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| Resource Name | Proper Citation | Abbreviations | Resource Type |
Description |
Keywords | Resource Relationships | |||||||||||||
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National Alliance for Medical Image Computing Resource Report Resource Website 1+ mentions |
National Alliance for Medical Image Computing (RRID:SCR_004460) | NA-MIC, NAMIC | data or information resource, data set, narrative resource, organization portal, portal, software resource, training material | The National Alliance for Medical Image Computing (NA-MIC) is a multi-institutional, interdisciplinary team of computer scientists, software engineers, and medical investigators who develop computational tools for the analysis and visualization of medical image data. The purpose of the Center is to provide the infrastructure and environment for the development of computational algorithms and open-source technologies, and then oversee the training and dissemination of these tools to the medical research community. Electronic resources provided by NA-MIC include software, data, tutorials, presentations, and more. | tutorial, brain, presentation, documentation, image, medical, computational tool, imaging |
is related to: National Centers for Biomedical Computing has parent organization: National Centers for Biomedical Computing is parent organization of: SPHARM-PDM Toolbox is parent organization of: SpineSegmentation module for 3DSlicer is parent organization of: NA-MIC Kit |
NIH | PMID:22081219 PMID:27498015 |
nlx_45301 | SCR_004460 | 2026-09-12 12:56:13 | 9 | |||||||
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Childhood Brain Tumor Foundation Resource Report Resource Website 1+ mentions |
Childhood Brain Tumor Foundation (RRID:SCR_004421) | CBTF | institution | The Childhood Brain Tumor Foundation (CBTF), an all-volunteer organization, was founded in 1994 by families, friends and physicians of children with brain tumors. Our mission is to raise funds for scientific research and heighten public awareness of this most devastating disease and to improve prognosis and quality of life for those that are affected. Founded and incorporated in Virginia, relocated to Maryland in 1998, the Foundation (a 501(c) (3), strives to meet the goals of our mission. Friends, families, and physicians brought CBTF together and are dedicated to serving the needs of families and children with brain tumors, in hopes of improving the quality of life and find cures for pediatric brain tumors. Annually, CBTF funds basic science or clinical research for pediatric brain tumors; conferences and other programs. We provide informational materials on our website and mail other information (nationally and internationally) upon request. The Childhood Brain Tumor Foundation (CBTF) has funded state-of-the-art research and supported conferences for pediatric brain tumors over the past 17 years. Grants submissions are reviewed thoroughly by our dedicated renown team of scientific advisors to ensure that CBTF selects the highest quality research for pediatric brain tumors. Each year, we receive so many outstanding applications and it is through the support of private and public donations that this is all possible. With your support, together, we will strive to find a cure for children''s brain tumors. | brain tumor, child, human, pediatric, tumor, cancer, brain | grid.478649.0, ISNI: 0000 0004 5902 3100, nlx_143731, Crossref funder ID: 100002725 | https://ror.org/02aqe0j14 | SCR_004421 | 2026-09-12 12:56:12 | 2 | |||||||||
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Brain Science Podcast Resource Report Resource Website |
Brain Science Podcast (RRID:SCR_004491) | BSP | data or information resource, narrative resource, podcast | Podcast, hosted by Dr. Ginger Campbell, featuring the latest books about neuroscience as well as interviews with leading scientists from around the world. In this podcast, she shares recent discoveries from the world of neuroscience in a way that people of all backgrounds can enjoy. Dr. Campbell is an experienced emergency physician with a long-standing interest in mind-body medicine, the brain, and consciousness. She believes that understanding how the brain works gives us insight into what makes us human. She is also committed to showing how the scientific method has unraveled many long-standing mysteries. Brain Science Transcripts are also available. | neuroscience, brain, interview, consciousness, mind |
is used by: NIF Data Federation is related to: Integrated Podcasts |
nlx_47745 | SCR_004491 | 2026-09-12 12:56:13 | 0 | |||||||||
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HelioScan Resource Report Resource Website 10+ mentions |
