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| Resource Name | Proper Citation | Abbreviations | Resource Type |
Description |
Keywords | Resource Relationships | |||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
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Kawasaki Disease Dataset2 Resource Report Resource Website |
Kawasaki Disease Dataset2 (RRID:SCR_008839) | KD Data | data or information resource, data set | Dataset from an investigation of biochemical evidence of myocardial strain, oxidative stress, and cardiomyocyte injury in 55 acute KD subjects (30 with paired convalescent samples), 54 febrile control (FC), and 50 healthy control (HC) children by measuring concentrations of cardiovascular biomarkers. NT-proBNP and sST2 were elevated in acute KD subjects and correlated with impaired myocardial relaxation. These findings, combined with elevated levels of cTnI, suggest that both cardiomyocyte stress and cell death are associated with myocardial inflammation in acute KD. | kawasaki disease, nt-probnp, sst2, copeptin, ct-proet-1, mr-proadm, mr-proanp, pct, troponin i cardiac muscle, cardiovascular biomarker, cardiovascular, biomarker, child, acute, convalescent, febrile, ctni, myocardial inflammation, pediatric |
is used by: NIF Data Federation has parent organization: University of California at San Diego; California; USA |
Kawasaki disease, Normal | PMID:21777987 | nlx_144644 | http://neuinfo.org/nif/nifgwt.html?query=kawasaki&category=Data%20Type:Dataset | SCR_008839 | 2026-09-05 06:33:29 | 0 | ||||||
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Cardiovascular Model Repository Resource Report Resource Website |
Cardiovascular Model Repository (RRID:SCR_002679) | data or information resource, data repository, image collection, service resource, storage service resource | Repository of geometric models collected from on-going and past research projects in the Cardiovascular Biomechanics Research Laboratory at Stanford University. The geometric models are mostly built from imaging data of healthy and diseased individuals. For each of the models, a short description is given with a reference. The geometric models are in VTK PolyData XML .vtp format. * Audience: Biomechanical and computational researchers interested in complex models of cardiovascular applications * Long Term Goals and Related Uses: Allow users to download geometric models for cardiovascular applications. These geometric models can be used for research purposes, such as meshing and scientific visualization. Users are welcome to contact the project administrator, join the project and contribute additional models. | aneurysm, arteriofemoral bypass, cardiovascular simulation, image-based geometric modeling, simvascular, stent, vtk, healthy, diseased, normal, cardiovascular, model, cardiovascular model, cardiovascular system, bypass, palmaz-stent, aorta, source code |
is listed by: Biositemaps has parent organization: Simtk.org |
Normal, Cardiovascular disease, Healthy | Free, Available for download, Freely available | nif-0000-23301 | SCR_002679 | 2026-09-05 06:24:51 | 0 | ||||||||
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UMMC Center for Psychiatric Neuroscience Labs and Facilities Resource Report Resource Website |
UMMC Center for Psychiatric Neuroscience Labs and Facilities (RRID:SCR_002688) | UMMC CPN Labs & Facilities, UMMC CPN Labs and Facilities | biomaterial supply resource, brain bank, material resource, tissue bank | Core facility that provides access to psychiatrically characterized post-mortem brain specimens, state-of-the-art equipment, cutting-edge technologies and the technical advice of highly trained faculty members who serve as Core Directors. The sophisticated imaging systems and biotechnologically advanced molecular core resources are provided on a shared-use basis to CPN and UMMC researchers. The CPN Research Resources Cores include the Human Brain Collection Core, Animal Core, Imaging Core, Molecular Biology Core, and Information Technologies Core. | postmortem, brain, tissue, imaging, molecular biology, genomics |
is listed by: One Mind Biospecimen Bank Listing is listed by: ScienceExchange is related to: University of Mississippi Medical Center Labs and Facilities is related to: University of Mississippi Medical Center Animal Behavior Core Facility has parent organization: University of Mississippi Medical Center; Mississippi; USA |
Depression, Normal, Mental disease | NCRR | Free | SciEx_8930 | SCR_002688 | CPN Research Resource Cores, University of Mississippi Medical Center Center for Psychiatric Neuroscience, UMMC Center for Psychiatric Neuroscience Research Resource Cores, UMMC Center for Psychiatric Neuroscience Labs & Facilities, UMMC CPN Research Resource Cores | 2026-09-05 06:24:52 | 0 | |||||
