglobin types in three breeds of Omani goats. Vet. Res. Commun. 26: 353-359.

Johnson, G.C., Adams, D.S., and McGuire, T.C. (1983).

Pronounced production of polyclonal immunoglobulin G1 in the synovial fluid of goats with caprine arthritis­encephalitis virus infection. Infect. Immun. 41: 805-815.

Jones, B.E.V. and Shah, M. (1982). Clinico-chemical changes in goats given carbon tetrachloride. Nord. Vet. Med. 34: 25-32.

Jones, M.L. and Allison, R.W. (2007). Evaluation of the ruminant complete blood cell count. Vet. Clin. North Am. Food Anim. Pract. 23 (3): 377-402.

Jongejan, F., Wassink, L.A., Thielemans, M.J. et al. (1989).

Serotypes in Cowdria ruminantium and their relationship with Ehrlichia phagocytophila determined by immunofluorescence. Vet. Microbiol. 21: 31-40.

Kaaya, G.P. and Oduor-Okelo, D. (1980). The effects of Trypanosoma congolense infection on the testis and epididymis of the goat. Bull. Anim. Health Prod. Afr. 28 (1): 1-5.

Kaaya, G.P., Winqvist, G., and Johnson, L.W. (1977). Clinicopathological aspects of Trypanosoma congolense infection in goats. Bull. Anim. Health Prod. Afr. 25: 397-408.

Kaneko, J.J. (1980). Clinical Biochemistry of Domestic Animals, 3e. Orlando, FL: Academic Press.

Kaneko, J.J. and Cornelius, C.E. (1962). Erythrocyte survival studies in the Himalayan Tahr and domestic goats. Am. J. Vet. Res. 23: 913-915.

Kanyari, P.W.N., Allonby, E.W., Wilson, A.J., and Munyua, W.K. (1983). Some economic effects of trypanosomiasis in goats. Trop. Anim. Health Prod. 15: 153-160.

Kaplan, T. (2007). Anthrax Is Found in 2 Connecticut Residents, One a Drummer. New York Times, September 6. https://www.nytimes.com/2007/09/06/ nyregion/06anthrax.html (accessed December 23, 2021).

Karram, M.H., Amer, A.A., and Ibrahim, H.A. (1984).

Aplastic anaemia in caprine fluorosis. Assiut Vet. Med.

J. 12: 167-171.

Kassai, L., Cordero del Campillo, M., Euzeby, J. et al. (1988). Standardized nomenclature of animal parasitic diseases (SNOAPAD). Vet. Parasitol. 29: 299-326.

Keenan, J., Ervin, G., Aung, M. et al. (2010). Risk factors for clinical leptospirosis from Western Jamaica. Am. J. Trop. Med. Hyg. 83 (3): 633-636. https://doi.org/10.4269/ ajtmh.2010.09-0609.

Kimberling, C.V. and Arnold, K.S. (1983). Diseases of the urinary system of sheep and goats. Vet. Clin. North Am. Large Anim. Pract. 5: 637-655.

Kramer, J.W. (1966). Incidence of trypanosomes in the West African Dwarf sheep and goat in Nsukka, eastern Nigeria. Bull. Epizoot. Dis. Afr. 14: 423-428.

Kuil, H. and Folkers, C. (1966). Een zeer anaemische geit. Tijdschr. Diergeneeskd. 91: 1247.

Langenwalder, D.B., Schmidt, S., Gilli, U. et al. (2019). Genetic characterization of Anaplasma phagocytophilum strains from goats (Capra aegagrus hircus) and water buffalo (Bubalus bubalis) by 16S rRNA gene, ankA gene and multilocus sequence typing. Ticks Tick-borne Dis. 10 (6): 101267. https://doi.org/10.1016/j.ttbdis.2019.101267.

Lechner, F., Machado, J., Bertoni, G. et al. (1997). Caprine arthritis encephalitis virus dysregulates the expression of cytokines in macrophages. J. Virol. 71 (10): 7488-7497.

Leon-Vizcaino, L., Hermoso de Mendoza, M., and Garrido,

F. (1987). Incidence of abortions caused by leptospirosis in sheep and goats in Spain. Comp. Immunol. Microbiol. Infect. Dis. 10: 149-153.

