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Development and Evaluation of Novel Capture Gears for Bigheaded Carps

Mass removal of Silver Carp Hypophthalmichthys molitrix and Bighead Carp Hypophthalmichthys nobilis, hereafter referred to as bigheaded carps, is a primary management action to contain the population growth and reduce upstream dispersal. The use of passive trap nets to harvest bigheaded carps may effectively supplement active capture techniques. The USGS is working with partner agencies to develop...
Development and Evaluation of Novel Capture Gears for Bigheaded Carps

Development and Evaluation of Novel Capture Gears for Bigheaded Carps

Mass removal of Silver Carp Hypophthalmichthys molitrix and Bighead Carp Hypophthalmichthys nobilis, hereafter referred to as bigheaded carps, is a primary management action to contain the population growth and reduce upstream dispersal. The use of passive trap nets to harvest bigheaded carps may effectively supplement active capture techniques. The USGS is working with partner agencies to develop...
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Chemical Attractant Investigations to Increase Aggregation and Harvest for the Control of Invasive Carp

Silver Carp Hypophthalmichthys molitrix and Bighead Carp Hypophthalmichthys nobilis, hereafter referred to as bigheaded carps, are rapidly expanding their range. Federal agencies and the Illinois Department of Natural Resources are focused on keeping invasive carps out of the Great Lakes. The development of an effective attractant may assist managers with capturing carps in low-density areas such...
Chemical Attractant Investigations to Increase Aggregation and Harvest for the Control of Invasive Carp

Chemical Attractant Investigations to Increase Aggregation and Harvest for the Control of Invasive Carp

Silver Carp Hypophthalmichthys molitrix and Bighead Carp Hypophthalmichthys nobilis, hereafter referred to as bigheaded carps, are rapidly expanding their range. Federal agencies and the Illinois Department of Natural Resources are focused on keeping invasive carps out of the Great Lakes. The development of an effective attractant may assist managers with capturing carps in low-density areas such...
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River-Corridor Habitat Dynamics

River-Corridor Habitat Dynamics research seeks to improve the scientific basis for ecological restoration of large rivers. Emphasis is placed on understanding how hydrologic and geomorphic characteristics combine to create dynamic habitats for native and exotic fauna and flora.
River-Corridor Habitat Dynamics

River-Corridor Habitat Dynamics

River-Corridor Habitat Dynamics research seeks to improve the scientific basis for ecological restoration of large rivers. Emphasis is placed on understanding how hydrologic and geomorphic characteristics combine to create dynamic habitats for native and exotic fauna and flora.
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Synthesis of Hydrologic and Geomorphic Drivers of Riverine Habitat Dynamics

Habitats of many rivers of the US are perceived to be degraded as a result of human-induced stresses. CERC scientist are focusing physical habitat as measured by depth, velocity, and substrate, in order to establish relevance of physical habitat to biota.
Synthesis of Hydrologic and Geomorphic Drivers of Riverine Habitat Dynamics

Synthesis of Hydrologic and Geomorphic Drivers of Riverine Habitat Dynamics

Habitats of many rivers of the US are perceived to be degraded as a result of human-induced stresses. CERC scientist are focusing physical habitat as measured by depth, velocity, and substrate, in order to establish relevance of physical habitat to biota.
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Geomorphic Trends and Dynamics, Missouri National Recreational River

The two mainstem Missouri River segments of the Missouri National Recreational River (MNRR) represent some of the least altered channel form and most complex physical habitat on the Missouri River. The 39-mile segment is located in an inter-reservoir reach between Fort Randall Dam and Lewis and Clark Lake and the 59-mile segment is located below Gavins Point Dam, the downstream-most water control...
Geomorphic Trends and Dynamics, Missouri National Recreational River

Geomorphic Trends and Dynamics, Missouri National Recreational River

The two mainstem Missouri River segments of the Missouri National Recreational River (MNRR) represent some of the least altered channel form and most complex physical habitat on the Missouri River. The 39-mile segment is located in an inter-reservoir reach between Fort Randall Dam and Lewis and Clark Lake and the 59-mile segment is located below Gavins Point Dam, the downstream-most water control...
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Comprehensive Sturgeon Research Project (CSRP)

The Comprehensive Sturgeon Research Project (CSRP) is a multidisciplinary project conducted in cooperation with the U.S. Army Corps of Engineers, Missouri River Recovery Program–Integrated Science Program. CERC scientists are working with river scientists and man­agers to develop methods, baseline information, and research approaches that are critical contributions to recovery success of the...
Comprehensive Sturgeon Research Project (CSRP)

Comprehensive Sturgeon Research Project (CSRP)

The Comprehensive Sturgeon Research Project (CSRP) is a multidisciplinary project conducted in cooperation with the U.S. Army Corps of Engineers, Missouri River Recovery Program–Integrated Science Program. CERC scientists are working with river scientists and man­agers to develop methods, baseline information, and research approaches that are critical contributions to recovery success of the...
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Validation of Zinc and Nickel Biotic Ligand Models Based on Toxicity Testing in Natural Waters with Ceriodaphina dubia

Most states use outdated hardness-based criteria to regulate metals in surface waters. The slow adoption of new criteria based on biotic ligand models (BLMs) reflects uncertainty about whether these models can reliably predict toxic effects of metals on aquatic biota across the wide range of water quality conditions affecting bioavailability.
Validation of Zinc and Nickel Biotic Ligand Models Based on Toxicity Testing in Natural Waters with Ceriodaphina dubia