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SomaticCall Resource Report Resource Website |
SomaticCall (RRID:SCR_001196) | SomaticCall | software resource | Software program that finds single-base differences (substitutions) between sequence data from tumor and matched normal samples. It is designed to be highly stringent, so as to achieve a low false positive rate. It takes as input a BAM file for each sample, and produces as output a list of differences (somatic mutations). Note: This software package is no longer supported and information on this page is provided for archival purposes only. | somatic mutation, substitution, sequence, bam, mutation |
is listed by: OMICtools has parent organization: Broad Institute |
Tumor, Cancer, Normal | OMICS_02155 | SCR_001196 | 2026-09-05 06:24:30 | 0 | ||||||||
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Capital Biosciences Resource Report Resource Website 1+ mentions |
Capital Biosciences (RRID:SCR_004879) | commercial organization | Biological products including Cell Immortalization Products, Clinically Defined Human Tissue, cDNA ORF Clones, Premade Adenoviruses, Purified Proteins, Viral Expression Systems and others as well as services like Custom Recombinant Adenovirus Production, Custom Recombinant Lentivirus Production, Protein Detection and Quantification and Stable Cell Line Production for academic and governmental research institutes, pharmaceutical and biotechnology industry. Capital Biosciences offers most types of human tissues, normal and diseased, with extensive clinical history and follow up information. Standard specimen format: Snap-frozen(flash-frozen), Formalin fixed and paraffin embedded (FFPE) tissues, Blood and blood products, Bone marrow, Total RNA, Genomic DNA, Total Proteins, Primary cell cultures, Viable frozen tissue. Tumor tissue samples include: Bladder cancer, Glioblastoma, Medulloblastoma, Breast Carcinoma, Cervical Cancer, Colorectal Cancer, Endometrial Cancer, Esophageal Cancer, Head and Neck (H&N) Carcinoma, Hepatocellular Carcinoma (HCC), Hodgkin's lymphoma, Kidney, Renal Cell Carcinoma, Lung Cancer, Non-Small Cell (NCSLC), Lung Cancer, Small Cell (SCLC), Melanoma, Mesothelioma, non-Hodgkin's Lymphoma, Ovarian Adenocarcinoma, Pancreatic Cancer, Prostate Cancer, Stomach Cancer. | cell immortalization, clinical, tissue, cdna orf clone, premade adenovirus, purified protein, viral expression, recombinant adenovirus, recombinant lentivirus, protein, detection, quantification, cell line, disease, formalin fixed and paraffin embedded, frozen, tissue, blood, blood product, bone marrow, rna, dna, protein, cell culture, tumor tissue | is listed by: One Mind Biospecimen Bank Listing | Normal, Cancer, Tumor, Bladder cancer, Glioblastoma, Medulloblastoma, Breast Carcinoma, Cervical Cancer, Colorectal Cancer, Endometrial Cancer, Esophageal Cancer, Head Carcinoma, Neck Carcinoma, Hepatocellular Carcinoma, Hodgkin's lymphoma, Kidney, Renal Cell Carcinoma, Lung Cancer, Non-Small Cell, Lung Cancer, Small Cell, Melanoma, Mesothelioma, Non-Hodgkin's Lymphoma, Ovarian Adenocarcinoma, Pancreatic Cancer, Prostate Cancer, Stomach Cancer | nlx_85333 | http://www.capitalbiosciences.com/category/show/tissue-human-clinically-defined.html | SCR_004879 | Capital Biosciences: innovative solutions for life sciences, Capital Biosciences Inc. | 2026-09-05 06:25:25 | 2 | |||||||
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SomaticSniper Resource Report Resource Website 100+ mentions |
SomaticSniper (RRID:SCR_005108) | SomaticSniper | software resource | Software program to identify single nucleotide positions that are different between tumor and normal (or, in theory, any two bam files). It takes a tumor bam and a normal bam and compares the two to determine the differences. It outputs a file in a format very similar to Samtools consensus format. It uses the genotype likelihood model of MAQ (as implemented in Samtools) and then calculates the probability that the tumor and normal genotypes are different. This probability is reported as a somatic score. The somatic score is the Phred-scaled probability (between 0 to 255) that the Tumor and Normal genotypes are not different where 0 means there is no probability that the genotypes are different and 255 means there is a probability of 1 ? 10(255/-10) that the genotypes are different between tumor and normal. This is consistent with how the SAM format reports such probabilities. It is currently available as source code via github or as a Debian APT package. |
