Description: <div>Beauchamp A, Morbey Y, Guglielmo C. 2021–2025. Georgian Bay songbirds (Project 417). 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>Beauchamp AT, Guglielmo CG, Morbey YE. 2020. Stopover refueling, movement, and departure decisions in the White-throated Sparrow: the influence of intrinsic and extrinsic factors during spring migration. Journal of Animal Ecology n/a. Available from <a href="https://besjournals.onlinelibrary.wiley.com/doi/abs/10.1111/1365-2656.13315" target="_blank">https://besjournals.onlinelibrary.wiley.com/doi/abs/10.1111/1365-2656.13315</a> (accessed August 12, 2020).</div><div><br /></div><div>Crewe TL, Deakin JE, Beauchamp AT, Morbey YE. 2019. Detection range of songbirds using a stopover site by automated radio-telemetry. Journal of Field Ornithology 0. Available from <a href="https://onlinelibrary.wiley.com/doi/abs/10.1111/jofo.12291" target="_blank">https://onlinelibrary.wiley.com/doi/abs/10.1111/jofo.12291</a> (accessed April 4, 2019).</div><div><br /></div><div>DeGroote L, Sarver M, Rice J, Yeany D, Fowler J, Jacob R, Sargent S, Koitsch L, Gimpel M, Cepek J, Krynak T. 2016–2021. Powdermill Nature Reserve (Project 35). 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>Deakin JE, Guglielmo CG, Morbey YE. 2019. Sex differences in migratory restlessness behavior in a Nearctic–Neotropical songbird. The Auk: Ornithological AdvancesDOI: 10.1093/auk/ukz017. Available from <a href="https://academic.oup.com/auk/advance-article/doi/10.1093/auk/ukz017/5454780" target="_blank">https://academic.oup.com/auk/advance-article/doi/10.1093/auk/ukz017/5454780</a> (accessed April 18, 2019).</div><div><br /></div><div>Deakin JE. 2017, August. Behavioural Mechanisms of Protandrous Spring Migration in a Nearctic-Neotropical Songbird. The University of Western Ontario. Available from <a href="http://ir.lib.uwo.ca/etd/4691/" target="_blank">http://ir.lib.uwo.ca/etd/4691/</a> (accessed September 23, 2017).</div><div><br /></div><div>Deakin JE. 2023, November 10. Differential Migration Timing and the Form and Function of Avian Wings. Available from <a href="https://ir.lib.uwo.ca/cgi/viewcontent.cgi?article=12590&context=etd" target="_blank">https://ir.lib.uwo.ca/cgi/viewcontent.cgi?article=12590&context=etd</a>.</div><div><br /></div><div>Guglielmo C, Morbey Y. 2014–2021. Gugli (Project 20). 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>Howe R. 2022, January 25. Effects of Experimental Malaria Infection On Migration of Yellow-rumped Warblers (Setophaga coronata). Master of Science. University of Western Ontario, London, ON, Canada. Available from <a href="https://ir.lib.uwo.ca/etd/8374" target="_blank">https://ir.lib.uwo.ca/etd/8374</a>.</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>Kennedy LV, Morbey YE, Mackenzie SA, Taylor PD, Guglielmo CG. 2016. A field test of the effects of body composition analysis by quantitative magnetic resonance on songbird stopover behaviour. Journal of OrnithologyDOI: 10.1007/s10336-016-1399-2. Available from <a href="http://link.springer.com/10.1007/s10336-016-1399-2" target="_blank">http://link.springer.com/10.1007/s10336-016-1399-2</a> (accessed October 31, 2016).</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>Morbey YE, Beauchamp AT, Bonner SJ, Mitchell GW. 2020. Evening locomotor activity during stopover differs on pre-departure and departure days in free-living songbirds. Journal of Avian Biology 51. Available from <a href="https://onlinelibrary.wiley.com/doi/abs/10.1111/jav.02448" target="_blank">https://onlinelibrary.wiley.com/doi/abs/10.1111/jav.02448</a> (accessed February 23, 2021).