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SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.
https://t1dexchange.org/pages/
Provides access to resources T1D researchers need to conduct clinical studies. Data sets from their clinic registry is openly available, as are new study results. They also offer use of T1D Discovery Tool, which allows users to search different fields from registry data, and T1D Exchange Biobank, which offers specimen types such as serum, plasma, white blood cells, DNA, and RNA.
Proper citation: T1D Exchange (RRID:SCR_014532) Copy
A multi-center and multi-disciplinary study designed to dramatically increase understanding of chronic traumatic encephalopathy (CTE) and other late effects of traumatic brain injury (TBI). Overlapping clinical features, postmortem pathologies and patterns of involvement exist in TBI, CTE, and Alzheimer''s disease pose challenges to accurate diagnosis. Premortem diagnosis of CTE is currently impossible. The neuropathological consequences of single mild or moderate-severe TBI and its relationship with CTE and known dementias are unclear. The proposed project will leverage extensive resources from an ongoing population-based prospective cohort study of brain aging (Adult Changes in Thought; ACT, n=2,305) which includes excellent medical, behavioral, and genetic characterization of a cohort (20% of whom have a history of mild-moderate TBI) in addition to state-of-the-art neuropathology workup upon death. Neuropathological study of TBI effects can begin immediately in the existing ACT autopsy sample (n=489, 20% with TBI exposure). Additional cohorts of TBI- exposed individuals will come from the Brain Injury Research Center at Mount Sinai (n=150 individuals with moderate-severe TBI), the University of Texas Southwestern (n=50 retired boxers with repetitive TBI exposure), and the National Football League (n=76 retired players with repetitive TBI exposure). All participants in the proposed study (ACT and other sites) will undergo uniform harmonized neurobehavioral assessment (chosen to maximize correspondence with existing large-scale TBI and dementia studies), MRI scan, and genomic analysis. Those individuals who expire during the course of the study will undergo ex-vivo neuroimaging and extensive neuropathological exam using state-of-the-art techniques (such as Histelide) designed to quantify tau and A�� in whole brain specimens. Only by examining postmortem pathology in a sample of individuals with varying levels of TBI exposure who are well characterized during life (as proposed herein) can postmortem pathology facilitate identification of in-vivo biomarkers that can act as diagnostic tools. This project represents the most systematic and scientifically rigorous effort to date to develop a more complete understanding of the long-term clinical and neuropathological sequelae of single and multiple TBI.
Proper citation: Neuropathology of CTE and Delayed Effects of TBI: Toward In-Vivo Diagnostics (RRID:SCR_012951) Copy
The American Neurological Association is a professional society of academic neurologists and neuroscientists devoted to advancing the goals of academic neurology; to training and educating neurologists and other physicians in the neurologic sciences; and to expanding both our understanding of diseases of the nervous system and our ability to treat them. Our Goals 1. To disseminate knowledge about the nervous system and its diseases by: Presenting new scientific basic and clinical information at an annual meeting Publishing a scientific journal Formulating and promoting high standards of neurologic practice 2. To promote research into the causes and treatment of diseases of the nervous system by: Attracting promising physicians into academic neurology and supporting their development Advocating financial support from government, industry and individuals for research on the nervous system and its disorders 3. To formulate and promote policies and actions which will support the goals of academic neurology by: Providing a unified voice for academic neurology Setting guidelines and assuring excellence in programs that train and educate physicians in neurology Raising the standard of neurologic training of all physicians A few highlights within the portal: Clinical Neuroscience Pathway Startling breakthroughs in molecular biology and basic neuroscience have defined the cause of many diseases of the nervous system and are transforming the practice of neurology, neurosurgery and psychiatry. Basic research is giving new information on how the brain works and how brain injury occurs-and how it can be prevented or improved. Recognizing the exciting opportunities now available to better understand nervous system