{"id":{"repo_id":"sdstate","oai_identifier":"oai:openprairie.sdstate.edu:etd-1429"},"canonical_url":"https://search.dev.ndltd.org/etd/sdstate/oai:openprairie.sdstate.edu:etd-1429","repository":{"repo_id":"sdstate","name":"South Dakota State University","base_url":"https://openprairie.sdstate.edu/do/oai/"},"display":{"title":"Food Plot Effects on Winter Home Range and Survival of Radio-Marked Pheasant Hens in East-Central South Dakota","abstract":"The establishment of food plots next to winter cover is a common management practice used in South Dakota to provide a readily available source of food and cover for ring-necked pheasants (hasianus colchicus) through the winter months. Pheasant use of food plots during winter and factors influencing the degree of food plot use is well documented. However, the effect of food plots on winter home range and survival of pheasants is limited. I hypothesized that food plots established next to winter cover would reduce winter home range and improve winter survival of pheasants by reducing travel distances from roosting to feeding sites. Ninety hen pheasants were captured, radiomarked, and released at 4 study sites (2 reference, 2 treatment) in western Moody County, South Dakota. Radio-marked hens were monitored from November 15 through March 31, in winter 1 and October 15 through March 31, in winter 2. Ninety-five percent home range isopleths were used to verify radio-marked hens as food plot (FP) or non food plot (NFP) birds. Food plot birds were further classified as frequent users (class 1) or occasional users (class 2). The distance from a food plot to the home range center was calculated for each bird and the mean distance was tested for differences among the three classes of food plot use. Survival of radio-marked hens was estimated for the period of December 15 to March 15 and sources of winter mortality were noted in both winters. Effects of home range size on pheasant survival was also tested. The 95% home range area of FP birds was larger than the home range area of NFP birds both winters and was statistically larger (P = 0.02 1) in 1995-96. No difference in home range size was detected among the classes of food plot use (P = 0.062). The class 1 home range center to food plot distance was less than class 2 and NFP distances (PS 0.05) but no difference was detected between class 2 and NFP distances in either winter (P > 0.05). Survival of juvenile FP birds was greater than juvenile NFP birds but the difference was not statistically different (P = 0.136). The survival of juvenile class l birds was greater than the survival of both class 2 and NFP birds (PS 0.038), however no difference in survival was detected between class 2 and NFP birds (P = 0.9 12). Home range size did not affect survival rates (P 2'.: 0.562). Evidence from this study suggests hen pheasants expanded their home ranges to use food plots, but only those residing near (<300 m) a food plot had greater survival rates. Predation was the primary source of mortality.","abstract_html":"The establishment of food plots next to winter cover is a common management practice used in South Dakota to provide a readily available source of food and cover for ring-necked pheasants (hasianus colchicus) through the winter months. Pheasant use of food plots during winter and factors influencing the degree of food plot use is well documented. However, the effect of food plots on winter home range and survival of pheasants is limited. I hypothesized that food plots established next to winter cover would reduce winter home range and improve winter survival of pheasants by reducing travel distances from roosting to feeding sites. Ninety hen pheasants were captured, radiomarked, and released at 4 study sites (2 reference, 2 treatment) in western Moody County, South Dakota. Radio-marked hens were monitored from November 15 through March 31, in winter 1 and October 15 through March 31, in winter 2. Ninety-five percent home range isopleths were used to verify radio-marked hens as food plot (FP) or non food plot (NFP) birds. Food plot birds were further classified as frequent users (class 1) or occasional users (class 2). The distance from a food plot to the home range center was calculated for each bird and the mean distance was tested for differences among the three classes of food plot use. Survival of radio-marked hens was estimated for the period of December 15 to March 15 and sources of winter mortality were noted in both winters. Effects of home range size on pheasant survival was also tested. The 95% home range area of FP birds was larger than the home range area of NFP birds both winters and was statistically larger (P = 0.02 1) in 1995-96. No difference in home range size was detected among the classes of food plot use (P = 0.062). The class 1 home range center to food plot distance was less than class 2 and NFP distances (PS 0.05) but no difference was detected between class 2 and NFP distances in either winter (P &gt; 0.05). Survival of juvenile FP birds was greater than juvenile NFP birds but the difference was not statistically different (P = 0.136). The survival of juvenile class l birds was greater than the survival of both class 2 and NFP birds (PS 0.038), however no difference in survival was detected between class 2 and NFP birds (P = 0.9 12). Home range size did not affect survival rates (P 2&#x27;.: 0.562). Evidence from this study suggests hen pheasants expanded their home ranges to use food plots, but only those residing near (&lt;300 m) a food plot had greater survival rates. Predation was the primary source of mortality.","abstract_has_math":false,"creators":["Gabbert, Andy E."],"institution":null,"degree_name":"Master of Science (MS)","degree_level":"Thesis - University Access Only","degree_discipline":"Wildlife and Fisheries Science","degree_department":null,"school":null,"contributors":["Lester D. Flake"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":1997,"date_issued":"1997-01-01T08:00:00Z","date_published":"1997-01-01T08:00:00Z","updated_at":"2026-07-24T04:27:58Z","subjects":["food plots","winter home range","pheasant hens","south dakota","Natural Resources and Conservation"],"languages":["en"],"rights":["Copyright © 1997 Andy E. Gabbert. All rights reserved."],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://openprairie.sdstate.edu/etd/429","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Lester D. Flake"]},{"key":"dc:creator","label":"Author","values":["Gabbert, Andy E."]