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| Resource Name | Proper Citation | Abbreviations | Resource Type |
Description |
Keywords | Resource Relationships | |||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
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LONI Image and Data Archive Resource Report Resource Website 50+ mentions |
LONI Image and Data Archive (RRID:SCR_007283) | IDA, LONI IDA, | data or information resource, image collection, database | Archive used for archiving, searching, sharing, tracking and disseminating neuroimaging and related clinical data. IDA is utilized for dozens of neuroimaging research projects across North America and Europe and accommodates MRI, PET, MRA, DTI and other imaging modalities. | data storage, mri, pet, mra, dti, neuroimaging, image storage, histology, fmri, spect, normal, control, alzheimer's disease, mild cognitive impairment, data sharing, clinical, protection, brain, cryosection, FASEB list |
is recommended by: National Library of Medicine is listed by: NIH Data Sharing Repositories |
Control, Autism, Parkinson's disease, Alzheimer's disease, Mild Cognitive Impairment, Normal control, Aging | NIBIB | Restricted | nif-0000-00040, r3d100012840 | https://ida.loni.usc.edu/login.jsp?search=true https://doi.org/10.17616/R39N6D |
https://ida.loni.ucla.edu/login.jsp | SCR_007283 | , IDA, LONI Database, LONI, Image Data Archive | 2026-02-14 02:01:29 | 87 | |||
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NeuroLens Resource Report Resource Website 1+ mentions |
NeuroLens (RRID:SCR_007372) | NeuroLens | data visualization software, data processing software, software application, image processing software, software resource, image analysis software | An integrated environment for the analysis and visualization of functional neuroimages. It is intended to provide extremely fast and flexible image processing, via an intuitive user interface that encourages experimentation with analysis parameters and detailed inspection of both raw image data and processing results. All processing operations in NeuroLens are built around a Plugin architecture, making it easy to extend its functionality. NeuroLens runs on Apple computers based on the G4, G5, or Intel chipsets and running MacOSX 10.4 (Tiger) or later. It is available free for academic and non-profit research use. * Operating System: MacOS * Programming Language: Objective C * Supported Data Format: AFNI BRIK, ANALYZE, COR, DICOM, MGH/MGZ, MINC, Other Format | image-to-image, linear, temporal convolution - deconvolution, multivariate analysis, neuroimaging, fmri, brain structure, neural structure, brain, temporal convolution, temporal deconvolution, afni brik, analyze, cor, dicom, image display, macos, mgh/mgz, minc, magnetic resonance, objective c, registration, regression, rendering, software, spatial transformation, statistical operation, surface rendering, temporal transformation, three dimensional display, visualization |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is listed by: Biositemaps has parent organization: University of Montreal; Quebec; Canada |
MGH CSRL License, - free for academic and non-profit research use. | nif-0000-00333 | http://www.nitrc.org/projects/nldo | SCR_007372 | 2026-02-14 02:01:31 | 9 | |||||||
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Allen Human Brain Atlas Resource Report Resource Website 100+ mentions |
Allen Human Brain Atlas (RRID:SCR_007416) | data visualization software, data processing software, data or information resource, atlas, software application, software resource, database | 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. | atlas, human, brain, anatomic, genomic, data, visualization, mining, tool, MRI, DTI, histology, gene, expression |
is related to: Speech Language Disorders Database has parent organization: Allen Institute for Brain Science has parent organization: Allen Brain Atlas |
Individual private donors ; U.S. Department of Health and Human Services 1C76HF15069; U.S. Department of Health and Human Services 1C76HF19619 |
PMID:23041053 | Free, Available for download, Freely available | nif-0000-00506 | http://humancortex.alleninstitute.org, http://human.brain-map.org/ | SCR_007416 | Human Cortex Study, Allen Institute for Brain Science Human Cortex Study, Allen Brain Atlas - Human Brain | 2026-02-14 02:01:32 | 135 | |||||
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UTHealth at Houston Neuroscience Research Center Resource Report Resource Website |
