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1 ecies and an important wildlife reservoir of bovine tuberculosis.
2 seases such chronic wasting disease (CWD) or bovine tuberculosis.
3 from lymph nodes and hence the diagnosis of bovine tuberculosis.
4 ed to cattle with gross pathology typical of bovine tuberculosis.
5 d to maintain control measures for human and bovine tuberculosis.
6 vis developed pulmonary pathology typical of bovine tuberculosis.
7 -studied wildlife systems such as rabies and bovine tuberculosis.
8 icant contribution to the immune response in bovine tuberculosis.
9 igh-throughput molecular diagnostic test for bovine tuberculosis.
10 ting the presence of this type 2 cytokine in bovine tuberculosis.
11 identified as major seroreactive antigens in bovine tuberculosis.
12 y old and allied with M. bovis, the cause of bovine tuberculosis.
14 our understanding of the immunopathology of bovine tuberculosis and to produce more sensitive and sp
15 nding of the humoral immune responses during bovine tuberculosis and, in particular, identification o
16 apid and specific laboratory confirmation of bovine tuberculosis, and this is the first report of the
17 sion of Mycobacterium bovis [causal agent of bovine tuberculosis] between cattle and badgers (Meles m
18 ted the effects of anthelmintic treatment on bovine tuberculosis (BTB) acquisition, mortality after i
20 adgers (Meles meles) naturally infected with bovine tuberculosis (bTB) at Woodchester Park in Glouces
21 ritain (GB) due to the suspected presence of bovine tuberculosis (bTB) has progressively increased ov
23 e largest molecular epidemiological study of Bovine Tuberculosis (bTB) in a sub-Saharan African count
29 cant social and economic loss as a result of bovine tuberculosis (bTB) presents a continuous challeng
30 ck, the dominant species is M. bovis causing bovine tuberculosis (bTB), a disease of global zoonotic
32 er is recognised as a wildlife reservoir for bovine tuberculosis (bTB); the control of which is compl
37 Mycobacterium bovis, the causative agent of bovine tuberculosis, has been increasing in UK cattle he
39 ium bovis, the causative agents of human and bovine tuberculosis, have been reported to express a ran
40 e valuable insights into the epidemiology of bovine tuberculosis in badger populations and inform dis
41 should be useful in modeling the dynamics of bovine tuberculosis in cattle and in assessing the risk
42 nt and our understanding of the pathology of bovine tuberculosis in cattle would be greatly facilitat
43 nt and the understanding of the pathology of bovine tuberculosis in cattle would be greatly facilitat
46 pite a recent resurgence in the incidence of bovine tuberculosis in UK cattle herds, no associated ri
47 Mycobacterium bovis, the causative agent of bovine tuberculosis, in cattle herds in the United Kingd
49 tant reassessment, especially in areas where bovine tuberculosis is endemic and where people live in
51 burden of Mycobacterium bovis, the cause of bovine tuberculosis, might be underestimated in human be
53 lied our approach to epidemiological data of bovine tuberculosis outbreaks in England and investigate
56 odel was demonstrated through application to bovine tuberculosis surveillance data from Northern and
62 ycobacterium bovis is the causative agent of bovine tuberculosis (TB), and it has the potential to in
68 nts IL-4delta2 and IL-4delta3 in cattle with bovine tuberculosis, using quantitative real-time revers
69 fied protein derivatives in the detection of bovine tuberculosis when the antigens are used in blood-
70 roles for the cytokines IL-17A and IL-22 in bovine tuberculosis, where they show potential as both p
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