HelioScan (RRID:SCR_004494) | HelioScan | software resource | HelioScan is a versatile control software for microscopes written in the intuitive graphical programming language LabVIEW. It solves a number of problems observed with custom-built image acquisition systems by providing the following features: * Extendability: both hardware components and software functionality are encapsulated in exchangeable, software components. Additional components can be implemented easily and plugged in at run-time. Components can be independently developed, allowing multiple developers to work in parallel. * Flexibility: Components are independently configurable; each component can have an unlimited number of configurations. * Understandability: The LabVIEW code is well-structured, commented and documented. * High speed: The software supports FPGA-based hardware that enables intelligent and extremely fast signal acquisition and generation. FPGA logic can be easily programmed using LabVIEW. * Tailored to in vivo brain imaging: The software is especially suited for 2-photon Calcium imaging, but can in principle be used for any kind of microscopy. The out-of-the-box software supports different imaging modalities (camera, galvanometric scan mirrors, acusto-optic deflectors) and imaging modes (camera video acquisition, intrinsic optical imaging, two-photon frame scan and tilted frame scan, 2D line scan, 3D spiral scan) and can easily be extended to other imaging modalities (e.g., resonance scanners), imaging modes (e.g., 2D and 3D arbitrary line scans) and associated hardware (e.g., stimulation devices). * Open file-format with extensible meta-data schema: HelioScan saves data in the OME-TIFF file format, which contains image data as multipage TIFF and meta-data as human-readable XML in the TIFF description tag according to the OME schema. | microscopy, two photon, calcium imaging, light microscopy, multiphoton imaging protocol, calcium(2+), imaging, brain, brain imaging | has parent organization: ETH Zurich; Zurich; Switzerland | nlx_143787 | SCR_004494 | Helio Scan | 2026-09-12 12:56:13 | 11 | ||||||||
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Mouse Brain Architecture Project Resource Report Resource Website 1+ mentions |
Mouse Brain Architecture Project (RRID:SCR_004683) | atlas, d spatial image, data or information resource, reference atlas | An atlas project whose goal is to enerate brainwide maps of inter-regional neural connectivity that specify the inputs and outputs of every brain region, at a "mesoscopic" level of analysis. A 3D injection viewer is used to view the mouse brain. To determine the outputs of a brain region, anterograde tracers are used which are taken up by neurons locally ("the input"), then transported actively down the axons to the "output regions." The whole brain is then sliced thinly, and each slice is digitally imaged. These 2-D images are reconstructed in 3D. The majority of the resulting 3-D brain image is unlabeled. Only the injected region and its output regions have tracer in them, allowing for identification of this small fraction of the connectivity map. This procedure is repeated identically, to account for individual variability. To determine the inputs to the same brain region as above, a retrograde tracer is injected in the same stereotaxic location ("the input"), and the process is repeated. In order to accumulate data from different mice (each of whom has a slightly different brain shape and size), 3-D spatial normalization is performed using registration algorithms. These gigapixel images of whole-brain sections can be zoomed to show individual neurons and their processes, providing a "virtual microscope." Each sampled brain is represented in about 500 images, each image showing an optical section through a 20 micron-thick slice of brain tissue. A multi-resolution viewer permits users to journey through each brain, following the pathways taken through three-dimensional brain space by tracer-labeled neuronal pathways. A key point is that at the mid-range "mesoscopic" scale, the team expects to assemble a picture of connections that are stereotypical and probably genetically determined in a species-specific manner. By dividing the volume of a hemisphere of the mouse brain into 250 equidistant, predefined grid-points, and administering four different kinds of tracer injections at each grid point -- in different animals of the same sex and age a complete wiring diagram that will be stitched together in "shotgun" fashion from the full dataset. | atlas, brain, brain architecture, connectivity, mouse brain architecture, neuroanatomy |
is related to: Brain Architecture Project has parent organization: Brain Architecture Project |
NIH Office of the Director ; NIMH RC1MH088659; NIMH R01MH087988 |
Fully accessible to the neuroscience community as well as interested members of the general public, Acknowledgement requested | nlx_146201 | http://www.brainarchitecture.org | http://www.brainarchitecture.org/mouse/about | SCR_004683 | MBA Project, Mouse Brain Architecture | 2026-09-12 12:56:15 | 5 | |||||
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National Temporal Bone Pathology Resource Registry Resource Report Resource Website |
National Temporal Bone Pathology Resource Registry (RRID:SCR_004705) | data or information resource, database, portal, topical portal | A non-profit organization that promotes research on hearing and balance disorders. The Registry database allows researchers to perform simple searches to locate specimens of interest. The results show the laboratories where specimens that match the query are located. Investigators should contact the individual laboratories for studying the specimens or for access to the sections. The Registry also serves the public and the scientific community through the dissemination of public information on temporal bone donation and research, enrollment of temporal bone donors, publication of The Registry, a newsletter for researchers, conservation of existing human temporal bone collections, and professional educational activities for physicians and scientists. | database, specimen, temporal bone, ear, brain, tissue, auditory system, vestibular system, hearing disorder, balance disorder, otologic disorder, genetic deafness, bells palsy, sudden idiopathic deafness, hearing impairment |
