Title (en)
Association between Rumination Times Detected by an Ear Tag-Based Accelerometer System and Rumen Physiology in Dairy Cows
Language
English
Description (en)
Monitoring rumination activity is considered a useful indicator for the early detection of diseases and metabolic disorders. Accelerometer-based sensor systems provide health alerts based on individual thresholds of rumination times in dairy cows. Detailed knowledge of the relationship between sensor-based rumination times and rumen physiology would help detect conspicuous animals and evaluate the treatment's success. This study aimed to investigate the association between sensor-based health alerts and rumen fluid characteristics in Holstein-Friesian cows at different stages of lactation. Rumen fluid was collected via a stomach tube from 63 pairs of cows with and without health alerts (ALRT vs NALRT). Pairs were matched based on the day of lactation, the number of lactations, and health criteria. Rumen fluid was collected during and after health alerts. The parameters of color, odor, consistency, pH, redox potential, sedimentation flotation time, and the number of protozoa were examined. Results showed differences between both groups in odor, rumen pH, sedimentation flotation time, and protozoan count at the first rumen fluid collection. Within the groups, greater variations in rumen fluid parameters were found for ALRT cows compared to NALRT cows. The interaction between health alert and stage of lactation did not affect the rumen fluid parameters.
Keywords (en)
Health Disorders; Transition Period; Metabolic Health; Ph; Cattle; Acidosis; Identification; Fluid; Feed; DeviceRumen fluid; Rumination; Health alert; Accelerometer
DOI
10.3390/ani13040759
Author of the digital object
Anne Simoni  (University of Veterinary Medicine, Vienna)
Michael Iwersen  (University of Veterinary Medicine, Vienna)
Marc Drillich  (University of Veterinary Medicine, Vienna)
Karina Weimar  (University of Veterinary Medicine, Vienna)
Felix König  (University of Veterinary Medicine, Vienna)
Thomas Breuer  (Zoetis Germany GmbH)
Marcus Klawitter  (Zoetis Germany GmbH)
Christian Wunderlich  (Zoetis Germany GmbH)
Andrew Hancock  (Zoetis International)
Format
application/pdf
Size
2.2 MB
Licence Selected
Type of publication
Article
Name of Publication (en)
Animals
Pages or Volume
15
Volume
13
Number
4
Publisher
MDPI
Publication Date
2023