</div><div><br /></div><div>Rokitnicki P. 2023, April 21. Age and Sex Differences in Stopover Behaviours and Flight Performance in Black-throated Blue Warblers. Master of Science. Western University, London, Ontario. Available from <a href="https://ir.lib.uwo.ca/etd/9307" target="_blank">https://ir.lib.uwo.ca/etd/9307</a>.</div><div><br /></div><div>Seewagen CL, Ma Y, Morbey YE, Guglielmo CG. 2019. Stopover departure behavior and flight orientation of spring-migrant Yellow-rumped Warblers (Setophaga coronata) experimentally exposed to methylmercury. Journal of OrnithologyDOI: 10.1007/s10336-019-01641-2. Available from <a href="https://doi.org/10.1007/s10336-019-01641-2" target="_blank">https://doi.org/10.1007/s10336-019-01641-2</a> (accessed March 5, 2019).</div><div><br /></div><div>Tatten (Ruebesam) J. 2015–2018. CT River Valley Migratory Songbird Study (Project 74). 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>Tatten J. 2021, April 2. Factors Influencing Stopover and Movement of Migratory Songbirds within the Silvio O. Conte National Fish and Wildlife Refuge. Master’s Thesis. University of Massachusetts Amherst. Available from <a href="https://scholarworks.umass.edu/masters_theses_2/1026/" target="_blank">https://scholarworks.umass.edu/masters_theses_2/1026/</a>.</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>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>
Description: <div>Beauchamp A, Morbey Y, Guglielmo C. 2021–2025. Georgian Bay songbirds (Project 417). 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>Beauchamp AT, Guglielmo CG, Morbey YE. 2020. Stopover refueling, movement, and departure decisions in the White-throated Sparrow: the influence of intrinsic and extrinsic factors during spring migration. Journal of Animal Ecology n/a. Available from <a href="https://besjournals.onlinelibrary.wiley.com/doi/abs/10.1111/1365-2656.13315" target="_blank">https://besjournals.onlinelibrary.wiley.com/doi/abs/10.1111/1365-2656.13315</a> (accessed August 12, 2020).</div><div><br /></div><div>Celis-Murillo A, Malorodova M, Nakash E. 2022. North American Bird Banding Dataset 1960-2022 retrieved 2022-07-14. U.S. Geological Survey, Eastern Ecological Science Center at the Patuxent Research Refuge. Available from <a href="https://www.usgs.gov/labs/bird-banding-laboratory/data" target="_blank">https://www.usgs.gov/labs/bird-banding-laboratory/data</a> (accessed November 30, 2022).</div><div><br /></div><div>Crewe TL, Deakin JE, Beauchamp AT, Morbey YE. 2019. Detection range of songbirds using a stopover site by automated radio-telemetry. Journal of Field Ornithology 0. Available from <a href="https://onlinelibrary.wiley.com/doi/abs/10.1111/jofo.12291" target="_blank">https://onlinelibrary.wiley.com/doi/abs/10.1111/jofo.12291</a> (accessed April 4, 2019).</div><div><br /></div><div>DeGroote L, Sarver M, Cohen E. 2021–2025. PARC stopover (Project 416). 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>DeGroote L, Sarver M, Rice J, Yeany D, Fowler J, Jacob R, Sargent S, Koitsch L, Gimpel M, Cepek J, Krynak T. 2016–2021. Powdermill Nature Reserve (Project 35). 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>Deakin JE, Guglielmo CG, Morbey YE. 2019. Sex differences in migratory restlessness behavior in a Nearctic–Neotropical songbird. The Auk: Ornithological AdvancesDOI: 10.1093/auk/ukz017. Available from <a href="https://academic.oup.com/auk/advance-article/doi/10.1093/auk/ukz017/5454780" target="_blank">https://academic.oup.com/auk/advance-article/doi/10.1093/auk/ukz017/5454780</a> (accessed April 18, 2019).