| Literature DB >> 24957468 |
Cristina Pérez Vera1, Suvi Kapiainen, Sami Junnikkala, Kirsi Aaltonen, Thomas Spillmann, Olli Vapalahti.
Abstract
BACKGROUND: Due to climate changes during the last decades, ticks have progressively spread into higher latitudes in northern Europe. Although some tick borne diseases are known to be endemic in Finland, to date there is limited information with regard to the prevalence of these infections in companion animals. We determined the antibody and DNA prevalence of the following organisms in randomly selected client-owned and clinically healthy hunting dogs living in Finland: Ehrlichia canis (Ec), Anaplasma phagocytophilum (Ap), Borrelia burgdorferi (Bb) and Bartonella.Entities:
Mesh:
Year: 2014 PMID: 24957468 PMCID: PMC4074585 DOI: 10.1186/1756-3305-7-285
Source DB: PubMed Journal: Parasit Vectors ISSN: 1756-3305 Impact factor: 3.876
Figure 1Distribution of the 193 zip codes recorded from 340 pet dogs included in our study. The dots denote the dog samples that were seronegative to all vector borne diseases tested, whereas the triangles show the samples that were seropositive to at least one infectious disease. The seroprevalence for every vector borne disease in each region in reported in the table.
Association between signalment, size, origin, health status and travel history between dogs that were seropositive and seronegative to any of the tick borne diseases tested
| South | 0 | 156 (96.3) | ||
| East | 1 (4) | 24 (96) | ||
| West | 10 (10.9) | 82 (89.1) | ||
| Oulu | 0 | 28 (100) | ||
| Lapland | 0 | 12 (100) | ||
| Åland | 12 (60) | 8 (40) | ||
| Missing data | | 1 | ||
| ≤2 years | 6 (5.6) | 101 (94.4) | 0.49 | |
| | 2-8 years | 18 (9.6) | 170 (90.4) | |
| | >8 years | 4 (9.1) | 40 (90.9) | |
| | Missing data | | 1 | |
| Male Intact | 7 (5.1) | 130 (94.9) | 0.3896 | |
| | Male castrated | 2 (12.5) | 14 (87.5 | |
| | Female intact | 12 (7.9) | 139 (92.1) | |
| | Female spayed | 3 (14.3) | 18 (85.7) | |
| | Missing data | 5 | 10 | |
| <10 kg | 10 (15.2) | 56 (84.8) | 0.0747 | |
| | 10-25 kg | 8 (9.6) | 75 (90.4) | |
| | >25 kg | 10 (5.7) | 165 (94.3) | |
| | Missing data | 1 | 15 | |
| Yes | 4 (14.8) | 23 (85.2) | 0.6179 | |
| | No | 19 (11.4) | 147 (88.6) | |
| | Missing data | | 141 | |
| Healthy | 28 (10.0) | 251 (90) | 0.0652 | |
| | Sick | 1 (1.6) | 60 (98.4) | |
| Missing data | 19 (40.4) | 51 (54.8) |
aAll data presented as number of dogs (%). bUnivariate analysis performed with Fisher’s exact test. Results statistically significant are highlighted in bold.
Results of the multivariate logistic regression analysis
| 3.176 | 1.065 | 0.391 | 25.792 | 0.279 | |
| 1.392 | 0.614 | 0.416 | 4.660 | 0.591 | |
| 2.710 | 0.575 | 0.874 | 8.409 | 0.084 | |
| 1.948 | 0.569 | 0.636 | 5.963 | 0.242 | |
| 1.012 | 1.113 | 0.113 | 9.041 | 0.992 | |
| 3.106 | 0.552 | 1.048 | 9.205 | 0.041 | |
| 3.070 | 1.084 | 0.364 | 25.901 | 0.302 | |
| 55.212 | 0.743 | 12.802 | 238.122 | ||
| 54.565 | 1.187 | 5.284 | 563.502 | ||
| 17.755 | 0.693 | 4.544 | 69.525 | ||
| 26.647 | 0.52 | 9.580 | 74.118 | ||
Results statistically significant are highlighted in bold.