1. Fine‐scale spatial patterns of wildlife disease are common and understudied
2. J. M. Alston , C. H. Fleming , M. J. Noonan , M. A. Tucker , I. Silva , C. Folta , T. S. Akre , A. H. Ali , J. L. Belant , D. Beyer , N. Blaum , K. Böhning-Gaese , R. C. de Paula , J. Dekker , J. Drescher-Lehman , N. Farwig , C. Fichtel , C. Fischer , A. T. Ford 5, R. Janssen , F. Jeltsch , P. M. Kappeler , S. D. LaPoint , A. C. Markham , E. P. Medic , R. G. Morato , R. Nathan , K. A. Olson , B. D. Patterson , T. R. Petroelje , E. E. Ramalho , S. Rösner , L. G. O. Santos , D. G. Schabo , N. Selva , A. Sergiel , O. Spiegel , W. Ullmann , F. Zieba , T. Zwiacz-Kozica , G. Wittemyer , W. F. Fagan , T. Müller , and J. M. Calabrese . Clarifying space use concepts in ecology : range vs. occurrence distributions (preprint). bioRxiv preprint, page 2022.09.29.509951, 2022. URL https://www.biorxiv.org/content/10.1101/2022.09.29.509951v1%0A https://www.biorxiv.org/content/10.1101/2022.09.29.509951v1.abstract%0A 10.1101/2022.09.29.509951.
3. A metapopulation model of social group dynamics and disease applied to Yellowstone wolves
4. ctmm: an
r
package for analyzing animal relocation data as a continuous‐time stochastic process
5. The Context-Dependent Effects of Host Competence, Competition, and Pathogen Transmission Mode on Disease Prevalence