UTHealth at Houston Neuroscience Research Center (RRID:SCR_007486) | UTHealth NRC | postdoctoral program resource, training resource, graduate program resource, portal, data or information resource, topical portal | The Neuroscience Research Center (NRC) is a university-wide center where diverse and multidisciplinary research is conducted to further the understanding of neural and behavioral disorders. Whether conducting cellular research in laboratories or clinical trials in patient care settings, the work of NRC researchers may someday contribute to preventing and treating such devastating disorders as: * Dementias resulting from Alzheimer''s disease and stroke * Mental retardation and other learning disabilities * Mental illnesses, including schizophrenia and manic-depressive illness * Alcoholism and other substance abuse problems * Inability to process knowledge due to factors such as aging and head trauma * Disabilities due to disorders of the developing nervous system More than 280 faculty hold NRC appointments, and are on the faculties of the Medical School, School of Public Health, School of Nursing, Dental Branch, and School of Biomedical Informatics. Departments with significant NRC research activities within the Medical School include Neurobiology and Anatomy; Neurology; Neurosurgery; Ophthalmology and Visual Science; Psychiatry and Behavioral Sciences and Radiology. NRC activities are guided by an executive committee appointed by the President of the Health Science Center. The Neuroscience Research Center (NRC) is affiliated with educational opportunities at the graduate and postdoctoral levels. | neuroscience, brain | has parent organization: University of Texas Health Science Center at Houston; Texas; USA | nif-0000-02108 | http://nba.uth.tmc.edu/nrc/ | SCR_007486 | University of Texas Health Science Center at Houston Neuroscience Research Center | 2026-02-14 02:01:33 | 0 | |||||||
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BAMS Thesaurus Resource Report Resource Website |
BAMS Thesaurus (RRID:SCR_008003) | thesaurus | THIS RESOURCE IS NO LONGER IN SERVICE, documented on January 19,2022. The BAMS Thesaurus is a part of the larger BAMS The Foundational Model of Connectivity (FMC). The principle of constructing the resource are: 1. Systematic attempts to produce internally consistent classifications and taxonomies require theoretical frameworks for deciding between alternatives. 2. Alternate classification and taxonomy schemes are always possible and must be accommodated. 3. The FMC is based on evidence, not authority. All components are justified by reference to the best observational or experimental evidence from the literature, combined with reference to priority when possible, not by undocumented statements from textbooks, the Web, or elsewhere. 4. The FMC is based on evolving evidence and concepts, revisions are based on enforced rules, and versioning is systematic and historical. The first version of FMC and the foundation of this online version was published in Swanson & Bota (2010). Please cite this reference whenever any part of the FMC is used in any way. This online version of FMC has the following main parts: 1. Thesaurus, which includes an alphabetical list of all concepts and terms used in FMC to date. The preferred terms are in bold. Clicking on each term of the Thesaurus will retrieve its definition, reference, list of synonyms, and a comment form that can be used by registered users. 2. References, which includes an alphabetical list of the literature used to construct FMC. Listed references are associated with the definitions included in the Thesaurus, and PubMed links. 3. Search form that can be used to search for terms defined in FMC, included in their definitions, their abbreviations, and references (search by authors). We strongly recommend to read FMC rules and notations before starting to use the online version. | brain, anatomy, connectivity, thesaurus, | THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-07739 | SCR_008003 | 2026-02-14 02:01:35 | 0 | ||||||||||
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VISTA Enhancer Browser Resource Report Resource Website 100+ mentions |
VISTA Enhancer Browser (RRID:SCR_007973) | VISTA Enhancer Browser | data repository, storage service resource, data or information resource, service resource, database | Resource for experimentally validated human and mouse noncoding fragments with gene enhancer activity as assessed in transgenic mice. Most of these noncoding elements were selected for testing based on their extreme conservation in other vertebrates or epigenomic evidence (ChIP-Seq) of putative enhancer marks. Central public database of experimentally validated human and mouse noncoding fragments with gene enhancer activity as assessed in transgenic mice. Users can retrieve elements near single genes of interest, search for enhancers that target reporter gene expression to particular tissue, or download entire collections of enhancers with defined tissue specificity or conservation depth. | human, noncoding fragment, mutant mouse strain, molecular neuroanatomy resource, image, telencephalon, development, genome, enhancer, dna fragment, embryo, embryonic mouse, brain, neural tube, eye, ear, heart, tail, limb, nose, cranial nerve, trigeminal, dorsal root ganglia, face, branchial arch, gene expression, annotation, vector, transgenic embryo, lacz reporter vector, lacz, biomaterial supply resource, in vivo, image collection, transcriptional enhancer, chip-seq, bio.tools, FASEB list |
