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Capstone Projects

Lower St. Regis Lake Survey: A Comparative Study of Fish Population Structure and Function over Time

Thu, 12/13/2018 - 14:24
Abstract: Lake surveys are performed on bodies of water to provide a health analysis of fish populations over time. Lake surveys can be conducted in a variety of ways to attain specific data. Lower St. Regis Lake was surveyed to determine the fish community composition and to understand fish population traits. Using fyke nets placed at six predetermined locations for 24 hours, as well as fishing, we collected data for age, length (mm), weight (g), and parasites present. Data was analyzed in the lab using Excel to form graphs and tables to demonstrate our findings. Catch rates were lower compared to years before and comparing our data to New York State Department of Conservation data found that our length-at-age data was lower for the six-species sampled. Pumpkinseed and yellow perch were the only two species to have over twenty fish sampled. Decreased air temperatures brought in by a cold front during the week of our sampling may have been a reason for our lower number of fish caught. Mesh size is also a bias while using these nets as smaller fish can escape, and predatory fish can prey on smaller fish while in the net. Some species of fish such as black crappie may be more susceptible to capture due to its habit of associating with structure.
Access: Yes
Literary Rights: Off
Major: Biology, Environmental Sciences, Environmental Studies, Fisheries and Wildlife Science, Natural Resources Conservation and Management
Year: 2018
File Attachments: Capstone_Final.docx
Authors: Deacon Chapin, Jared Chlus, Louis Daversa, Jon Herrman, Robert Visicaro

Wetland X: Wetland Mitigation Plan Amendment

Mon, 12/03/2018 - 17:56
Abstract: Wetland X is a wetland that is located in Western New York and has been converted to agricultural land. The goal of this study was to create a restoration plan for Wetland X that meets Natural Resource Conservation Service (NRCS) standards. The study took place during June 2018 with the final plan being completed in August of 2018 and the data analysis report being completed in the fall of 2018. The focus of the study was on the woody vegetation of the site to document the species present and the density of vegetation on the site. Vegetation was sampled on four plots located at different areas of the site to provide the best representation of the sites overall conditions. The areas were sampled using zigzag transects and grid transect patterns; with one area being sampled using the zigzag pattern, two using the grid pattern and one using both transect methods as a comparison of the two methods. Sampling of the site found that an amendment was needed for Wetland X to ensure that the landowner remained in compliance with the Food Security Act Standards. The restoration plan focuses on planting and management techniques for the site that will allow proper growth of desired vegetation species and the eradication of the invasive species. The created restoration plan amendment has been implemented and will be completed by June of 2019 with five years of monitoring following completion.
Access: Yes
Literary Rights: Off
Major: Ecological Restoration
Year: 2018
File Attachments: Pratt_Capstone_2018.docx
Authors: Thomas Pratt

Paul Smith’s College Shoreline Restoration Conservation Plan

Fri, 12/14/2018 - 12:24
Abstract: A restoration plan was created for the Lower St Regis Lake shoreline of Paul Smith's College. To date, about 140 students have participated by way of studies and course work in surveys and assessments, which clearly indicate a much reduced level of biological diversity, ecosystem function, and human uses compared to other sites. The plan is designed based upon field assessments and with the intentions of using the shoreline as an on-site case study of experiential education – a tradition of at the core of Paul Smith’s College. The aim of the restoration plan is to increase biodiversity, ecosystem function, aesthetics, educational studies, and shoreline use.
Access: Yes
Literary Rights: Off
Major: Ecological Restoration
Year: 2018
Authors: Hunter Gaudette
, Joseph Hollner
, Jonathan Meadows
, Ryan Morr
, Sara Savoia, Cassandra Schrader

Monitoring the Zebra Mussel Invasion Front: Use of New Technology

Thu, 02/09/2012 - 15:39
Abstract: Zebra mussels are invasive mollusks that are affecting the well-being of the water bodies in the United States. This study uses environmental DNA (eDNA) is a sensitive early detection system that may be useful in monitoring their spread. The purpose of this study is to determine the effectiveness of eDNA technology in identifying infested water bodies, to determine if zebra mussel DNA is in the Adirondack water bodies not known to be infested, if the water chemistry of these water bodies is favorable for zebra mussel establishment, and if the eDNA technology is transferable to an institution like Paul Smith’s College. Eighteen lakes, all in New York State were sampled, fifteen of which are located in the Adirondack Park. DNA was extracted from water and plankton samples and species specific primers were used for PCR amplification to determine if zebra mussel DNA was present. Of seven samples taken from sites known to be infested, five of these tested positive for zebra mussel eDNA. Four lakes not known to be infested within the Park also tested positive for zebra mussel eDNA. Based on zebra mussel risk parameters (water chemistry) applied to 1,469 Adirondack water bodies, less than 3% are at risk of zebra mussel establishment. However it is possible that established populations could occur at microsites that may have locally high levels of calcium and higher pH.
Access: No
Literary Rights: Off
Major: Biology, Environmental Sciences, Environmental Studies, Fisheries and Wildlife Science, Forestry, Natural Resources Management and Policy
Year: 2011
File Attachments: The Author has selected not to publish this complete work.
Authors: Alexandria Bevilacqua, John Bishop, Charles Cain, Tyler Clark, Seth Crevison, Robert Culyer, Ryan Deibler, Brian DeMeo, Jonathan Eckert, Kirsten Goranowski, Joelle Guisti, Alan Jancef, Korinna Marino, Michelle Melagrano, KaitlynNedo, Joseph Nelson, Aaron Palmieri, Cole Reagan, John Scahill, JohnathanStrassheim, Scott Travis, Sarah Van Nostrand and Sarah Vella