{"id":{"repo_id":"nodak","oai_identifier":"oai:commons.und.edu:theses-1721"},"canonical_url":"https://search.dev.ndltd.org/etd/nodak/oai:commons.und.edu:theses-1721","repository":{"repo_id":"nodak","name":"University of North Dakota","base_url":"https://commons.und.edu/do/oai/"},"display":{"title":"Movements, Resource Selection, And Risk Analyses For Parasitic Disease In An Expanding Moose Population In The Northern Great Plains","abstract":"<p>Little is known regarding moose ecology in North Dakota, and a decline in moose in northeastern North Dakota may be linked to parasites of white-tailed deer (<em>Parelaphostrongylus tenuis</em> and <em>Fascioloides magna</em>). I investigated the ecology of moose, including the potential effects of parasitic disease. I used global positioning system collars to estimate home ranges and habitat selection and collected fecal samples for diet estimates. I reviewed historical data and examined livers moose for evidence of <em>F. magna</em> infection. I examined 3730 white-tailed deer for <em>P. tenuis</em> and investigated whether prevalence had increased since 1991. I modeled the relationship of climate, habitat and deer density to <em>P. tenuis</em> prevalence and sampled gastropod intermediate hosts to determine habitats functioning in <em>P. tenuis</em> transmission. I estimated moose harvest rates, investigated climate trends, and compared moose population trends to climate for three areas. Finally, I created a risk map for <em>P. tenuis</em> infection that incorporated climate, deer density and habitat.</p> <p>Home ranges (F1 = 30.9, P < 0.001) and habitat use (F 1 = 30.9, P < 0.001) differed between study sites. Moose selected for wooded habitats, and primarily consumed woody browse (> 65%). Habitat spatial pattern likely influenced home range size, and moose range expansion to the prairie appears related to human-induced habitat change. Historical data revealed that <em>F. magna</em> is endemic to North Dakota, although this parasite was absent in moose livers collected from 2002-2003. This parasite is probably not a primary factor in moose declines, and a lack of permanent wetlands may limit transmission. <em>P. tenuis</em>prevalence in deer was 14%, and had increased since 1991 (P = 0.05). A model of growing season precipitation, winter temperature, and growing season temperature best predicted prevalence (r2 = 0.84). Gastropod sampling suggested that woodlands are critical to <em>P. tenuis</em> transmission. Harvest rates ranged from 16.8-26.7%. Summer temperatures were cooler; May-June precipitation increased, and growing season lengthened. In northeastern North Dakota, <em>P. tenuis</em>risk was higher, and population trends were correlated with climate. Moose declines are likely due to overexploitation and increasing <em>P. tenuis</em> transmission resulting from a wetter climate and increased deer abundance.</p>","abstract_html":"&lt;p&gt;Little is known regarding moose ecology in North Dakota, and a decline in moose in northeastern North Dakota may be linked to parasites of white-tailed deer (&lt;em&gt;Parelaphostrongylus tenuis&lt;/em&gt; and &lt;em&gt;Fascioloides magna&lt;/em&gt;). I investigated the ecology of moose, including the potential effects of parasitic disease. I used global positioning system collars to estimate home ranges and habitat selection and collected fecal samples for diet estimates. I reviewed historical data and examined livers moose for evidence of &lt;em&gt;F. magna&lt;/em&gt; infection. I examined 3730 white-tailed deer for &lt;em&gt;P. tenuis&lt;/em&gt; and investigated whether prevalence had increased since 1991. I modeled the relationship of climate, habitat and deer density to &lt;em&gt;P. tenuis&lt;/em&gt; prevalence and sampled gastropod intermediate hosts to determine habitats functioning in &lt;em&gt;P. tenuis&lt;/em&gt; transmission. I estimated moose harvest rates, investigated climate trends, and compared moose population trends to climate for three areas. Finally, I created a risk map for &lt;em&gt;P. tenuis&lt;/em&gt; infection that incorporated climate, deer density and habitat.