Levieux, D. (1984). Transmission de Pimmunite passive colostrale chez les petits ruminants. In: Les Maladies de la Chevre, Les Colloques de l’INRA, No. 28 (eds. P. Yvore and

G. Perrin), 21-30. Paris: Institut National de la Recherche Agronomique.

Lewis, D., Holman, M.R., Purnell, R.E. et al. (1981). Investigations on Babesia motasi isolated from Wales. Res. Vet. Sci. 31 (2): 239-243.

Lewis, J.H. (1976). Comparative hematology: studies on goats. Am. J. Vet. Res. 37: 601-605.

Li, H., Zheng, Y.-C., Ma, L. et al. (2015). Human infection with a novel tick-borne Anaplasma species in China: a surveillance study. Lancet Infect. Dis. 15 (6): 663-670. https://doi.org/10.1016/S1473-3099(15)70051-4.

Li, Y.Q., Liu, Z., Yang, J. et al. (2014). Infection of small ruminants and their red blood cells with Theileria annulata schizonts. Exp. Parasitol. 137: 21-24. https://doi. org/10.1016/j.exppara.2013.11.010.

Li, Y.Q., Luo, J., Guan, G. et al. (2009). Experimental transmission of Theileria uilenbergi infective for small ruminants by Haemaphysalis longicornis and Haemaphysalis qinghaiensis. Parasitol. Res. 104 (5): 1227-1231. https://doi.org/10.1007/s00436-009-1347-7.

Liebler-Tenorio, E.M. and Pabst, R. (2006). MALT structure and function in farm animals. Vet. Res. 37 (3): 257-280.

Lilenbaum, W., Varges, R., Medeiros, L. et al. (2008). Risk factors associated with leptospirosis in dairy goats under tropical conditions in Brazil. Res. Vet. Sci. 84 (1): 14-17.

Lilenbaum, W., Varges, R., Ristow, P. et al. (2009). Identification of Leptospira spp. carriers among seroreactive goats and sheep by polymerase chain reaction. Res. Vet. Sci. 87: 16-19. https://doi.org/10.1016Zj. rvsc.2008.12.014.

Llewelyn, C.A., Luckins, A.G., Munro, C.D., and Perrie, J. (1987). The effect of Trypanosoma congolense infection on the oestrous cycle of the goat. Br. Vet. J. 143 (5): 423-431.

Lohr, C.V. (2012). One hundred two tumors in 100 goats (1987-2011). Vet. Pathol. 50 (4): 668-675. https://doi. org/10.1177/0300985812471544.

Losos, G.J. and Ikede, B.O. (1972). Review of pathology of diseases in domestic and laboratory animals caused by Trypanosoma congolense, T. vivax, T. brucei, T. rhodesiense and T. gambiense. Vet. Pathol. Suppl. 9: 1-71.

Lund, A., Torbjorn, A., Steine, T., and Larsen, H.J. (1982). Colostral transfer in the goat of antibodies against Corynebacterium pseudotuberculosis and the antibody status of kids during the first 10 months of life. Acta Vet. Scand. 23: 483-489.

Maas, J. and Buening, G.M. (1981). Characterization of Anaplasma marginale infection in splenectomized domestic goats. Am. J. Vet. Res. 42: 142-145.

Machado, C.A.L., Vidotto, O., Conrado, F.O. et al. (2017). Mycoplasma ovis infection in goat farms from northeastern Brazil. Comp. Immunol. Microbiol. Infect. Dis. 55: 1-5. https://doi.org/10.1016/j.cimid.2017.08.004.

Maddux, J.M. and Keeton, K.S. (1987a). Evaluation of neutrophil function in female goats. Am. J. Vet. Res. 48: 1110-1113.

Maddux, J.M. and Keeton, K.S. (1987b). Effects of dexamethasone, levamisole, and dexamethasone- levamisole on neutrophil function in female goats. Am. J. Vet. Res. 48: 1114-1119.

Mahmoud, M.M. and Elmalik, K.H. (1977). Trypanosomiasis: goats as a possible reservoir of Trypanosoma congolense in the Republic of Sudan. Trop. Anim. Health Prod. 9: 167-170.

Mahran, O.M. and Ghattas, S.G. (2016). Eperythrozoon ovis infections of sheep and goats in Shalateen, Abu-Ramad and Halaeeb, Red Sea Governorate, Egypt. Egypt. J. Agric. Res. 94 (2): 397-406.

Mallick, K.P., Dwivedi, S.K., and Malhotra, M.N. (1979). Anaplasmosis in goats: report of clinical cases. Indian Vet. J. 56 (8): 693-694.