</div><div><br /></div><div>Deakin JE. 2017, August. Behavioural Mechanisms of Protandrous Spring Migration in a Nearctic-Neotropical Songbird. The University of Western Ontario. Available from <a href="http://ir.lib.uwo.ca/etd/4691/" target="_blank">http://ir.lib.uwo.ca/etd/4691/</a> (accessed September 23, 2017).</div><div><br /></div><div>Deakin JE. 2023, November 10. Differential Migration Timing and the Form and Function of Avian Wings. Available from <a href="https://ir.lib.uwo.ca/cgi/viewcontent.cgi?article=12590&context=etd" target="_blank">https://ir.lib.uwo.ca/cgi/viewcontent.cgi?article=12590&context=etd</a>.</div><div><br /></div><div>Guglielmo C, Morbey Y. 2014–2021. Gugli (Project 20). 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>Howe R. 2022, January 25. Effects of Experimental Malaria Infection On Migration of Yellow-rumped Warblers (Setophaga coronata). Master of Science. University of Western Ontario, London, ON, Canada. Available from <a href="https://ir.lib.uwo.ca/etd/8374" target="_blank">https://ir.lib.uwo.ca/etd/8374</a>.</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>Kennedy LV, Morbey YE, Mackenzie SA, Taylor PD, Guglielmo CG. 2016. A field test of the effects of body composition analysis by quantitative magnetic resonance on songbird stopover behaviour. Journal of OrnithologyDOI: 10.1007/s10336-016-1399-2. Available from <a href="http://link.springer.com/10.1007/s10336-016-1399-2" target="_blank">http://link.springer.com/10.1007/s10336-016-1399-2</a> (accessed October 31, 2016).</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>Morbey YE, Beauchamp AT, Bonner SJ, Mitchell GW. 2020. Evening locomotor activity during stopover differs on pre-departure and departure days in free-living songbirds. Journal of Avian Biology 51. Available from <a href="https://onlinelibrary.wiley.com/doi/abs/10.1111/jav.02448" target="_blank">https://onlinelibrary.wiley.com/doi/abs/10.1111/jav.02448</a> (accessed February 23, 2021).</div><div><br /></div><div>Rokitnicki P. 2023, April 21. Age and Sex Differences in Stopover Behaviours and Flight Performance in Black-throated Blue Warblers. Master of Science. Western University, London, Ontario. Available from <a href="https://ir.lib.uwo.ca/etd/9307" target="_blank">https://ir.lib.uwo.ca/etd/9307</a>.</div><div><br /></div><div>Sargent S. 2016–2017. Erie Bird Observatory - Presque Isle Migrants (Project 56). 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>Seewagen CL, Ma Y, Morbey YE, Guglielmo CG. 2019. Stopover departure behavior and flight orientation of spring-migrant Yellow-rumped Warblers (Setophaga coronata) experimentally exposed to methylmercury. Journal of OrnithologyDOI: 10.1007/s10336-019-01641-2. Available from <a href="https://doi.org/10.1007/s10336-019-01641-2" target="_blank">https://doi.org/10.1007/s10336-019-01641-2</a> (accessed March 5, 2019).</div><div><br /></div><div>Tatten (Ruebesam) J. 2015–2018. CT River Valley Migratory Songbird Study (Project 74). 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>Tatten J. 2021, April 2. Factors Influencing Stopover and Movement of Migratory Songbirds within the Silvio O. Conte National Fish and Wildlife Refuge. Master’s Thesis. University of Massachusetts Amherst. Available from <a href="https://scholarworks.umass.edu/masters_theses_2/1026/" target="_blank">https://scholarworks.umass.edu/masters_theses_2/1026/</a>.</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>U.S. Geological Survey. 2023. North American Bird Banding and Encounter Data 1914-1959. Available from <a href="https://www.usgs.gov/labs/bird-banding-laboratory/data" target="_blank">https://www.usgs.gov/labs/bird-banding-laboratory/data</a> (accessed January 23, 2023).</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>