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resource project Professional Development, Conferences, and Networks
Phylogenetic groupings of organisms are the basis for predictive classifications and biological information systems. Organizing biological knowledge and their parallel hierarchies according to phylogenetic relationships has become increasingly important for many segments of science and society (i.e., genetic databases such as GenBank). Yet, our understanding of the tree of life is still very incomplete at all taxonomic levels because phylogenetic hypotheses are typically characterized by inadequate taxon samples, and the data themselves are often variable across the included taxa with respect to kind, quantity, and quality. In addition, methods of analysis vary in their appropriateness and applicability, thus making comparison of phylogenetic trees difficult. These impediments need to be addressed if we are to have a tree of life for the major groups of organisms within a reasonable time frame. Equally important will be to ensure that phylogenetic knowledge is accessible and useful to researchers, institutions, and the government agencies who need it. This proposal seeks to bring together approximately 25-30 leading systematic biologists and nonsystematists interested in phylogenetic research and informatics (phyloinformatics). The workshop will attempt to identify the research needed to assemble the tree of life and make that information available to the global user community within a reasonable time frame. The workshop will formulate recommendations designed to promote institutional changes within the systematic research community to accelerate phylogenetic understanding, identify research efforts that will result in large-scale increases in phylogenetically informative data and improve data analysis, and specify research, technological advances, and infrastructural needs to store, retrieve, and manipulate large amounts of phylogenetic information and make it widely available.
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TEAM MEMBERS: Joel Cracraft Michael Donoghue
resource project Public Programs
The National Center for Earth-surface Dynamics (NCED) is a Science and Technology Center focused on understanding the processes that shape the Earth's surface, and on communicating that understanding with a broad range of stakeholders. NCED's work will support a larger, community-based effort to develop a suite of quantitative models of the Earth's surface: a Community Sediment Model (CSM). Results of the NCED-CSM collaboration will be used for both short-term prediction of surface response to natural and anthropogenic change and long-term interpretation of how past conditions are recorded in landscapes and sedimentary strata. This will in turn help solve pressing societal problems such as estimation and mitigation of landscape-related risk; responsible management of landscape resources including forests, agricultural, and recreational areas; forecasting landscape response to possible climatic and other changes; and wise development of resources like groundwater and hydrocarbons that are hosted in buried sediments. NCED education and knowledge transfer programs include exhibits and educational programs at the Science Museum of Minnesota, internships and programs for students from tribal colleges and other underrepresented populations, and research opportunities for participants from outside core NCED institutions. The Earth's surface is the dynamic interface among the lithosphere, hydrosphere, biosphere, and atmosphere. It is intimately interwoven with the life that inhabits it. Surface processes span environments ranging from high mountains to the deep ocean and time scales from fractions of a second to millions of years. Because of this range in forms, processes, and scales, the study of surface dynamics has involved many disciplines and approaches. A major goal of NCED is to foster the development of a unified, quantitative science of Earth-surface dynamics that combines efforts in geomorphology, civil engineering, biology, sedimentary geology, oceanography, and geophysics. Our research program has four major themes: (1) landscape evolution, (2) basin evolution, (3) biological sediment dynamics, and (4) integration of morphodynamic processes across environments and scales. Each theme area provides opportunities for exchange of information and ideas with a wide range of stakeholders, including teachers and learners at all levels; researchers, managers, and policy makers in both the commercial and public sectors; and the general public.
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TEAM MEMBERS: Efi Foufoula-Georgiou Christopher Paola Gary Parker
resource project Media and Technology
WGBH is producing twelve quarterly television magazine-format programs devoted to the public understanding of current scientific research. The programs will consider the significant areas of on-going research, present the scientists who are conducting the research, portray research as an on-going endeavor and discuss the social impact and ethical implications of major areas of research. Each program will include segments such as the following: Research news update - (5 to 7 mins.) Feature stories about on-going research - 3 (8 to 12 min. each) In-studio discussions following many of the feature stories - ethical, policy and social implications Point/Counterpoint - 2 commentators presenting social, ethical, political and economic aspects of research "Then and Now" segments showing changing nature of scientific research In-studio demonstrations Interstitial moments -- Showcases of interesting and surprising aspects of research Close -- update stories from previous programs, read viewers' input or answer viewers' questions, preview upcoming story. In addition, WGBH will produce three one-hour "Year in Review" programs that report what major research has occurred over the past year and puts it in a context that will help viewers understand the role of current research in all aspects of life. Other major components of the project include on-going collaborations with other Public Understanding of Research Projects, an interactive web site, communication training for scientists to help them explain their work to the public, "Science Cafes" with on-going public programs about cutting-edge research in informal settings, a resource guide for teachers, "Leading Edge" articles in magazines targeted to teens, a "Leading Edge" science contest for students conducted through PBS stations and a station resource kit with information about how to establish local collaborations with researchers, science museums, schools and others.
