Searching the RRID Resource Information Network

Our searching services are busy right now. Please try again later

  • Register
X
Forgot Password

If you have forgotten your password you can enter your email here and get a temporary password sent to your email.

X

Leaving Community

Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.

No
Yes

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.

Search

Type in a keyword to search

On page 28 showing 541 ~ 560 out of 598 results
Snippet view Table view Download 598 Result(s)
Click the to add this resource to a Collection

http://eagle-i.ea.vanderbilt.edu/i/00000139-c643-b905-b341-4bb480000000

An Core facility

Proper citation: Vanderbilt Clinical Trials Center (RRID:SCR_010171) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-c637-b593-b341-4bb480000000

The primary mission of the Clinical Trials Shared Resource (CTSR), as identified in the Cancer Center Support Grant (CCSG), is to assist Cancer Center investigators develop, activate and complete scientifically-meritorious clinical trials in an efficient, cost-effective and technically-sound manner.

Proper citation: Vanderbilt Clinical Trials Shared Resource (RRID:SCR_010172) Copy   


http://chgr.mc.vanderbilt.edu/page/computational-genomics-core

THIS RESOURCE IS NO LONGER IN SERVCE, documented January 25, 2019. Core provides software and hardware support for computing activities related to genetics and biology, as well as statistical analysis for human genetics data generated from both microsatellite markers and SNPs. Bioinformatics support, resources, and expertise are available in storing and managing demographic, clinical, genotypic, microarray, proteomic and biospecimen data.

Proper citation: Vanderbilt University Center for Human Genetics Research Computational Genomics Core (RRID:SCR_010173) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-b673-9ac0-b341-4bb480000000

Core facility that provides the following services: Biospecimen acquisition. The Cooperative Human Tissue Network- Western Division at Vanderbilt University Medical Center is one of six institutions throughout the country funded by the National Cancer Institutes to procure and distribute remnant human tissues to biomedical researchers throughout the United States and Canada. CHTN operates through a shared networking system which allows investigators greater access to available research specimens. CHTN offers a variety of preparation and preservation techniques to ensure investigators are receiving the quality specimens needed for research. Remnant tissues are obtained from surgical resections and autopsies and are procured to the specifications of the investigator.

Proper citation: Vanderbilt Cooperative Human Tissue Network (RRID:SCR_010174) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-c646-d984-b341-4bb480000000

BioVU is a research resource providing a View into biology at the level of DNA and other important macromolecules. BioVU has two major components. The first is a repository of DNA samples (extracted from discarded blood samples) that are coded solely by a Research Unique Identifier (RUI) derived from the Medical Record Number (MRN) using a one-way hash function. This is a computer algorithm that creates a transformation of each MRN such that the resulting RUI (which is in this instance is a 512 byte identifier) is unique, and has the property that it is not possible to infer or compute the MRN that generated it. As of early 2009, over 50,000 DNA samples were in the biobank, with new samples being added at the rate of approximately 700 per week.

Proper citation: Vanderbilt DNA Databank (RRID:SCR_010175) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-a249-859f-b4bd-8a1180000000

The Eicosanoid Core Laboratory facility employs mass spectrometry to quantify lipid oxidation products produced in a variety of vascular (and other) disorders including prostaglandins, leukotrienes, isoprostanes, and their urinary metabolites.

Proper citation: Vanderbilt Eicosanoid Core Laboratory (RRID:SCR_010177) Copy   


http://harvard.eagle-i.net/i/0000013e-5708-120e-7db7-114480000000

The Core''s capabilities include six Computer Numerical Control (CNC) milling centers (one of which is a five-axis micro-milling machine), two 3D printers, a waterjet cutter, a laser cutter, and a sinker Electrical Discharge Machining (EDM) tool. The Core has three full time machinists with experience in both industrial and academic machine shops, creating prototypes for varied applications. In addition to fabrication, these experts help researchers during the design phase, enabling development from a simple concept into real prototypes.

Proper citation: Wyss Institute Machine Shop / 3D Prototyping Core (RRID:SCR_010212) Copy   


http://harvard.eagle-i.net/i/00000137-b920-a047-d807-77a880000000

The Wyss Institute Materials Characterization Core is dedicated to promoting leading edge biologically inspired research by providing users with a wide range of state-of-the-art materials characterization equipment and analysis software. These tools help support the characterization of a material?s unique physical, chemical, and mechanical properties. The Materials Characterization Core team provides exceptional hands on training, method development, and technical expertise. We also proactively stride to introduce the latest innovations in materials characterization to the Wyss Institute community and our affiliated partners. Our current techniques include chromatography, mass spectrometry, UV-Vis spectroscopy, particle sizing, quartz crystal microbalance, electrochemical testing, rheology, and nanoindentation.