is listed by: Debian is listed by: bio.tools is related to: NIF Data Federation is related to: One Mind Biospecimen Bank Listing is related to: OMICtools has parent organization: Lawrence Berkeley National Laboratory |
American Heart Association ; NIDCR ; NHLBI HL066681; NHGRI HG003988; DOE contract DE-AC02-05CH11231; NINDS NS062859; DOE DE020060 |
PMID:17130149 | Free, Freely available | nif-0000-03637, OMICS_01568, biotools:vista_enhancer_browser | https://bio.tools/vista_enhancer_browser | SCR_007973 | 2026-02-14 02:01:36 | 233 | |||||
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Buzsaki Lab Resource Report Resource Website 10+ mentions |
Buzsaki Lab (RRID:SCR_008020) | Buzsaki Lab | data processing software, portal, laboratory portal, data or information resource, data analysis software, organization portal, software application, software resource | Lab interested in understanding how neuronal circuitries of the brain support its cognitive capacities. Its goal is to provide rational, mechanistic explanations of cognitive functions at a descriptive level. In the lab''s view, the most promising area of cognitive faculties for scientific inquiry is memory, since it is a well-circumscribed term, can be studied in animals and substantial knowledge has accumulated on the molecular mechanisms of synaptic plasticity. Available software: * NeuroScope: NeuroScope can display local field potentials (EEG), neuronal spikes, behavioral events, as well as the position of the animal in the environment. It also features limited editing capabilities. * Klusters: Klusters is a powerful and easy-to-use cluster cutting application designed to help neurophysiologists sort action potentials from multiple neurons on groups of electrodes (e.g., tetrodes or multisite silicon probes). * KlustaKwik: KlustaKwik is a program for automatic cluster analysis, specifically designed to run fast on large data sets. * MATLAB m-files: A selection of MATLAB files developed in the lab., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025. | eeg, electrode, environment, funtion, animal, application, behavioral, brain, capacity, circuit, cluster, cognitive, hippocampal, hippocampus, laboratory, local field potential, mechanism, memory, molecular, neuron, neuronal, plasticity, research, scientific, spike, synaptic, tetrode |
has parent organization: Rutgers University; New Jersey; USA is parent organization of: NeuroScope |
THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-10182 | http://osiris.rutgers.edu/frontmid/indexmid.html | SCR_008020 | Buzsaki''s Lab | 2026-02-14 02:01:36 | 15 | ||||||
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BraInSitu: A homepage for molecular neuroanatomy Resource Report Resource Website 1+ mentions |
BraInSitu: A homepage for molecular neuroanatomy (RRID:SCR_008081) | BraInSitu | experimental protocol, expression atlas, data or information resource, atlas, image, narrative resource, database | Database of detailed protocols for single and double in situ hybridization (ISH) method, probes used by Yamamori lab and others useful for studies of brain, and many photos of mammalian (mostly mouse and monkey) brains stained with various gene probes. Also includes a brain atlas of gene expression. Currently, the atlas comprises a series of un-annotated images showing the localization of a particular probe or molecule, e.g., AChE. | function, gene expression, gene, anatomical structure, brain, central nervous system, cerebral cortex, in situ hybridization, mammalian, neocortex, pcr cloning, probe, molecular neuroanatomy resource, neuroanatomy, in situ hybridization protocol | has parent organization: National Institute for Basic Biology; Okazaki; Japan | nif-0000-11633 | SCR_008081 | 2026-02-14 02:01:36 | 4 | |||||||||
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University of Washington Integrated Brain Project Resource Report Resource Website 1+ mentions |