function and to design new treatments for neurological diseases, we''ve developed an interdepartmental program: The Clinical Neuroscience Pathway to provide an enhanced exposure to the neurosciences while pursuing the Doctor of Medicine degree. Program goal: The Clinical Neuroscience Pathway provides medical students with an enriched experience in the neurosciences throughout their four years in medical school. This program will provide students interested in Neurology, Neurosurgery, Ophthalmology, Pathology, or Psychiatry with access to a number of stimulating clinical and research activities. In addition, students will have the opportunity to participate in activities specifically designed for medical students in the program. Pathway students will be eligible for special summer research and year-out opportunities for clinical and basic neuroscience study. John N. Whitaker Visiting Professorships About the Program The ANA offers up to five 5,000 awards annually to fund visits of several days duration by persons who will interact with medical students and by both formal and informal contacts, stimulate them to consider academic neurology careers. The ideal visitor will be a role model of an accomplished academician who is enthusiastic and will effectively illustrate the applications between basic science and clinical neurology. The ANAs Education Committee must approve the visitor. The inviting institution should have acceptance from the visitor prior to submitting the name. The ANA suggests that an honorarium in the amount of 2,000 be given to the visitor. Special consideration will be given to institutions with small departments, but this is not a requirement. The Whitaker Professorships are intended to honor the life and contributions of John N. Whitaker M.D. (1940 - 2001) whose life and career exemplified high achievement as a person, neurological physician, teacher, investigator, mentor and citizen.
Proper citation: American Neurological Association (RRID:SCR_012926) Copy
http://aidsinfo.nih.gov/DrugsNew/Default.aspx?MenuItem=Drugs
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on March 12,2025. The AIDSinfo Drug Database provides fact sheets on HIV/AIDS related drugs. The fact sheets describe the drug''s use, pharmacology, side effects, and other information. The database includes: -Approved and investigational HIV/AIDS related drugs -Three versions of each fact sheet: patient, health professional, and Spanish. AIDSinfo is a 100% federally funded U.S. Department of Health and Human Services (DHHS) project that offers the latest federally approved information on HIV/AIDS clinical research, treatment and prevention, and medical practice guidelines for people living with HIV/AIDS, their families and friends, health care providers, scientists, and researchers. Sponsors: -National Institutes of Health (NIH) Office of AIDS Research National Institute of Allergy and Infectious Diseases (NIAID) National Library of Medicine (NLM) -Health Resources and Services Administration (HRSA) -Centers for Disease Control and Prevention (CDC) -Centers for Medicare and Medicaid Services (CMS)
Proper citation: AIDSinfo Drug Database (RRID:SCR_012899) Copy
http://www.medschool.lsuhsc.edu/neurology/
The Department of Neurology at Louisiana State University Health Sciences Center in New Orleans provides state-of the-art clinical evaluation and care for patients with neurological diseases. Its educational and research programs share the common goals of enhancing the knowledge of neuroscience and improving the diagnosis and care of patients. One of their primary missions is to educate and train medical students, physicians and other health care providers. Their residency and fellowship programs provide physicians with comprehensive training and experience in general and subspecialty neurology. Furthermore, their research programs encompass diverse areas and expertise in neurology and neuroscience. And additionally, many of the department''s faculty have established collaborative multi-disciplinary research projects, especially with members of the LSU Neuroscience Center of Excellence. The Neurology Residency Program at LSU Health Sciences Center is fully accredited by the ACGME. The Department of Neurology is a component of the nationally respected LSU Health Sciences Center, which is the major medical training institution for the State of Louisiana. The LSU Health Sciences has many components, one of which is the Neuroscience Center of Excellence, a state of the art research center for the neurosciences. The LSU Health Sciences Center not only sponsors medical education, but also has a School of Nursing, Dentistry, Physical and Occupational Therapy. This allows for the flourishing of multidisciplinary research and innovative thinking. It accepts three residents per year; residents must complete one year of internal medicine prior to entering into our program. Additionally, LSUHSC Neurology has fellowship available in: - Child Neurology - Pain Management - Neurophysiology