is listed by: One Mind Biospecimen Bank Listing has parent organization: Harvard Medical School; Massachusetts; USA |
Genetic deafness, Bells palsy, Sudden idiopathic deafness, Vestibular neuritis, Perilymphatic leak | National Institute on Deafness and Other Communication Disorders contract HHSN263200900019C | PMID:8343246 | Public, Available to the research community | nlx_69775 | SCR_004705 | National Institute on Deafness and Other Communication Disorders National Temporal Bone Hearing Balance Pathology Resource Registry, National Temporal Bone Registry, NIDCD National Temporal Bone Hearing and Balance Pathology Resource Registry, NIDCD National Temporal Bone Hearing & Balance Pathology Resource Registry | 2026-09-12 12:56:15 | 0 | |||||
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National Brain Tumor Society Resource Report Resource Website 1+ mentions |
National Brain Tumor Society (RRID:SCR_004744) | NBTS | data or information resource, disease-related portal, funding resource, portal, topical portal | National Brain Tumor Society (NBTS) is a nonprofit organization committed to finding a cure for brain tumors. We aggressively drive strategic research, advocate for public policies that meet the critical needs of the brain tumor community, and provide patient information. Headquartered in Watertown, Massachusetts, with offices in San Francisco, California and Wilmington, Delaware, we host activities throughout the United States. Formed in 2008 by the merger of two leading organizations that had served the brain tumor community, the National Brain Tumor Foundation and the Brain Tumor Society, the National Brain Tumor Society is now the largest brain tumor nonprofit organization in the country. Both legacy organizations had been formed in the 1980s by parents and other people who were committed to increasing both research funding and access to resources specific to brain tumors. In 2010, the Kelly Heinz-Grundner Foundation, a Delaware-based organization, joined NBTS as a wholly-owned subsidiary. Founded in 2005, after the death of Kelly Heinz-Grundner to a brain tumor, the group has contributed to NBTS''s efforts to pursue research and public policies that benefit the brain tumor community. NBTS grant programs are effective for academic researchers, inclusive of industry expertise, and promising for the patient community. All funding is open to both the domestic and international research communities. The Innovation Research Grant Program supports catalytic transformative projects that will significantly move the field forward. These may include out-of-the-box projects or research that is critical to move therapies down the pipeline. Research that represents an incremental advance is not considered innovative. NBTS will accept Innovation Letters of Intent throughout the year. Researchers in academic or industry labs and at all stages of their career may be funded through this program. | brain, tumor, brain tumor, cancer, human, grant, child, pediatric, research | nlx_143891 | SCR_004744 | 2026-09-12 12:56:16 | 8 | ||||||||||
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Alabama Head Injury Foundation Resource Report Resource Website |
Alabama Head Injury Foundation (RRID:SCR_004580) | AHIF | data or information resource, disease-related portal, patient-support portal, portal, topical portal | The Alabama Head Injury Foundation (AHIF) was founded in 1983 to increase public awareness of Traumatic Brain Injury (TBI) and to stimulate the development of supportive services. Today, AHIF is among the largest state brain injury associations in the nation with model programs and statewide services. Its mission is to improve the quality of life for people who have survived traumatic brain injuries and for their families. Whether the injury is mild or severe the life of the injured person and their family is changed forever. The impact can be both emotionally and financially devastating. AHIF provides the information to help clients and families understand the results of injury. AHIF helps access available resources and provides services and programs which meet the unique needs of individuals with traumatic brain injury (TBI) as well as spinal cord injury (SCI) in certain programs. | traumatic brain injury, brain, brain injury, human, clinical trial, one mind tbi | nlx_143826 | SCR_004580 | Alabama Head Injury Foundation: Improving Life After Traumatic Brain Injury | 2026-09-12 12:56:14 | 0 | |||||||||
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Florida Brain Tumor Association Resource Report Resource Website |
