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Social influence on the effectiveness of virtual fencing in sheep
by
Lee, Caroline
, Kearton, Tellisa
, Llewellyn, Rick
, Ouzman, Jackie
, Marini, Danila
, Belson, Sue
in
Agricultural Science
/ Animal Behavior
/ Body temperature
/ Collars
/ Electrical stimuli
/ Fences
/ Hyperthermia
/ Laboratory animals
/ Livestock farms
/ Sheep
/ Sheep behaviour
/ Sheep management
/ Sheep welfare
/ Virtual fencing
/ Zoology
2020
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Social influence on the effectiveness of virtual fencing in sheep
by
Lee, Caroline
, Kearton, Tellisa
, Llewellyn, Rick
, Ouzman, Jackie
, Marini, Danila
, Belson, Sue
in
Agricultural Science
/ Animal Behavior
/ Body temperature
/ Collars
/ Electrical stimuli
/ Fences
/ Hyperthermia
/ Laboratory animals
/ Livestock farms
/ Sheep
/ Sheep behaviour
/ Sheep management
/ Sheep welfare
/ Virtual fencing
/ Zoology
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Social influence on the effectiveness of virtual fencing in sheep
by
Lee, Caroline
, Kearton, Tellisa
, Llewellyn, Rick
, Ouzman, Jackie
, Marini, Danila
, Belson, Sue
in
Agricultural Science
/ Animal Behavior
/ Body temperature
/ Collars
/ Electrical stimuli
/ Fences
/ Hyperthermia
/ Laboratory animals
/ Livestock farms
/ Sheep
/ Sheep behaviour
/ Sheep management
/ Sheep welfare
/ Virtual fencing
/ Zoology
2020
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Social influence on the effectiveness of virtual fencing in sheep
Journal Article
Social influence on the effectiveness of virtual fencing in sheep
2020
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Overview
Early virtual fencing trials have effectively contained small groups of sheep within set areas of a paddock when all animals were wearing manual electronic collars. With sheep farming commonly involving large flocks, a potential cost-effective application of virtual fencing would involve applying equipment to only a proportion of the flock. In this study, we tested the ability of virtual fencing to control a small flock of sheep with differing proportions of the group exposed to the virtual fence (VF). Thirty-six Merino sheep were identified as leaders, middle or followers by moving them through a laneway. The sheep were then allocated to groups balanced for order of movement. The groups (
n
= 9 per group) included applying the VF to the following proportions of animals within each group: (1) 100% (
n
= 9 VF) (2) 66% (
n
= 6 VF;
n
= 3 no VF) (3) 33% (
n
= 3 VF;
n
= 6 no VF) (4) 0% (no VF; free to roam the paddock). The groups were given access to their own paddock (80 × 20 m) for two consecutive days, six hours per day, with the VF groups prevented from entering an exclusion zone that covered 50% of the north side of the paddock. During these hours, VF interactions, behavioural time budgets, and body temperature were recorded as measures of stress, and location was tracked with GPS. Group 100% VF and Control were tested on the first two days and groups 33% VF and 66% VF were tested on the following two days. During VF implementation the 100% VF and 66% VF group were successfully prevented from entering the exclusion zone. Having only 33% of the flock exposed to the virtual fence was not successful, with the sheep pushing forward through the VF to join flock mates in the exclusion zone. For learning to respond to the audio cue, sheep in the 33% group received more electrical stimuli with a 0.51 proportion for the ratio of electrical stimuli to audio cue, compared to 0.22 and 0.28 for the 100% and 66% groups, respectively. There were small differences in behavioural patterns of standing and lying on both days of testing, with the 100% VF and 66% VF groups spending more time lying. Although stress-induced hyperthermia did not occur in any of the VF groups, body temperature differed in the 33% VF group. There were no differences in temperature measures between the control and 100% VF animals. This study demonstrates that for a short period, controlling two-thirds of the flock was equally as effective as virtually fencing all animals, while controlling one-third of a flock with a virtual fence was not effective. For the short term, it appears that implementing the VF to a proportion of the flock can be an effective method of containment. Due to the limitations of this study, these results warrant further testing with larger flocks and for longer periods.
Publisher
PeerJ. Ltd,PeerJ, Inc,PeerJ Inc
Subject
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