Proper citation: Louisiana State University School of Medicine, Health Sciences Center: Department of Neurology (RRID:SCR_012934) Copy
A data warehouse that integrates information on patients from multiple sources and consists of patient information from all the visits to Cincinnati Children''''s between 2003 and 2007. This information includes demographics (age, gender, race), diagnoses (ICD-9), procedures, medications and lab results. They have included extracts from Epic, DocSite, and the new Cerner laboratory system and will eventually load public data sources, data from the different divisions or research cores (such as images or genetic data), as well as the research databases from individual groups or investigators. This information is aggregated, cleaned and de-identified. Once this process is complete, it is presented to the user, who will then be able to query the data. The warehouse is best suited for tasks like cohort identification, hypothesis generation and retrospective data analysis. Automated software tools will facilitate some of these functions, while others will require more of a manual process. The initial software tools will be focused around cohort identification. They have developed a set of web-based tools that allow the user to query the warehouse after logging in. The only people able to see your data are those to whom you grant authorization. If the information can be provided to the general research community, they will add it to the warehouse. If it cannot, they will mark it so that only you (or others in your group with proper approval) can access it.
Proper citation: i2b2 Research Data Warehouse (RRID:SCR_013276) Copy
http://www.siumed.edu/alz/index.html
Resource center that provides assistance for patients and families affected by Alzheimer's disease and related conditions. The Center provides patient care through the Memory and Aging Clinic as well as through research, education and service to the community. Additionally the Center provides training in dementia care, maintains centralized data collection, and sponsors programs of research that qualify for federal financial participation.
Proper citation: SIU Center for Alzheimer's Disease and Related Disorders (RRID:SCR_013199) Copy
Merge Healthcare Incorporated develops solutions that automate healthcare data and diagnostic workflow to enable a better electronic record of the patient experience, and to enhance product development for health IT, device and pharmaceutical companies. Merge products, ranging from standards-based development toolkits to sophisticated clinical applications, have been used by healthcare providers, vendors and researchers worldwide for over 20 years. Merge Healthcare utilizes decades of technology, expertise, intellectual property, innovative software development and expert services to build IT solutions for healthcare and biopharmaceutical customers worldwide. Merge Healthcares OEM applications and toolkits improve the process of transferring diagnostic data and images, and support integration of data from imaging procedures into broader health IT applications. These solutions provide an advanced start to software development, and are quietly inside many of today''s health IT systems. Merge Healthcares Medical Imaging Solutions bring mission-critical improvements for imaging workflow, from scheduling to billing through disaster recovery. Our Perioperative Solutions provide enhanced workflow for the entire surgery experience. Our customers, from the largest outpatient center chains to rural hospitals, have relied on Merge to bring them the solutions and services needed to run clinically and financially successful businesses. Merge Healthcares eClinical business unit, recently added through the acquisition of etrials Worldwide Inc., provides adaptive web-based tools that coordinate to transform data into intelligence and speed the path to an actionable study endpoint for clinical trials. Pharmaceutical, biotechnology, medical device and contract research organizations use integrated trial, site and patient solutions for real-time access to the high quality data they need to make informed decisions.
Proper citation: Merge Healthcare Incorporated (RRID:SCR_013521) Copy
Company provides laboratories worldwide with analytical instruments and supplies, clinical and diagnostic testing services, consumables, applications and expertise in life sciences and applied chemical markets.
