{"id":{"repo_id":"sdstate","oai_identifier":"oai:openprairie.sdstate.edu:etd-1501"},"canonical_url":"https://search.dev.ndltd.org/etd/sdstate/oai:openprairie.sdstate.edu:etd-1501","repository":{"repo_id":"sdstate","name":"South Dakota State University","base_url":"https://openprairie.sdstate.edu/do/oai/"},"display":{"title":"An Assessment of the Channel Catfish Population in the Big Sioux River, South Dakota","abstract":"Prior to this research, no catfish-specific studies had been conducted on the Big Sioux River (BSR) despite the fact that channel catfish Ictalurus punctatus are the most harvested and most preferred gamefish by recreational anglers on the BSR. Some South Dakota catfish anglers have requested regulations that protect trophy channel catfish, but resource managers had insufficient information available for making trophy management decisions. The objectives of this study were to 1) assess channel catfish size structure, relative abundance, condition, growth, age structure, and total annual mortality at the segment scale, 2) delineate longitudinal trends in channel catfish population structure and dynamic rate functions, and 3) make trophy (i.e., 2: 71 0 mm) channel catfish management recommendations. During the summer of 2000, channel catfish were sampled (N = 2,327) from the upper, middle, and lower segments of the BSR. With nearly equal sampling effort among study segments, 67% of the memorable-length channel catfish were captured from the upper segment of the river. Size structure, quantified as proportional stock density (PSD), relative stock density of preferred-length fish (RSD-P), and relative stock density of memorable-length fish (RSD-M) was significantly higher (P < 0.05) in the upper segment when compared to the middle segment and lower segment of the BSR. Growth, quantified as mean length at age, was significantly different among segments for age-2 through age-9 fish (P < 0.0045), and was significantly faster in the upper segment than in the middle and lower segments. Stock-length CPUE did not differ among segments (P = 0.14), but among-segment differences in memorable-length CPUE approached significance (P= 0.07). Relative stock density of preferred-length fish (RSDP) was higher at sites with low stock-length CPUE (r = -0.8071, P = 0.0001) and growth was faster at sites with low stock-length CPUE (r = -0.6821, P = 0.0001). Stock-length CPUE was higher at sites that had fewer summer discharge events exceeding 10 times median flow during the period from January 1, 1990 thru September 30, 1998 (r = -0.753, P = 0.001 ). Fisheries Analysis and Simulation Tools (FAST) was used to model the effect of potential length regulations on the abundance of memorable-length fish in the upper and lower segment of the BSR. Models predicted that slow growth rates would limit the abundance of memorable-length fish in the lower segment of the BSR regardless of regulation, but in the upper segment of the BSR length regulations could be used to increase memorable-length fish abundance, especially if exploitation rates increase. Using these research findings, resource managers can address angler concerns over trophy catfish sustainability with population data and predictive models.","abstract_html":"Prior to this research, no catfish-specific studies had been conducted on the Big Sioux River (BSR) despite the fact that channel catfish Ictalurus punctatus are the most harvested and most preferred gamefish by recreational anglers on the BSR. Some South Dakota catfish anglers have requested regulations that protect trophy channel catfish, but resource managers had insufficient information available for making trophy management decisions. The objectives of this study were to 1) assess channel catfish size structure, relative abundance, condition, growth, age structure, and total annual mortality at the segment scale, 2) delineate longitudinal trends in channel catfish population structure and dynamic rate functions, and 3) make trophy (i.e., 2: 71 0 mm) channel catfish management recommendations. During the summer of 2000, channel catfish were sampled (N = 2,327) from the upper, middle, and lower segments of the BSR. With nearly equal sampling effort among study segments, 67% of the memorable-length channel catfish were captured from the upper segment of the river. Size structure, quantified as proportional stock density (PSD), relative stock density of preferred-length fish (RSD-P), and relative stock density of memorable-length fish (RSD-M) was significantly higher (P &lt; 0.05) in the upper segment when compared to the middle segment and lower segment of the BSR. Growth, quantified as mean length at age, was significantly different among segments for age-2 through age-9 fish (P &lt; 0.0045), and was significantly faster in the upper segment than in the middle and lower segments. Stock-length CPUE did not differ among segments (P = 0.14), but among-segment differences in memorable-length CPUE approached significance (P= 0.07). Relative stock density of preferred-length fish (RSDP) was higher at sites with low stock-length CPUE (r = -0.8071, P = 0.0001) and growth was faster at sites with low stock-length CPUE (r = -0.6821, P = 0.0001). Stock-length CPUE was higher at sites that had fewer summer discharge events exceeding 10 times median flow during the period from January 1, 1990 thru September 30, 1998 (r = -0.753, P = 0.001 ). Fisheries Analysis and Simulation Tools (FAST) was used to model the effect of potential length regulations on the abundance of memorable-length fish in the upper and lower segment of the BSR. Models predicted that slow growth rates would limit the abundance of memorable-length fish in the lower segment of the BSR regardless of regulation, but in the upper segment of the BSR length regulations could be used to increase memorable-length fish abundance, especially if exploitation rates increase. Using these research findings, resource managers can address angler concerns over trophy catfish sustainability with population data and predictive models.","abstract_has_math":false,"creators":["Kirby, Daniel J."],"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":["Charles R. Berry Jr."],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2001,"date_issued":"2001-04-01T08:00:00Z","date_published":"2001-04-01T08:00:00Z","updated_at":"2026-07-24T04:27:58Z","subjects":["Natural Resources and Conservation"],"languages":["en"],"rights":["Copyright © 2001 Daniel J. Kirby. All rights reserved."],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://openprairie.sdstate.edu/etd/501","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Charles R. 