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http://ideas.repec.org/c/boc/bocode/s360702.html

COLELMS calculates LMS values, smoothed LMS, and growth reference centiles based in smoothed LMS values. df value is set to when calculating smoothed LMS values. You are responsible for setting an appropriate df for your data. This is version 0.2 of the software. Sponsors: This resource is supported by Boston College. Keywords: Software, LMS, Calculation, Growth, Data, Stata, Module,

Proper citation: COLELMS: Stata module to calculate Coles LMS values for growth data (RRID:SCR_007244) Copy   


  • RRID:SCR_007365

http://ncmir.ucsd.edu/downloads/fido.shtm

An interactive, graphic, fiducial marking software for placing, editing and tracking fiducial marks on images in a tomography tilt series. You can also use this tool to view the tilt series as well as crop it.

Proper citation: XFido (RRID:SCR_007365) Copy   


http://jaxmice.jax.org/list/ra1642.html

Produce new neurological mouse models that could serve as experimental models for the exploration of basic neurobiological mechanisms and diseases. The impetus for the program resulted from the recognition that: * The value of genomic data would remain limited unless more information about the functionality of its individual components became available. * The task of linking genes to specific behavior would best be accomplished by employing a combination of different approaches. In an effort to complement already existing programs, the Neuroscience Mutagenesis Facility decided to use: a random, genome-wide approach to mutagenesis, i.e.N-ethyl-N-nitrosourea (ENU) as the mutagen; a three-generation back-cross breeding scheme to focus on the detection of recessive mutations; behavioral screens selective for the detection of phenotypes deemed useful for the program goals. The resulting mutant mouse lines have been available to the scientific community for the last five years and over 700 NMF mice have been sent to interested investigators for research; these mutant mouse lines will remain available as frozen embryos (which can be re-derived on request) and can be ordered through the JAX customer service at 1-800-422-6423 (or 207-288-5845). The results of the work of the Neuroscience Mutagenesis Facility and that of two other neurogenesis centers, i.e. The Neurogenomics Project at Northwestern University, and the Neuromutagenesis Project of the Tennessee Mouse Genome Consortium, can also be seen at Neuromice.org, a common web site of these three research centers; in addition, information about all mutants produced by these groups has been recorded in MGI.

Proper citation: JAX Neuroscience Mutagenesis Facility (RRID:SCR_007437) Copy   


http://www.nibib.nih.gov/Research/MultiScaleModeling/IMAG

The purpose of IMAG is to bring together program officers who have a shared interest in applying modeling and analysis methods to biomedical systems. The meetings are formatted to facilitate an open discussion of what is currently being supported, and for planning future directions in these areas. At each meeting, time is allotted to hear focused presentations from one or two participants to discuss issues relating to modeling and analysis across the government agencies. Discussions also occur online, and participants are informed of talks, conferences and other activities of interest to the group. The NIH BISTIC, (Biomedical Information Science and Technology Consortium), is very supportive of IMAG and serves as the larger body at NIH for disseminating IMAG activities. Associated agencies: NIH: Center for Scientific Review, National Cancer Institute, National Center for Research Resources, National Heart, Lung and Blood Institute, National Human Genome Research Institute, National Institute on Aging, National Institute of Allergy and Infectious Diseases, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institute of Biomedical Imaging and Bioengineering, National Institute of Child Health and Human Development, National Institute on Deafness and Other Communication Disorders, National Institute on Drug Abuse, National Institute of Environmental Health Sciences, National Institute of General Medical Sciences, National Institute of Mental Health, National Institute of Neurological Disorders and Stroke, National Library of Medicine NSF (National Science Foundation): Directorate for Biological Sciences, Directorate for Computer and Information Science and Engineering, Directorate for Engineering, Directorate for Mathematical and Physical Sciences NASA (National Aeronautics and Space Administration): Human Research Program DOE (Department of Energy), Office of Advanced Scientific Computing Research, Office of Biological and Environmental Research DOD (Department of Defense): Air Force Office of Scientific Research (AFOSR), Army, Defense Advanced Research Projects Agency, Office of Naval Research, Telemedicine and Advanced Technology Research Center, USDA (United States Department of Agriculture), USDVA (Unites States Department of Veteran Affairs) Soliciting programs: Predictive Multiscale Models of the Physiome in Health and Disease (MSM Physiome) Initiative; and Multi-Scale Modeling (MSM) InitiativeKey words: MRI, Imaging, human.