Florida Brain Tumor Association (RRID:SCR_004739) | FBTA | data or information resource, disease-related portal, funding resource, meeting resource, portal, topical portal, training resource | The mission of the Florida Brain Tumor Association (FBTA) is to provide hope, support and education to brain tumor survivors, their families and friends; to conquer brain tumors by funding research into their causes and cures; and to enrich the quality of life of those touched by brain tumors. In October, 1991, the Florida Brain Tumor Association (formerly South Florida Brain Tumor Association) began due to a desperate need from brain tumor survivors and families who were searching for support and a safe place to share their life changing experiences. Beginning in Boca Raton, Florida, as a grass roots organization and a handful of people, the first support group was conceived. Today, there are many additional FBTA support groups, from coast to coast in the state of Florida. The Florida Brain Tumor Association (FBTA) has become a major force in the brain tumor community. We host many fundraisers yearly, donating funds for research to brain tumor centers. The FBTA has hosted over 20 three day conferences, seminars and meetings, attracting thousands of survivors, families and health care professionals in the United States and Canada. Many of the most renowned physicians in the world travel from far and near to present at FBTA conferences. We are proud and grateful for their commitment and dedication to our cause. The FBTA is a not-for-profit 501(c)(3) organization that is supported by contributions from individuals, corporations, and foundations. We are the only organization of this kind, relying on the strength and dedication of our members, who are brain tumor survivors, family members and friends. Our Medical Advisory Board is also voluntary; we are very thankful to them for their generous gifts of time. | brain, tumor, cancer, human, brain tumor, brain cancer | nlx_143890 | http://www.fbta.info/site/homepage.htm | SCR_004739 | South Florida Brain Tumor Association | 2026-09-12 12:56:16 | 0 | ||||||||
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Brain Tumor Foundation For Children Resource Report Resource Website |
Brain Tumor Foundation For Children (RRID:SCR_004735) | BTFC | data or information resource, disease-related portal, funding resource, portal, topical portal | Established in 1983 in Atlanta, GA, the Brain Tumor Foundation for Children (BTFC) was the first nonprofit organization in the United States to focus on pediatric brain tumor disease. The mission of the Brain Tumor Foundation for Children is to provide financial assistance, social support, and information for families of children with brain and spinal cord tumors; fund research projects that improve treatment options and search for a cure; and raise public awareness of the disease and advocate on behalf of children who are affected. | human, child, brain, tumor, cancer, pediatric, spinal cord, brain cancer | nlx_143888 | SCR_004735 | Brain Tumor Foundation For Children Inc. | 2026-09-12 12:56:16 | 0 | |||||||||
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VA Polytrauma / TBI System of Care Resource Report Resource Website |
VA Polytrauma / TBI System of Care (RRID:SCR_004697) | PSC | data or information resource, portal, topical portal | A network of specialized rehabilitation programs serving Veterans and Service Members with both combat and civilian related Traumatic Brain Injury (TBI) and polytrauma. Services available include: interdisciplinary evaluation and treatment, development of a comprehensive plan of care, case management, patient and family education and training, psychosocial support, and application of advanced rehabilitation treatments and prosthetic technologies. | traumatic brain injury, recovery, rehabilitation, symptom, screening, brain, one mind tbi resource | has parent organization: U.S. Department of Veterans Affairs | Traumatic Brain Injury, Polytrauma | nlx_143875 | SCR_004697 | Polytrauma System of Care, Polytrauma / TBI System of Care, VA Polytrauma System of Care | 2026-09-12 12:56:15 | 0 | |||||||
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Brain Tumor Action Network Resource Report Resource Website |
Brain Tumor Action Network (RRID:SCR_004733) | BTAN | data or information resource, disease-related portal, funding resource, portal, topical portal | The Brain Tumor Action Network is a not-for-profit 501(c)(3) organization established to bring awareness to the general public about brain tumors and to educate and empower brain tumor survivors, their families and friends. We foster grassroots advocacy on federal and state legislative issues affecting brain tumor survivors, their families and friends by providing information on brain tumor-related public issues and effective advocacy. BTAN has the following goals: * To encourage those living with brain tumors, their families and friends to become advocates for brain tumor awareness. * To foster grassroots advocacy on federal and state legislative issues affecting brain tumor survivors, their families and friends by providing information (and training) on brain tumor related public issues and effective advocacy. * To work independently and in collaboration with other brain tumor related organizations on behalf of the brain tumor community family. * To increase brain tumor awareness nationally through the Hidden Under Our Hats, National Brain Tumor Awareness Project in Washington, DC and at various treatment centers, conferences and fund raisers. * To raise funds to support specific research projects. * To create a PILOT respite care program for brain tumor survivors and their families at Moffitt Cancer Center & Research Institute (Tampa, FL). The respite care fund would assist brain tumor patients and their family members with additional care and support from home health care workers. | human, brain, tumor, cancer | nlx_143887 | SCR_004733 | 2026-09-12 12:56:16 | 0 | ||||||||||
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BrainInfo Resource Report Resource Website 10+ mentions |
