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http://physio-neuro.med.nyu.edu/
In affiliation with NYU Langone Health’s Neuroscience Institute, the Department of Neuroscience and Physiology is home to an interdisciplinary team of scientists working to enhance our knowledge of fundamental and emerging principles of neuroscience. By bringing together investigators from basic research, translational, and clinical laboratories, we facilitate partnerships that lead to innovative research projects.
Proper citation: New York University School of Medicine Department of Neuroscience and Physiology (RRID:SCR_007465) Copy
The Department of Medicinal Chemistry and Molecular Pharmacology is one of the three departments comprising the School of Pharmacy and Pharmaceutical Sciences. There are currently over 80 graduate students enrolled in the Department, the vast majority of whom are engaged in studies leading to the Ph.D. degree. The presence of approximately 30 postdoctoral associates and other research staff professionals further enriches the intellectual atmosphere. Graduate students in the Department have the opportunity to interact with researchers in a wide variety of fields, including many who are associated with other departments at Purdue. Various research groups actively collaborate with groups from departments such as biochemistry, biological sciences, chemical engineering, chemistry, foods and nutrition, horticulture, and physics. In addition, approximately half of our faculty belong to the Purdue Cancer Center, the Neuroscience Program, the Graduate Program in Virology and/or the Purdue University Biochemistry and Molecular Biology Program (BMB), leading to extensive, formalized interactions campus-wide. Graduate students attend research seminars across campus, -affording the opportunity to observe firsthand many of the world's foremost researchers.
Proper citation: Purdue University School of Pharmacy and Pharmaceutical Sciences Department of Medicinal Chemistry and Molecular Pharmacology (RRID:SCR_007468) Copy
Research in the Department of Cell Biology and Neuroscience uses multidisciplinary approaches to understanding basic cellular processes in various tissues, including the nervous system, as well as more integrative levels of analysis, including behavior. Areas of research represented in the department include biophysical properties of excitable membranes, DNA repair, transcriptional regulation, mechanisms of toxicity, insect development, membrane transport, mechanisms of mitotic chromosome transmission, telomere maintenance, synaptic structure and function, changes in nervous system with experience, interactions of nervous and endocrine systems, reproductive biology and fertilization, chemokine function in wound healing and tumor development, glia-neuron signaling, & brainstem and spinal cord control of locomotion.
Proper citation: University of California, Riverside, Department of Cell Biology and Neuroscience (RRID:SCR_007500) Copy
http://academicdepartments.musc.edu/pharmacology/index.html
There are tremendous opportunities for students and postdoctoral fellows interested in joining our department. Faculty members in our Department have new or renovated laboratory facilities, with access to core facilities that can serve as functional drivers for trainee research projects. The Department has major foci in redox and cell signaling (facilitated by an NIGMS funded COBRE grant; see the link to the COBRE program within the department website), proteomics and mass spectrometry (with an MUSC supported core facility) and mass spectrometry based imaging. Moreover, MUSC has committed to supporting a drug discovery program, which provides opportunities for early stage discovery and development of new drug entities. Present faculty research interests encompass new drug discovery/development, cancer therapeutics, cell signaling and stress responses, redox pathways, G protein signaling in aging and neurological disorders, kinase signaling, epigenetics and cancer, ALS and associated neurological pathologies, proteomics and mass spectrometry based imaging.
Proper citation: Medical University of South Carolina Department of Cell and Molecular Pharmacology and Experimental Therapeutics (RRID:SCR_007463) Copy
http://purl.bioontology.org/ontology/CHD
An ontology that describes the Congenital Heart Defects data.
Proper citation: Congenital Heart Defects Ontology (RRID:SCR_007584) Copy
http://fmf.igh.cnrs.fr/ISSAID/infevers
Registry for Familial Mediterranean Fever (FMF) and hereditary inflammatory disorders mutations. As of 2014, it includes twenty genes including: MEFV, MVK, TNFRSF1A, NLRP3, NOD2, PSTPIP1, LPIN2 and NLRP7, and contains over 1338 sequence variants. Confidential data, simple and complex alleles are accepted. For each gene, a menu offers: 1) a tabular list of the variants that can be sorted by several parameters; 2) a gene graph providing a schematic representation of the variants along the gene; 3) statistical analysis of the data according to the phenotype, alteration type, and location of the mutation in the gene; 4) the cDNA and gDNA sequences of each gene, showing the nucleotide changes along the sequence, with a color-based code highlighting the gene domains, the first ATG, and the termination codon; and 5) a download menu making all tables and figures available for the users, which, except for the gene graphs, are all automatically generated and updated upon submission of the variants. The entire database was curated to comply with the HUGO Gene Nomenclature Committee (HGNC) and HGVS nomenclature guidelines, and wherever necessary, an informative note was provided.
