Models Incorporating Non‐Stationarity Improve Detection of Climate‐Driven Range Shifts in Odontocetes.

Saved in:
Bibliographic Details
Title: Models Incorporating Non‐Stationarity Improve Detection of Climate‐Driven Range Shifts in Odontocetes.
Authors: Hirtle, Nathan1 (AUTHOR) nathan.hirtle@stonybrook.edu, Roberts, Jason J.2 (AUTHOR), Redfern, Jessica V.3 (AUTHOR), Hazen, Elliott L.4 (AUTHOR), Palka, Debra5 (AUTHOR), McLellan, William6 (AUTHOR), Garrison, Lance7 (AUTHOR), Barco, Susan8 (AUTHOR), O'Brien, Orfhlaith3 (AUTHOR), Quintana‐Rizzo, Ester9 (AUTHOR), Lomac‐MacNair, Kate10 (AUTHOR), Rickard, Meghan11 (AUTHOR), Zoidis, Ann M.12 (AUTHOR), Cotter, Mark13 (AUTHOR), Whitt, Amy D.14 (AUTHOR), Boisseau, Oliver15 (AUTHOR), Halpin, Patrick2 (AUTHOR), Thorne, Lesley1 (AUTHOR)
Source: Diversity & Distributions. Feb2026, Vol. 32 Issue 2, p1-18. 18p.
Database: Environment Complete
Full text is not displayed to guests.
Description
ISSN:13669516
DOI:10.1111/ddi.70154