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All rights reserved."]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["https://openprairie.sdstate.edu/etd/501"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["Prior to this research, no catfish-specific studies had been conducted on the Big Sioux River (BSR) despite the fact that channel catfish Ictalurus punctatus are the most harvested and most preferred gamefish by recreational anglers on the BSR. Some South Dakota catfish anglers have requested regulations that protect trophy channel catfish, but resource managers had insufficient information available for making trophy management decisions. The objectives of this study were to 1) assess channel catfish size structure, relative abundance, condition, growth, age structure, and total annual mortality at the segment scale, 2) delineate longitudinal trends in channel catfish population structure and dynamic rate functions, and 3) make trophy (i.e., 2: 71 0 mm) channel catfish management recommendations. During the summer of 2000, channel catfish were sampled (N = 2,327) from the upper, middle, and lower segments of the BSR. With nearly equal sampling effort among study segments, 67% of the memorable-length channel catfish were captured from the upper segment of the river. Size structure, quantified as proportional stock density (PSD), relative stock density of preferred-length fish (RSD-P), and relative stock density of memorable-length fish (RSD-M) was significantly higher (P < 0.05) in the upper segment when compared to the middle segment and lower segment of the BSR. Growth, quantified as mean length at age, was significantly different among segments for age-2 through age-9 fish (P < 0.0045), and was significantly faster in the upper segment than in the middle and lower segments. Stock-length CPUE did not differ among segments (P = 0.14), but among-segment differences in memorable-length CPUE approached significance (P= 0.07). Relative stock density of preferred-length fish (RSDP) was higher at sites with low stock-length CPUE (r = -0.8071, P = 0.0001) and growth was faster at sites with low stock-length CPUE (r = -0.6821, P = 0.0001). Stock-length CPUE was higher at sites that had fewer summer discharge events exceeding 10 times median flow during the period from January 1, 1990 thru September 30, 1998 (r = -0.753, P = 0.001 ). Fisheries Analysis and Simulation Tools (FAST) was used to model the effect of potential length regulations on the abundance of memorable-length fish in the upper and lower segment of the BSR. Models predicted that slow growth rates would limit the abundance of memorable-length fish in the lower segment of the BSR regardless of regulation, but in the upper segment of the BSR length regulations could be used to increase memorable-length fish abundance, especially if exploitation rates increase. Using these research findings, resource managers can address angler concerns over trophy catfish sustainability with population data and predictive models."]},{"key":"dc:title","label":"Title","values":["An Assessment of the Channel Catfish Population in the Big Sioux River, South Dakota"]}]}],"canonical_facts":{"dc:contributor":["Charles R. Berry Jr."],"dc:creator":["Kirby, Daniel J."],"dc:description.abstract":["Prior to this research, no catfish-specific studies had been conducted on the Big Sioux River (BSR) despite the fact that channel catfish Ictalurus punctatus are the most harvested and most preferred gamefish by recreational anglers on the BSR. Some South Dakota catfish anglers have requested regulations that protect trophy channel catfish, but resource managers had insufficient information available for making trophy management decisions. The objectives of this study were to 1) assess channel catfish size structure, relative abundance, condition, growth, age structure, and total annual mortality at the segment scale, 2) delineate longitudinal trends in channel catfish population structure and dynamic rate functions, and 3) make trophy (i.e., 2: 71 0 mm) channel catfish management recommendations. During the summer of 2000, channel catfish were sampled (N = 2,327) from the upper, middle, and lower segments of the BSR. With nearly equal sampling effort among study segments, 67% of the memorable-length channel catfish were captured from the upper segment of the river. Size structure, quantified as proportional stock density (PSD), relative stock density of preferred-length fish (RSD-P), and relative stock density of memorable-length fish (RSD-M) was significantly higher (P < 0.05) in the upper segment when compared to the middle segment and lower segment of the BSR. Growth, quantified as mean length at age, was significantly different among segments for age-2 through age-9 fish (P < 0.0045), and was significantly faster in the upper segment than in the middle and lower segments. Stock-length CPUE did not differ among segments (P = 0.14), but among-segment differences in memorable-length CPUE approached significance (P= 0.07). Relative stock density of preferred-length fish (RSDP) was higher at sites with low stock-length CPUE (r = -0.8071, P = 0.0001) and growth was faster at sites with low stock-length CPUE (r = -0.6821, P = 0.0001). Stock-length CPUE was higher at sites that had fewer summer discharge events exceeding 10 times median flow during the period from January 1, 1990 thru September 30, 1998 (r = -0.753, P = 0.001 ). Fisheries Analysis and Simulation Tools (FAST) was used to model the effect of potential length regulations on the abundance of memorable-length fish in the upper and lower segment of the BSR. Models predicted that slow growth rates would limit the abundance of memorable-length fish in the lower segment of the BSR regardless of regulation, but in the upper segment of the BSR length regulations could be used to increase memorable-length fish abundance, especially if exploitation rates increase. Using these research findings, resource managers can address angler concerns over trophy catfish sustainability with population data and predictive models."],"dc:identifier":["https://openprairie.sdstate.edu/etd/501"],"dc:language":["en"],"dc:rights":["Copyright © 2001 Daniel J. Kirby. All rights reserved."],"dc:subject":["Natural Resources and Conservation"],"dc:title":["An Assessment of the Channel Catfish Population in the Big Sioux River, 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"}