Validation of Zinc and Nickel Biotic Ligand Models Based on Toxicity Testing in Natural Waters with Ceriodaphina dubia

Most states use outdated hardness-based criteria to regulate metals in surface waters. The slow adoption of new criteria based on biotic ligand models (BLMs) reflects uncertainty about whether these models can reliably predict toxic effects of metals on aquatic biota across the wide range of water quality conditions affecting bioavailability.
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An Evaluation the Chronic Toxicity of Metals in Water and Sediment to the Unionid Mussel, Fatmucket (Lampsilis siliquoidea), in Exposures Representing Conditions in the Tri-States Mining District

The Tri-State Mining District (TSMD) is a large (about 500 sq. mi.) historical lead and zinc mining area that includes portions of Kansas, Missouri and Oklahoma. The TSMD yielded about 460 million tons of ore between 1885 and 1970, resulting in contamination of surface water, groundwater, sediments, and soils in the Spring River and Neosho River basins by lead, zinc, and other heavy metals.
An Evaluation the Chronic Toxicity of Metals in Water and Sediment to the Unionid Mussel, Fatmucket (Lampsilis siliquoidea), in Exposures Representing Conditions in the Tri-States Mining District

An Evaluation the Chronic Toxicity of Metals in Water and Sediment to the Unionid Mussel, Fatmucket (Lampsilis siliquoidea), in Exposures Representing Conditions in the Tri-States Mining District

The Tri-State Mining District (TSMD) is a large (about 500 sq. mi.) historical lead and zinc mining area that includes portions of Kansas, Missouri and Oklahoma. The TSMD yielded about 460 million tons of ore between 1885 and 1970, resulting in contamination of surface water, groundwater, sediments, and soils in the Spring River and Neosho River basins by lead, zinc, and other heavy metals.
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An assessment of Deep Fork River Effluent Toxicity to the Unionid Mussel Fatmucket (Lampsilis siliquoidea)

Nearly 70% of the 300 mussel species in North America are endangered, threatened, of special concern, or extinct. Environmental contaminants have been identified as a contributing factor to the decline of mussel populations.
An assessment of Deep Fork River Effluent Toxicity to the Unionid Mussel Fatmucket (Lampsilis siliquoidea)

An assessment of Deep Fork River Effluent Toxicity to the Unionid Mussel Fatmucket (Lampsilis siliquoidea)

Nearly 70% of the 300 mussel species in North America are endangered, threatened, of special concern, or extinct. Environmental contaminants have been identified as a contributing factor to the decline of mussel populations.
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High Resolution Vegetation Mapping at Palmyra Atoll Using Unoccupied Aerial Systems (UAS)-Acquired Imagery

Lying 1000 miles south of Hawaii, Palmyra Atoll is a marine wilderness co-managed by the US Fish and Wildlife Service and The Nature Conservancy. Beach forests of Pisonia grandis and other vegetation communities provide habitat for thousands of nesting terns, boobies, and other birds. Introduced coconut ( Cocos nucifera) groves and use of Palmyra as a World War II airfield left a legacy of...
High Resolution Vegetation Mapping at Palmyra Atoll Using Unoccupied Aerial Systems (UAS)-Acquired Imagery

High Resolution Vegetation Mapping at Palmyra Atoll Using Unoccupied Aerial Systems (UAS)-Acquired Imagery

Lying 1000 miles south of Hawaii, Palmyra Atoll is a marine wilderness co-managed by the US Fish and Wildlife Service and The Nature Conservancy. Beach forests of Pisonia grandis and other vegetation communities provide habitat for thousands of nesting terns, boobies, and other birds. Introduced coconut ( Cocos nucifera) groves and use of Palmyra as a World War II airfield left a legacy of...
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UAS and Other Remote Sensing and Imagery Analysis For Disaster Response, Remediation, and Restoration and Monitoring Ecological Restoration

CERC scientists are utilizing remote sensing technologies to facilitate rapid collection of ephemeral field data following disasters, to assess injuries to natural resources and potential threats to human health, and to inform and monitor ecological restoration.
UAS and Other Remote Sensing and Imagery Analysis For Disaster Response, Remediation, and Restoration and Monitoring Ecological Restoration

UAS and Other Remote Sensing and Imagery Analysis For Disaster Response, Remediation, and Restoration and Monitoring Ecological Restoration

CERC scientists are utilizing remote sensing technologies to facilitate rapid collection of ephemeral field data following disasters, to assess injuries to natural resources and potential threats to human health, and to inform and monitor ecological restoration.
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Restoration Planning, Implementation, and Monitoring: Invasive Species Eradication and Control Program at the Little Saint Francis River Chat Pile

Among sites undergoing restoration activities as part of the Southeast Missouri Mining District (SEMO) Natural Resource Damage Assessment and Restoration settlement, the Little St. Francis River Chat Pile (LSFR) will be one the first in Madison County at which primary ecological restoration will be implemented. CERC scientists are collaborating with the US Fish and Wildlife Service and the...
Restoration Planning, Implementation, and Monitoring: Invasive Species Eradication and Control Program at the Little Saint Francis River Chat Pile

Restoration Planning, Implementation, and Monitoring: Invasive Species Eradication and Control Program at the Little Saint Francis River Chat Pile

Among sites undergoing restoration activities as part of the Southeast Missouri Mining District (SEMO) Natural Resource Damage Assessment and Restoration settlement, the Little St. Francis River Chat Pile (LSFR) will be one the first in Madison County at which primary ecological restoration will be implemented. CERC scientists are collaborating with the US Fish and Wildlife Service and the...
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