is listed by: OMICtools has parent organization: Washington University in St. Louis; Missouri; USA |
Cancer, Tumor, Normal | PMID:22155872 | Acknowledgement requested | OMICS_00092 | SCR_005108 | 2026-09-05 06:25:29 | 152 | |||||||
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SomaticIndelDetector Resource Report Resource Website 50+ mentions |
SomaticIndelDetector (RRID:SCR_005107) | SomaticIndelDetector | software resource | Tool for calling indels in Tumor-Normal paired sample mode. | cancer-specific variant discovery tool, variant, tumor, normal, bam, indel |
is listed by: OMICtools has parent organization: Broad Institute |
Cancer, Tumor, Normal | OMICS_00091 | SCR_005107 | 2026-09-05 06:25:29 | 82 | ||||||||
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IXI dataset Resource Report Resource Website 10+ mentions |
IXI dataset (RRID:SCR_005839) | IXI dataset | data or information resource, data set, portal, project portal | Data set of nearly 600 MR images from normal, healthy subjects, along with demographic characteristics, collected as part of the Information eXtraction from Images (IXI) project available for download. Tar files containing T1, T2, PD, MRA and DTI (15 directions) scans from these subjects are available. The data has been collected at three different hospitals in London: * Hammersmith Hospital using a Philips 3T system * Guy''s Hospital using a Philips 1.5T system * Institute of Psychiatry using a GE 1.5T system | neuroimaging, structural mri assay, magnetic resonance angiography, nifti, t1, t2, pd, dti, demographic, normal, healthy, adult, mri, brain, image collection |
is used by: NIF Data Federation has parent organization: Imperial College London; London; United Kingdom |
Normal, Healthy | EPSRC GR/S21533/02 | Acknowledgement requested | nlx_149360 | http://brain-development.org/ | SCR_005839 | Information eXtraction from Images dataset | 2026-09-05 06:25:42 | 38 | ||||
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The Human Protein Atlas Resource Report Resource Website 5000+ mentions |
The Human Protein Atlas (RRID:SCR_006710) | HPA | data or information resource, knowledge base | Open access resource for human proteins. Used to search for specific genes or proteins or explore different resources, each focusing on particular aspect of the genome-wide analysis of the human proteins: Tissue, Brain, Single Cell, Subcellular, Cancer, Blood, Cell line, Structure and Interaction. Swedish-based program to map all human proteins in cells, tissues, and organs using integration of various omics technologies, including antibody-based imaging, mass spectrometry-based proteomics, transcriptomics, and systems biology. All the data in the knowledge resource is open access to allow scientists both in academia and industry to freely access the data for exploration of the human proteome. | human proteins, human proteome exploration, genome-wide analysis of human proteins, Tissue, Brain, Single Cell, Subcellular, Cancer, Blood, Cell line, Structure and Interaction, bio.tools, FASEB list |
is used by: MitoMiner is listed by: re3data.org is listed by: bio.tools is listed by: Debian is related to: aGEM has parent organization: HUPO Antibody Initiative |
Cancer, Tumor, Breast cancer, Colorectal cancer, Lung cancer, Prostate cancer, Normal | Knut and Alice Wallenberg Foundation | PMID:21139605 PMID:16127175 PMID:18669619 PMID:18853439 |
Public, Free, For informational purposes, Non-commercial, Acknowledgement required | nif-0000-00204, biotools:proteinatlas | https://bio.tools/proteinatlas | SCR_006710 | HPA antibody, Human Protein Atlas | 2026-09-05 06:25:59 | 9312 | |||
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National NeuroAIDS Tissue Consortium Resource Report Resource Website 10+ mentions |
National NeuroAIDS Tissue Consortium (RRID:SCR_007323) | NNTC | biomaterial supply resource, brain bank, material resource, tissue bank | Collects, stores, and distributes samples of nervous tissue, cerebrospinal fluid, blood, and other tissue from HIV-infected individuals. The NNTC mission is to bolster research on the effects of HIV infection on human brain by providing high-quality, well-characterized tissue samples from patients who died with HIV, and for whom comprehensive neuromedical and neuropsychiatric data were gathered antemortem. Researchers can request tissues from patients who have been characterized by: * degree of neurobehavioral impairment * neurological and other clinical diagnoses * history of drug use * antiretroviral treatments * blood and CSF viral load * neuropathological diagnosis The NNTC encourages external researchers to submit tissue requests