Details

Title

Lawsonia intracellularis and Porcine Circovirus type-2 infection in Estonia

Journal title

Polish Journal of Veterinary Sciences

Yearbook

2016

Numer

No 2

Publication authors

Divisions of PAS

Nauki Biologiczne i Rolnicze

Publisher

University of Warmia and Mazury in Olsztyn ; Polish Academy of Sciences Committee of Veterinary Sciences

Date

2016

Identifier

ISSN 1505-1773

References

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Jacobsen (2009), Retrospective study on the occurrence of porcine circovirus infection and associated entities in Northern Germany, Vet Microbiol, 138. ; Ladekjćr (2002), Reproduction of postweaning multisystemic wasting syndrome in immunostimulated and non - immunostimulated - week - old piglets experimentally infected with porcine circovirus type, Vet Microbiol, 89, 97, doi.org/10.1016/S0378-1135(02)00174-8 ; Moreno (2002), Lawsonia intracellularisdetection in swine feces from important producing regions in Brazil ( San Paulo, Arq Inst Biol, 69. ; Timmusk (2008), Phylogenetic analysis of porcine circovirus type pre - and post - epizootic postweaning multisystemic wasting syndrome, Virus Genes, 36, 509, doi.org/10.1007/s11262-008-0217-1 ; McOrist (1995), Characterization ofLawsonia intracellularisgen nov sp nov the obligately intracellular bacterium of porcine proliferative enteropathy, Int J Syst Bacteriol, 45, 820, doi.org/10.1099/00207713-45-4-820 ; Opriessnig (2012), a Concurrent infections are important for expression of porcine circovirus associated disease, Virus Res, 164. ; Joens (1997), Induction of gross and microscopic lesions of porcine proliferative enteritis byLawsonia intracellularis, Am J Vet Res, 58, 1125. ; Yeh (2006), Isolation ofLawsonia intracellularisin Korea and reproduction of proliferative enteropathy in pigs and hamster, J Vet Med Sci, 68, 499, doi.org/10.1292/jvms.68.499 ; Zhang (2000), Improved diagnosis of porcine proliferative enteropathy caused byLawsonia intracellularisusing polymerase chain reaction - enzyme - linked oligosorbent assay ( PCR, Mol Cell Probes, 14, 101, doi.org/10.1006/mcpr.2000.0296 ; Pescador (2007), Co - infection by porcine circovirus type and porcine parvovirus in aborted fetuses and stillborn piglets in southern Brazil, Pesq Vet Bras, 27, 425, doi.org/10.1590/S0100-736X2007001000007 ; Segales (2005), Porcine circovirus diseases, Anim Health Res Rev, 6, 119, doi.org/10.1079/AHR2005106 ; Jensen (2006), Distinction between Porcine Circovirus Type Enteritis and Porcine Proliferative Enteropathy caused byLawsonia intracellularis, J Comp Pathol, 135. ; Lohse (2008), Examination for a viral co - factor in postweaning multisystemic wasting syndrome, Vet Microbiol, 129, 97, doi.org/10.1016/j.vetmic.2007.11.018 ; Segales (2004), Pathological findings associated with naturally aquired porcine circovirus type associated disease, Vet Microbiol, 98, 137, doi.org/10.1016/j.vetmic.2003.10.006 ; Baekbo (2012), Porcine Circovirus Diseases : A reviw of PMWS, Transbound Emerg Dis, 59, 60, doi.org/10.1111/j.1865-1682.2011.01288.x ; Mikami (2005), Nonsuppurative myocarditis caused by porcine circovirus type in a weak - born piglet, J Vet Med Sci, 67, 735, doi.org/10.1292/jvms.67.735 ; Phaneuf (2007), Porcine dermatitis and nephropathy syndrome associated with porcine circovirus infection in a Yorkshire pig, J Am Assoc Lab Anim Sci, 46, 68. ; Allan (1999), Experimental reproduction of severe wasting disease by co - infection of pigs with porcine circovirus and porcine parvovirus, J Comp Pathol, 121, 1, doi.org/10.1053/jcpa.1998.0295 ; Plawinska (2004), Nested PCR and IFAT in the diagnosis of porcine proliferative enteritis, Bull Vet Inst Pulawy, 48, 247. ; MacIntyre (2003), Immunopathogenesis of experimentally induced proliferative enteropathy in pigs, Vet Pathol, 40, 421, doi.org/10.1354/vp.40-4-421 ; Meng (2013), Porcine Circovirus Type Pathogenesis and interaction with the immune system, Annu Rev Anim Biosci, 1. ; Brunborg (2007), Association of myocarditis with high viral load of porcine circovirus type in several tissues in cases of fetal death and high mortality in piglets A case study, J Vet Diagn Invest, 19, 368, doi.org/10.1177/104063870701900405 ; Lawson (2000), Proliferative enteropathy, J Comp Pathol, 122, 77, doi.org/10.1053/jcpa.1999.0347 ; Costinar (2011), Investigation of digestive disorder s etiology in piglets from farms in west of Romania Lucrari Stiintifice Universitatea de Stiinte Agricole a Balantului Timisoara, Medicina Veterinara, 44, 167. ; Stankevicius (2009), Confirmation of Multisystemic Wasting Syndrome in Lithuanian and Latvian Pig Herds Infected with Porcine Respiratory and Reproductive Syndrome Virus, Vet Zoot, 45, 60. ; Johansen (2013), Investigation of the association of growth rate in grower - finishing pigs with the quantification ofLawsonia intracellularisand porcine circovirus type, Prev Vet Med, 108, 63, doi.org/10.1016/j.prevetmed.2012.07.004 ; Ellis (1998), Isolation of circovirus from lesions of pigs with postweaning multisystemic wasting syndrome, Can Vet J, 39, 44. ; Pejsak (2007), Prevalence ofBrachyspira hyodysenteriaeandLawsonia intracellularisinfections in Polish swine population, Med Weter, 63, 994. ; Kim (2003), Association of porcine circovirus with porcine respiratory disease complex, Vet J, 166. ; Lawson (1993), Intracellular bacteria of porcine proliferative enteropathy : cultivation and maintenance in vitro, J Clin Microbiol, 31, 1136. ; Lomax (1982), Naturally occurring porcine proliferative enteritis : pathologic and bacteriologic findings, Am J Vet Res, 43, 1608.

DOI

10.1515/pjvs-2016-0036

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