Grizzly Bear Behavior and Global Positioning System Collar Fix Rates

Abstract: Animal locations collected by Global Positioning System (GPS) collars will represent a biased sample of the sites an animal used if some position fixes fail and if those missed locations do not occur randomly. Probability of a GPS receiver obtaining a position fix is known to decline as ca...

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Published in:The Journal of Wildlife Management
Main Authors: HEARD, DOUGLAS C., CIARNIELLO, LANA M., SEIP, DALE R.
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2008
Subjects:
Online Access:http://dx.doi.org/10.2193/2007-175
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.2193%2F2007-175
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spelling crwiley:10.2193/2007-175 2024-06-23T07:57:22+00:00 Grizzly Bear Behavior and Global Positioning System Collar Fix Rates HEARD, DOUGLAS C. CIARNIELLO, LANA M. SEIP, DALE R. 2008 http://dx.doi.org/10.2193/2007-175 https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.2193%2F2007-175 en eng Wiley http://onlinelibrary.wiley.com/termsAndConditions#vor The Journal of Wildlife Management volume 72, issue 3, page 596-602 ISSN 0022-541X 1937-2817 journal-article 2008 crwiley https://doi.org/10.2193/2007-175 2024-05-31T08:13:41Z Abstract: Animal locations collected by Global Positioning System (GPS) collars will represent a biased sample of the sites an animal used if some position fixes fail and if those missed locations do not occur randomly. Probability of a GPS receiver obtaining a position fix is known to decline as canopy cover increases, but the impact of forest canopy cover was insufficient to account for the low fix rates we observed for GPS collars on grizzly bears ( Ursus arctos ). We tested the hypothesis that GPS fix rates were related to the interaction between animal activity (active vs. resting) and canopy cover by evaluating the following predictions: 1) grizzly bear activity should follow a circadian pattern similar to the circadian fix‐rate pattern, 2) grizzly bear use of canopy cover should follow a circadian pattern similar to the circadian fix rates, 3) grizzly bear activity should be related to canopy cover (i.e., bears should rest in areas with relatively high canopy covers and feed and move in relatively open areas), and 4) collar orientation and canopy cover should interact to affect the fix rates of test collars. The GPS fix rates traced a bimodal circadian pattern that was directly related to the circadian pattern of grizzly bear activity. Fix rates declined when bears were more likely to be using denser cover, and fix rates of test collars demonstrated that collar orientation interacted with canopy cover, such that fix rates declined much more with increasing canopy cover when the collar was on its side than when the collar was upright. We concluded that inferences made about grizzly bear microhabitat use, based on GPS locations, will underrepresent high canopy cover sites, especially when grizzly bears are resting there. (JOURNAL OF WILDLIFE MANAGEMENT 72(3):596–602; 2008) Article in Journal/Newspaper Ursus arctos Wiley Online Library The Journal of Wildlife Management 72 3 596 602
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language English
description Abstract: Animal locations collected by Global Positioning System (GPS) collars will represent a biased sample of the sites an animal used if some position fixes fail and if those missed locations do not occur randomly. Probability of a GPS receiver obtaining a position fix is known to decline as canopy cover increases, but the impact of forest canopy cover was insufficient to account for the low fix rates we observed for GPS collars on grizzly bears ( Ursus arctos ). We tested the hypothesis that GPS fix rates were related to the interaction between animal activity (active vs. resting) and canopy cover by evaluating the following predictions: 1) grizzly bear activity should follow a circadian pattern similar to the circadian fix‐rate pattern, 2) grizzly bear use of canopy cover should follow a circadian pattern similar to the circadian fix rates, 3) grizzly bear activity should be related to canopy cover (i.e., bears should rest in areas with relatively high canopy covers and feed and move in relatively open areas), and 4) collar orientation and canopy cover should interact to affect the fix rates of test collars. The GPS fix rates traced a bimodal circadian pattern that was directly related to the circadian pattern of grizzly bear activity. Fix rates declined when bears were more likely to be using denser cover, and fix rates of test collars demonstrated that collar orientation interacted with canopy cover, such that fix rates declined much more with increasing canopy cover when the collar was on its side than when the collar was upright. We concluded that inferences made about grizzly bear microhabitat use, based on GPS locations, will underrepresent high canopy cover sites, especially when grizzly bears are resting there. (JOURNAL OF WILDLIFE MANAGEMENT 72(3):596–602; 2008)
format Article in Journal/Newspaper
author HEARD, DOUGLAS C.
CIARNIELLO, LANA M.
SEIP, DALE R.
spellingShingle HEARD, DOUGLAS C.
CIARNIELLO, LANA M.
SEIP, DALE R.
Grizzly Bear Behavior and Global Positioning System Collar Fix Rates
author_facet HEARD, DOUGLAS C.
CIARNIELLO, LANA M.
SEIP, DALE R.
author_sort HEARD, DOUGLAS C.
title Grizzly Bear Behavior and Global Positioning System Collar Fix Rates
title_short Grizzly Bear Behavior and Global Positioning System Collar Fix Rates
title_full Grizzly Bear Behavior and Global Positioning System Collar Fix Rates
title_fullStr Grizzly Bear Behavior and Global Positioning System Collar Fix Rates
title_full_unstemmed Grizzly Bear Behavior and Global Positioning System Collar Fix Rates
title_sort grizzly bear behavior and global positioning system collar fix rates
publisher Wiley
publishDate 2008
url http://dx.doi.org/10.2193/2007-175
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.2193%2F2007-175
genre Ursus arctos
genre_facet Ursus arctos
op_source The Journal of Wildlife Management
volume 72, issue 3, page 596-602
ISSN 0022-541X 1937-2817
op_rights http://onlinelibrary.wiley.com/termsAndConditions#vor
op_doi https://doi.org/10.2193/2007-175
container_title The Journal of Wildlife Management
container_volume 72
container_issue 3
container_start_page 596
op_container_end_page 602
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