University of Washington Integrated Brain Project (RRID:SCR_008075) | data or information resource, software resource, ontology, controlled vocabulary | The UW Integrated Brain Project is one project within the national Human Brain Project, a national multi-agency effort to develop informatics tools for managing the exploding amount of information that is accumulating about the human brain. The objective of the UW Integrated Brain Project effort is to organize and integrate distributed functional information about the brain around the structural information framework that is the long term goal of our work. This application therefore extends the utility of the Digital Anatomist Project by using it to organize non-structural information. The initial driving neuroscience problem that is being addressed is the management, visualization and analysis of cortical language mapping data. In recent years, advances in imaging technology such as PET and functional MRI have allowed researchers to observe areas of the cortex that are activated when the subject performs language tasks. These advances have greatly accelerated the amount of data available about human language, but have also emphasized the need to organize and integrate the sometimes contradictory sources of data, in order to develop theories about language organization. The hypothesis is that neuroanatomy is the common substrate on which the diverse kinds of data can be integrated. A result of the work done by this project is a set of software tools for generating a 3-D reconstruction of the patient''s own brain from MRI, for mapping functional data to this reconstruction, for normalizing individual anatomy by warping to a canonical brain atlas and by annotating data with terms from an anatomy ontology, for managing individual lab data in local laboratory information systems, for integrating and querying data across separate data management systems, and for visualizing the integrated results. Sponsors: This Human Brain Project research is funded jointly by the National Institute on Deafness and Other Communication Disorders, the National Institute of Mental Health, and the National Institute on Aging. | functional mri, anatomy, brain, imaging, neuroanatomy, neuroscience, open source license, pet, technology | Aging | nif-0000-10536 | SCR_008075 | UW Brain Project | 2026-02-14 02:01:36 | 1 | |||||||||
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Multimodal Imaging Laboratory Resource Report Resource Website |
Multimodal Imaging Laboratory (RRID:SCR_008071) | MMIL | laboratory portal, data or information resource, organization portal, portal | An interdisciplinary group of scientists and clinicians who study the human brain using a variety of imaging, recording, and computational techniques. Their primary goal is to bridge non-invasive imaging technologies to the underlying neurophysiology of brain neuronal circuits for a better understanding of healthy human brain function, and mechanisms of disruption of this function in diseases such as Alzheimer's, epilepsy and stroke. The other goal of the MMIL is to develop and apply advanced imaging techniques to understanding the human brain and its disorders. In order to ground these methodological developments in their underlying neurobiology, invasive studies in humans and animals involving optical and micro physiological measures are also performed. These methodologies are applied to understanding normal function in sleep, memory and language, development and aging, and diseases such as dementia, epilepsy and autism. | dti, eeg, epilepsy, fmri, function, aging, alzheimer's, autism, brain, dementia, development, disease, disorder, human, mechanism, memory, microphysiological, neurobiology, neuronal circuit, neurophysiology, noninvasive methodology, pet, sleep, stroke, structural mri, language, meg, structural mri, meg |
has parent organization: University of California at San Diego; California; USA is parent organization of: Pediatric Imaging Neurocognition and Genetics |
Aging | nif-0000-10521 | SCR_008071 | 2026-02-14 02:01:33 | 0 | ||||||||
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Laboratory of Molecular Neuroscience, University of Oslo Resource Report Resource Website 1+ mentions |
Laboratory of Molecular Neuroscience, University of Oslo (RRID:SCR_008097) | UiO LMN | data or information resource, portal, topical portal | A laboratory that investigates the molecular mechanisms involved in the development of acute and chronic neurodegenerative disease, with a focus on the role of glutamate excitotoxicity. It aims at unraveling the molecular basis for cell death and edema development in stroke, and explores the pathophysiology of Alzheimer's disease and temporal lobe epilepsy. The main objective of the LMN is to advance understanding of the role of glutamate, as a transmitter substance in the normal brain and as a mediator of excitotoxicity in pathological conditions such as stroke. To this end the LMN employs several vital and nonvital imaging techniques. Model systems includes organotypic slice cultures and transgenic animals. An important focus of the LMN is to explore the role of DNA damage and repair in the pathogenesis of neurodegenerative disease. LMN is also engaged in research on molecular mechanism underlying brain edema, epilepsy, and Alzheimer's disease. | epilepsy, excitotoxicity, acute, alzheimer's disease, brain, brain edema, cell death, chronic, damage, dna, glutamate, imaging, model systems, molecular, molecular mechanism, neurodegenerative disease, neuroprotective, neuroscience, repair, stroke, transmitter | has parent organization: University of Oslo; Oslo; Norway | nif-0000-11675 | SCR_008097 | University of Oslo LMN | 2026-02-14 02:01:36 | 1 | ||||||||
