TY - JOUR
T1 - Body temperature and motion: Evaluation of an online monitoring system in pigs challenged with Porcine Reproductive & Respiratory Syndrome Virus
AU - Süli, Tamás
AU - Halas, Máté
AU - Benyeda, Zsófia
AU - Boda, Réka
AU - Belák, Sándor
AU - Martínez-Avilés, Marta
AU - Fernández-Carrión, Eduardo
AU - Sánchez-Vizcaíno, José Manuel
PY - 2017
Y1 - 2017
N2 - Highly contagious and emerging diseases cause significant losses in the pig producing industry worldwide. Rapid and exact acquisition of real-time data, like body temperature and animal movement from the production facilities would enable early disease detection and facilitate adequate response. In this study, carried out within the European Union research project RAPIDIA FIELD, we tested an online monitoring system on pigs experimentally infected with the East European subtype 3 Porcine Reproductive & Respiratory Syndrome Virus (PRRSV) strain Lena. We linked data from different body temperature measurement methods and the real-time movement of the pigs. The results showed a negative correlation between body temperature and movement of the animals. The correlation was similar with both body temperature obtaining methods, rectal and thermal sensing microchip, suggesting some advantages of body temperature measurement with transponders compared with invasive and laborious rectal measuring. We also found a significant difference between motion values before and after the challenge with a virulent PRRSV strain. The decrease in motion values was noticeable before any clinical sign was recorded. Based on our results the online monitoring system could represent a practical tool in registering early warning signs of health status alterations, both in experimental and commercial production settings.
AB - Highly contagious and emerging diseases cause significant losses in the pig producing industry worldwide. Rapid and exact acquisition of real-time data, like body temperature and animal movement from the production facilities would enable early disease detection and facilitate adequate response. In this study, carried out within the European Union research project RAPIDIA FIELD, we tested an online monitoring system on pigs experimentally infected with the East European subtype 3 Porcine Reproductive & Respiratory Syndrome Virus (PRRSV) strain Lena. We linked data from different body temperature measurement methods and the real-time movement of the pigs. The results showed a negative correlation between body temperature and movement of the animals. The correlation was similar with both body temperature obtaining methods, rectal and thermal sensing microchip, suggesting some advantages of body temperature measurement with transponders compared with invasive and laborious rectal measuring. We also found a significant difference between motion values before and after the challenge with a virulent PRRSV strain. The decrease in motion values was noticeable before any clinical sign was recorded. Based on our results the online monitoring system could represent a practical tool in registering early warning signs of health status alterations, both in experimental and commercial production settings.
KW - Body temperature
KW - Motion
KW - Early detection
KW - Porcine Reproductive & Respiratory Syndrome
KW - virus
KW - Body temperature
KW - Motion
KW - Early detection
KW - Porcine Reproductive & Respiratory Syndrome
KW - virus
UR - https://res.slu.se/id/publ/93262
U2 - 10.1016/j.rvsc.2017.09.021
DO - 10.1016/j.rvsc.2017.09.021
M3 - Journal article
C2 - 28985615
SN - 0034-5288
VL - 114
SP - 482
EP - 488
JO - Research in Veterinary Science
JF - Research in Veterinary Science
ER -