BrainInfo (RRID:SCR_003142) | atlas, data or information resource, database, narrative resource, portal, standard specification, topical portal | Portal to neuroanatomical information on the Web that helps you identify structures in the brain and provides a variety of information about each structure by porting you to the best of 1500 web pages at 100 other neuroscience sites. BrainInfo consists of three basic components: NeuroNames, a developing database of definitions of neuroanatomic structures in four species, their most common acronyms and their names in eight languages; NeuroMaps, a digital atlas system based on 3-D canonical stereotaxic atlases of rhesus macaque and mouse brains and programs that enable one to map data to standard surface and cross-sectional views of the brains for presentation and publication; and the NeuroMaps precursor: Template Atlas of the Primate Brain, a 2-D stereotaxic atlas of the longtailed (fascicularis) macaque brain that shows the locations of some 250 architectonic areas of macaque cortex. The NeuroMaps atlases will soon include a number of overlays showing the locations of cortical areas and other neuroscientific data in the standard frameworks of the macaque and mouse atlases. Viewers are encouraged to use NeuroNames as a stable source of unique standard terms and acronyms for brain structures in publications, illustrations and indexing systems; to use templates extracted from the NeuroMaps macaque and mouse brain atlases for presenting neuroscientific information in image format; and to use the Template Atlas for warping to MRIs or PET scans of the macaque brain to estimate the stereotaxic locations of structures. | brain, neuroanatomy |
is used by: NIF Data Federation is listed by: Biositemaps is related to: INIA19 Primate Brain Atlas has parent organization: University of Washington; Seattle; USA has parent organization: University of California at San Diego; California; USA |
The Human Brain Project ; NIBIB ; NLM LM/OD-06243; NIH Office of the Director LM/OD-06243; NIMH MHO69259; NCRR RR-00166 |
PMID:21789500 PMID:21163300 PMID:18368361 PMID:15055392 |
Free, Freely available | nif-0000-00019 | SCR_003142 | Brain Info | 2026-09-12 12:55:52 | 16 | ||||||
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Niftilib Resource Report Resource Website 1+ mentions |
Niftilib (RRID:SCR_003355) | Niftilib | software library, software resource, software toolkit, source code | Niftilib is a set of i/o libraries for reading and writing files in the nifti-1 data format. nifti-1 is a binary file format for storing medical image data, e.g. magnetic resonance image (MRI) and functional MRI (fMRI) brain images. Niftilib currently has C, Java, MATLAB, and Python libraries; we plan to add some MATLAB/mex interfaces to the C library in the not too distant future. Niftilib has been developed by members of the NIFTI DFWG and volunteers in the neuroimaging community and serves as a reference implementation of the nifti-1 file format. In addition to being a reference implementation, we hope it is also a useful i/o library. Niftilib code is released into the public domain, developers are encouraged to incorporate niftilib code into their applications, and, to contribute changes and enhancements to niftilib. Please contact us if you would like to contribute additonal functionality to the i/o library. | image data, mri, fmri, brain image, image, brain, neuroimaging |
is related to: NIfTI Data Format Working Group has parent organization: SourceForge |
Free, Available for download, Freely available | nif-0000-32011 | SCR_003355 | The Nifti Libraries, Nifti Libraries | 2026-09-12 12:55:56 | 3 | |||||||
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Volume image object AnNOtation System Resource Report Resource Website 1+ mentions |
Volume image object AnNOtation System (RRID:SCR_003393) | VANO | d visualization software, data processing software, image processing software, software application, software resource, source code | VANO is a Volume image object AnNOtation System for 3D multicolor image stacks, developed by Hanchuan Peng, Fuhui Long, and Gene Myers. VANO provides a well-coordinated way to annotate hundreds or thousands of 3D image objects. It combines 3D views of images and spread sheet neatly, and is just easy to manage 3D segmented image objects. It also lets you incorporate your segmentation priors, and lets you edit your segmentation results! This system has been used in building the first digital nuclei atlases of C. elegans at the post-embryonic stage (joint work with Stuart Kim lab, Stanford Univ), the single-neuron level fruit fly neuronal atlas of late embryos (with Chris Doe lab, Univ of Oregon, HHMI), and the compartment-level of digital map(s) of adult fruit fly brains (several labs at Janelia Farm, HHMI). VANO is cross-platform software. Currently the downloadable versions are for Windows (XP and Vista) and Mac (Intel-chip based, Leopard or Tiger OS). If you need VANO for different systems (such as 64bit or 32bit, Redhat Linux, Ubuntu, etc), you can either compile the software, or send an email to pengh (at) janelia.hhmi.org. VANO is Open-Source. You can download both the source code files and pre-complied versions at the Software Downloads page. | embryo, fruit fly, 3d, annotation, atlas, brain, neuron, neuronal, object, segmentation, software, image, nucleus, cell | has parent organization: Janelia Research | PMID:19189978 | Open unspecified license - please cite; needs a special license for any commercial purpose. | nif-0000-32984 | SCR_003393 | Volume-object annotation system (VANO), VANO - Volume image object AnNOtation System | 2026-09-12 12:55:57 | 8 | ||||||
