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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.

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  • RRID:SCR_013642

    This resource has 50+ mentions.

https://www.stemcell.com/

An Antibody supplier

Proper citation: STEMCELL Technologies (RRID:SCR_013642) Copy   


  • RRID:SCR_013644

    This resource has 1+ mentions.

https://www.springbio.com/

An Antibody supplier

Proper citation: Spring Bioscience (RRID:SCR_013644) Copy   


http://stockcenter.vdrc.at/control/main

Biomaterial supply resource which collects, maintains, and distributes independent transgenic fly lines. Most of the 38,000 fly lines are RNAi lines, but VDRC also maintains a collection of enhancer-GAL4 driver lines. Nearly all lines are in duplicate. Users can search for the stocks or DNA constructs for the gene of interest by entering CG number, synonym, or Transformant ID.

Proper citation: Vienna Drosophila Resource Center (RRID:SCR_013805) Copy   


http://www.ventana.com/

An Antibody supplier

Proper citation: Ventana Medical Systems inc. (RRID:SCR_013652) Copy   


  • RRID:SCR_013651

    This resource has 10000+ mentions.

http://www.wako-chem.co.jp/english/

An Antibody supplier

Proper citation: Wako (RRID:SCR_013651) Copy   


  • RRID:SCR_013611

    This resource has 1+ mentions.

http://www.digitalimagesolutions.de

Stroketool-CT is a user friendly MS-Windows based software system for calculation and visualization of enhanced CT perfusion imaging data sets of the brain. It contains features such as quantitative perfusion using SVD algorithms; DICOM compatibility; rapid calculations of rCBF, MTT, rCBV, TTP,Tmax; and interactive and automatic AIF-detection.

Proper citation: Stroketool-CT (RRID:SCR_013611) Copy   


https://www.itntrialshare.org/

Immune tolerance data management and visualization portal for studies sponsored by Immune Tolerance Network (ITN) and collaborating investigators. Data from published studies are accessible to any user; data from current in-progress studies are accessible to study investigators and collaborators. Includes links to published Figures, tools for visualization and analysis of data, and ability to query study data by subject, group, or any other study parameter.

Proper citation: Immune Tolerance Network TrialShare (RRID:SCR_013699) Copy   


  • RRID:SCR_013613

    This resource has 10+ mentions.

https://symansis.com/

An Antibody supplier

Proper citation: Symansis (RRID:SCR_013613) Copy   


http://james.psych.umn.edu/iiV/welcome.html

:iiV is an interactive brain imaging data display tool written in Java. It displays 3-D data set as slices perpendicular to the 3 major axis. Individual slice voxels are mapped thru a linear scaling, threshold and color table to displayable pixel values. Any number of slices from any number of data files may be arranged, annotated, overlaid, cropped, zoomed and rotated. iiV maintains the original data internally for mouse selection and display of original voxel values. If input locations map to a real world valued coordinates that mapping may be applied to display selected voxel locations in real coordinates. Slices may also include tracking crosshairs and automatically update to display the same region of the brain as selected in another slice. iiV includes a fairly complete set of editing commands including selection, drag, group, delete, and undo/redo commands. It also includes a script language for saving and reloading of the interactive display and creating animated demos. iiV supports reading ANALYZE, ECAT, ECAT7, DICOM, GIF, JPEG, PPM, Stimulate SDT, and raw data formats and saving what is displayed as scripts, GIF and PPM files. :

Proper citation: iiV (internet image Viewer) (RRID:SCR_013615) Copy   


  • RRID:SCR_013617

http://neuroinformatics.mitre.org/projects.html

THIS RESOURCE IS NO LONGER IN SERVICE, documented on July 15, 2013. A Java-based tool for managing and sharing MRI/DTI datasets, and related subject and protocol metadata. Data entry, data access, general query, reporting, analysis, and administrative operations occur through browser-based forms. NeuroServ works with a webserver (Tomcat) and a backend database (e.g., Postgres); a schema and over 40 forms are provided in the distribution. Support for DTI includes entry of multi-orientation raw DWI files, semi-automated normalization to the B0 image and quality filtering. Planned extensions include full DTI processing through image production and data sharing using the SSC incremental visiblity model.

