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BCI2000 is a general-purpose system for brain-computer interface (BCI) and adaptive neurotechnology research. It can also be used for data acquisition, stimulus presentation, and brain monitoring applications. The mission of the BCI2000 project is to facilitate research and applications in the areas described. Their vision is that BCI2000 will become a widely used software tool for diverse areas of real-time biosignal processing. In order to achieve this vision, BCI2000 system is available for free for non-profit research and educational purposes. BCI2000 supports a variety of data acquisition systems, brain signals, and study/feedback paradigms. During operation, BCI2000 stores data in a common format (BCI2000 native or GDF), along with all relevant event markers and information about system configuration. BCI2000 also includes several tools for data import/conversion (e.g., a routine to load BCI2000 data files directly into Matlab) and export facilities into ASCII. BCI2000 also facilitates interactions with other software. For example, Matlab scripts can be executed in real-time from within BCI2000, or BCI2000 filters can be compiled to execute as stand-alone programs. Furthermore, a simple network-based interface allows for interactions with external programs written in any programming language. For example, a robotic arm application that is external to BCI2000 may be controlled in real time based on brain signals processed by BCI2000, or BCI2000 may use and store along with brain signals behavioral-based inputs such as eye-tracker coordinates. Because it is based on a framework whose services can support any BCI implementation, the use of BCI2000 provides maximum benefit to comprehensive research programs that operate multiple BCI2000 installations to collect data for a variety of studies. The most important benefits of the system in such situations are: - A Proven Solution - Facilitates Operation of Research Programs - Facilitates Deployment in Multiple Sites - Cross-Platform and Cross-Compiler Compatibility - Open Resource Sponsors: BCI2000 development is sponsored by NIH/NIBIB R01 and NIH/NINDS U24 grants. Keywords: General, Purpose, Systems, Brain, Computer, Interface, Research, Application, Brain, Diverse, Educational, Laboratory, Software, Network, Signals, Behavioral, Eye, Tracker,
Proper citation: Brain Computer Interface 2000 Software Package (RRID:SCR_007346) Copy
https://www.msu.edu/~brains/brains/human/index.html
A labeled three-dimensional atlas of the human brain created from MRI images. In conjunction are presented anatomically labeled stained sections that correspond to the three-dimensional MRI images. The stained sections are from a different brain than the one which was scanned for the MRI images. Also available the major anatomical features of the human hypothalamus, axial sections stained for cell bodies or for nerve fibers, at six rostro-caudal levels of the human brain stem; images and Quicktime movies. The MRI subject was a 22-year-old adult male. Differing techniques used to study the anatomy of the human brain all have their advantages and disadvantages. Magnetic resonance imaging (MRI) allows for the three-dimensional viewing of the brain and structures, precise spatial relationships and some differentiation between types of tissue, however, the image resolution is somewhat limited. Stained sections, on the other hand, offer excellent resolution and the ability to see individual nuclei (cell stain) or fiber tracts (myelin stain), however, there are often spatial distortions inherent in the staining process. The nomenclature used is from Paxinos G, and Watson C. 1998. The Rat Brain in Stereotaxic Coordinates, 4th ed. Academic Press. San Diego, CA. 256 pp
Proper citation: Human Brain Atlas (RRID:SCR_006131) Copy
http://www.nih.gov/science/brain/
Project aimed at revolutionizing understanding of human brain, to show how individual cells and complex neural circuits interact, enable rapid progress in development of new technologies and data analysis tools to treat and prevent brain disorders. BRAIN Initiative encourages collaborations between neurobiologists and scientists from disciplines such as statistics, physics, mathematics, engineering, and computer and information sciences. Institutes and centers contributing to NIH BRAIN Initiative support those research efforts.
Proper citation: BRAIN Initiative (RRID:SCR_006770) Copy
XSEDE is a single virtual system that scientists can use to interactively share computing resources, data and expertise. People around the world use these resources and services things like supercomputers, collections of data and new tools to improve our planet. XSEDE resources may be broadly categorized as follows: High Performance Computing, High Throughput Computing, Visualization, Storage, and Data Services. Many resources provide overlapping functionality across categories. Scientists, engineers, social scientists, and humanists around the world - many of them at colleges and universities - use advanced digital resources and services every day. Things like supercomputers, collections of data, and new tools are critical to the success of those researchers, who use them to make our lives healthier, safer, and better. XSEDE integrates these resources and services, makes them easier to use, and helps more people use them. XSEDE supports 16 supercomputers and high-end visualization and data analysis resources across the country. Digital services, meanwhile, provide users with seamless integration to NSF''s high-performance computing and data resources. XSEDE''s integrated, comprehensive suite of advanced digital services will federate with other high-end facilities and with campus-based resources, serving as the foundation for a national cyberinfrastructure ecosystem. Common authentication and trust mechanisms, global namespace and filesystems, remote job submission and monitoring, and file transfer services are examples of XSEDE''s advanced digital services. XSEDE''s standards-based architecture allows open development for future digital services and enhancements. XSEDE also provides the expertise to ensure that researchers can make the most of the supercomputers and tools.