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Mouse Biomedical Informatics Research Network Resource Report Resource Website |
Mouse Biomedical Informatics Research Network (RRID:SCR_003392) | MouseBIRN, mBIRN | atlas, data or information resource, data set, reference atlas | Animal model data primarily focused on mice including high resolution MRI, light and electron microscopic data from normal and genetically modified mice. It also has atlases, and the Mouse BIRN Atlasing Toolkit (MBAT) which provides a 3D visual interface to spatially registered distributed brain data acquired across scales. The goal of the Mouse BIRN is to help scientists utilize model organism databases for analyzing experimental data. Mouse BIRN has ended. The next phase of this project is the Mouse Connectome Project (https://www.nitrc.org/projects/mcp/). The Mouse BIRN testbeds initially focused on mouse models of neurodegenerative diseases. Mouse BIRN testbed partners provide multi-modal, multi-scale reference image data of the mouse brain as well as genetic and genomic information linking genotype and brain phenotype. Researchers across six groups are pooling and analyzing multi-scale structural and functional data and integrating it with genomic and gene expression data acquired from the mouse brain. These correlated multi-scale analyses of data are providing a comprehensive basis upon which to interpret signals from the whole brain relative to the tissue and cellular alterations characteristic of the modeled disorder. BIRN's infrastructure is providing the collaborative tools to enable researchers with unique expertise and knowledge of the mouse an opportunity to work together on research relevant to pre-clinical mouse models of neurological disease. The Mouse BIRN also maintains a collaborative Web Wiki, which contains announcements, an FAQ, and much more. | electron microscopy, expression, functional, gene, 3-dimentional, brain, cellular, disorder, genomic, genotype, mouse, neurodegenerative disease, phenotype, molecular neuroanatomy resource, mri, light microscopy, model organism, gene expression, atlas data, imaging genomics, magnetic resonance |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is related to: Mouse BIRN Atlasing Toolkit is related to: Mouse Connectome Project has parent organization: Biomedical Informatics Research Network |
Normal, Neurodegenerative disease, Multiple Sclerosis, Alzheimer's disease, Parkinson's disease | NIH ; Collaborative Tools Support Network Award ; NCRR 1U24-RR025736; NCRR U24-RR021992; NCRR U24-RR021760; NCRR 1U24-RR026057-01 |
Free, Available for download, Freely available | nif-0000-00200 | https://loni.usc.edu/research/software?name=MBATWA | http://www.loni.ucla.edu/BIRN/Projects/Mouse/index.shtml | SCR_003392 | Mouse BIRN | 2026-09-12 12:55:57 | 0 | |||
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Michigan State University Brain Biodiversity Bank Resource Report Resource Website 1+ mentions |
Michigan State University Brain Biodiversity Bank (RRID:SCR_003289) | atlas, data or information resource, database, narrative resource, training material | The Brain Biodiversity Bank refers to the repository of images of and information about brain specimens contained in the collections associated with the National Museum of Health and Medicine at the Armed Forces Institute of Pathology in Washington, DC. Atlases and brain sections are available for a variety of mammals, and we are also developing a series of labeled atlases of stained sections for educators, students, and researchers. These collections include, besides the Michigan State University Collection, the Welker Collection from the University of Wisconsin, the Yakovlev-Haleem Collection from Harvard University, the Meyer Collection from the Johns Hopkins University, and the Huber-Crosby and Crosby-Lauer Collections from the University of Michigan. What we are doing currently at Michigan State is a series of demonstration projects for publicizing the contents of the collections and ways in which they can be used. For example, the images from the collection can be used for comparative brain study. We have prepared databases of the contents of the collections for presentation and use on this site, as well as for downloading by users in several formats. We are also developing a series of labeled atlases of stained sections for educators, students, and researchers. This internet site is associated with the Comparative Mammalian Brain Collections site. All of the images are in JPEG or GIF format. | echidna, anatomy, axolotl, brain, brainstem, cat, cerebellum, chimpanzee, cortex, cow, dolphin, histology, human, hyena, hypothalamus, images, imaging, lion, llama, loris, manatee, mandrill, mongoose, morphology, movies, mri, nissl, owl monkey, pig, polar bear, red kangaroo, rhesus monkey, sea lion, sheep, subcortical, tasmanian devil, weasel, white matter, zebra | has parent organization: Michigan State University; Michigan; USA | Free, Available for download, Freely available | nif-0000-00059, r3d100012667 | https://doi.org/10.17616/R31F77 | SCR_003289 | Brain Biodiversity Bank | 2026-09-12 12:55:55 | 1 | |||||||