Martins, G. and Lilenbaum, W. (2014). Leptospirosis in sheep and goats under tropical conditions. Trop. Anim. Health Prod. 46: 11-17. https://doi.org/10.1007/s11250-013-0480-6.

Martins, G., Penna, B., Hamond, C. et al. (2012). Leptospirosis as the most frequent infectious disease impairing productivity in small ruminants in Rio de Janeiro, Brazil. Trop. Anim. Health Prod. 44: 773-777. https://doi.org/10.1007/s11250-011-9964-4.

Mason, R.W., Corbould, A., and Statham, P. (1989).

A serological survey of Eperythrozoon ovis in goats and sheep in Tasmania. Aust. Vet. J. 66: 122-123.

Massimini, G., Mastellone, V., Britti, D. et al. (2007). Effect of passive transfer status on preweaning growth performance in dairy goat kids. J. Am. Vet. Med. Assoc. 231 (12): 1873-1877.

Melby, E.C. and Altman, N.H. (1976). Handbook of Laboratory Animal Science, vol. III. Cleveland, OH: CRC Press.

Melby, H.P. and Gr0nst0l, H. (1984). Sjodogg (Tick-borne fever) hos geit. Norsk Veterinaertidsskrift 96: 87-90.

Mellado, M., del Angel, E., Rebolloso, O., and Garcia,

E. (1998). Immunoglobulin G concentration and neonatal survival of goat kids delivered in a pen or on open range. Prev. Vet. Med. 37 (1/4): 33-39. https://doi.org/10.1016/ S0167-5877(98)00107-X.

Meyer, R., Regis, L., Vale, V. et al. (2005). in vitro IFN- gamma production by goat blood cells after stimulation with somatic and secreted Corynebacterium pseudotuberculosis antigens. Vet. Immunol. Immunopathol. 107 (3/4): 249-254.

Mgongo, F.O.K., Gombe, S., and Ogaa, J.S. (1981). Thyroid status in cobalt and vitamin B12 deficiency in goats.

Vet. Rec. 109: 51-53.

Micusan, V.V. and Borduas, A.G. (1976). Preferential transport into colostrum of Fc fragment derived from serum IgG1 immunoglobulin in the goat. Res. Vet. Sci. 21: 150-154.

Micusan, V.V. and Borduas, A.G. (1977). Biological properties of goat immunoglobulins G. Immunology 32: 373-381.

Micusan, V.V., Boulay, G., and Borduas, A.G. (1976). The role of colostrum on the occurrence of immunoglobulin G subclasses and antibody production in neonatal goats. Can. J. Comp. Med. 40: 184-189.

Migaki, G. (1969). Hematopoietic neoplasms of slaughter animals. In: Comparative Morphology of Hematopoietic Neoplasms, National Cancer Institute, Monograph 32 (eds. C.H. Lingeman and F.M. Garner), 121-151. Washington, DC: U.S. Department of Health, Education, and Welfare.

Mitruka, B.M. and Rawnsley, H.M. (1981). Clinical Biochemical and Hematological Reference Values in Normal Experimental Animals and Normal Humans, 2e. New York: Masson.

Mjor-Grimsrud, M., Soli, N.E., and Sivertsen, T. (1979). The distribution of soluble copper- and zinc-binding proteins in goat liver. Acta Pharmacol. Toxicol. 44: 319-323.

Mongini, A. (2011a). Copper and Boer goats: dealing with toxicity and deficiency. Large animal. In: Proceedings of the North American Veterinary Conference, Orlando, Florida, 15-19 January, 296-297. Gainesville, FL: North American Veterinary Conference.

Mongini, A. (2011b). Alternative and economical treatment of copper toxicosis in goats. Large animal. In: Proceedings of the North American Veterinary Conference, Orlando, Florida, 15-19 January, 304. Gainesville, FL: North American Veterinary Conference.

Morand-Fehr, P. (1987). Management programs for the prevention of kid losses. In: Proceedings of the IVInternational Conference on Goats, 405-423. Brasilia: EMBRAPA-DDT.

Morand-Fehr, P., Villette, Y., and Chemineau, P. (1984). Influence des conditions de milieu sur la mortalite des chevreaux. In: Les Maladies de la Chevre, Les Colloques de l'INRA, No. 28 (ed. P. Yvore and G. Perrin), 31-46. Paris: Institut National de la Recherche Agronomique.