Proper citation: XSEDE - Extreme Science and Engineering Discovery Environment (RRID:SCR_006091) Copy
http://www.bioconductor.org/packages/2.13/bioc/html/epigenomix.html
Software package for the integrative analysis of microarray based gene expression and histone modification data obtained by ChIP-seq. The package provides methods for data preprocessing and matching as well as methods for fitting bayesian mixture models in order to detect genes with differences in both data types.
Proper citation: epigenomix (RRID:SCR_006407) Copy
Mimas is an organization of experts. Our role is to support the advancement of knowledge, powering world-class research and teaching. Technology is at the heart of everything we do. As a nationally designated data center, we host a significant number of the UK''s research information assets. But our core expertise is building applications that enable a wide range of users to make the most of this rich resource from students and researchers working with census data to investigate social inequalities, to scientists using satellite imagery to survey and protect our environment. We have a longstanding relationship with JISC, developing services that support teaching, learning and research and strong connections with research councils, especially the Economic and Social Research Council (ESRC). We also have partnerships with commercial groups, universities and colleges, government agencies, and national libraries and archives. * An organization of experts: We''re experts in technological development, information management, user support, training, project management, and applied research. * What we do: We maintain and support quality services, develop applications and software, provide data hosting and storage, and share our learning. * What we stand for: Four main principles guide our activities: commitment to our users, technological experimentation and innovation, communication within our community, and investment in staff.
Proper citation: Mimas (RRID:SCR_006529) Copy
http://www.nitrc.org/projects/asltbx
Tool box for arterial spin labeled perfusion MRI data processing. It is based on SPM and Matlab. More detailed documentation can be found in asl_perf_subtract.m, the main function for calculating CBF value. It supports 3D or 4D Analyze or Nifiti format and PASL, CASL, and PCASL data. It contains the code for calculating CBF and a set of SPM batch scripts for preprocessing and statistical analysis.
Proper citation: ASL data processing tool box (RRID:SCR_005997) Copy
http://www.neurophys.biomedicale.univ-paris5.fr/~graham/surf-hippo.html
The Surf-Hippo neuron simulator is used to investigate morphologically and biophysically detailed compartmental models of single neurons and networks of neurons. Surf-Hippo allows ready construction of cells and networks using built-in functions and various anatomical file formats (Neurolucida, NTS and others). Surf-Hippo is a public domain package, written in Lisp, and runs under Unix and Linux.
Proper citation: The Surf-Hippo Neuron Simulation System (RRID:SCR_007257) Copy
Centre is committed to free and open exchange of scientific data and is working collaboratively with international centres, networks and scientists to build sustainable polar data commons. Delivers professional data management and analysis services to Antarctic scientists and environmental managers. Supports logistical operations of Australian Antarctic Program. Data held in AADC data stores are qualified with metadata and discoverable through Catalogue of Australian Antarctic and Sub-antarctic Metadata (CAASM http://data.aad.gov.au/aadc/metadata) or through customized applications accessible via the website. All data is archived in AADC to permit its re-use. AADC has capability to create DOIs for datasets.
Proper citation: Australian Antarctic Data Centre (RRID:SCR_006320) Copy
The Beckman Institute BNMC brings together researchers from many disciplines at Caltech to address problems in the mechanistic modeling of coupled genomic, intercellular and intracellular processes. It represents an attempt to encourage closer interaction and collaboration between groups in Biology, Control and Dynamical Systems, and the Center for Advanced Computing Research. The focus of BNMC is biochemical phenomena occurring within and between cells, in particular the mechanistic modeling of molecular networks of all kinds (e.g., transcriptional, regulatory, metabolic, signal transduction, mechanical, etc.) with and without spatial variation and intercellular communication. BNMC is formed as a coordinated effort aimed at (1) applying existing capabilities to collaboratively solve biological modeling problems that arise in answering scientific questions in Caltech laboratories, (2) exploring a diversity of novel approaches in order to achieve fundamental advances necessary to address the classes of modeling problems biologists want to solve, and (3) organizing projects to better share human experience as well as common infrastructure to avoid duplication and maximize solution interoperability.