Proper citation: NeuroServ (RRID:SCR_013617) Copy   


http://www.bic.mni.mcgill.ca/software/mni_autoreg/

Web site last updated August 26, 1998 Automatic method for comparing different MRI datasets by visual inspection of equivalent anatomical planes. Implementation is based on multi-scale, three dimensional (3D) cross-correlation, to register a given volumetric data set to an average MRI brain (n > 300) aligned with the Talairach stereotaxic coordinate system. :

Proper citation: The MNI AutoReg Software Package (RRID:SCR_013621) Copy   


  • RRID:SCR_013620

    This resource has 1+ mentions.

http://icb.med.cornell.edu/crt/SigPath/DetailedInformation.xml

SigPath is a prototype of an information system for cell signaling pathways and networks. A primary emphasis of SigPath is that biochemical information can be stored both at the qualitative and quantitative levels. When information is stored quantitatively, SigPath can assist users in generating quantitative models that can be used to simulate how the concentrations of the molecules involved in a model change over time. For background, design goals, tutorials, and contact information, visit the SigPath Project Pages :Gs pathway, LSD_binds_serotonin 2AR, MAPK cascade, EGFR signaling and MAP kinase cascade, EGF receptors, mGluR activation :

Proper citation: Sigpath (RRID:SCR_013620) Copy   


  • RRID:SCR_013622

    This resource has 10+ mentions.

http://www.swant.com/

An Antibody supplier

Proper citation: Swant (RRID:SCR_013622) Copy   


http://hbatlas.org/pages/publications

A research paper with supplementary materials reporting the generation and analysis of exon-level transcriptome and associated genotyping data. The experiment represented both males and females of multiple ethnicities and examines gene regulation and expression in different areas of the brain. A data set on the human brain transcriptome as well as insights into the transcriptional foundations of human neurodevelopment is provided.

Proper citation: Spatio-temporal transcriptome of the human brain (RRID:SCR_013743) Copy   


http://biomaterials.syr.edu/

Welcome to the Syracuse Biomaterials Institute! We are a new, interdisciplinary institute focused on research in biomaterials, smart medical devices, and biological/tissue-engineered constructs. Biomaterials are natural and synthetic substances designed to treat, augment, or replace tissues and organs of the human body as treatments to disease or injury. An outgrowth of the long-standing Biomaterials Group in the Biomedical and Chemical Engineering Department, the Syracuse Biomaterials Institute (SBI) was launched in Fall, 2007, through strategic investments by Syracuse University, New York State Foundation for Science, Technology and Innovation (NYSTAR), and private donations. SBI is a cohesive collection of highly collaborative faculty spanning eight (8) academic units, including faculty from SUNY Upstate Medical University and SUNY College of Environmental Science and Forestry. Our researchers are engaged in a wide spectrum of problems, ranging from fundamental studies of the biochemical and physical processes controlling cell functions to the development of new technologies for biomedical applications. In addition to our collaborative research and teaching activities, we are excited to be designing our future SBI home, planned for Fall 2009, that will collocate our research groups and central laboratory facilities. :jobs board, postdoctoral training program, graduate training program, portal :

Proper citation: Syracuse Biomaterials Institute (RRID:SCR_013626) Copy   


http://www.i2b2.org

i2b2 (Informatics for Integrating Biology and the Bedside) is an NIH-funded National Center for Biomedical Computing based at Partners HealthCare System. The i2b2 Center is developing a scalable informatics framework that will enable clinical researchers to use existing clinical data for discovery research and, when combined with IRB-approved genomic data, facilitate the design of targeted therapies for individual patients with diseases having genetic origin. For some resources (e.g. software) the use of the resource requires accepting a specific (e.g. OpenSource) license.

Proper citation: Informatics for Integrating Biology and the Bedside (RRID:SCR_013629) Copy   


  • RRID:SCR_013592

    This resource has 10+ mentions.

http://www.abnova.com/

An Antibody supplier

Proper citation: Abnova Corporation (RRID:SCR_013592) Copy   


  • RRID:SCR_013992

    This resource has 10+ mentions.

http://www.statcrunch.com

A web application which allows users to collect data, perform complex analyses, and generate results. Users can upload data sets from their computer or from the internet for data analysis and graph creation which can be saved, printed, and downloaded. More than 15,000 statistical data sets are available.