Murray, M. and Gray, A.R. (1984). The current situation on animal trypanosomiasis in Africa. Prev. Vet. Med. 2: 23-30.

Mutayoba, B.M., Gombe, S., Kaaya, G.P., and Waindi, E.N. (1988). Trypanosome-induced ovarian dysfunction. Evidence of higher residual fertility in trypanotolerant small East African goats. Acta Trop. 45 (3): 225-237.

Muthuramalingam, T., Pothiappan, P., Gnanaraj, P.T. et al. (2014). Report on an outbreak of babesiosis in tellicherry goats. Indian J. Vet. Anim. Sci. Res. 43: 58-60.

Mwakapeje, E.R., Assenga, J.A., Kunda, J.S. et al. (2017). Prevention, detection, and response to anthrax outbreak in Northern Tanzania using one health approach: a case study of Selela ward in Monduli district. Int. J. One Health 3: 66-76. https://doi.org/10.14202/IJOH.2017.66-76.

Nandakumar, P. and Rajagopalaraja, C.A. (1983a). Growth and mortality in relation to serum immunoglobulin level in neonatal kids. Kerala J. Vet. Sci. 14: 49-52.

Nandakumar, P. and Rajagopalaraja, C.A. (1983b). Effect of genetic group, birth weight and type of birth on the post colostral peak of serum immunoglobulin level in kids. Kerala J. Vet. Sci. 14: 53-56.

Nangia, O.P., Agarwal, V.K., and Singh, A. (1968). Studies on blood cellular constituents of female Beetal goats from birth to over five years of age. Indian J. Anim. Sci. 38: 616-625.

Navarro, J.A., Caro, M.R., Seva, J. et al. (1996). Study of lymphocyte subpopulations in peripheral blood and secondary lymphoid organs in the goat using monoclonal antibodies to surface markers of bovine lymphocytes. Vet. Immunol. Immunopathol. 51: 147-156.

Nguyen, T.C. (1977). Further investigations on the relationships between blood groups of sheep and goats.

Anim. Blood Groups Biochem. Genet. 8 (Suppl): 11-12.

Nguyen, T.C. (1990). Genetic systems of red cell blood groups in goats. Anim. Genet. 21 (3): 233-245.

Niu, Q., Liu, Z., Yang, J. et al. (2017). Genetic characterization and molecular survey of Babesia sp. Xinjiang infection in small ruminants and ixodid ticks in China. Infect. Genet. Evol. 49: 330-335. https://doi.org/10.1016/]. meegid.2017.01.025.

O'Brien, J.P. and Sherman, D.M. (1993a). Field methods for estimating serum immunoglobulin concentrations in newborn kids. Small Rumin. Res. 11: 79-84.

O'Brien, J.P. and Sherman, D.M. (1993b). Serum immunoglobulin concentrations of newborn goat kids and subsequent kid survival through weaning. Small Rumin. Res. 11: 71-77.

Oduye, O.O. (1976). Haematological values of Nigerian goats and sheep. Trop. Anim. Health Prod. 8: 131-136.

OIE (2021a). Chapter 3.1.12. Leptospirosis. In: Manual of Diagnostic Tests and Vaccines for Terrestrial Animals, 503-516. Paris: OIE https://www.oie.int/fileadmin/Home/ eng/Health_standards/tahm/3.01.12_LEPTO.pdf (accessed January 10, 2022).

OIE (2021b). Chapter 3.4.14. Nagana: infections with salivarian trypanosomoses (excluding Trypanosoma evansi and T equiperdum). In: Manual of Diagnostic Tests and Vaccines for Terrestrial Animals, 1222-1235. Paris: OIE https:// www.oie.int/fileadmin/Home/eng/Health_standards/ tahm/3.04.14_NAGANA.pdf (accessed January 10, 2022).

Okoh, A.E.J. (1981). An epizootic of anthrax in goats and sheep in Danbatta Nigeria. Bull. Anim. Health Prod. Afr. 29: 355-359.

Olchowy, T.W., Toal, R.L., Brenneman, K.A. etal. (1996).

Metastatic thymoma in a goat. Can. Vet. J. 37 (3): 165-167.

Oliveira, D.M. (1987). Profile of caprine disease in Jamaica. In: Proceedings of the IVInternational Conference on Goats, 1367-1368. Brasilia: EMBRAPA-DDT.

Pahud, J.J. and Mach, J.P. (1970). Identification of secretory IgA, free secretory piece and serum IgA in the ovine and caprine species. Immunochemistry 7: 679-686.