Proper citation: Wyss Institute Materials Characterization Core (RRID:SCR_010213) Copy   


http://xula.eagle-i.net/i/00000139-25f8-4557-8dd7-9ade80000000

Core facility that provides the following services: Drug Dosage Form Development. The center is focused on understanding and overcoming barriers to efficient oral, colonic, parenteral, pulmonary and vaginal delivery of drugs in the hopes of developing new treatments for chronic diseases such as cancer. Numerous new technologies are coming out of the Center as relationships have been formed with small, advanced technology businesses.

Proper citation: XULA Center for Nanomedicine and Drug Delivery (RRID:SCR_010215) Copy   


http://xula.eagle-i.net/i/00000134-fc0b-ad1d-77e4-a45080000000

Core facility that provides the following services: X-ray crystallography service. A Molecular Structure and Modeling Core laboratory has been established to provide technical services to support faculty researchers involved in cancer research and drug design at Xavier University. Drug design methods use molecular structure information and modeling methods to determine structure patterns among active and inactive compounds, identify and compare potential active sites, and screen databases to identify new leads. X-ray crystallography provides structure coordinates for druglike, organic compounds and small peptides. The goal of this core laboratory is to provide small molecule X-ray crystallographic services as well as to support ligand-based and structure-based drug design projects at any stage. The long term goal is to develop resources in order to enhance cancer related biomedical research capability at Xavier University. To achieve this goal, the Molecular Structure and Modeling Core Laboratory has set the following specific aims: 1. To provide salary support for a Core Scientist to provide molecular modeling services and training in support of Xavier faculty research projects 2. To establish new collaborations with faculty at other local and RCMI institutions who might benefit from molecular modeling services 3. To provide small molecule x-ray crystallography services 4. To provide support and maintenance costs for equipment in the MSM Core

Proper citation: XULA RCMI Molecular Structure and Modeling Core (RRID:SCR_010219) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-3637-992d-dacb-da6080000000

Core facility that provides the following services: Cytometric Bead Array, Meso Scale Discovery''s Multi-Array��, Cytometry protein measurements, Elispot Assays, Phenotypic analysis with flow cytometry, Multifunctional/Polychromatic flow cytometry (7-14 color), Cell proliferation assays, Tetramer/pentamer staininng, Influenza hemagglutination inhibition assay, Bordetella pertussis ELISA IgG / IgA, Commercial ELISA. The Immunology Core provides assistance to investigators with sample processing, storage, shipping, documentation, assay design, assay development and evaluation of immune responses. It is the goal of the core to monitor immune responses during clinical trials using the latest advances in technology and provide practical applications of this technology to evaluating immune responses. We continue to develop new immune monitoring technology with industry and academic collaborators. The Immunology Core has extensive experience in assay development and optimization, and will assist in the selection of appropriate assays and antigens during the protocol/developmental phase of a study or trial.

Proper citation: Vanderbilt Human Immunology Core Laboratory (RRID:SCR_010182) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-c63a-c759-b341-4bb480000000

The mission of the Innovative Translational Research Shared Resource (ITR) is to advance the translation of basic and clinical research into improved clinical therapies by facilitating clinical discoveries and managing laboratory and clinical data exchange between researchers. The ITR has partnered with the Personalized Cancer Medicine Initiative (PCMI) and the Vanderbilt-Ingram Cancer Center (VICC) to characterize the molecular changes present in tumors. With a focus in clinical sample preparation and tumor genetic analyses, the ITR uses the most advanced laboratory techniques to uncover the genetic uniqueness of each patient''s tumor for research. This knowledge will lead to improved clinical therapies and a more personalized cancer care that will save lives and improve patient outcomes. The ITR gives scientific and technical assistance to clinical and laboratory researchers interested in experimentation using human tumor tissues or cell lines. In addition to our expertise in genetic analyses, the ITR is also interested in partnering with clinical investigators to study clinical phenotypes in a research laboratory. These studies are tailored to the needs of the clinical investigator.

Proper citation: Vanderbilt Innovative Translational Research Shared Resource (RRID:SCR_010183) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000138-7bc7-c4a0-480b-864680000000

The Vanderbilt Institute of Nanoscale Science and Engineering (VINSE) is a University institute focused on new science and technology based on nanoscale materials. We carry out frontier science and technology by teaming locally and globally, and providing an environment where physicists, chemists, biologists, and all engineers may collaboratively solve forefront problems and create new scientific understanding.

Proper citation: Vanderbilt Institute of Nanoscale Science and Engineering (RRID:SCR_010187) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-b69c-150b-b341-4bb480000000

Mass spectrometry is used to analyze the complex array of lipids in cellular membranes in an effort to dissect precursor-product relationships in lipid signaling networks.

Proper citation: Vanderbilt Lipidomics Core Laboratory (RRID:SCR_010188) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-114b-ebaa-dacb-da6080000000

Core facility that provides the following services: Assay Design and Development, High Throughput Screening and automated data analysis. The biology and screening team is responsible for developing, adapting, and automating the HTS assay from the benchtop assay provided by the collaborator. We work closely with the providing researcher to insure that the assay is rapidly moved into high-throughput screening. Once the assay has been validated, the screening of the small molecule library begins. Generally, the screen is expanded to accommodate the full compound library; however, structure-specific searches can be made if the required reagents are limited or costly.