Proper citation: INFEVERS (RRID:SCR_007738) Copy
http://human.brain-map.org/static/brainexplorer
Multi modal atlas of human brain that integrates anatomic and genomic information, coupled with suite of visualization and mining tools to create open public resource for brain researchers and other scientists. Data include magnetic resonance imaging (MRI), diffusion tensor imaging (DTI), histology and gene expression data derived from both microarray and in situ hybridization (ISH) approaches. Brain Explorer 2 is desktop software application for viewing human brain anatomy and gene expression data in 3D.
Proper citation: Allen Human Brain Atlas (RRID:SCR_007416) Copy
http://www.pharmacy.utah.edu/pharmtox/
The Department of Pharmacology and Toxicology at the University of Utah is located in Salt Lake City at the foot of the beautiful Wasatch Range of the Rocky Mountains. Our Department focuses on research, graduate and professional training, and service. The faculty of this department place a high priority on the teaching and research training of graduate students for the Ph.D. degree. Our program features close working relationships between individual students and their faculty mentor, rich and diverse research opportunities, and individualized programs of study based on the needs of the students. Doctoral graduates of our program gain employment in research and teaching positions at colleges and universities, engage in research and development in the biotechnology and pharmaceutical industries, and have additional opportunities in research institutes, government agencies, environmental protection organizations, and many other arenas. Our Summer Undergraduate Research Fellowship (SURF) Program provides enriching research experiences for undergraduate students anticipating research careers in the biological sciences.
Proper citation: University of Utah Salt Lake City Utah. Pharmacology & Toxicology (RRID:SCR_007537) Copy
http://www.usahealthsystem.com/pharmacology
The Department of Pharmacology is a program that combines an interdisciplinary core curriculum, advanced coursework and original research, and is designed to give students a broad interdisciplinary base and flexibility. Research training is offered in each of six formal advanced programs organized around traditional disciplines basic to medicine: Biochemistry and Molecular Biology, Cell Biology and Neuroscience, Microbiology and Immunology, Molecular and Cellular Pharmacology, or Physiology, and in the interdisciplinary Cancer Biology Program. There are also a number of research focus areas shared among the graduate faculty in the College of Medicine.
Proper citation: University of South Alabama Department of Pharmacology (RRID:SCR_007532) Copy
https://www.southalabama.edu/bulletin/current/courses/cell-biology-and-neuroscience/index.html
Offers graduate program and training. Areas include mechanisms of DNA repair, oligodendrocyte development and maturation, functional neuroanatomy, neurophysiology, cellular responses to oxidative stress, kinesin motor proteins and motility, regulation of nuclear transcription, and hormonal regulation of fertility. Program emphasizes understanding of biological principles at the cellular level and training in the anatomical disciplines to ensure success during career development. To achieve these objectives the department participates extensively in the Interdisciplinary Graduate Curriculum which teaches fundamental biological principles during the first year. After the first year, students select a mentor and begin to focus on a significant research topic.
Proper citation: University of South Alabama Department of Cell Biology and Neuroscience (RRID:SCR_007531) Copy
http://www.neuroscience.arizona.edu/
The University of Arizona offers a Ph.D. through the Graduate Interdisciplinary Program in Neuroscience. The Program, administered by the Committee on Neuroscience, is designed to provide students with the knowledge and tools that they will need to embark on careers as educators and researchers in the field of neuroscience. Students participate in designing their own individually tailored programs that provide a thorough base of knowledge in the many facets of neuroscience as well as depth in chosen areas of specialization, and that enhance their abilities to think creatively and express themselves clearly. Because of the breadth of expertise represented by the faculty, students have access to educational and research training opportunities in areas ranging through molecular, cellular, systems, behavioral, cognitive, theoretical, and clinical neuroscience. The program currently enrolls 27 students.
Proper citation: UA Neuroscience GIDP (RRID:SCR_007494) Copy
The Department of Molecular, Cell & Developmental Biology (MCD), with 20 faculty members, focuses on fundamental problems in the molecular, cell and developmental biology of animals and plants. The scope of research conducted in this group spans the broad range of modern biological research; from classical and molecular genetics to biochemistry and molecular biology. Research laboratories in the MCD Biology Department use both simple model organisms and vertebrate systems to study important biological processes, ranging from the mechanism of protein synthesis to the development and function of the nervous system.
Proper citation: University of California Santa Cruz, Department of Molecular, Cell and Developmental Biology (RRID:SCR_007497) Copy
https://www.urmc.rochester.edu/neuroscience.aspx
Department that includes over 60 faculty members in ten different departments from both the School of Medicine and Dentistry and The College of Arts and Sciences. Several graduate and undergraduate degree programs exist on campus that are designed to meet the diverse needs and interests of students engaged in the study of the nervous system. The tight physical proximity of the medical and main campuses generates a highly collaborative and interactive Neuroscience community, and provides students with broad and flexible opportunities in their training.