Palazzo, L., De Carlo, E., Santagada, G. et al. (2012). Recent epidemic-like anthrax outbreaks in Italy: what are the probable causes? Open J. Vet. Med. 2: 74-76. https://doi. org/10.4236/ojvm.2012.22012.

Parish, S.M., Middleton, J.R., and Baldwin, T.J. (1996). Clinical megaoesophagus in a goat with thymoma. Vet. Rec. 139 (4): 94.

Perrin, G., Polack, B., Gueraud, J.M., and Petat, M. (1988). Anemie hemolytique chez des chevreaux nourris avec du colostrum de vache. Pointe Vet. 20: 75-76.

Phipps, L.P., Hernandez-Triana, L.M., Goharriz, H. et al. (2016). Detection of Theileria Iuwenshuni in sheep from Great Britain. Parasite. Vector. 9: 203. https://doi. org/10.1186/s13071-016-1486-5.

Pieragostini, E., Alloggio, I., and Petazzi, F. (2010). Insights into hemoglobin polymorphism and related functional effects on hematological pattern in Mediterranean cattle, goat and sheep. Diversity. 2(4): 679-700. https://doi.org/ 10.3390/d2040679.

ProMED-mail (2006). Anthrax, Human, Caprine—China (Shaanxi). International Society for Infectious Diseases. ProMED-mail Post 2006(443):20061002.2822.

ProMED-mail (2008). Anthrax, Caprine—USA (Texas). International Society for Infectious Diseases. ProMED- mail Post 2008(158):20080404.1234.

Purnell, R.E. (1981a). Tick-borne diseases. Br. Vet.

J. 137: 221-240.

Purnell, R.E. (1981b). Babesiosis in various hosts. In:

Babesiosis (ed. M. Ristic and J.P. Kreier), 25-63. New York: Academic Press.

Pusterla, N., Sicher, D., Ernst, L. et al. (1999). Granulocytic Ehrlichia infection in goats in South Switzerland. Wien. Tierarztl. Monatsschr. 86 (6): 187-190.

Raja, A., Vignesh, A.R., Mary, B.A. et al. (2011). Sequence analysis of toll-like receptor genes 1-10 of goat (Capra hircus). Vet. Immunol. Immunopathol. 140: 252-258. https://doi.org/10.1016/j.vetimm.2011.01.007.

Ramakrishna, V., Vaish, K.C., and Tiwari, G.P. (1981). Supernumerary spleen in goat (Capra hircus): a case report. Indian Vet. J. 58: 685-688.

Reagan, W.J., Irizarry Rovira, A.R., and DeNicola, D.B. (2019). Normal blood cell morphology. In: Veterinary Hematology: Atlas of Common Domestic and Non-Domestic Species, 3e, Chapter 2. Hoboken, NJ: Wiley Blackwell.

Rehman, Z.U., Khan, M.S., Avais, M. et al. (2010). Prevalence of Theileriosis in sheep in Okara district, Pakistan. Pak. J. Zool. 42 (5): 639-643.

Renneker, S., Abdo, J., Salih, D.E.A. et al. (2013). Can Anaplasma ovis in small ruminants be neglected any longer? Transbound. Emerg. Dis. 60 (s2): 105-112. https:// doi.org/10.1111/tbed.12149.

Rjeibi, M.R., Darghouth, M.A., Omri, H. et al. (2015). First molecular isolation of Mycoplasma ovis from small ruminants in North Africa. Onderstepoort J. Vet. Res. 82 (1): 912.

Robson, J. and Rickman, L.R. (1973). Blood incubation infectivity test results for Trypanosoma brucei subgroup isolates in the Lambwe Valley, South Nyanza, Kenya. Trop. Anim. Health Prod. 5: 187-191.

Rosa, F.B., Rubin, M., Martins, T.B. et al. (2016). Hepatogenous chronic copper toxicosis associated with grazing Brachiaria decumbens in a goat. Brazil. J. Vet. Pathol. 9 (3): 113-117.

Rostkowski, C.M., Stirtzinger, T., and Baird, J.D. (1985). Congestive heart failure associated with thymoma in two Nubian goats. Can. Vet. J. 26: 267-269.

Sabarinath, T., Behera, S.K., Deneke, Y. et al. (2018). Serological evidence of anti-Leptospira antibodies in goats in various agro climatic zones of India. Small Rumin. Res. 169: 74-80. https://doi.org/10.1016/j. smallrumres.2018.10.013.