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Harvard Brain Tissue Resource Center Resource Report Resource Website 10+ mentions |
Harvard Brain Tissue Resource Center (RRID:SCR_003316) | HBTRC | biomaterial supply resource, brain bank, material resource, tissue bank | Biomaterial supply resource that acquires, processes, stores, and distributes postmortem brain specimens for brain research. Various types of brain tissue are collected, including those with neurological and psychiatric disorders, along with their parents, siblings and offspring. The HBTRC maintains an extensive collection of postmortem human brains from individuals with Huntington's chorea, Alzheimer's disease, Parkinson's disease, and other neurological disorders. In addition, the HBTRC also has a collection of normal-control specimens. | biomaterial supply resource, brain tissue, brain, tissue, Huntington's disease, Parkinson's disease, mental disease, neurological disorder, Alzheimer's disease, schizophrenia, bipolar disorder, relative, parent, sibling, child, lewy body variant Alzheimer's disease, amyotrophic lateral sclerosis, dementia, unipolar depressive disorder, diffuse lewy body disease, dyt-1 dystonia, progressive supranuclear palsy, rett syndrome, Tourette's syndrome, restless legs syndrome, autism, post-mortem |
is listed by: One Mind Biospecimen Bank Listing is listed by: Multiple Sclerosis Discovery Forum is related to: One Mind Biospecimen Bank Listing is related to: Multiple Sclerosis Discovery Forum has parent organization: Harvard Medical School; Massachusetts; USA is parent organization of: National Brain Databank is parent organization of: Autism Tissue Program is parent organization of: RLS Foundation Brain Bank |
Huntington's disease, Parkinson's disease, Mental disease, Neurological disorder, Normal control, Alzheimers disease, Schizophrenia, Bipolar Disorder, Lewy Body Variant Alzheimer's disease, Amyotrophic Lateral Sclerosis, Dementia, Unipolar Depressive Dissorder, Diffuse Lewy Body Disease, DYT-1 Dystonia, Progressive Supranuclear Palsy, Rett Syndrome, Tourette's Syndrome | National Institutes of Health ; Private organizations ; NIH Blueprint for Neuroscience Research |
Free, Freely available | nif-0000-00192 | https://rarediseases.org/organizations/harvard-brain-tissue-resource-center/ | SCR_003316 | Harvard Brain Bank, The Brain Bank | 2026-09-12 12:55:56 | 25 | ||||
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NIH Blueprint for Neuroscience Research Resource Report Resource Website 10+ mentions |
NIH Blueprint for Neuroscience Research (RRID:SCR_003670) | NIH Blueprint, Blueprint, | data or information resource, funding resource, portal, topical portal, training resource | Collaborative framework that includes the NIH Office of the Director and the 14 NIH Institutes and Centers that support research on the nervous system. By pooling resources and expertise, the Blueprint identifies cross-cutting areas of research, and confronts challenges too large for any single Institute or Center. The Blueprint makes collaboration a day-to-day part of how the NIH does business in neuroscience, complementing the basic missions of Blueprint partners. During each fiscal year, the partners contribute a small percentage of their funds to a common pool. Since the Blueprint's inception in 2004, this pool has comprised less than 1 percent of the total neuroscience research budget of the partners. In 2009, the Blueprint Grand Challenges were launched to catalyze research with the potential to transform our basic understanding of the brain and our approaches to treating brain disorders. * The Human Connectome Project is an effort to map the connections within the healthy brain. It is expected to help answer questions about how genes influence brain connectivity, and how this in turn relates to mood, personality and behavior. The investigators will collect brain imaging data, plus genetic and behavioral data from 1,200 adults. They are working to optimize brain imaging techniques to see the brain's wiring in unprecedented detail. * The Grand Challenge on Pain supports research to understand the changes in the nervous system that cause acute, temporary pain to become chronic. The initiative is supporting multi-investigator projects to partner researchers in the pain field with researchers in the neuroplasticity field. * The Blueprint Neurotherapeutics Network is helping small labs develop new drugs for nervous system disorders. The Network provides research funding, plus access to millions of dollars worth of services and expertise to assist in every step of the drug development process, from laboratory studies to preparation for clinical trials. Project teams across the U.S. have received funding to pursue drugs for conditions from vision loss to neurodegenerative disease to depression. Since its inception in 2004, the Blueprint has supported the development of new resources, tools and opportunities for neuroscientists. For example, the Blueprint supports several training programs to help students pursue interdisciplinary areas of neuroscience, and to bring students from underrepresented groups into the neurosciences. The Blueprint also funds efforts to develop new approaches to teaching neuroscience through K-12 instruction, museum exhibits and web-based platforms. From fiscal years 2007 to 2009, the Blueprint focused on three major themes of neuroscience - neurodegeneration, neurodevelopment, and neuroplasticity. These efforts enabled unique funding opportunities and training programs, and helped establish new resources including the Blueprint Non-Human Primate Brain Atlas. | animal model, collaboration, computational biology, imaging tool, initiative, neurodegeneration, neurodevelopment, neuroinformatics, brain, brain disorder, pain, drug, nervous system disorder, neurotherapeutics, neuroplasticity, neuroscience |