Proper citation: Agilent Technologies (RRID:SCR_013575) Copy
A global health company contributing to the systemic improvement of health care delivery and the health of communities. We are transforming health care by eliminating error, variance and waste for health care providers and consumers around the world. Our solutions optimize processes for health care organizations ranging from single-doctor practices to entire countries, for the pharmaceutical and medical device industries, and for the field of health care as a whole. Our solutions are licensed by more than 9,000 facilities worldwide. We invite you to join us in our quest to make health care become all it should be. Since our company began, we have been committed to transformational change in the vital task of keeping people well. Now more than ever, our focus is on developing the innovations that will help improve the entire health care system. Ultimately, as our CEO Neal Patterson has said, health care is personal. Because in the end, nothing matters more than our health and our families. We''re changing the way people: * Use and share information ** We empower providers to base decisions on best clinical evidence. ** We coordinate care across traditionally fragmented health care systems. ** We provide clinical organizations with the reliability, flexibility and continuous innovation available through cloud-based intelligence. ** We provide contextually relevant information to the right people at the right time. * Pay for health and care ** We believe IT investment must be matched with innovative payment models that are much easier to navigate. ** We are replacing the current, claims-based system with streamlined electronic payments. ** We develop ways to reward people and their providers for proactively achieving positive health goals. * Think about health ** We empower people to actively engage in their health by providing them with a standards-based, lifetime Personal Health Record. ** We are replacing the reactive sick care model with a proactive, personalized plan for health.
Proper citation: Cerner Millenium (RRID:SCR_013581) Copy
http://www.dbmi.pitt.edu/nlpfront
THIS RESOURCE IS NO LONGER IN SERVICE, documented on July 17, 2013. Repository of de-identified clinical reports available for NLP researchers has been designed. Work with the AMIA NLP working group in designing annotation schemas and obtaining annotations, design a repository for shareable annotations, help design and execute a shared task in IE from clinical reports. The University of Pittsburgh NLP Repository contains clinical reports that are available to the community for NLP research purposes and comprises: # Report Repository - one month of de-identified clinical reports from multiple hospitals and # Annotation Repository - annotations performed on reports from the Report Repository. Anyone performing annotations on reports from the NLP Repository is required to deposit their annotations. The Repository contains reports of the following types generated from multiple hospitals during a single month: * History and Physicals * Progress Notes * Consultation Reports * Radiology Reports * Surgical Pathology Reports * Emergency Department Reports * Discharge Summaries * Operative Reports * Cardiology Reports
Proper citation: Open Clinical Report Repository (RRID:SCR_013585) Copy
http://cordis.europa.eu/project/rcn/98370_en.html
The Colon Therapy Research (COLTHERES) consortium brings together clinical centers and translational researchers funded in the European Union to define and perform biomarker driven clinical trials to improve cancer therapy outcomes. This 4-year consortium will use comprehensively molecularly-annotated colon cancers as a "test-bed" to define specific biomarkers of response or resistance to signaling pathway agents.
Proper citation: Colon Therapy Research Consortium (COLTHERES) (RRID:SCR_013690) Copy
Data sharing repository of clinical trials, associated mechanistic studies, and other basic and applied immunology research programs. Platform to store, analyze, and exchange datasets for immune mediated diseases. Data supplied by NIAID/DAIT funded investigators and genomic, proteomic, and other data relevant to research of these programs extracted from public databases. Provides data analysis tools and immunology focused ontology to advance research in basic and clinical immunology.
Proper citation: The Immunology Database and Analysis Portal (ImmPort) (RRID:SCR_012804) Copy
http://code.google.com/p/neuropsychological-testing-ontology/
An ontology that represents neuropsychological assessments such as the Folstein Mini-Mental State Examination (MMSE), the Trail-Making Test, the Hopkins Verbal Learning Test, and the Wechsler Memory Scale. NPT is designed to allow for the integration of results from a variety of neuropsychological tests that assay similar measures of cognitive functioning and provides a set of classes for the annotation of neuropsychological testing data. Neuropsychological testing is an important component in developing the clinical pictures used in the diagnosis of patients with a range of neurological diseases such as Alzheimer''s disease, multiple sclerosis, and following stroke or traumatic brain injury. An initial goal of the NPT project is to test hypotheses about the diagnosis of Alzheimer''s disease based on the results of neuropsychological assessments. NPT is being built in accordance with the OBO Foundry principles. It is as an extension of the Ontology for Biomedical Investigations (OBI), which utilizes both the Information Artifact Ontology (IAO) and the Basic Formal Ontology (BFO). NPT is a corollary project of the Neurological Disease Ontology (ND) and is being developed in collaboration with the developers of the Mental Functioning Ontology (MF).