Samad, A. and Ali, M.S. (1984). Non-febrile haemoglobinuria in goats - a record of two cases. Livest. Advisor 9: 53-55.

Sanders, D.E. (1983). Copper deficiency in food animals. Compend. Contin. Educ. Pract. Vet. 5: S404-S410.

Schillhorn van Veen, T.W. and Mohammed, A.N. (1975). Louse and flea infestations on small ruminants in the Zaria area. J. Niger. Vet. Med. Assoc. 4: 93-96.

Schillinger, D., Maloo, S.H., and Rottcher, D. (1985). The toxic effect of intravenous application of the trypanocide isometamidium (samorin). Zbl. Vet. Med. A 32: 234-239.

Schollum, L.M. and Blackmore, D.K. (1981). The serological and cultural prevalence of leptospirosis in a sample of feral goats. N. Z. Vet. J. 29: 104-106.

Semerdjiev, V., Sotirov, L., Sandev, N. et al. ("2008). ScasEffects of daily oral administration of copper to goats. Acta Vet. Scand. 19: 561-568.

Song, W., Song, Q., He, L. et al. (2014). The establishment and application of a semi-nested PCR assay for the detection of Mycoplasma ovis. Small Rumin. Res. 119: 176-181. https:// doi.org/10.1016/j.smallrumres.2014.03.001.

Soulsby, E.J.L. (1982). Helminths, Arthropods and Protozoa of Domesticated Animals, 7e. Philadelphia, PA: Lea and Febiger.

Splitter, E.J., Anthony, H.D., and Twiehaus, M.J. (1956). Anaplasma ovis in the United States. Experimental studies with sheep and goats. Am. J. Vet. Res. 17: 487-491.

Staples, L.D., Binns, R.M., and Heap, R.B. (1983). Influence of certain steroids on lymphocyte transformation in sheep and goats studied in vitro. J. Endocrinol. 98: 55-69.

Staples, L.D., Brown, D., and Binns, R.M. (1981). Mitogen- induced transformation of sheep and goat peripheral blood lymphocytes in vitro: the effects of varying culture conditions and the choice of an optimum technique. Vet. Immunol. Immunopathol. 2: 411-423.

Storset, A.K., Berntsen, G., and Larsen, H.J.S. (2000). Kinetics of IL-2 receptor expression on lymphocyte subsets from goats infected with Mycobacterium avium subsp. paratuberculosis after specific in vitro stimulation. Vet. Immunol. Immunopathol. 77 (1/2): 43-54.

Storset, A.K., Hasvold, H.J., Valheim, M. et al. (2001). Subclinical paratuberculosis in goats following experimental infection: an immunological and microbiological study. Vet. Immunol. Immunopathol. 80 (3/4): 271-287.

Streett, C.S., Altman, N.H., Terner, J.Y. and Berjis, C.C. (1968). A Series of Thymomas in the Angora Goat. Edgewood Arsenal Special Publication 100-36. Edgewood Arsenal, MD: Department of the Army.

Sulaiman, E.G., Arslan, S.H., Al-Obaidi, Q.T., and Daham, E. (2010). Clinical, haematological and biochemical studies of babesiosis in native goats in Mosul. Iraqi J. Vet. Sci.

24 (1): 31-35.

Suliman, H.B., Wasfi, I.A., and Adam, S.E.I. (1982). The toxic effects of Tephrosia apollinea on goats. J. Comp. Pathol. 92: 309-315.

Sulochana, S., Jayaprakasan, V., Pillai, R.M., and Abdulla, P.K. (1982). T and B lymphocytes in the peripheral blood of goats. Kerala J. Vet. Sci. 13: 71-78.

Tartour, G., Adam, S.E.I., Obeid, H.M., and Idris, O.F. (1974). Development of anaemia in goats fed with Ipomoea carnea. Br. Vet. J. 130: 271-279.

Tian, X., Lu, M.M., Wang, WJ. et al. (2019). HcTTR: anovel antagonist against goat interleukin 4 derived from the excretory and secretory products of Haemonchus contortus. Vet. Res. 50: 42. https://doi.org/10.1186/ s13567-019-0661-z.

Tirkey, K., Yadava, K.P., and Mandal, T.K. (1987). Effect of aqueous extract of Ipomoea carnea on the haematological and biochemical parameters in goats. Indian J. Anim. Sci. 57 (9): 1019-1023.