for ancillary studies. The Specimen Query Tool is a web-based utility that allows researchers to quickly sort and identify appropriate NNTC specimens to support their research projects. The results generated by the tool reflect the inventory at a previous time. Actual availability at the local repositories may vary as specimens are added or distributed to other investigators. | human immunodeficiency virus, nervous tissue, cerebral spinal fluid, blood, tissue, brain, neuromedical data, neuropsychiatric data, tissue, plasma, peripheral blood mononuclear cell, serum, urine, spinal cord, nervous tissue, pituitary gland, trigeminal ganglia, dorsal root ganglion, peripheral nerve, lymph node, liver, spleen, adipose tissue, bone marrow, muscle, hair, heart, thymus, kidney, lung, eye, brain, ante-mortem, post-mortem, normal, subsyndromic, minor cognitive motor disorder, hiv - associated dementia, cytomegalovirus encephalitis, neurological impairment, traumatic brain injury, neurocognitive disease, frozen, fixed, aids, one mind tbi, asymptomatic neurocognitive impairment, minor cognitive disorder, gene array, snp |
is listed by: One Mind Biospecimen Bank Listing is related to: Manhattan HIV Brain Bank is related to: CHARTER - CNS HIV Antiretroviral Therapy Effects Research |
Human immunodeficiency virus, Neurocognitive disease, Normal, Subsyndromic, Minor Cognitive Motor Disorder, HIV - Associated Dementia, Cytomegalovirus Encephalitis, Neurological impairment, Infectious disease | NIMH ; NINDS ; NIH Blueprint for Neuroscience Research |
Public: The NNTC encourages external researchers to submit tissue requests for ancillary studies. | nif-0000-00193 | SCR_007323 | nntc.org, nntc | 2026-09-05 06:26:10 | 13 | |||||
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DGAP Resource Report Resource Website 1+ mentions |
DGAP (RRID:SCR_003036) | DGAP | data or information resource, database, experimental protocol, narrative resource, resource | Produce resources to unravel the interface between insulin action, insulin resistance and the genetics of type 2 diabetes including an annotated public database, standardized protocols for gene expression and proteomic analysis, and ultimately diabetes-specific and insulin action-specific DNA chips for investigators in the field. The project aims to identify the sets of the genes involved in insulin action and the predisposition to type 2 diabetes, as well as the secondary changes in gene expression that occur in response to the metabolic abnormalities present in diabetes. There are five major and one pilot project involving human and rodent tissues that are designed to: * Create a database of the genes expressed in insulin-responsive tissues, as well as accessible tissues, that are regulated by insulin, insulin resistance and diabetes. * Assess levels and patterns of gene expression in each tissue before and after insulin stimulation in normal and genetically-modified rodents; normal, insulin resistant and diabetic humans, and in cultured and freshly isolated cell models. * Correlate the level and patterns of expression at the mRNA and/or protein level with the genetic and metabolic phenotype of the animal or cell. * Generate genomic sequence from a panel of humans with type 2 diabetes focusing on the genes most highly regulated by insulin and diabetes to determine the range of sequence and expression variation in these genes and the proteins they encode, which might affect the risk of diabetes or insulin resistance. The DGAP project will define: * the normal anatomy of gene expression, i.e. basal levels of expression and response to insulin. * the morbid anatomy of gene expression, i.e., the impact of diabetes on expression patterns and the insulin response. * the extent to which genetic variability might contribute to the alterations in expression or to diabetes itself. | gene, insulin action, predisposition, gene expression, metabolic abnormality, diabetes, insulin resistance, genetics, insulin, genetic variation, proteomics, genomics, affymetrix oligonucleotide array, microarray, protein, genomic sequence, data set |
is related to: NIDDK Information Network (dkNET) has parent organization: Harvard Medical School; Massachusetts; USA has parent organization: Broad Institute has parent organization: Dana-Farber Cancer Institute has parent organization: University of Massachusetts Medical School; Massachusetts; USA has parent organization: University of Southern Denmark; Odense; Denmark |
Type 2 diabetes, Normal, Insulin resistance | NIDDK | PMID:19786482 | THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-30414 | SCR_003036 | The Diabetes Genome Anatomy Project, Diabetes Genome Anatomy Project | 2026-09-05 06:24:57 | 9 | ||||