Proper citation: Neuropsychological testing ontology (RRID:SCR_010283) Copy
Software tool as multi platform medical image processing and visualization software. Functionalities include 2D/3D/4D image visualization, image registration, diffusion MR processing and tractography, filtering.
Proper citation: medInria (RRID:SCR_001462) Copy
https://repository.niddk.nih.gov/network/110
Network that brings together clinical centers with expertise in caring for patients with chronic hepatitis B virus (HBV) infection to conduct research in order to better understand the physiological effects of the disease and develop effective treatment strategies with the currently available therapies. The web site is designed to inform the public of the research activities conducted by the Hepatitis B Research Network. It is also a portal to support communications for their researchers and participants in their studies. The Hepatitis B Research Network is currently seeking patients for a multi-center prospective study of the natural history of chronic hepatitis B. Within the next few months treatment trials for various patients with chronic hepatitis B will also begin enrolling patients. Details of the entry criteria for these studies can be obtained from the clinical centers outlined on the website's map.
Proper citation: Hepatitis B Research Network (RRID:SCR_001531) Copy
http://www.neuroanatomy.wisc.edu/
Training materials including Web edition modules of the neuroanatomy coursebooks used by first-year medical students at the University of Wisconsin Medical School (UWMS), videos, and images. Topics include spinal cord, brain stem, Cerebellum, Thalamus, Cranial Nerves and National Board Review practice questions.
Proper citation: UW-Madison Neuroscience Resources (RRID:SCR_001649) Copy
http://bioinformatics.aecom.yu.edu/index.htm
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on January 6, 2023. Primary informatics resource for joint research efforts of the Albert Einstein College of Medicine and Montefiore Medical Center to facilitate the study and understanding of biological processes, clinical disorders, pathologic abnormalities, and the relationships among them, using a wide variety of informatics techniques, applications, and user training. Their services include: * Collaboration on research design to enable effective data management throughout all phases of a project * Provision of management capability for large volumes of data generated by microarrays and related technologies * Provision and supports a software toolchest for data capture, retrieval, and analysis * Design and implementation of custom interfaces to incorporate existing or separately designed databases into the central data management architecture * Support for data management for the Biorepository, to enhance specimen storage, identification, and linkage with clinical data * Ensuring conformity of data elements and structures to national standards via participation in standards organizations, facilitating intramural and extramural collaboration * Providing individualized support to end-users with bioinformatics training needs * Serving as a bioinformatics liaison to other research institutes and organizations * Providing data management support for clinical research * Providing a common, secure repository for clinical, experimental, and biosample storage data
Proper citation: Einstein-Montefiore ICTR Research Informatics Core (RRID:SCR_003451) Copy
http://psychiatry.ucsd.edu/index.html
The Department of Psychiatry at the University of California, San Diego is one of the most innovative and productive academic departments of psychiatry in the country. The guiding principle in this development has been that the educational and research programs of a psychiatry department must be at the cutting edge and encompass and integrate the most current innovations in the field with those approaches from the past which have proven to be valid and effective. The department has a strong commitment to the dynamic understanding of an individual's current social context and feelings, and past behaviors and experiences. We believe we have created one of the best available integrations of the biopsychosocial approaches to understanding normal and abnormal human behavior. By design, a rich diversity of scientific and clinical strategies are represented within the department, but the core organizing ethic of our educational and training programs is a profound commitment to our patients well being. It is the department's conviction that clinical psychiatry can only be learned in the context of meaningful interaction and contact with patients. The Residency Training Program is developmental in nature, appropriately challenging the residents at each level as they move from intensively supervised beginners to autonomous, confident, skilled clinicians and colleagues at graduation. The training occurs within the department's ambiance of collegiality, enthusiasm, openness of communication, intellectual and scientific rigor, and spirit of inquiry, which characterize our highly productive and energetic faculty. The UCSD faculty represent a virtual who's who of world-class basic and clinical scientists and clinicians, all of whom are available and participate in our residents training and experiences. The tradition at UCSD, both on the general campus and within the School of Medicine, is that of academic excellence. The department shares in this tradition and expects it from its faculty, trainees, and students. The goal of the residency program is to develop highly competent psychiatric physicians and leaders who are comprehensively trained in the most up-to-date diagnostic and treatment techniques which have proven effective for the full spectrum of mental disorders.