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TEAM MEMBERS: Paula Apsell Barbara Flagg
resource project Public Programs
Oregon State University will expand its successful Master Science Educators program and create a national model for the delivery of natural science education to elementary and middle school youth. Master Science Educators are volunteers who undergo a rigorous 30-hour training and commit to 50 hours of service to a community site, such as a community center, housing project or school. Volunteers work in teams of two so that each site receives 100 hours of service devoted to the research and development of a natural science project. Volunteers and on-site and off-site scientists who act as virtual volunteers, guide youth ages K-8, in the design, development and evaluation of their project. Wildlife habitat projects provide a means for participants to learn inquiry and are tailored to address local science standards. A trainer's guide, a volunteer handbook, a guide for community sites and promotional and training videos will be produced, as well as a web-based science course. It is anticipated that 240 volunteers will be trained to work with over 12,000 youth during the course of the project. Dissemination will occur through the 4-H Extension service, impacting both urban and rural populations.
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TEAM MEMBERS: Maureen Hosty
resource project Professional Development, Conferences, and Networks
Working in collaboration with biomedical researchers from universities in the San Francisco area, across the nation, and abroad, the Exploratorium proposes to develop a high-quality microscopic imaging station for use by museum visitors, students, teachers and Internet visitors. This facility will utilize the highest quality optics and state-of-the-art microscopic techniques including biological staining and sophisticated digital recording. A variety of living specimens fundamental to basic biology, human development, the human genome and health-related research will be displayed. The station will be the lively center of the life sciences' area at the Exploratorium, providing educational content, dramatic imagery and regular demonstrations to reach an audience which ranges from the mildly curious to research scientists. In addition, the Exploratorium will be the first public institution, outside of a few research laboratories, to present live microscopic specimens via video and the Internet in real time. (To date, remote microscopes have generally presented inanimate objects or fixed tissue.) In order to increase student accessibility, subject matter for the imaging station will be integrated into the ongoing middle and high school teacher professional development at the museum. Teachers will be able to use the imaging station to conduct their own experiments, develop classroom explorations, take away images, access the website in their classrooms, or share materials with other teachers.
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TEAM MEMBERS: Charles Carlson
resource project Media and Technology
The long-term goal is to broaden our model program that currently targets African-American populations in the national capital area. The aim of the program is to: a) educate junior and senior high students and elementary school teachers directly; and b) provide opportunities for exploration of health-related sciences for the public at large (via an interactive website) so that topics in the biomedical sciences become "friendly and familiar" rather than the existing stereotype that science is erudite, obtuse, and incomprehensible. Specific objectives: (A) Design hands-on experiences in science laboratories and opportunities to interact with scientists in the setting of a sophisticated research institute; especially target under-represented minorities, students from inner city schools and other local schools where science opportunities may be limited. This will include junior and high school students, elementary school teachers, as well as interactions with Children's Museum and other similar organizations. (B) Set up interactive web-based informatics to include: i) a system where high school students could refine the question they are posing for science projects by discussing it with a professional scientist; ii) a general "ask-the-expert" site for science and health issues; iii) a reference site containing the detailed experimental protocols for student experiments; and iv) an interactive resource to aid teachers throughout the U.S. to establish contacts with scientists. The goal of this project is to extend the reach of current health science programs that are targeted to females, African-American junior and senior high school students, and elementary school teachers, located in the Washington, D.C., metropolitan area. The project includes laboratory apprenticeships, student mentoring, and an interactive website to help students and teachers establish contact with scientists nationwide.
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TEAM MEMBERS: Marti Jett Debra Yourick