Tizard, I.R. (2017). Veterinary Immunology, 10e. St. Louis, MO: Elsevier.

Tomlinson, C.J. (1983). Bracken poisoning/PGE. Goat Vet. Soc. J. 4: 43-44.

Trujillo, A.J., Castro, N., Quevedo, J.M. et al. (2007). Effect of heat and high-pressure treatments on microbiological quality and immunoglobulin G stability of caprine colostrum. J. Dairy Sci. 90 (2): 833-839. https://doi. org/10.3168/jds.S0022-0302(07)71567-9.

Tufani, N.A., Malik, H.U., and Fazili, M.R. (2018). Clinico- haemotological profile and therapeutic management of acute babesiosis in sheep and goats of Kashmir. Indian J. Small Rumin. 24 (1): 106-109. https://doi.org/10.595 8/0973-9718.2018.00007.7.

Ubertalle, A., Ladetto, G., Cauvin, E., and Mazzocco, P. (1987). Colostro caprino: caratteristiche del latte ottenuto nelle prime 24 ore post partum. Summa 4: 239-242.

Uilenberg, G. (1998). A Field Guide for the Diagnosis, Treatment and Prevention of African Animal Trypanosomosis. (Adapted from the original edition by W.P. Boyt.) Rome: Food and Agriculture Organization.

Uilenberg, G. (2006). Babesia - a historical overview. Vet. Parasitol. 138 (1-2): 3-10. https://doi.org/10.1016/]. vetpar.2006.01.035.

Uilenberg, G., Rombach, M.C., Perie, N.M., and Zwart, D. (1980). Blood parasites of sheep in the Netherlands.

II. Babesia motasi (Sporozoa Babesiidae). Vet. Q. 2: 3-14.

Uilenberg, G., van Vorstenbosch, C.J.A.H.V., and Perie, N.M. (1979). Blood parasites of sheep in the Netherlands. I. Anaplasma mesaeterum sp.n. (Rickettsiales, Anaplasmataceae). Vet. Q. 1: 14-22.

Underwood, E.J. (1981). The Mineral Nutrition of Livestock, 2e. Slough: Commonwealth Agricultural Bureaux.

Van den Ingh, T.S.G.A.M., Zwart, D., Schotman, A.J. et al. (1976). The pathology and pathogenesis of Trypanosoma vivax infection in the goat. Res. Vet. Sci. 21: 264-270.

Van der Hoeden, J. (1953). Leptospirosis among goats in Israel. J. Comp. Pathol. 63: 101-111.

Van Miert, A.S.J.P.A.M., Van Duin, C.T.M.,

Schotman, A.J.H., and Franssen, F.F. (1984). Clinical, haematological and blood biochemical changes in goats after experimental infection with tick-borne fever.

Vet. Parasitol. 16: 225-233.

Van Miert, A.S.J.P.A.M., Van Duin, C.T.M., and Wensing, T. (1986). The effects of ACTH, prednisolone and Escherichia coli endotoxin on some clinical hematological and blood biochemical parameters in dwarf goats. Vet. Q. 8: 195-203.

Vankan, D.M. and Bell, K. (1993). Caprine blood groups. 2. The C, G, H, I, J, K, L, N, and Q systems. Biochem. Genet. 31 (1-2): 19-28.

Veenendaal, G.H., van Miert, A.S., van den Ingh, T.S. et al. (1976). A comparison of the role of kinins and serotonin in endotoxin induced fever and Trypanosoma vivax infections in the goat. Res. Vet. Sci. 21: 271-279.

Verheijden, J.H.M., van Miert, A.S.J.P.A.M., and Van Duin, C.T.M. (1983). Demonstration of circulating endogenous pyrogens in Escherichia coli endotoxin-induced mastitis. Zentralbl. Veterinaermed. A 30: 342-347.

Vihan, V.S. (1989). Glutaraldehyde coagulation test for detection of hypogammaglobulinaemia in neonatal kids. Indian Vet. J. 66: 101-105.

Vihan, V.S. and Sahni, K.L. (1982). Role of blood gammaglobulin in relation to the neonatal kid mortality and their subsequent performance. In: Proceedings of the III International Conference on Goat Production and Disease, Tuscon, Arizona, 372. Scottsdale, AZ: Dairy Goat Journal Publishing.