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MRIcro Software Resource Report Resource Website 500+ mentions |
MRIcro Software (RRID:SCR_008264) | data visualization software, data processing software, data analysis software, software application, software resource | MRIcro allows Windows and Linux computers view medical images. It is a standalone program, but includes tools to complement SPM (software that allows neuroimagers to analyze MRI, fMRI and PET images). MRIcro allows efficient viewing and exporting of brain images. In addition, it allows neuropsychologists to identify regions of interest (ROIs, e.g. lesions). MRIcro can create Analyze format headers for exporting brain images to other platforms. Some features of MRIcro are: - Converts medical images to SPM friendly Analyze format. - View Analyze format images (big or little endian). - Create Analyze format headers (big or little endian). - Create 3D regions of interest (with computed volume & intensity). - Overlap multiple regions of interest. - Rotate images to match SPM template images. - Export images to BMP, JPEG, PNG or TIF format. - Yoked images: linked viewing of multiple images (e.g. view same coordinates of PET and MRI scans). Users familiar with other Windows programs will find that this software is fairly straightforward to use. Resting the mouse cursor over a button will cause a text hint to appear over the button. However, a tutorial with a step by step guide of how to use MRIcro with SPM is available. | export, fmri, 3d, brain, intensity, lesions, medical, mri, neuroimager, neuropsychologist, pet, platform, region, software, view, volume, image |
is related to: SPM has parent organization: Georgia Institute of Technology; Georgia; USA |
nif-0000-23298 | SCR_008264 | MRIcro | 2026-02-14 02:01:39 | 896 | |||||||||
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Allen Brain Atlas API Resource Report Resource Website 10+ mentions |
Allen Brain Atlas API (RRID:SCR_005984) | Allen Brain Atlas API | portal, data or information resource, source code, software application, software resource, topical portal | API and demo application for accessing the Allen Brain Atlas Mouse Brain data. Data available via the API includes download high resolution images, expression data from a 3D volume, 3D coordinates of the Allen Reference Atlas, and searching genes with similar gene expression profiles using NeuroBlast. Data made available includes: * High resolution images for gene expression, connectivity, and histology experiments, as well as annotated atlas images * 3-D expression summaries registered to a reference space for the Mouse Brain and Developing Mouse Brain * Primary microarray results for the Human Brain and Non-Human Primate * RNA sequencing results for the Developing Human Brain * MRI and DTI files for Human Brain The API consists of the following resources: * RESTful model access * Image download service * 3-D expression summary download service * Differential expression search services * NeuroBlast correlative searches * Image-to-image synchronization service * Structure graph download service | atlas application, expression data, 3d volume, 3d coordinate, gene, reference atlas, connectivity, histology, microarray, brain, rna sequencing, mri, dti, api, computational neuroscience, mouse brain, neuroanatomy, neuroimaging, neuroinformatics, ish, high resolution image, nissl, annotation, atlas, image, web service, neuroblast, gene expression, gene, computational neuroscience, mouse brain, neuroanatomy, neuroimaging, neuroinformatics |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is related to: Allen Mouse Brain Reference Atlas is related to: Allen Developing Mouse Brain Atlas is related to: International Neuroinformatics Coordinating Facility is related to: Brain Explorer Atlas and Teaching Tool is related to: CellTax vignette is related to: Allen Mouse Brain Common Coordinate Framework has parent organization: Allen Institute for Brain Science |
Other/Commercial license License | nlx_151358 | http://www.nitrc.org/projects/incf_allen-brai | SCR_005984 | 2026-02-14 02:01:13 | 13 | |||||||
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Viking Viewer for Connectomics Resource Report Resource Website 10+ mentions |