Proper citation: University of California at San Diego Department of Psychiatry (RRID:SCR_001931) Copy
The Stanford University HIV Drug Resistance Database is a curated public database designed to represent, store, and analyze the different forms of data underlying HIVs drug resistance. HIVDB has three main types of content: (1) Database queries and references, (2) Interactive programs, and (3) Educational resources. Database queries are designed primarily for researchers studying HIV drug resistance. The interactive programs and educational resources are designed for both researchers and those wishing to learn more about HIV drug resistance. 1.DATABASE QUERY AND REFERENCE PAGES Genotype-Treatment Correlations This Genotype-Treatment section of the database links to 15 interactive query pages that explore the relationship between treatment with HIV-1 antiretroviral drugs (ARVs) and mutations in HIV reverse transcriptase (RT), protease, and integrase. There are five types of interactive query pages: Treatment Profiles (Protease and RT inhibitors) Mutation Profiles (Protease and RT mutations) Detailed Treatment Queries (Protease, RT, and integrase inhibitors) Detailed Mutation Queries (Protease, RT, and integrase mutations) Mutation Prevalence According to Subtype and Treatment Genotype-Phenotype Correlations The main page of the Genotype-Phenotype Correlations section links to four interactive query pages: three dynamically updated data summaries and one regularly updated downloadable dataset. Drug Resistance Positions Query for levels of resistance associated with known drug resistance mutations Detailed Phenotype Queries Queries for levels of resistance associated with individual mutations or mutation combinations at all positions of protease, RT, and integrase Patterns of Drug Resistance Mutations Downloadable Reference Dataset Genotype-Clinical Correlations This part of the database has two main sections: Clinical Trials Datasets Summaries of Clinical Studies References This part of the database has two main sections: one with summaries of the data from each of the references in HIVDB and one in which every primate immunodeficiency virus sequence in GenBank is annotated according to its presence or absence in HIVDB. Studies in HIVDB GenBank <=> HIVDB New Submissions Approximately every three months, the New Submissions section lists the studies that have been entered into HIVDB. The study title links to the introductory page of the study in the References section. Database Statistics (http://hivdb.stanford.edu/pages/HIVdbStatistics.html) 2. INTERACTIVE PROGRAMS HIVDB has seven main interactive programs. 1. HIVdb Program Mutation List Analysis Sequence Analysis HIVdb Output Sierra Web Service Release Notes Algorithm Specification Interface (ASI) 2. HIValg Program 3. HIVseq Program 4. Calibrated Population Resistance (CPR) tool 5. Mutation ARV Evidence Listing (MARVEL) 6. ART-AiDE 7. Rega HIV-1 Subtyping tool Three programs in the HIV Drug Resistance Database share a common code base: HIVseq, HIVdb, and HIValg. HIVseq accepts user-submitted protease, RT, and integrase sequences, compares them to the consensus subtype B reference sequence, and uses the differences as query parameters for interrogating the HIV Drug Resistance database (Shafer, D Jung, & B Betts, Nat Med 2000; Rhee SY et al. AIDS 2006). The query result provides users with the prevalence of protease, RT and integrase mutations according to subtype and PI, nucleoside RT inhibitor (NRTI), non-nucleoside RT inhibitor (NNRTI), and integrase inhibitor (INI) exposure. This allows users to detect unusual sequence results immediately so that the person doing the sequencing can check the primary sequence output while it is still on the desktop. In addition, unexpected associations between sequences or