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CCHMC Pediatric Brain Templates Resource Report Resource Website 1+ mentions |
CCHMC Pediatric Brain Templates (RRID:SCR_003276) | Pediatric Brain Templates | atlas, data or information resource, image collection, reference atlas | Brain imaging data collected from a large population of normal, healthy children that have been used to construct pediatric brain templates, which can be used within statistical parametric mapping for spatial normalization, tissue segmentation and visualization of imaging study results. The data has been processed and compiled in various ways to accommodate a wide range of possible research approaches. The templates are made available free of charge to all interested parties for research purposes only. When processing imaging data from children, it is important to take into account the fact that the pediatric brain differs significantly from the adult brain. Therefore, optimized processing requires appropriate reference data be used because adult reference data will introduce a systematic bias into the results. We have shown that, in the in the case of spatial normalization, the amount of non-linear deformation is dramatically less when a pediatric template is used (left, see also HBM 2002; 17:48-60). We could also show that tissue composition is substantially different between adults and children, and more so the younger the children are (right, see also MRM 2003; 50:749-757). We thus believe that the use of pediatric reference data might be more appropriate. | brain, child, human, normal, pediatric, spatial normalization, template, tissue segmentation, visualization, young human, neuroimaging | is related to: SPM | Normal, Healthy | Free, Freely available | nif-0000-01274 | https://jiscmail.ac.uk/cgi-bin/wa-jisc.exe?A2=SPM;981fd215.02 | SCR_003276 | 2026-09-05 06:25:00 | 3 | ||||||
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NIH MRI Study of Normal Brain Development Resource Report Resource Website 1+ mentions |
NIH MRI Study of Normal Brain Development (RRID:SCR_003394) | Pediatric MRI Study | data or information resource, data set, experimental protocol, narrative resource | Data sets of clinical / behavioral and image data are available for download by qualified researchers from a seven year, multi-site, longitudinal study using magnetic resonance technologies to study brain maturation in healthy, typically-developing infants, children, and adolescents and to correlate brain development with cognitive and behavioral development. The information obtained in this study is expected to provide essential data for understanding the course of normal brain development as a basis for understanding atypical brain development associated with a variety of developmental, neurological, and neuropsychiatric disorders affecting children and adults. This study enrolled over 500 children, ranging from infancy to young adulthood. The goal was to study each participant at least three times over the course of the project at one of six Pediatric Centers across the United States. Brain MR and clinical/behavioral data have been compiled and analyzed at a Data Coordinating Center and Clinical Coordinating Center. Additionally, MR spectroscopy and DTI data are being analyzed. The study was organized around two objectives corresponding to two age ranges at the time of enrollment, each with its own protocols. * Objective 1 enrolled children ages 4 years, 6 months through 18 years (total N = 433). This sample was recruited across the six Pediatric Study Centers using community based sampling to reflect the demographics of the United States in terms of income, race, and ethnicity. The subjects were studied with both imaging and clinical/behavioral measures at two year intervals for three time points. * Objective 2 enrolled newborns, infants, toddlers, and preschoolers from birth through 4 years, 5 months, who were studied three or more times at two Pediatric Study Centers at intervals ranging from three months for the youngest subjects to one year as the children approach the Objective 1 age range. Both imaging and clinical/behavioral measures were collected at each time point. Participant recruitment used community based sampling that included hospital venues (e.g., maternity wards and nurseries, satellite physician offices, and well-child clinics), community organizations (e.g., day-care centers, schools, and churches), and siblings of children participating in other research at the Pediatric Study Centers. At timepoint 1, of those enrolled, 114 children had T1 scans