Differential habitat use between demographic states of black bears in managed timber forests

Author:

Evans Bryn E.1ORCID,Brehm Allison M.2,Franzoi Dri Gabriela1,Bolinjkar Amay1,Archambault Griffin1,Mortelliti Alessio1

Affiliation:

1. Department of Wildlife, Fisheries and Conservation Biology University of Maine 5755 Nutting Hall Orono ME 04469 USA

2. Department of Integrative Biology University of Wisconsin – Madison 145 Noland Hall, 250 N. Mills Street Madison WI 53706 USA

Abstract

AbstractThe long‐term effects of intensive forest harvest on sensitive demographic stages of the American black bear (Ursus americanus) have been often overlooked. Much of Maine, USA, is covered in forests that are hospitable to bears and commercial timber harvest. To investigate the potential effects of differing intensities of disturbance on black bears, and on females with cubs particularly, we designed a large‐scale natural experiment with 197 motion‐sensitive camera sites dispersed over representative forest stands in northern and central Maine. Using multi‐state occupancy models, we distinguished the overall trends in space use by females with young versus adult bears without young. Forest disturbance at large spatial scales was positively associated with the probability of use for both demographic groups and the availability of hardwood trees was an additional important factor for habitat use by females with young. Our study illustrates the use of motion‐sensitive cameras to monitor and understand habitat use by distinct life‐history stages of animals living in human‐modified landscapes, and results indicate that managers can maintain black bear habitat in areas of active forest harvest by ensuring the availability of hardwood species.

Funder

University of Maine

Maine Department of Inland Fisheries and Wildlife

National Institute of Food and Agriculture

Publisher

Wiley

Subject

Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics,Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics

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