isolates can be discovered by immediately retrieving data on isolates sharing one or more mutations with the sequence. There are three ways in which the HIVdb program can be used: (i) entering a list of protease and RT mutations, (ii) entering a complete sequence containing protease, RT, and/or integrase, and (iii) using a Web Service. HIVdb is an expert system that accepts user-submitted HIV-1 pol sequences and returns inferred levels of resistance to 20 FDA-approved ARV drugs including 8 PIs, 7 NRTIs, 4 NNRTIs, and - with this update - one INI. In the HIVdb system, each HIV-1 drug resistance mutation is assigned a drug penalty score and a comment; the total score for a drug is derived by adding the scores of each mutation associated with resistance to that drug. Using the total drug score, the program reports one of the following levels of inferred drug resistance: susceptible, potential low-level resistance, low-level resistance, intermediate resistance, and high-level resistance. HIValg is designed for users interested in comparing the results of different algorithms or who are interested in comparing and evaluating existing and newly developed algorithms. The ability to develop new algorithms that can be run on the HIV Drug Resistance Database depends on the Algorithm Specific Interface (ASI) compiler (Shafer & Betts JCM 2003). Submission of Sequences and Mutations For each of the three programs, sequences can be entered using either the Sequence Analysis Form or the Mutation List form. 3. EDUCATIONAL RESOURCES HIVDB contains several regularly updated sections summarizing data linking RT, protease, and integrase mutations and antiretroviral drugs (ARVs). These sections include (i) tabular summaries of the major mutations associated with each ARV class, (ii) detailed summaries of the major, minor, and accessory mutations associated with each ARV, (iii) the comments used by the HIVdb program, (iv) the scores used by the HIVdb program, (v) clinical studies in which baseline drug resistance mutations have been correlated with the virological response (clinical outcome) to a specific ARV, (vi) mutations that can be used for drug resistance surveillance, and (vii) a two-page PDF handout. 1. Drug Resistance Summaries Tabular Drug Resistance Summaries by ARV Class Detailed Drug Resistance Summaries by ARV Drug Resistance Mutation Comments Used by the HIVdb Program Drug Resistance Mutation Scores Used by the HIVdb Program Genotype-Clinical Outcome Correlation Studies 2. Surveillance Drug-Resistance Mutation List Section 3. PDF Handout Grant Support 1. National Institute for Allergy and Infectious Diseases (NIAID, NIH): Online HIV Drug Resistance Database (PI: Robert W. Shafer, MD, 1R01AI68581-01A1), 04/01/06 - 3/31/11 2. National Institute for Allergy and Infectious Diseases (NIAID, NIH) supplement to the grant Identification of Multidrug-Resistant HIV-1 Isolates (PI: Robert W. Shafer, MD, AI46148-01): Supplement provided 1999-2005. 3. NIH/NIGMS Program Project on AIDS Structural Biology Program Project: Targeting Ensembles of Drug Resistant Protease Variants (PI: Celia Schiffer, PhD, University of Massachusetts): 2002-2007 4. University-wide AIDS Research Program (CR03-ST-524). Community collaborative award: Optimizing Clinical HIV Genotypic Resistance Interpretation: Principal Investigators: Robert W. Shafer, MD and W. Jeffrey Fessel MD (Kaiser Permanente Medical Care Program): 2004-2005 5. Stanford University Bio-X Interdisciplinary Initiative: HIV Gene Sequence Analysis for Drug Resistance Studies: A Pharmacogenetic Challenge Principal Investigators: Robert W. Shafer, MD and Daphne Koller, Ph.D. (Computer Science): 2000-2002
Proper citation: Stanford University HIV Drug Resistance Database (RRID:SCR_006631) Copy
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