that passed quality control checks. Staged data release plan: The first data release included structural MR images and clinical/behavioral data from the first assessments, Visit 1, for Objective 1. A second data release included structural MRI and clinical/behavioral data from the second visit for Objective 1. A third data release included structural MRI data for both Objective 1 and 2 and all time points, as well as preliminary spectroscopy data. A fourth data release added cortical thickness, gyrification and cortical surface data. Yet to be released are longitudinally registered anatomic MRI data and diffusion tensor data. A collaborative effort among the participating centers and NIH resulted in age-appropriate MR protocols and clinical/behavioral batteries of instruments. A summary of this protocol is available as a Protocol release document. Details of the project, such as study design, rationale, recruitment, instrument battery, MRI acquisition details, and quality controls can be found in the study protocol. Also available are the MRI procedure manual and Clinical/Behavioral procedure manuals for Objective 1 and Objective 2. | young human, child, pediatric, experimental protocol, brain, brain development, development, mri, minc, clinical, behavior, anatomical mri, diffusion tensor imaging, mr spectroscopy, adolescent, clinical data, behavioral data, data visualization software, clinical measure, behavioral measure, physical neurological examination, behavioral rating, neuropsychological testing, structured psychiatric interview, hormonal measure, image collection, neonate, clinical neuroinformatics, dicom, minc2, magnetic resonance, nifti |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is listed by: Biositemaps is listed by: NIH Data Sharing Repositories is related to: NIH Data Sharing Repositories has parent organization: National Institutes of Health |
Healthy, Normal | NICHD ; NIDA ; NIMH ; NINDS ; NIH Blueprint for Neuroscience Research |
THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-00201 | http://www.bic.mni.mcgill.ca/nihpd/info/, https://nihpd.crbs.ucsd.edu/nihpd/info/index.html | SCR_003394 | NIH Pediatric MRI Data Repository, Pediatric MRI Data Repository | 2026-09-05 06:25:02 | 6 | ||||
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MGH-USC Human Connectome Project Resource Report Resource Website 100+ mentions |
MGH-USC Human Connectome Project (RRID:SCR_003490) | MGH/UCLA HCP | data or information resource, instrument manufacture, material service resource, portal, production service resource, service resource | A multi-center project comprising two distinct consortia (Mass. Gen. Hosp. and USC; and Wash. U. and the U. of Minn.) seeking to map white matter fiber pathways in the human brain using leading edge neuroimaging methods, genomics, architectonics, mathematical approaches, informatics, and interactive visualization. The mapping of the complete structural and functional neural connections in vivo within and across individuals provides unparalleled compilation of neural data, an interface to graphically navigate this data and the opportunity to achieve conclusions about the living human brain. The HCP is being developed to employ advanced neuroimaging methods, and to construct an extensive informatics infrastructure to link these data and connectivity models to detailed phenomic and genomic data, building upon existing multidisciplinary and collaborative efforts currently underway. Working with other HCP partners based at Washington University in St. Louis they will provide rich data, essential imaging protocols, and sophisticated connectivity analysis tools for the neuroscience community. This project is working to achieve the following: 1) develop sophisticated tools to process high-angular diffusion (HARDI) and diffusion spectrum imaging (DSI) from normal individuals to provide the foundation for the detailed mapping of the human connectome; 2) optimize advanced high-field imaging technologies and neurocognitive tests to map the human connectome; 3) collect connectomic, behavioral, and genotype data using optimized methods in a representative sample of normal subjects; 4) design and deploy a robust, web-based informatics infrastructure, 5) develop and disseminate data acquisition and analysis, educational, and training outreach materials. | human, structural, functional, neural, white matter, fiber, brain, in vivo, genomic, neuroimaging, visualization, neuroanatomy, genotype, connectivity, connectivity model, neural pathway, phenomic, connectomics, quantification, scanner, eeg, meg, shape analysis, spatial transformation, diffusion spectrum, q-ball, tensor metric, fiber tracking, connectome, behavior, scanner, web resource, diffusion spectrum, q-ball, tensor metric, quantification, shape analysis, spatial transformation, fiber tracking, FASEB list |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is listed by: Biositemaps has parent organization: Laboratory of Neuro Imaging has parent organization: Harvard Medical School; Massachusetts; USA has parent organization: NIH Human Connectome Project is parent organization of: USC Multimodal Connectivity Database |