Proper citation: University of Rochester Department of Neuroscience (RRID:SCR_007530) Copy
http://www.neurosci.tufts.edu/
The Graduate Program in Neuroscience at Tufts University School of Medicine is a member of the Sackler School Integrated Studies Program (ISP). The research programs of the 20 faculty members incorporate a broad range of approaches - from molecular to systems analysis - to understand the form and function of the nervous system, with a particular emphasis on the synapse. The graduate course of study, likewise, strongly emphasizes multidisciplinary training to prepare students for research careers in the complex field of neuroscience. Such training is additionally promoted through the technical expertise and research facilities offered by the Tufts Center for Neuroscience Research (CNR).It is based in newly renovated space in the Neuroscience Department, occupying three floors of the Tufts Medical School research complex in downtown Boston.
Proper citation: Tufts University Department of Neuroscience (RRID:SCR_007491) Copy
https://www.uab.edu/medicine/neurobiology/
The Department of Neurobiology offers students interested in the nervous system a program of study that leads to the Ph.D. in Neurobiology or a combined M.D./Ph.D. through The University of Alabama School of Medicine located at UAB. The graduate program has numerous faculty members with active research programs from a broad range of areas in contemporary neuroscience with a major focus on topics of biomedical importance. Molecular, cellular and biophysical approaches are emphasized to address fundamental problems of brain function, development and disease. All students take a series of graduate courses in biochemistry and molecular biology, cell biology, ion channel biophysics, synaptic function, developmental neurobiology and medical neurobiology. Evidence of the faculty's national and international impact in fundamental Neuroscience research includes: their substantial number of publications in high impact journals; appointments to editorial boards and editorships of leading neuroscience journals; appointments to NIH and NSF study sections and review boards; awards of over 28 million dollars in annual research grant funds; and numerous invitations to speak at national and international research symposia. Faculty members also have received numerous national and international awards recognizing excellence in research and training.
Proper citation: University of Alabama Neurobiology (RRID:SCR_007493) Copy
https://medicine.tulane.edu/departments/basic-sciences/pharmacology
Department to educate and train medical and graduate students in principles of pharmacology using modern techniques and to conduct state of art research in pharmacology related fields in order to expand frontiers of science and medicine.
Proper citation: Tulane University Medical Center Department of Pharmacology (RRID:SCR_007492) Copy
http://www.uri.edu/pharmacy/programs/graduate/index.shtml
The University of Rhode Island College of Pharmacy is a professional school, but it is also an integral part of University of Rhode Island. The College of Pharmacy fosters a learning-centered, research-oriented educational environment that encourages individuals to make positive life-long contributions to global health. We prepare professional degree students to provide compassionate pharmacist-delivered patient care, and inspire our students through innovative problem-based learning, rich experiential curricula and inter-professional collaboration. We foster a community of scholars who will further the body of knowledge in pharmaceutical, biomedical, and clinical sciences. We strive to improve quality of life: locally, nationally and globally.
Proper citation: University of Rhode Island College of Pharmacy Graduate Programs (RRID:SCR_007529) Copy
https://www.jefferson.edu/academics/colleges-schools-institutes/skmc/departments/neurology.html
The Department of Neurology at Jefferson Medical College has a long tradition of excellence in clinical training and care. They are committed to providing an active and exciting research program, exemplified by the Farber Institute for the Neurosciences, established in the spring of 2002. Consolidation of our academic and research base with the neurology ambulatory care facility at the new Jefferson Hospital for the Neurosciences underscores the continuing evolution of the Neurology department, and of its many functions, including, our fully approved residency program.
Proper citation: Thomas Jefferson University Neurology (RRID:SCR_007488) Copy
Department of Pharmacology, Physiology and Therapeutics at the University of North Dakota School of Medicine and Health Sciences is strongly committed to providing their students and the people of North Dakota excellent programs in education, research and service and they are dedicated to the development of leadership, innovation, and scholarly excellence. The translation of fundamental knowledge in the basic sciences to medically relevant problems is a major goal of the department and they are capable of providing the individualized attention and training necessary for the development of the medical scientist of the future.
Proper citation: University of North Dakota Department of Pharmacology Physiology and Therapeutics (RRID:SCR_007523) Copy
http://patricbrc.vbi.vt.edu/portal/portal/patric/IncumbentBRCs?page=eric
ERIC is a resource of annotated enterobacterial genomes. Information is available and accessed through a open web portal uniting biological data and analysis tools. ERIC contains information on Escherichia, Shigella, Salmonella, Yersinia, and other microorgansims. ERIC has recently been moved over to PATRIC: The PATRIC BRC is now responsible for all bacterial species in the NIAID Category A-C Priority Pathogen lists for biodefense research, and pathogens causing emerging/reemerging infectious diseases. For ERIC users, we understand that the resource was valuable to your work. As such, we will be doing our very best to create a useful PATRIC resource to continue supporting your work. We realize that the transition will cause disruptions. However, it is a priority for us to work with established BRC users and communities to identify and prioritize our transition efforts. We have concentrated on the transfer of genomic data for this initial release. We anticipate adding new data, tools, and website features over the next several months. We look forward to working with you during the next 5 years., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: ERIC (RRID:SCR_007644) Copy
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