Todd M Kautz
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Explore the profile of Todd M Kautz including associated specialties, affiliations and a list of published articles.
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11
Citations
62
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Recent Articles
1.
Stiegler J, Gallagher C, Hering R, Muller T, Tucker M, Apollonio M, et al.
Nat Commun
. 2024 Sep;
15(1):8079.
PMID: 39278967
Wildlife tagging provides critical insights into animal movement ecology, physiology, and behavior amid global ecosystem changes. However, the stress induced by capture, handling, and tagging can impact post-release locomotion and...
2.
Tucker M, Schipper A, Adams T, Attias N, Avgar T, Babic N, et al.
Science
. 2023 Jun;
380(6649):1059-1064.
PMID: 37289888
COVID-19 lockdowns in early 2020 reduced human mobility, providing an opportunity to disentangle its effects on animals from those of landscape modifications. Using GPS data, we compared movements and road...
3.
Schooler S, Finnegan S, Fowler N, Kellner K, Lutto A, Parchizadeh J, et al.
Sci Rep
. 2022 Nov;
12(1):18890.
PMID: 36344560
Protected areas that restrict human activities can enhance wildlife habitat quality. Efficacy of protected areas can be improved with increased protection from illegal activities and presence of buffer protected areas...
4.
Kautz T, Fowler N, Petroelje T, Beyer D, Duquette J, Belant J
Ecol Evol
. 2022 Jul;
12(7):e9125.
PMID: 35898426
Although most prey have multiple predator species, few studies have quantified how prey respond to the temporal niches of multiple predators which pose different levels of danger. For example, intraspecific...
5.
Hill J, Boone H, Gantchoff M, Kautz T, Kellner K, Orning E, et al.
Ecol Evol
. 2022 May;
12(5):e8875.
PMID: 35600694
Understanding the types and magnitude of human-caused mortality is essential for maintaining viable large carnivore populations. We used a database of cause-specific mortality to examine how hunting regulations and landscape...
6.
Fowler N, Petroelje T, Kautz T, Svoboda N, Duquette J, Kellner K, et al.
Ecol Evol
. 2022 Feb;
12(2):e8542.
PMID: 35154647
The parallel niche release hypothesis (PNR) indicates that reduced competition with dominant competitors results in greater density and niche breadth of subordinate competitors and which may support an adaptive advantage.We...
7.
Fowler N, Kautz T, Petroelje T, Wilton C, Kellner K, OBrien D, et al.
Ecology
. 2021 Jul;
102(11):e03494.
PMID: 34309013
Trophic cascades reportedly structure ecological communities through indirect species interactions. Though the predator-herbivore-autotroph relationship has received much attention, mechanistic evidence supporting intraguild trophic cascades is rare. We established 348 remote...
8.
Kautz T, Beyer Jr D, Farley Z, Fowler N, Kellner 3rd K, Lutto A, et al.
Sci Rep
. 2021 Jun;
11(1):12146.
PMID: 34108524
Where two sympatric species compete for the same resource and one species is dominant, there is potential for the subordinate species to be affected through interference competition or energetic costs...
9.
Cove M, Kays R, Bontrager H, Bresnan C, Lasky M, Frerichs T, et al.
Ecology
. 2021 Apr;
102(6):e03353.
PMID: 33793977
With the accelerating pace of global change, it is imperative that we obtain rapid inventories of the status and distribution of wildlife for ecological inferences and conservation planning. To address...
10.
Petroelje T, Kautz T, Beyer Jr D, Belant J
Ecol Evol
. 2021 Feb;
11(3):1413-1431.
PMID: 33598141
Interference competition occurs when two species have similar resource requirements and one species is dominant and can suppress or exclude the subordinate species. Wolves () and coyotes () are sympatric...