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"thesis:degree_discipline","label":"Discipline","values":["Wildlife and Fisheries Science"]},{"key":"thesis:degree_level","label":"Degree Level","values":["Thesis - University Access Only"]},{"key":"thesis:degree_name","label":"Degree Name","values":["Master of Science (MS)"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["food plots","winter home range","pheasant hens","south dakota","Natural Resources and Conservation"]}]},{"id":"language_rights","label":"Language and Rights","entries":[{"key":"dc:language","label":"Dc Language","values":["en"]},{"key":"dc:rights","label":"Dc Rights","values":["Copyright © 1997 Andy E. Gabbert. All rights reserved."]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["https://openprairie.sdstate.edu/etd/429"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["The establishment of food plots next to winter cover is a common management practice used in South Dakota to provide a readily available source of food and cover for ring-necked pheasants (hasianus colchicus) through the winter months. Pheasant use of food plots during winter and factors influencing the degree of food plot use is well documented. However, the effect of food plots on winter home range and survival of pheasants is limited. I hypothesized that food plots established next to winter cover would reduce winter home range and improve winter survival of pheasants by reducing travel distances from roosting to feeding sites. Ninety hen pheasants were captured, radiomarked, and released at 4 study sites (2 reference, 2 treatment) in western Moody County, South Dakota. Radio-marked hens were monitored from November 15 through March 31, in winter 1 and October 15 through March 31, in winter 2. Ninety-five percent home range isopleths were used to verify radio-marked hens as food plot (FP) or non food plot (NFP) birds. Food plot birds were further classified as frequent users (class 1) or occasional users (class 2). The distance from a food plot to the home range center was calculated for each bird and the mean distance was tested for differences among the three classes of food plot use. Survival of radio-marked hens was estimated for the period of December 15 to March 15 and sources of winter mortality were noted in both winters. Effects of home range size on pheasant survival was also tested. The 95% home range area of FP birds was larger than the home range area of NFP birds both winters and was statistically larger (P = 0.02 1) in 1995-96. No difference in home range size was detected among the classes of food plot use (P = 0.062). The class 1 home range center to food plot distance was less than class 2 and NFP distances (PS 0.05) but no difference was detected between class 2 and NFP distances in either winter (P > 0.05). Survival of juvenile FP birds was greater than juvenile NFP birds but the difference was not statistically different (P = 0.136). The survival of juvenile class l birds was greater than the survival of both class 2 and NFP birds (PS 0.038), however no difference in survival was detected between class 2 and NFP birds (P = 0.9 12). Home range size did not affect survival rates (P 2'.: 0.562). Evidence from this study suggests hen pheasants expanded their home ranges to use food plots, but only those residing near (<300 m) a food plot had greater survival rates. Predation was the primary source of mortality."]},{"key":"dc:title","label":"Title","values":["Food Plot Effects on Winter Home Range and Survival of Radio-Marked Pheasant Hens in East-Central South Dakota"]}]}],"canonical_facts":{"dc:contributor":["Lester D. Flake"],"dc:creator":["Gabbert, Andy E."],"dc:description.abstract":["The establishment of food plots next to winter cover is a common management practice used in South Dakota to provide a readily available source of food and cover for ring-necked pheasants (hasianus colchicus) through the winter months. Pheasant use of food plots during winter and factors influencing the degree of food plot use is well documented. However, the effect of food plots on winter home range and survival of pheasants is limited. I hypothesized that food plots established next to winter cover would reduce winter home range and improve winter survival of pheasants by reducing travel distances from roosting to feeding sites. Ninety hen pheasants were captured, radiomarked, and released at 4 study sites (2 reference, 2 treatment) in western Moody County, South Dakota. Radio-marked hens were monitored from November 15 through March 31, in winter 1 and October 15 through March 31, in winter 2. Ninety-five percent home range isopleths were used to verify radio-marked hens as food plot (FP) or non food plot (NFP) birds. Food plot birds were further classified as frequent users (class 1) or occasional users (class 2). The distance from a food plot to the home range center was calculated for each bird and the mean distance was tested for differences among the three classes of food plot use. Survival of radio-marked hens was estimated for the period of December 15 to March 15 and sources of winter mortality were noted in both winters. Effects of home range size on pheasant survival was also tested. The 95% home range area of FP birds was larger than the home range area of NFP birds both winters and was statistically larger (P = 0.02 1) in 1995-96. No difference in home range size was detected among the classes of food plot use (P = 0.062). The class 1 home range center to food plot distance was less than class 2 and NFP distances (PS 0.05) but no difference was detected between class 2 and NFP distances in either winter (P > 0.05). Survival of juvenile FP birds was greater than juvenile NFP birds but the difference was not statistically different (P = 0.136). The survival of juvenile class l birds was greater than the survival of both class 2 and NFP birds (PS 0.038), however no difference in survival was detected between class 2 and NFP birds (P = 0.9 12). Home range size did not affect survival rates (P 2'.: 0.562). Evidence from this study suggests hen pheasants expanded their home ranges to use food plots, but only those residing near (<300 m) a food plot had greater survival rates. Predation was the primary source of mortality."],"dc:identifier":["https://openprairie.sdstate.edu/etd/429"],"dc:language":["en"],"dc:rights":["Copyright © 1997 Andy E. Gabbert. All rights reserved."],"dc:subject":["food plots","winter home range","pheasant hens","south dakota","Natural Resources and Conservation"],"dc:title":["Food Plot Effects on Winter Home Range and Survival of Radio-Marked Pheasant Hens in East-Central South Dakota"],"thesis:degree_discipline":["Wildlife and Fisheries Science"],"thesis:degree_level":["Thesis - University Access Only"],"thesis:degree_name":["Master of Science (MS)"]},"updated_at":"2026-07-24T04:27:58Z"}