Proper citation: Vanderbilt High Throughput Screening Facility (RRID:SCR_010180) Copy   


http://utsa.eagle-i.net/i/00000135-5f47-d5a9-d7c8-cf3780000000

This laboratory houses an impressive collection of high-end microscopes including one of the most powerful transmission electron microscopes in the world. The microscope is kept in a specially designed space that inhibits intrusive vibrations. Its atomic resolution is propelling world-class research in nanotechnology, biology, chemistry, geology, engineering and medicine. The laboratory''s microscopes are accessible to trained collaborators from other institutions.

Proper citation: UTSA Kleberg Advanced Microscopy Laboratory (RRID:SCR_010146) Copy   


http://utsa.eagle-i.net/i/00000135-2f42-aa68-d7c8-cf3780000000

Core facility that provides the following services: Computational systems biology data analysis assistance, Biological computational software installation service. The objective of the Computational Systems Biology Core facility (CSBC) is to provide computational support for basic and translational health research at UTSA with the following specific aims: - Build the computational infrastructure to support modeling and simulation of biological systems - Live cell imaging - Protein Biomarker research

Proper citation: UTSA RCMI Computational Systems Biology Core (RRID:SCR_010148) Copy   


http://utsa.eagle-i.net/i/00000135-f9ee-8ac6-3c2e-1e5380000000

The mission of The Neurostatistics Core is to promote the use of the most effective and current biostatistical methods among Neuroscience faculty and students, and to make these methods more generally available. It is designed to overcome the communication gap between experimental neuroscientists and statisticians by integrating statistical experts, in the form of Applied Biostatistics PhD students, directly into the laboratories of SNRP Project Investigators.

Proper citation: UTSA SNRP Neurostatistics Core (RRID:SCR_010153) Copy   


  • RRID:SCR_010155

    This resource has 10+ mentions.

http://eagle-i.ea.vanderbilt.edu/i/0000013d-037f-b425-afc0-9aeb80000000

VANTAGE (Vanderbilt Technologies for Advanced Genomics) is a genomics core laboratory consolidation initiated by an $8.6 million ARRA funded NIH grant award to Vanderbilt University Medical Center, with an overall goal of creating a new collaborative shared resource that accelerates discovery in genome sciences and personalized medicine, providing state-of-the art research shared resource facilities and technology.

Proper citation: VANTAGE (RRID:SCR_010155) Copy   


http://eagle-i.ea.vanderbilt.edu/i/00000139-a235-587c-b4bd-8a1180000000

The Informatics Shared Resource catalyzes the research productivity of VICC investigators by providing a flexible physical and electronic infrastructure for acquiring, storing, communicating and analyzing data arising from wet bench, translational, and clinical cancer research as well as senior staff and faculty level assistance in the interpretation of research datasets using state-of-the-art analysis.

Proper citation: VICC Research Informatics (RRID:SCR_010156) Copy   



Can't find your Tool?

We recommend that you click next to the search bar to check some helpful tips on searches and refine your search firstly. Alternatively, please register your tool with the SciCrunch Registry by adding a little information to a web form, logging in will enable users to create a provisional RRID, but it not required to submit.

Can't find the RRID you're searching for? X
  1. RRID Portal Resources

    Welcome to the RRID Resources search. From here you can search through a compilation of resources used by RRID and see how data is organized within our community.

  2. Navigation

    You are currently on the Community Resources tab looking through categories and sources that RRID has compiled. You can navigate through those categories from here or change to a different tab to execute your search through. Each tab gives a different perspective on data.

  3. Logging in and Registering

    If you have an account on RRID then you can log in from here to get additional features in RRID such as Collections, Saved Searches, and managing Resources.

  4. Searching

    Here is the search term that is being executed, you can type in anything you want to search for. Some tips to help searching:

    1. Use quotes around phrases you want to match exactly
    2. You can manually AND and OR terms to change how we search between words
    3. You can add "-" to terms to make sure no results return with that term in them (ex. Cerebellum -CA1)
    4. You can add "+" to terms to require they be in the data
    5. Using autocomplete specifies which branch of our semantics you with to search and can help refine your search
  5. Save Your Search

    You can save any searches you perform for quick access to later from here.

  6. Query Expansion

    We recognized your search term and included synonyms and inferred terms along side your term to help get the data you are looking for.

  7. Collections

    If you are logged into RRID you can add data records to your collections to create custom spreadsheets across multiple sources of data.

  8. Sources

    Here are the sources that were queried against in your search that you can investigate further.

  9. Categories

    Here are the categories present within RRID that you can filter your data on

  10. Subcategories

    Here are the subcategories present within this category that you can filter your data on

  11. Further Questions

    If you have any further questions please check out our FAQs Page to ask questions and see our tutorials. Click this button to view this tutorial again.

X