Viking Viewer for Connectomics (RRID:SCR_005986) | data processing software, data management software, software application, collaboration tool, software resource | A web-compliant application that allows connectomics visualization by converting datasets to web-optimized tiles, delivering volume transforms to client devices, and providing groups of users with connectome annotation tools and data simultaneously via conventional internet connections. Viking is an extensible tool for connectomics analysis and is generalizable to histomics applications. | annotation, 2d image, microscopy image, volume, serial section, 3d reconstruction, segmentation, microscopy, visualization, optical imaging, connectomics, synapse, retina, brain |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is listed by: 3DVC has parent organization: University of Utah; Utah; USA |
Research to Prevent Blindness ; University of Utah; Utah; USA ; Graduate Research Fellowship ; Utah Science Technology and Research Initiative ; NEI R01 EY02576; NEI R01 EY015128; NEI P01 EY014800; NSF 0941717; NIDCD T32DC008553; NIBIB EB005832 |
PMID:21118201 | Open source | nlx_151360 | http://www.nitrc.org/projects/viking_viewer | SCR_005986 | Viking, Viking Connectome Annotation System, Viking Annotation System | 2026-02-14 02:01:12 | 14 | |||||
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ABC (Atlas Based Classification) Resource Report Resource Website 1+ mentions |
ABC (Atlas Based Classification) (RRID:SCR_005981) | ABC | data processing software, workflow software, software application, software resource, image analysis software | A comprehensive processing pipeline developed and used at University of North Carolina and University of Utah for brain MRIs. The processing pipeline includes image registration, filtering, segmentation and inhomogeneity correction. The tool is cross-platform and can be run within 3D Slicer or as a stand-alone program. The image segmentation algorithm is based on the EMS software developed by Koen van Leemput. | brain, image, image registration, filter, segmentation, inhomogeneity correction, beta, c++, linux, windows |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is related to: 3D Slicer is related to: INCF Software Center has parent organization: University of North Carolina at Chapel Hill; North Carolina; USA has parent organization: University of Utah; Utah; USA |
3D Slicer License | nlx_151362 | SCR_005981 | 2026-02-14 02:01:01 | 3 | ||||||||
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MIALAB - Medical Image Analysis Lab Resource Report Resource Website 10+ mentions |
MIALAB - Medical Image Analysis Lab (RRID:SCR_006089) | MIALAB | laboratory portal, data or information resource, organization portal, portal | MIALAB, headed by Dr. Vince Calhoun, focuses on developing and optimizing methods and software for quantitative analysis of structure and function in medical images with particular focus on the study of psychiatric illness. We work with many types of data, including functional magnetic resonance imaging (fMRI), diffusion tensor imaging (DTI), electroencephalography (EEG), structural imaging and genetic data. Much of our time is spent working on new methods for flexible analysis of brain imaging data. The use of data driven approaches is very useful for extracting potentially unpredictable patterns within these data. However such methods can be further improved by incorporating additional prior information as constraints, in order to benefit from what we know. To this end, we draw heavily from the areas of image processing, adaptive signal processing, estimation theory, neural networks, statistical signal processing, and pattern recognition. | software, data, data visualization, medical image, image, neuroimaging, fmri, diffusion tensor imaging, electroencephalography, structural imaging, genetic data, brain, image processing, adaptive signal processing, estimation theory, neural network, statistical signal processing, pattern recognition, mri |
has parent organization: Mind Research Network is parent organization of: Group ICA of fMRI Toolbox is parent organization of: Group ICA Of EEG Toolbox is parent organization of: MIALAB - Resting State Data |
Mental disease | nlx_151551 | SCR_006089 | Medical Image Analysis Lab, Medical Image Analysis Laboratory, MIA Laboratory, Medical Image Analysis (MIA) Laboratory | 2026-02-14 02:01:04 | 27 | |||||||
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Computerized Anatomical Reconstruction and Editing Toolkit Resource Report Resource Website 50+ mentions |
Computerized Anatomical Reconstruction and Editing Toolkit (RRID:SCR_006260) | CARET | data visualization software, data processing software, software application, image processing software, software resource | Software package to visualize and analyze structural and functional characteristics of cerebral and cerebellar cortex in humans, nonhuman primates, and rodents. Runs on Apple (Mac OSX), Linux, and Microsoft Windows operating systems. | reconstruction, visualization, cerebral cortex, surface, brain, dataset, cerebellar cortex, atlas application, mesh generation, quantitative shape analysis, segmentation, shape analysis, intersubject, image-to-template, gaussian curvature, mean curvature, animation, three dimensional display, two dimensional display, surface rendering, cortical flat map, FASEB list |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is listed by: Debian is related to: SumsDB has parent organization: Washington University School of Medicine in St. Louis; Missouri; USA |