Proper citation: Caltech, The Beckman Institute: The Biological Network Modeling Center (RRID:SCR_008060) Copy
A specialized version of autoPack designed to pack biological components together. The current version is optimized to pack molecules into cells with biologically relevant interactions to populate massive cell models with atomic or near-atomic details. Components of the algorithm pack transmembrane proteins and lipids into bilayers, globular molecules into compartments defined by the bilayers (or as exteriors), and fibrous components like microtubules, actin, and DNA.
Proper citation: Cellpack (RRID:SCR_006831) Copy
One Mind for Research''s plan to work smarter and share resources through public and private partnerships has the power to help us make more progress on every brain disorder from schizophrenia to traumatic brain injury. In the process, we will increase the investment in research by $1.5 billion each year for the next 10 years. And achieve a minimum 10% reduction in the cost of brain disease per year. This is how neurological cures that once seemed beyond our reach begin to take shape. When we''re all of one mind working toward the same goal, anything can be accomplished. $8 billion a year is spent on brain research, but the minimum cost of brain disease is one hundred times that. Yet amazingly, unlocking the mysteries of the human brain has less to do with resources than it does their coordination. Because though there is science, it exists in many different silos. There has never been a single organization that brings together the science, technology, financial resources and knowledge required to create an unprecedented understanding of brain disease. Until now. The One Mind for Research Forum began on May 23, 2011 and over the course of 2 days, the best and brightest from around the world gathered as part of a national collaboration of research universities, scientists, and the National Institutes of Health (NIH) Directors as they imagined an ambitious 10-year plan for neuroscience research. One Mind believes that new treatments and cures for neurological and psychiatric diseases that afflict one in three Americans, from children with autism to senior citizens with Alzheimer''s disease, are all within reach.
Proper citation: One Mind for Research (RRID:SCR_006711) Copy
http://soap.genomics.org.cn/soapaligner.html
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on April 12,2024. Updated version of SOAP software for short oligonucleotide alignment that features in super fast and accurate alignment for huge amounts of short reads generated by Illumina/Solexa Genome Analyzer., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: SOAPaligner/soap2 (RRID:SCR_005503) Copy
The BNF aims to provide prescribers, pharmacists and other healthcare professionals with sound up-to-date information about the use of medicines. The BNF provides ready access to key information on the selection, prescribing, dispensing and administration of medicines. Medicines that are generally prescribed in the UK are covered and those considered less suitable for prescribing are clearly identified.
Proper citation: British National Formulary (RRID:SCR_008176) Copy
NeuroDevNet, a Canadian Network of Centres of Excellence (NCE), is dedicated to helping children overcome neurodevelopmental disorders. Network investigators seek to understand the causes of neurological deficits, and to transfer this knowledge to health care professionals, policy makers, and communities of interest. NeuroDevNet works with its partners in academia, the community, not-for-profit sector, industry, and government, and across traditional disciplinary boundaries and sectors, to ensure generated knowledge is translated into tangible diagnostic, preventative, therapeutic, social, economic, and health benefits for all. NeuroDevNet supports transformative research, provides training to build a new generation of Canadian researchers, strengthens communities with the right tools and information, and translates research findings into early diagnostic, preventative, and therapeutic strategies for children with neurological disorders to live healthier lives. Currently, the network''s research focuses on autism spectrum disorder, cerebral palsy, and fetal alcohol spectrum disorder. These demonstration projects are supported by NeuroDevNet''s central infrastructure and cores, including Neuroethics, Neuroinformatics, and Knowledge Translation.
Proper citation: NeuroDevNet (RRID:SCR_004925) Copy
http://nimh-repository.rti.org/
A program that synthesizes, purifies, and distributes otherwise unavailable essential compounds to stimulate basic and clinical research in psychopharmacology relevant to mental health in areas such as the molecular pharmacology and signaling of CNS receptors, longitudinal studies to evaluate the molecular, biochemical, and behavioral actions of psychoactive compounds, and functional brain imaging in both primates and humans. WHAT IS AVAILABLE: * Ligands for CNS receptors, radiolabeled compounds for autoradiography and neuroimaging, biochemical markers, drug analogs and metabolites, and reference standards * Synthesis (including GMP) of promising compounds for mental health research, including preclinical toxicology and safety studies, especially compounds for PET neuroimaging * A listing of currently available NIMH CSDSP compounds is available online at www.nimh-repository.rti.org. RTI International scientists can provide investigators with technical assistance and additional information about the compounds on request. Data sheets containing purity, storage, and handling information are supplied with all NIMH CSDSP compounds. WHO IS ELIGIBLE: Investigators involved in basic or clinical research relevant to mental health are eligible to submit requests. To learn more about current NIMH research areas, please visit the NIMH website at www.nimh.nih.gov. NIMH CSDSP compounds are free to qualified academic investigators, but payment may be required from nonacademic requestors. Investigators interested in obtaining radiolabeled compounds but uncertain about what type of label or specific activity would work best for them may obtain help by communicating with the technical contacts listed on the website.