Proper citation: Interagency Modeling and Analysis Group (RRID:SCR_007432) Copy   


https://pharmacy.unc.edu/education/phd/

The PhD program in pharmaceutical sciences offers you the rigorous grounding in a broad range of disciplines that are critical to your success as a pharmaceutical scientist in academia and industry. We take an interdisciplinary approach to graduate research by combining the aspects of areas such as chemistry, biology, engineering, and economics that relate to pharmaceutical science. PhD students choose a concentration in one of the School's four academic divisions, each of which corresponds to a stage in the drug-development cycle.

Proper citation: University of North Carolina School of Pharmacy PhD Program (RRID:SCR_007435) Copy   


  • RRID:SCR_007429

http://ngs.ym.edu.tw/ym500/index.php

An Integrative small RNA Sequencing database for miRNA research and provides an integrative web interface for miRNA quantification, isomiR identification, arm switching discovery, and, most of all, novel miRNA predictions.

Proper citation: YM500 (RRID:SCR_007429) Copy   


https://www.mc.vanderbilt.edu/victr/dcc/projects/acc/index.php/Main_Page

A national consortium formed to develop, disseminate, and apply approaches to research that combine DNA biorepositories with electronic medical record (EMR) systems for large-scale, high-throughput genetic research. The consortium is composed of seven member sites exploring the ability and feasibility of using EMR systems to investigate gene-disease relationships. Themes of bioinformatics, genomic medicine, privacy and community engagement are of particular relevance to eMERGE. The consortium uses data from the EMR clinical systems that represent actual health care events and focuses on ethical issues such as privacy, confidentiality, and interactions with the broader community.

Proper citation: eMERGE Network: electronic Medical Records and Genomics (RRID:SCR_007428) Copy   


  • RRID:SCR_007427

    This resource has 1+ mentions.

http://www.aneurist.org/

Project focused on cerebral aneurysms and provides integrated decision support system to assess risk of aneurysm rupture in patients and to optimize their treatments. IT infrastructure has been developeded for management and processing of vast amount of heterogeneous data acquired during diagnosis.

Proper citation: aneurIST (RRID:SCR_007427) Copy   


  • RRID:SCR_007422

    This resource has 100+ mentions.

http://sbml.org

A computer-readable format for representing models of biochemical reaction networks in software. It''s applicable to models of metabolism, cell-signaling, and many others. This website is the portal for the global SBML development effort; you can find information about all aspects of SBML.

Proper citation: SBML (RRID:SCR_007422) Copy   


http://www.uni-regensburg.de/index.html.en

Public research university located in the medieval city of Regensburg, Bavaria, a city that is listed as a UNESCO World Heritage Site.

Proper citation: University of Regensburg; Bavaria; Germany (RRID:SCR_007423) Copy   


https://gpcrdb.org/

The GPCRDB is a molecular-class information system that collects, combines, validates and stores large amounts of heterogenous data on G protein-coupled receptors (GPCRs). :The GPCRDB contains data on sequences, ligand binding constants and mutations. In addition, t he system provides computationally derived data such as multiple sequence alignments, homology models, and a series of query and visualization tools. :The GPCRDB is designed to be a data storage medium, as well as a tool to aid biomedical scientists with answering questions by offering a single point of access to many types of data that are integrated and visualized in a user-friendly way. Although most parts of the GPCRDB are self-explanatory, if you have not used this resource before it is adviced that you to take a look at the usage page. Sponsors: This resource is supported by Organon and Unilever, and the NIH. Keywords: G protein, Coupled, receptor, Molecular, Heterogenous, Data, Sequence, Ligand, Mutation, Computational, Software, Alignment, Homology, Model, Visualization, Tool, Biomedical, Scientist, Integration,

Proper citation: G Protein-Coupled Receptor Data Base (RRID:SCR_007419) Copy   


http://pharmacy.uh.edu/fs/bsps/index.php

University of Houston College of Pharmacy Bachelor of Science in the Pharmaceutical Sciences (B.S.PS) is a four-year undergraduate degree program for students interested in pursuing health-related careers. The purpose of the B.S.PS program is to provide undergraduate students with educational experiences and training in the pharmaceutical and related health sciences. The pharmaceutical sciences include medicinal chemistry, pharmaceutics, pharmacology, toxicology, health administration and pharmacokinetics. This program will also prepare students for professional and advanced degrees in healthcare.

