Where will the cat cross the road? Comparing camera and GPS-based models for identifying wildlife corridors
Designing effective wildlife corridors is a critical conservation challenge in fragmented landscapes. GPS-based step selection functions strongly predict dispersal corridors and connectivity, but GPS collaring can be expensive and invasive. Camera-based occupancy models are widely used for connectivity analyses but may involve trade-offs in data resolution. Despite widespread use of both approaches, few studies have directly compared them using concurrent datasets. We developed a stacked single-species, single-season occupancy model and a Circuitscape connectivity surface for mountain lions (Puma concolor) on Washington’s Olympic Peninsula, USA, and compared them with a connectivity surface from an existing integrated step selection function. Both models predicted mountain lion GPS locations well, with binned Spearman rank correlations of 1 for Circuitscape and 0.96 for the step selection function, though step selection better identified habitat use by dispersers. Connectivity predictions were moderately correlated across the landscape (r = 0.26), but agreement was strongest in human-dominated areas most critical for corridor planning. We conclude that GPS-based approaches are advantageous when data collection is feasible and the focus is on dispersal or fine-scale movement. However, camera-based approaches may be preferable for multi-species monitoring, large spatial and temporal scales, noninvasive sampling, when resources are limited, or when fine-scale or dispersal-specific inference is not required.
Citation Information
| Publication Year | 2026 |
|---|---|
| Title | Where will the cat cross the road? Comparing camera and GPS-based models for identifying wildlife corridors |
| DOI | 10.1016/j.biocon.2026.112029 |
| Authors | Read Barbee, L. Mark Elbroch, Kimberly A. Sager-Fradkin, Kristen Phillips, Dylan L. Bergman, Bethany Ackerman, Shannon L. Murphie, Andrew Stratton, Caitlin Kupar, Cassandra Sullivan, Glen Kalisz, Sarah Nelson Sells, Mark Hebblewhite, Hugh S. Robinson |
| Publication Type | Article |
| Publication Subtype | Journal Article |
| Series Title | Biological Conservation |
| Index ID | 70279530 |
| Record Source | USGS Publications Warehouse |
| USGS Organization | Coop Res Unit Seattle |