NIMH R01 MH60974; NEI EY02091 |
PMID:11522765 | Free, Available for download, Freely available | nif-0000-00279 | http://www.nitrc.org/projects/caret https://sources.debian.org/src/caret/ |
SCR_006260 | Computerized Anatomical Reconstruction Editing Toolkit | 2026-02-14 02:01:04 | 57 | ||||
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Ben and Catherine Ivy Foundation Resource Report Resource Website 1+ mentions |
Ben and Catherine Ivy Foundation (RRID:SCR_006333) | Ivy Foundation | funding resource | Funds patient-focused research on gliomas to develop better diagnostics and treatments that lead to long-term survival and a high quality of life for patients with brain tumors. The goal is to decrease the suffering of patients with brain tumors. With an ultimate goal to cure brain cancer, their immediate goal is to improve diagnostics and treatment. They are dedicated to improving the lives of all patients with brain cancer by funding research that they hope will lead to the doubling of life expectancy of patients with brain cancer. Their goal is to do this within the next seven years. Since 2005 they''ve committed more than $50 million to research into brain tumors, with the expectation that this will lead to better diagnostics and therapies. They are dedicated to this search because funding leads to answers, and answers lead to hope. | glioma, research, brain, tumor, brain tumor, diagnostic, treatment | Brain cancer, Cancer | nlx_152043 | SCR_006333 | 2026-02-14 02:01:16 | 2 | |||||||||
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Brodmann's Interactive Atlas Resource Report Resource Website 1+ mentions |
Brodmann's Interactive Atlas (RRID:SCR_006368) | data or information resource, atlas, mri d image | An atlas that facilitates fMRI analysis understanding by providing access to all of the functions that have been associated with each of the 52 Brodmann's areas or corresponding gyri. Links to main publications supporting the findings are provided in PubMed ID format. Brodmann's areas with similar functions and locations have been collapsed into a single page. The word left or right has been added indicating a lateralized function. All the abstracts published on PubMed on fMRI and brain PET studies in which the Brodmann's area or its anatomical correlate were mentioned have been reviewed up to August 2008. Abstracts with poorly described experimental methods or findings clearly conflicting with established knowledge provided by the clinical model were excluded. Studies on patients were also excluded. | neuroanatomy, fmri, interactive, mri, pet, brain, brodmann's areas, brodmann partition scheme region, cerebral cortex, function, brain activation, atlas | fMRI consulting | nlx_152117 | SCR_006368 | Broadmann's Interactive Atlas | 2026-02-14 02:01:06 | 3 | |||||||||
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Zebra Finch Song Learning Consortium Resource Report Resource Website 1+ mentions |
Zebra Finch Song Learning Consortium (RRID:SCR_006356) | Zebra Finch Song Learning Consortium | data or information resource, portal, topical portal | THIS RESOURCE IS NO LONGER IN SERVICE, documented August 29, 2016. Project to advance understanding of the neural mechanisms of vocal learning by providing a quantitative description of the relationship between physiological variables and vocal performance over the course of development in a songbird, the zebra finch. They propose to study vocal learning dynamically across neuronal and peripheral subsystems, using a novel collaborative approach that will harness the combined expertise of several investigators. Their proposed research model will 1) provide simultaneous measurements of acoustic, articulatory and electrophysiological data that will document the detailed dynamics of the vocal imitation process in a standardized learning paradigm; and 2) incorporate these measurements into a theoretical/computational framework that simultaneously provides a phenomenological description and attempts to elucidate the mechanistic basis of the learning process. | model organism, vocal learning, development, learning, brain, song |
is related to: Chronux has parent organization: Cold Spring Harbor Laboratory is parent organization of: Zebra Finch Brain Atlas |
NIH | THIS RESOURCE IS NO LONGER IN SERVICE | nlx_152090 | SCR_006356 | 2026-02-14 02:01:17 | 1 |
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