&lt;/p&gt; &lt;p&gt;Home ranges (F1 = 30.9, P &lt; 0.001) and habitat use (F 1 = 30.9, P &lt; 0.001) differed between study sites. Moose selected for wooded habitats, and primarily consumed woody browse (&gt; 65%). Habitat spatial pattern likely influenced home range size, and moose range expansion to the prairie appears related to human-induced habitat change. Historical data revealed that &lt;em&gt;F. magna&lt;/em&gt; is endemic to North Dakota, although this parasite was absent in moose livers collected from 2002-2003. This parasite is probably not a primary factor in moose declines, and a lack of permanent wetlands may limit transmission. &lt;em&gt;P. tenuis&lt;/em&gt;prevalence in deer was 14%, and had increased since 1991 (P = 0.05). A model of growing season precipitation, winter temperature, and growing season temperature best predicted prevalence (r2 = 0.84). Gastropod sampling suggested that woodlands are critical to &lt;em&gt;P. tenuis&lt;/em&gt; transmission. Harvest rates ranged from 16.8-26.7%. Summer temperatures were cooler; May-June precipitation increased, and growing season lengthened. In northeastern North Dakota, &lt;em&gt;P. tenuis&lt;/em&gt;risk was higher, and population trends were correlated with climate. Moose declines are likely due to overexploitation and increasing &lt;em&gt;P. tenuis&lt;/em&gt; transmission resulting from a wetter climate and increased deer abundance.&lt;/p&gt;","abstract_has_math":false,"creators":["Maskey, James J., Jr."],"institution":null,"degree_name":"Doctor of Philosophy (PhD)","degree_level":"Dissertation","degree_discipline":"Biology","degree_department":null,"school":null,"contributors":[],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2008,"date_issued":"2008-12-01T08:00:00Z","date_published":"2008-12-01T08:00:00Z","updated_at":"2026-07-24T03:25:37Z","subjects":["Psychology"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://commons.und.edu/theses/718","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:creator","label":"Author","values":["Maskey, James J., Jr."]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date.available","label":"Dc Date Available","values":["2018-09-11T07:00:00Z"]},{"key":"thesis:degree_discipline","label":"Discipline","values":["Biology"]},{"key":"thesis:degree_level","label":"Degree Level","values":["Dissertation"]},{"key":"thesis:degree_name","label":"Degree Name","values":["Doctor of Philosophy (PhD)"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["Psychology"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["https://commons.und.edu/theses/718"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["<p>Little is known regarding moose ecology in North Dakota, and a decline in moose in northeastern North Dakota may be linked to parasites of white-tailed deer (<em>Parelaphostrongylus tenuis</em> and <em>Fascioloides magna</em>). I investigated the ecology of moose, including the potential effects of parasitic disease. I used global positioning system collars to estimate home ranges and habitat selection and collected fecal samples for diet estimates. I reviewed historical data and examined livers moose for evidence of <em>F. magna</em> infection. I examined 3730 white-tailed deer for <em>P. tenuis</em> and investigated whether prevalence had increased since 1991. I modeled the relationship of climate, habitat and deer density to <em>P. tenuis</em> prevalence and sampled gastropod intermediate hosts to determine habitats functioning in <em>P. tenuis</em> transmission. I estimated moose harvest rates, investigated climate trends, and compared moose population trends to climate for three areas. Finally, I created a risk map for <em>P. tenuis</em> infection that incorporated climate, deer density and habitat.