Proper citation: University of Houston College of Pharmacy (RRID:SCR_007459) Copy   


https://www.kent.edu/neuroscience

Neuroscience is dedicated to understanding how the brain and nervous system function in health, disease and repair. Neuroscience research at Kent State University is supported by over 50 faculty members from numerous departments and disciplines. Our researchers have a wide range of expertise including behavioral neuroscience, sensory neuroscience, developmental neuroscience and neurodegenerative diseases.

Proper citation: Kent State University Department of Neuroscience (RRID:SCR_007458) Copy   


http://neuroscience.jhu.edu/

The Neuroscience Training Program at The Johns Hopkins University School of Medicine addresses the broad areas encompassed by modern neuroscience. The purpose of the Program is to train doctoral students for independent research and teaching in neuroscience. It is the goal of the Program to ensure that candidates for the Ph.D. and M.D./Ph.D. degrees obtain a background covering molecular/cellular and systems/cognitive approaches to neuroscience, as well as receive training that brings them to the forefront of research in their particular area of interest. A series of core courses in neuroscience, along with advanced electives, seminar series, laboratory rotations and original independent dissertation research form the Neuroscience Graduate Training Program. The Neuroscience Training Program and the Neuroscience Department are among the oldest in the United States and date back to 1980. The faculty of the Neuroscience Training Program have trained about 250 Ph.D. and M.D./Ph.D. students and 500 postdoctoral fellows over the past ten years. All doctoral candidates receive full tuition remission and a stipend. Research within the department ranges from investigating the development of the nervous system, synaptic plasticity and the molecular and cellular mechanisms of learning and memory to the neural basis of higher brain function such as perception and decision-making. Our faculty are also at the forefront of research into the molecular mechanisms of neurological and psychiatric diseases, including Parkinson''s, Alzheimer''s'' disease, amyotrophic lateral sclerosis (ALS), schizophrenia, depression, drug addiction, mental retardation and autism.

Proper citation: Johns Hopkins University Neuroscience (RRID:SCR_007455) Copy   


http://healthsciences.howard.edu/education/colleges/medicine/departments/pharmacology/Overview

The Department of Pharmacology offers programs leading to the Master of Science and Doctor of Philosophy degrees. The primary objective of these programs is to prepare candidates for research and teaching careers. The first few semesters are devoted primarily to core course work designed to give the student a broad background in the fundamental theories and techniques of pharmacology.During this time, the student gains exposure to methods for the solution of research problems by working in the laboratories of various faculty members culminating in a selection of a thesis advisor. The department has spacious laboratories equipped with modern instruments that are used by both faculty and students in such research areas as biochemical, molecular, cardiovascular, autonomic, clinical, and neuropharmacology, drug metabolism, cancer research and toxicology.

Proper citation: Howard University Washington D.C Department of Pharmacology (RRID:SCR_007454) Copy   


http://ki.se/ki/jsp/polopoly.jsp?l=en&d=4329

Department of Clinical Neuroscience at Karolinska Institutet conducts research and teaching regarding the function of the brain - from a molecular level to the effect on society. This activity is closely integrated with medical clinics within Stockholm.

Proper citation: Karolinska Institute Department of Clinical Neuroscience (RRID:SCR_007456) Copy   


http://dms.dartmouth.edu/ncd/

The establishment of the Neuroscience Center at Dartmouth (NCD) in 2002 has produced a new and unique interdisciplinary group whose mission is to foster collaborative and interactive research and education in the neurosciences. Training opportunities in neuroscience include undergraduate minor/major in Neuroscience, graduate training toward a Ph.D., and postdoctoral training. The NCD draws from the strengths in three key areas: Clinical, Cognitive & Behavioral, and Molecular/Cellular/Systems Neuroscience. It is the vision of its researchers to produce and disseminate new knowledge, and in doing so train and educate the next generation of neuroscientists. Interactions among members of the neuroscience community are enhanced and foster a highly interactive atmosphere through the development of this integrated Center. By promoting multidisciplinary efforts in both basic and applied research, the Center''s scientists will contribute to human health and well being by increasing our understanding of the mechanisms underlying nervous system function, both in health and disease. This will lead to valuable discoveries that translate into novel pharmaceutical agents and therapeutic approaches for the treatment of a variety of central nervous system diseases and disorders. The research facilities are located in Hanover, NH, Lebanon, NH (Dartmouth-Hitchcock Medical Center) and the Veteran Affairs Medical Center in White River Junction, Vt. Research interests comprise a broad range of studies within the neurosciences and provide a wide range of research opportunities for students. In addition, the NCD augments the education of residents and fellow at the clinical level who have academic neuroscience interests.

