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resource research Media and Technology
This is the opening talk of the session titled "Technology and Cyberinfrastructure," delivered on day two of the Citizen Science Toolkit Conference at the Cornell Lab of Ornithology in Ithaca, New York on June 20-23, 2007. Steve Kelling, Director of Information Science at the Cornell Lab of Ornithology, discuss hows advances in technology impact citizen science projects. Kelling uses the eBird project as an exemplar developed within an enterprise application framework. Kelling discusses the need for collaborative project development and lessons learned.
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TEAM MEMBERS: Steve Kelling
resource project Public Programs
The Virginia Master Naturalist program is a corps of well-trained volunteers conducting natural resource education, citizen science, and stewardship projects in their communities for the Commonwealth of Virginia.
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TEAM MEMBERS: Michelle Prysby Virginia Department of Conservation and Recreation Virginia Department of Game and Inland Fisheries Virginia Department of Forestry Virginia Museum of Natural History
resource research Public Programs
This poster was presented at the April 2011 workshop, Engaging and Learning for Conservation. It describes the eBirding citizen science program, including its methods, findings and conclusions.
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TEAM MEMBERS: Andrea Wiggins
resource research Public Programs
This poster was presented at the April 2011 workshop, Engaging and Learning for Conservation. It describes the citizen science project and website, CitSci.org.
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TEAM MEMBERS: USGS National Institute of Invasive Species Science Natural Resource Ecology Laboratory Greg Newman
resource project Public Programs
The Invaders of Texas Program is an innovative campaign whereby volunteer "citizen scientists" are trained to detect the arrival and dispersal of invasive species in their own local areas. That information is delivered into a statewide mapping database and to those who can do something about it. The premise is simple. The more trained eyes watching for invasive species, the better our chances of lessening or avoiding damage to our native landscape.
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TEAM MEMBERS: Lady Bird Johnson Wildflower Center Texas Forest Service Texas Parks and Wildlife Department Travis Gallo
resource evaluation Media and Technology
The Monarch Butterfly Larval Monitoring project is a collaborative Citizen Science Project in which informal science education (ISE) institutions participate in research to measure the distribution and abundance of monarch butterfly larvae throughout the US, addressing the lack of knowledge about the breeding phase of the annual cycle. This project seeks to create links among ISE institutions (nature centers, museums, state and national parks, and environmental learning centers) from across the US, and also between these institutions and university scientists, citizens, and K-12 educators. The
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TEAM MEMBERS: Carol Freeman University of Minnesota
resource research Media and Technology
This white paper is the product of the CAISE Public Engagement with Science Inquiry Group. It describes how public engagement with science (PES) in the context of informal science education can provide opportunities for public awareness of and participation in science and technology. The term engagement is characterized by mutual learning by publics and scientists rather than a one-way transmission of knowledge from experts to publics.
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TEAM MEMBERS: Center for Advancement of Informal Science Education (CAISE) Ellen McCallie Larry Bell Tiffany Lohwater John H Falk Jane Lehr Bruce Lewenstein Cynthia Needham Ben Wiehe
resource research Media and Technology
This white paper is the product of the CAISE Public Participation in Scientific Research Inquiry Group. It describes how public participation in scientific research (PPSR) through informal science education can provide opportunities to increase public science literacy.
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TEAM MEMBERS: Center for Advancement of Informal Science Education (CAISE) Rick Bonney Heidi Ballard Rebecca Jordan Ellen McCallie Tina Phillips Jennifer Shirk Candie Wilderman
resource project Public Programs
University of Washington researchers and their collaborators are evaluating the impacts and effectiveness of a citizen science program called COASST (Coastal Observation and Seabird Survey Team) that engages 600 trained non-scientists in collecting data on beached birds found on more than 300 beaches from the north coast of California to Alaska. The goals of the COASST program are to expand coastal citizen involvement in scientifically meaningfully science and improve the use of citizen science as a tool for scientific inquiry and resource management. Project personnel are analyzing current COASST materials and activities to determine (1) the best uses of COASST bird data, (2) how to maximize engagement of coastal citizens in COASST\'s scientific activities, (3) how to increase COASST participant learning, skills development, awareness and action, and (4) how to scale up the project by developing additional materials and facilitating adoption of the COASST model by other organizations around the country. The analysis includes an evaluation study of the existing beached bird instructional module to identify successful components for future use and determine whether the balance between automation and individualization of components, such as the materials, website, and training, optimizes participant experience. The project team is also working with current participants, marine scientists, and marine natural resource managers via surveys, focus groups and design and testing groups, to determine what other types of data are important for citizen scientists to collect. The project's findings will help researchers understand how citizens, scientists, and resource managers can partner to engage the public in rigorous citizen science activities, create a flexible citizen science program that can be scaled-up demographically and geographically, and work with new and existing COASST participants, COASST data end-users, and potential COASST model adopters to meet new scientific, educational, and resource management needs.
