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Description: <div>Cremer CA. 2024. Understanding the spring migration ecology of sora and virginia rail in central illinois: a study utilizing automated telemetry. University of Illinois Urbana-Champaign. Available from <a href="https://www.ideals.illinois.edu/items/131549" target="_blank">https://www.ideals.illinois.edu/items/131549</a>.</div><div><br /></div><div>Fournier A. 2020–2021. Forbes Bio Station Motus Tags (Project 314). Data accessed from Motus Wildlife Tracking System, Birds Canada. Available from <a href="https://motus.org" target="_blank">https://motus.org</a> (accessed February 7, 2025).</div><div><br /></div><div>Hengst NM. 2021. Movements and Habitat Relationships of Virginia Rails and Soras within Impounded Coastal Wetlands of Northwest Ohio. PhD Thesis. The Ohio State University. Available from <a href="https://etd.ohiolink.edu/acprod/odb_etd/etd/r/1501/10?clear=10&p10_accession_num=osu1620636986833307" target="_blank">https://etd.ohiolink.edu/acprod/odb_etd/etd/r/1501/10?clear=10&p10_accession_num=osu1620636986833307</a>.</div><div><br /></div><div>Kearns G, Brinker D. 2017–2021. Sora Migration (Project 172). Data accessed from Motus Wildlife Tracking System, Birds Canada. Available from <a href="https://motus.org" target="_blank">https://motus.org</a> (accessed February 7, 2025).</div><div><br /></div><div>Kearns LJ. 2018. Multiscale Movements of a Threatened Population of Black-crowned Night-Herons in Lake Erie, Ohio Using Satellite and Automated Telemetry. Page 42. Available from <a href="https://core.ac.uk/download/pdf/223094155.pdf#page=50" target="_blank">https://core.ac.uk/download/pdf/223094155.pdf#page=50</a>.</div><div><br /></div><div>Korpi ZO, Matthews SN, Shumar MB, McDermott ME, Russell D, DeGroote LW, Jacob R, Shieldcastle M, Tonra CM. 2025. Spatial and species-specific variation in lake-crossing behavior in the Great Lakes region influences collision risk with offshore wind development. Ornithological <a href="Applications:duaf019" target="_blank">Applications:duaf019</a>. Available from <a href="https://academic.oup.com/condor/advance-article/doi/10.1093/ornithapp/duaf019/8052910" target="_blank">https://academic.oup.com/condor/advance-article/doi/10.1093/ornithapp/duaf019/8052910</a> (accessed March 11, 2025).</div><div><br /></div><div>Korpi ZO. 2024. Lake-crossing behavior of migratory songbirds: Assessing potential collision risk with offshore wind on Lake Erie. Ohio State University. Available from <a href="https://etd.ohiolink.edu/acprod/odb_etd/etd/r/1501/10?clear=10&p10_accession_num=osu1714751835522516" target="_blank">https://etd.ohiolink.edu/acprod/odb_etd/etd/r/1501/10?clear=10&p10_accession_num=osu1714751835522516</a>.</div><div><br /></div><div>Patterson A. 2018–2021. New York Lake Plains Motus (Project 152). Data accessed from Motus Wildlife Tracking System, Birds Canada. Available from <a href="https://motus.org" target="_blank">https://motus.org</a> (accessed February 7, 2025).</div><div><br /></div><div>Tonra C. 2015–2021. Ohio State University (Project 64). Data accessed from Motus Wildlife Tracking System, Birds Canada. Available from <a href="https://motus.org" target="_blank">https://motus.org</a> (accessed February 7, 2025).</div><div><br /></div><div>Tsuru BR. 2023. Post-breeding ecology in the Prothonotary Warbler: Evaluating trade-offs between breeding, molt, and migration phenology. The Ohio State University. Available from <a href="https://etd.ohiolink.edu/acprod/odb_etd/etd/r/1501/10?clear=10&p10_accession_num=osu1682064169949772" target="_blank">https://etd.ohiolink.edu/acprod/odb_etd/etd/r/1501/10?clear=10&p10_accession_num=osu1682064169949772</a> (accessed October 6, 2023).</div><div><br /></div><div>Williams HM, DeLeon EE, DeLeon RL. 2024. Early parental nest initiation carries over to the departure date and quality of fledglings from the breeding grounds in the Purple Martin. Journal of Ornithology 165:579–590. Available from <a href="https://link.springer.com/10.1007/s10336-024-02147-2" target="_blank">https://link.springer.com/10.1007/s10336-024-02147-2</a> (accessed August 12, 2024).</div><div><br /></div><div>Wright JR, Powell LL, Tonra CM. 2018. Automated telemetry reveals staging behavior in a declining migratory passerine. The <a href="Auk:461–476" target="_blank">Auk:461–476</a>. Available from <a href="http://www.bioone.org/doi/10.1642/AUK-17-219.1" target="_blank">http://www.bioone.org/doi/10.1642/AUK-17-219.1</a> (accessed April 26, 2018).</div>
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