Proper citation: Dartmouth Medical School Neuroscience (RRID:SCR_007449) Copy   


http://www.bio.brandeis.edu/neuro01/index.html

Students entering the Neuroscience Program at Brandeis have opportunities to work in a range of fields, from cognitive neuroscience to the structure and function of ion channels. Brandeis University is an exciting place for Neuroscience research and study because we have an outstanding and highly interactive research community. The Neuroscience laboratories are housed within the Volen Center and adjoining buildings, and this close proximity facilitates the high degree of collaboration and exchange for which Brandeis has become famous. There are today over 45 Neuroscience Program Ph.D. students, who often work side-by-side with Ph.D. students in the other Life Sciences graduate programs at Brandeis. The Brandeis Life Sciences offers a M.S. program and a Ph.D. program in Neuroscience. Postdoctoral Training in Neuroscience There are numerous opportunities for postdoctoral training at Brandeis University. Funding for postdocs is available under the auspices of a NINDS training grant, as well as funding from the research grants of individual faculty members.

Proper citation: Brandeis University Neuroscience Graduate Program (RRID:SCR_007444) Copy   


http://www.beckman.illinois.edu/index.aspx

The Beckman Institute for Advanced Science and Technology at the University of Illinois at Urbana-Champaign is an interdisciplinary research institute devoted to leading-edge research in the physical sciences, computation, engineering, biology, behavior, cognition, and neuroscience. It offers senior, graduate, postdoctoral, and Carle-Beckman fellowships. The Beckman Institute Postdoctoral Fellows program is intended for recent Ph.D.s or students in their final year of doctoral study with research interests relevant to the Beckman Institute. A competition is held yearly and four fellows are selected for terms of up to three years. The Beckman Graduate Fellows Program, offers University of Illinois graduate students at the M.A., M.S., or Ph.D. level the opportunity to pursue interdisciplinary research at the Institute. The Senior Fellows Program gives established faculty from other universities the opportunity to do short-term, onsite, interdisciplinary research with other Beckman Institute researchers. Participation in the Senior Fellows Program is by invitation from the Beckman Institute. Usually Senior Fellows have previous ties to Beckman researchers and stay for a period of three to six months. Beckman Institute research is focused around four research themes: Biological Intelligence, Human-Computer Intelligent Interaction, Integrative Imaging, and Molecular and Electronic Nanostructures More than 600 researchers from 40 University of Illinois departments as far-ranging as psychology, computer science, and biochemistry, comprising 13 Beckman Institute groups, work within and across these overlapping areas. The building is magnificent and offers more than 200 offices; specialized, state-of-the-art laboratories and other facilities; and meeting areas. The Arnold and Mabel Beckman Foundation provides ongoing financial assistance for various Institute and campus programs. Daily operating expenses of the Institute are funded by the state and its research programs are mainly supported by external funding from the federal government, corporations, and foundations.

Proper citation: University of Illinois at Urbana-Champaign; Beckman Institute for Advanced Science and Technology (RRID:SCR_007442) Copy   


http://www.pharmacy.umaryland.edu/graduate/psc/

The School of Pharmacys Department of Pharmaceutical Sciences has a rapidly expanding research program in the areas of cellular and molecular biology, chemistry, neuroscience and pharmacology, biopharmaceutics and drug delivery and clinical pharmaceutical sciences. Faculty and graduate students in the Department of Pharmaceutical Sciences are organized into Research Areas. The mission of the graduate program is to foster individual and collaborative research, faculty growth, and a graduate student education which provides a strong, broad background in the drug development process along with intensive expertise in a focal research area of the pharmaceutical sciences. The department also provides opportunities to conduct research in the area of Clinical Pharmaceutical Sciences. This is one of only 4 such programmatic themes of its kind in the U.S. This program is a collaborative effort between the departments of Pharmacy Practice and Science and Pharmaceutical Sciences in the School of Pharmacy. The clinical pharmaceutical research scientists trained by this program will be well-suited to meet the demand expressed by federal agencies (FDA, NIH), academia, and the pharmaceutical industry, with the potential to develop new therapeutic strategies to optimize patient care in Maryland, the U.S., and worldwide.

Proper citation: University of Maryland School of Pharmacy, Pharmaceutical Sciences Graduate Program (RRID:SCR_007513) Copy   



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