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TEAM MEMBERS: Julia Parrish
resource project Public Programs
The University of Minnesota is partnering with several nature centers in the Midwest to transform citizen "technicians" into citizen "scientists." The Driven to Discover project will use existing citizen science programs with strong educational components to engage 12-14 year old youth and their adult mentors in authentic research. The goal of the project is to develop a training model for adults who work with youth in a variety of informal education settings to involve them in authentic scientific inquiry via citizen science rather than just data collection activities. In the proof-of-concept phase, teams consisting of 4-H youth, adult leaders, and several scientists are conducting participatory action research to understand what factors lead youth to full engagement in ecological research. In phase two, project personnel are training 4-H educators, naturalists, and teachers how to engage youth and their adult leaders in other 4-H programs and other informal education programs to conduct ecological research with scientists in advisory roles. Phase one involves approximately 10 adults and 70 youth, whereas phase two involves approximately 40 adults and 300 youth. A front-end study defined the project's target audiences and partners. Formative evaluation study will monitor interactions among members of the research teams and summative evaluation will measure impacts on participants' knowledge, skills development, attitudes, and behavior. Project deliverables include youth-generated ecological research findings, web-based program implementation materials, an annual conference, and a model for engaging youth groups in informal settings in authentic scientific inquiry. The model is expected to impact more than six million youth nationwide.
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TEAM MEMBERS: Karen Oberhauser Nathan Meyer Andrea Lorek Strauss Pamela Nippolt Katie Clark Robert Blair
resource project Public Programs
The Lost Ladybug Project (LLP) is a Cornell University citizen science project that connects science to education by using ladybugs to teach non-scientists concepts of biodiversity, invasive species, and conservation. The project has successfully engaged thousands of children (ages 5-11) in collecting field data on ladybugs and building a ladybug biology database that is useful to scientists. It has also reached 80,000 people over the Internet. The goal of the project is to promote lifelong appreciation of biodiversity and science, and provide scientists with data on the changing distribution and abundance of ladybug species across the country. The current project is broadening the Lost Ladybug Project's reach geographically, culturally, demographically, and contextually by creating new tools and materials for the website, and forging new connections with (1) youth groups, (2) science centers, community centers, botanical gardens, nature centers, and organic farms, (3) adults, (4) Native Americans, and (5) Spanish-speakers. The expanded project could potentially involve tens of thousands of new individuals in ladybug monitoring research. An evaluation study is measuring the impacts of the expansion on new participants' knowledge, skills, attitudes, interests, and behavior. The Lost Ladybug Project has been important in advancing scientific discovery and building scientific knowledge. Data collected by the project's volunteers have improved scientists' understanding of (1) ladybug species presence/absence, (2) shifts in ladybug species composition, (3) shifts in ladybug species ranges, and (4) change in ladybug body size and spot number. Evaluation data show that the project has a broad audience reach and is achieving its learning goals for adults and children. Broadening the project's reach will further increase the project's importance to ecology, conservation biology and biodiversity research, as well as education research.
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TEAM MEMBERS: John Losey Louis Hesler Kelley Tilmon Jessica Sickler Leslie Allee
resource project Media and Technology
The University of Pittsburgh's Center for Learning in Out-of-School Environments (UPCLOSE), the Carnegie Museum of Natural History, and the Robotics Institute at Carnegie Mellon University are building an open access cyberlearning infrastructure that employs super high-resolution gigapixel images as a tool to support public understanding, participation, and engagement with science. Networked, gigapixel image technology is an information and communication technology that creates zoomable images that viewers can explore, share, and discuss. The technology presents visual information of scientifically important content in such detail that it can be used to promote both scientific discovery and education. The purpose of the project is to make gigapixel technology accessible and usable for informal science educators and scientists by developing a robotic imaging device and online services for the creation, storage, and sharing of billion-pixel images of scientifically important content that can be analyzed visually. Project personnel are conducting design activities, user studies, and formative evaluation studies to support the development of a gigapan technology platform for demonstration and further prototyping. The project builds on and leverages existing technologies to provide informal science education organizations use of gigapixel technology for the purpose of facilitating three types of activities that promote participatory learning by the public--Public Understanding of Science activities; Public Participation in Scientific Research activities; and Public Engagement in Science activities. The long-terms goals of the work are to (1) create an accessible database of gigapixel images that informal science educators can use to facilitate public-scientist interactions and promote participatory science learning, (2) characterize and demonstrate the affordances of networked gigapixel technologies to support socially-mediated, science-focused cyberlearning experiences, (3) generate knowledge about how gigapixel technology can enable three types of learning interactions between scientists and the public around visual data, and (4) disseminate findings that describe the design, implementation, and evaluation of the gigapixel platform to support participatory science learning. The project\'s long-term strategic impacts include guiding the design of high-resolution images for promoting STEM learning in both informal and formal settings, developing an open educational resource and science communication platform, and informing informal science education professionals about the use and effectiveness of gigapixel images in promoting participatory science learning by the public.
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