Virgilio, A., Sinisi, A., Russo, V. et al. (2015). Ptaquiloside, the major carcinogen of bracken fern, in the pooled raw milk of healthy sheep and goats: an underestimated, global concern of food safety. J. Agric. Food Chem. 63: 4886-4892. https://doi.org/10.1021/acs.jafc.5b01937.

Wang, X., Cui, Y., Zhang, Y. et al. (2017). Molecular characterization of hemotropic mycoplasmas (Mycoplasma ovis and 'Candidatus Mycoplasma haemovis’) in sheep and goats in China. BMC Vet. Res. 13: 142. https://doi. org/10.1186/s12917-017-1062-z.

Wasfi, I.A. and Adam, S.E.I. (1976). The effects of intravenous injection of small amounts of copper sulphate in Nubian goats. J. Comp. Pathol. 86: 387-391.

Weber, W.T. (1969). Evaluation of bone marrow. In: Textbook of Veterinary Clinical Pathology (ed. W. Medway, J.E. Prier and J.S. Wilkinson), 299-315. Baltimore, MD: Williams and Wilkins.

Webster, K.A. and Mitchell, G.B.B. (1988). Use of counter immunoelectrophoresis in detection of antibodies to tick-borne fever. Res. Vet. Sci. 45: 28-30.

Whitelaw, D.D., Kaaya, G.P., Moulton, J.E. et al. (1985). Susceptibility of different breeds of goats in Kenya to experimental infection with Trypanosoma congolense. Trop. Anim. Health Prod. 17: 155-165.

Whitelaw, D.D., Moulton, J.E., Morrison, W.I., and Murray,

M. (1985a). Central nervous system involvement in goats undergoing primary infections with Trypanosoma brucei and relapse infections after chemotherapy. Parasitology 90: 255-268.

Whitford, H.W. (1982). Anthrax in dairy goats. Southwest. Vet. 35: 15.

WHO (2008). Anthrax in Humans and Animals, 4e. Geneva: World Health Organization.

Wilkins, J.H. and Hodges, R.R.D.H. (1962). Observations on normal goat blood. J. R. Army Vet. Corps 33: 7-10.

Yang, J., Liu, Z., Niu, Q. et al. (2017). A novel zoonotic Anaplasma species is prevalent in small ruminants: potential public health implications. Parasit. Vectors 10 (264): https://doi.org/10.1186/s13071-017-2182-9.

Yaro, M., Munyard, K.A., Stear, M.J., and Groth, D.M. (2016). Combatting African animal trypanosomiasis (AAT) in livestock: the potential role of trypanotolerance. Vet. Parasitol. 225: 43-52. https://doi.org/10.1016/j.vetpar. 2016.05.003.

Yin, H., Liu, Z., Guan, G. et al. (2008). Detection and differentiation of Theileria luwenshuni and T. uilenbergi infection in small ruminants by PCR. Transbound. Emerg. Dis. 55: 233-237. https://doi.org/10.1111/j.1865-1682. 2008.01031.x.

Yousif, Y.A., Dimitri, R.A., Dwivedi, S.K., and Ahmed,

N. J. (1983). Anaemia due to anaplasmosis in Iraqi goats: I. Clinical and haematological features under field conditions. Indian Vet. J. 60: 576-578.

Youssif, F.M., Mohammed, O.S.A., and Hassan, T. (2008). Efficacy and toxicity of cymelarsan in Nubian goats infected with Trypanosoma evansi. J. Cell Anim. Biol. 2 (7): 140-149.

Zhan, L., Cao, W.C., Jiang, J.F. et al. (2010). Anaplasma phagocytophilum in livestock and small rodents. Vet. Microbiol. 144 (3-4): 405-408. https://doi.org/10.1016/]. vetmic.2010.02.018.

Zhou, M., Cao, S., Sevinc, F. et al. (2017). Molecular detection and genetic characterization of Babesia, Theileria and Anaplasma amongst apparently healthy sheep and goats in the central region of Turkey. Ticks Tick Borne Dis.

8 (2): 246-252.

Zobel, G., Rodriguez-Sanchez, R., Hea, S.Y. et al. (2020). Validation of Brix refractometers and a hydrometer for measuring the quality of caprine colostrum. J. Dairy Sci. 103 (10): 9277-9289. https://doi.org/10.3168/ jds.2020-18165.

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Source: Smith Mary C., Sherman David M.. Goat Medicine. 3rd edition. — Wiley-Blackwell,2023. — 976 p.. 2023

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