has parent organization: National Institutes of Health is parent organization of: CRE Driver Network is parent organization of: Blueprint Neurotherapeutics Network is parent organization of: National Center for Complementary and Alternative Medicine is parent organization of: National Eye Institute (NEI) Commons is parent organization of: National Institute of Biomedical Imaging and Bioengineering is parent organization of: National Institute of Nursing Research is parent organization of: National Institute on Alcohol Abuse and Alcoholism is parent organization of: National Institute on Drug Abuse is parent organization of: National Institute on Deafness and Other Communication Disorders is parent organization of: National Institute of General Medical Sciences is parent organization of: National Institute of Dental and Craniofacial Research is parent organization of: Office of Behavioral and Social Sciences Research is parent organization of: National Institute of Child Health and Human Development is parent organization of: National Institute of Environmental Health Sciences is parent organization of: National Institute of Mental Health is parent organization of: National Institute on Aging is parent organization of: National Institute of Neurological Disorders and Stroke is parent organization of: NeuroImaging Tools and Resources Collaboratory (NITRC) |
nif-0000-00219 | SCR_003670 | Neuroscience Blueprint | 2026-09-12 12:56:01 | 10 | ||||||||
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AgedBrainSYSBIO Resource Report Resource Website 1+ mentions |
AgedBrainSYSBIO (RRID:SCR_003825) | AgedBrainSYSBIO | consortium, data or information resource, organization portal, portal | Consortium focused on identifying the foundational pathways responsible for the aging of the brain, with a focus on Late Onset Alzheimer's disease. They aim to identify the interactions through which the aging phenotype develops in normal and in disease conditions; modeling novel pathways and their evolutionary properties to design experiments that identify druggable targets. As early steps of neurodegenerative disorders are expected to impact synapse function the project will focus in particular on pre- or postsynaptic protein networks. The concept is to identify subsets of pathways with two unique druggable hallmarks, the validation of interactions occurring locally in subregions of neurons and a human and/or primate accelerated evolutionary signature. The consortium will do this through six approaches: * identification of interacting protein networks from recent Late-Onset Alzheimer Disease-Genome Wide Association Studies (LOAD-GWAS) data, * experimental validation of interconnected networks working in subregion of a neuron (such as dendrites and dendritic spines), * inclusion of these experimentally validated networks in larger networks obtained from available databases to extend possible protein interactions, * identification of human and/or primate positive selection either in coding or in regulatory gene sequences, * manipulation of these human and/or primate accelerated evolutionary interacting proteins in human neurons derived from induced Pluripotent Stem Cells (iPSCs) * modeling predictions in drosophila and novel mouse transgenic models * validation of new druggable targets and markers as a proof-of-concept towards the prevention and cure of aging cognitive defects. The scientists will share results and know-how on Late-Onset Alzheimer Disease-Genome Wide Association Studies (LOAD-GWAS) gene discovery, comparative functional genomics in mouse and drosophila models, in mouse transgenic approaches, research on human induced pluripotent stem cells (hiPSC) and their differentiation in vitro and modeling pathways with emphasis on comparative and evolutionary aspects. The four European small to medium size enterprises (SMEs) involved will bring their complementary expertise and will ensure translation of project results to clinical application. | consortium, drug, drug development, brain, phenotype, presynaptic, protein network, postsynaptic, systems biology, synapse, neuron, protein interaction, network, induced pluripotent stem cell, pathway, genome wide association study, cognitive defect, gene, protein |
is listed by: Consortia-pedia is related to: Pasteur Institute of Lille; Lille; France is related to: Mouse Clinical Institute; Alsace; France is related to: Hybrigenics is related to: Inserm Transfert is related to: VIB; Flanders; Belgium is related to: Quretec is related to: Gene Bridges is related to: European Bioinformatics Institute is related to: Tel Aviv University; Ramat Aviv; Israel is related to: SIB Swiss Institute of Bioinformatics is related to: Babraham Institute has parent organization: National Institute of Health and Medical Research; Rennes; France has parent organization: Inserm Transfert |
European Union FP7 305299 | nlx_158132 | SCR_003825 | 2026-09-12 12:56:03 | 3 |
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