Proper citation: NIMH Chemical Synthesis and Drug Supply Program (RRID:SCR_004921) Copy
http://www.loni.usc.edu/Software/LONI-Inspector
A Java application for reading, displaying, searching, comparing, and exporting metadata from medical image files: AFNI, ANALYZE, DICOM, ECAT, GE, Interfile, MINC, and NIFTI.
Proper citation: LONI Inspector (RRID:SCR_004923) Copy
The Institute for Advanced Biosciences, Keio University, is an academic research institute pioneering the new life science field of Systems Biology, using both experimental and computational biology. There are several groups working in collaboration, focusing mainly on genome biology and engineering, genome design and synthetic biology, metabolic engineering, proteomics, metabolomics, RNA biology, bioinformatics and computational biology. Using cutting-edge technologies, intracellular components can be analyzed comprehensively to construct computer simulation models that can find numerous applications in fields such as biomedical, environmental, and agricultural science. Experimental and computational facilities are located in Tsuruoka, Yamagata prefecture, in northern Japan while the SFC campus, in the Tokyo area, hosts the bioinformatics laboratory and most undergraduate curricular activities. IAB has successfully attracted very significant funding for multiple research projects from major funding organizations including the New Energy and Industrial Technology Development Organization (NEDO) (2002-2006), for bioprocesses and cell modeling, the Ministry of Education, Culture, Sports, Science and Technology (MEXT) and its COE network, for biosimulation and systems biology (2003-2008), the Japan Science and Technology Agency (CREST, 2004-2009) for simulation and systems biology, the Ministry of Health, for cancer biology (2005), as well as from Yamagata prefecture and Tsuruoka city, 2001-2006 and 2006-2011). Over the past few years, IAB scientists have accumulated several awards including the 1st prize during the 5th Japan Biotechnology Business Competition (2005), the Minister of State for Science and Technology Policy award in recognition for industry-academia-government collaboration performance (2004), the IBM Shared University Research Award (2003), and the Nihon Kogyo Shimbunsha Award (2003) during the 17th Leading-edge Technology for Originality and Creativity. Sponsor. This study was supported by a grant from the Global COE Program entitled, Human Metabolomic Systems Biology and by a Grant-in-Aid for Scientific Research on Priority Areas Systems Genomes and on Lifesurveyor from the Ministry of Education, Culture, Sports, Science and Technology of Japan as well as research funds from the Yamagata prefectural government and the City of Tsuruoka.
Proper citation: Institute for Advanced Biosciences (RRID:SCR_008526) Copy
http://www.nitrc.org/projects/fadtts/
Pipeline developed for delineating the association between multiple diffusion properties along major white matter fiber bundles with a set of covariates of interest, such as age, diagnostic status and gender, and the structure of the variability of these white matter tract properties in various diffusion tensor imaging studies. FADTTS can be used to facilitate understanding of normal brain development, the neural bases of neuropsychiatric disorders, and the joint effects of environmental and genetic factors on white matter fiber bundles. The advantages of FADTTS compared with the other existing approaches are that they are capable of modelling the structured inter-subject variability, testing the joint effects, and constructing their simultaneous confidence bands.
Proper citation: Functional Analysis of Diffusion Tensor (RRID:SCR_008888) Copy
http://www.nitrc.org/projects/namicdtifiber/
Project hosting binary packaged distributions, scripts, example datasets, and corresponding results of analysis using their UNC/Utah NAMIC DTI Fiber Analysis Framework. This project can be seens as a master project encompassing several current NITRC projects into a coherent set. Their workflow utilizes tools already available on NITRC including: * DTIPrep * DTIAtlasBuilder * FiberViewerLight * DTIAtlasFiberAnalyzer * FADTTS
Proper citation: UNC/Utah NAMIC DTI Fiber Analysis Framework (RRID:SCR_009615) Copy
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