</p> <p>Home ranges (F1 = 30.9, P < 0.001) and habitat use (F 1 = 30.9, P < 0.001) differed between study sites. Moose selected for wooded habitats, and primarily consumed woody browse (> 65%). Habitat spatial pattern likely influenced home range size, and moose range expansion to the prairie appears related to human-induced habitat change. Historical data revealed that <em>F. magna</em> is endemic to North Dakota, although this parasite was absent in moose livers collected from 2002-2003. This parasite is probably not a primary factor in moose declines, and a lack of permanent wetlands may limit transmission. <em>P. tenuis</em>prevalence in deer was 14%, and had increased since 1991 (P = 0.05). A model of growing season precipitation, winter temperature, and growing season temperature best predicted prevalence (r2 = 0.84). Gastropod sampling suggested that woodlands are critical to <em>P. tenuis</em> transmission. Harvest rates ranged from 16.8-26.7%. Summer temperatures were cooler; May-June precipitation increased, and growing season lengthened. In northeastern North Dakota, <em>P. tenuis</em>risk was higher, and population trends were correlated with climate. Moose declines are likely due to overexploitation and increasing <em>P. tenuis</em> transmission resulting from a wetter climate and increased deer abundance.</p>"]},{"key":"dc:title","label":"Title","values":["Movements, Resource Selection, And Risk Analyses For Parasitic Disease In An Expanding Moose Population In The Northern Great Plains"]}]}],"canonical_facts":{"dc:creator":["Maskey, James J., Jr."],"dc:date.available":["2018-09-11T07:00:00Z"],"dc:description.abstract":["<p>Little is known regarding moose ecology in North Dakota, and a decline in moose in northeastern North Dakota may be linked to parasites of white-tailed deer (<em>Parelaphostrongylus tenuis</em> and <em>Fascioloides magna</em>). I investigated the ecology of moose, including the potential effects of parasitic disease. I used global positioning system collars to estimate home ranges and habitat selection and collected fecal samples for diet estimates. I reviewed historical data and examined livers moose for evidence of <em>F. magna</em> infection. I examined 3730 white-tailed deer for <em>P. tenuis</em> and investigated whether prevalence had increased since 1991. I modeled the relationship of climate, habitat and deer density to <em>P. tenuis</em> prevalence and sampled gastropod intermediate hosts to determine habitats functioning in <em>P. tenuis</em> transmission. I estimated moose harvest rates, investigated climate trends, and compared moose population trends to climate for three areas. Finally, I created a risk map for <em>P. tenuis</em> infection that incorporated climate, deer density and habitat.</p> <p>Home ranges (F1 = 30.9, P < 0.001) and habitat use (F 1 = 30.9, P < 0.001) differed between study sites. Moose selected for wooded habitats, and primarily consumed woody browse (> 65%). Habitat spatial pattern likely influenced home range size, and moose range expansion to the prairie appears related to human-induced habitat change. Historical data revealed that <em>F. magna</em> is endemic to North Dakota, although this parasite was absent in moose livers collected from 2002-2003. This parasite is probably not a primary factor in moose declines, and a lack of permanent wetlands may limit transmission. <em>P. tenuis</em>prevalence in deer was 14%, and had increased since 1991 (P = 0.05). A model of growing season precipitation, winter temperature, and growing season temperature best predicted prevalence (r2 = 0.84). Gastropod sampling suggested that woodlands are critical to <em>P. tenuis</em> transmission. Harvest rates ranged from 16.8-26.7%. Summer temperatures were cooler; May-June precipitation increased, and growing season lengthened. In northeastern North Dakota, <em>P. tenuis</em>risk was higher, and population trends were correlated with climate. Moose declines are likely due to overexploitation and increasing <em>P. tenuis</em> transmission resulting from a wetter climate and increased deer abundance.</p>"],"dc:identifier":["https://commons.und.edu/theses/718"],"dc:subject":["Psychology"],"dc:title":["Movements, Resource Selection, And Risk Analyses For Parasitic Disease In An Expanding Moose Population In The Northern Great Plains"],"thesis:degree_discipline":["Biology"],"thesis:degree_level":["Dissertation"],"thesis:degree_name":["Doctor of Philosophy (PhD)"]},"updated_at":"2026-07-24T03:25:37Z"}