Proper citation: StatCrunch (RRID:SCR_013992) Copy   


http://www.ks.uiuc.edu/

The Theoretical and Computational Biophysics Group (TCBG), an NIH Resource for Macromolecular Modeling and Bioinformatics, was founded by Professor Klaus Schulten in 1989 and is located at the Beckman Institute of the University of Illinois at Urbana-Champaign (UIUC). The group is led by Professor Klaus Schulten (Physics, Biophysics, Chemistry) with Professors Laxmikant Kale (Computer Science), Zaida Luthey-Schulten (Chemistry) and Alek Aksimentiev (Physics), and with the Resource''s assistant director Dr. Emad Tajkhorshid (Biophysics). Research and development activities of the TCBG center on the structure and function of supramolecular systems in the living cell, and on the development of new algorithms and efficient computing tools for structural biology. :The TCBG brings the most advanced molecular modeling, bioinformatics, and computational technologies to bear on questions of biomedical relevance. We extend, refine and deliver these technologies in response to experimental progress and emerging needs of the wide biomedical research community. We magnify the impact of our work through direct collaboration with experimental researchers, the distribution of cutting-edge and user-friendly software, and via extensive training, service, and dissemination efforts. :cell, algorithm, simulation software, membrane potential, genome, molecule, ion channel, chromatin, Image Processing software, data Data visualization software, simulation software; Membrane Biophysics, Mechanobiology, Nanoengineering, Bioenergetics, Neurobiology, Molecular Dynamics, cellular membrane, osmotic pressure, proteins (use protein), Gatekeeper Protein, membrane, mechanosensitive channel of small conductance (MscS), Visual Molecular Dynamics (VMD), Quantum Biology, quantum chemistry, Molecular Dynamics Simulator, Nanoscale Imaging, cellular membrane tension, bacterial cell, electron paramagnetic measurements, computer modeling, atomic detail, computational microscope, Lipoproteins [high density lipoproteins (HDL)], Petascale Computing, Macromolecular Modeling, Bioinformatics, supramolecular systems, living cell, algorithms (use algorithm), computing tools, structural biology, molecular modeling, computational technologies, membrane proteins, structural information, molecular visualization, Molecular modeling tools, structural information, bioinformatics databases, molecular dynamics simulations, interactive modeling, collaborations, theoretical, experimental researchers, light energy, electrical membrane potentials (use membrane potential, add term as syn), synthesis of ATP, photosynthetic systems, storage and control of genetic information, classical and quantum dynamical motion of biopolymers, numerical experiments, non-equilibrium statistical mechanics, elasticity theory, theory of disordered systems, collaborative environment, Software Development, cells (use cell), molecular graphics viewer, static and dynamic structures, DNA sequencing, genomes (use genome), direct manipulation and observation, single molecules (use molecule), bioenergetic proteins, nanotechnology, steered/interactive molecular dynamics, dissemination, coarse-graining methods, residue-based and shape-based coarse graining, CG, polymeric systems, Computational Environment, Training, Workshops, Tutorials, Case Studies, Classes, research, Highly Cited, compute power, visualization equipment, desktop workstations, lipid bilayers, allow passage of ions across the membrane (use ion channel), mechanotransduction, membrane tension, 3-D graphics, built-in scripting, animating, analyzing, ideal DNA interbasepair helical parameters, plugin, nucleosomes, antialiasing, depthcueing, Molecular Representations, analysis and Data visualization software (use Image Processing software, and data Data visualization software, add terms as syn.), computer simulations (use simulation software), photosynthetic systems, computational clusters :

Proper citation: Theoretical and Computational Biophysics Group (TCBG) (RRID:SCR_013598) Copy   


http://www.nitrc.org/projects/iterdrwsp/

Software which aims to better estimate the neuronal activation of an individual using the results of an independent component analysis (ICA) method applied to a temporally concatenated group of functional magnetic resonance imaging (fMRI) data (i.e., Tc-GICA method). This approach employs iterative LS solutions to refine both the individual SPs and TCs with an additional a priori assumption of sparseness in the SPs (i.e., minimally overlapping SPs) based on L(1)-norm minimization.

Proper citation: Iterative dual-regression with sparse prior (RRID:SCR_014128) Copy   



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