Normal | NIH ; NIH Blueprint for Neuroscience Research |
Open unspecified license, (BSD/MIT-Style), LONI Software License, Public Domain | nif-0000-35789 | http://www.nitrc.org/projects/hcp_mgh-ucla | SCR_003490 | Harvard/MGH-UCLA Human Connectome Project, Harvard/MGH-UCLA Consortium: Human Connectome Project, HCP Harvard/MGH-UCLA, MGH/UCLA Consortium: Human Connectome Project | 2026-09-05 06:25:04 | 186 | ||||
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Zebrafish Atlas Resource Report Resource Website 1+ mentions |
Zebrafish Atlas (RRID:SCR_006722) | Zebrafish Atlas | atlas, data or information resource, reference atlas | Atlas containing 2- and 3-dimensional, anatomical reference slides of the lifespan of the zebrafish to support research and education worldwide. Hematoxylin and eosin histological slides, at various points in the lifespan of the zebrafish, have been scanned at 40x resolution and are available through a virtual slide viewer. 3D models of the organs are reconstructed from plastic tissue sections of embryo and larvae. The size of the zebrafish, which allows sections to fall conveniently within the dimensions of the common 1 x 3 glass slide, makes it possible for this anatomical atlas to become as high resolution as for any vertebrate. That resolution, together with the integration of histology and organ anatomy, will create unique opportunities for comparisons with both smaller and larger model systems that each have their own strengths in research and educational value. The atlas team is working to allow the site to function as a scaffold for collaborative research and educational activity across disciplines and model organisms. The Zebrafish Atlas was created to answer a community call for a comprehensive, web-based, anatomical and pathological atlas of the zebrafish, which has become one of the most widely used vertebrate animal models globally. The experimental strengths of zebrafish as a model system have made it useful for a wide range of investigations addressing the missions of the NIH and NSF. The Zebrafish Atlas provides reference slides for virtual microscopic viewing of the zebrafish using an Internet browser. Virtual slide technology allows the user to choose their own field of view and magnification, and to consult labeled histological sections of zebrafish. We are planning to include a complete set of embryos, larvae, juveniles, and adults from approximately 25 different ages. Future work will also include a variety of comparisons (e.g. normal vs. mutant, normal vs. diseased, multiple stages of development, zebrafish with other organisms, and different types of cancer)., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025. | embryo, eosin, expression, genetic, adult, anatomical, anatomy, cancer, development, hematoxylin, histological, histology, juvenile, larvae, lifespan, model, slide, sagittal, coronal, transverse, stage, embryonic zebrafish, juvenile zebrafish, immature zebrafish, larval zebrafish, young zebrafish, adult zebrafish | has parent organization: Pennsylvania State University | Normal, Mutant, Cancer | NCRR | THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-24352 | SCR_006722 | Penn State Zebrafish Atlas, Zebrafish Atlas - A Lifespan Atlas of the Zebrafish, PSU Zebrafish Atlas | 2026-09-05 06:30:42 | 3 | |||||
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McConnell Brain Imaging Center MNI Cynomolgus Macaque Atlas Resource Report Resource Website |
McConnell Brain Imaging Center MNI Cynomolgus Macaque Atlas (RRID:SCR_008793) | MNI Cynomolgus Macaque Atlas | atlas, data or information resource, reference atlas | A reference atlas of cynomolgus macaque monkey magnetic resonance images. The template brain volume that offers a common stereotaxic reference frame to localize anatomical and functional information in an organized and reliable way for comparison across individual cynomolgus monkeys and studies. We have used MRI volumes from a group of 18 normal adult cynomulgus monkeys (Macaca fascicularis) to create the individual atlas. Thus, the atlas does not rely on the anatomy of a single subject, but instead depends on nonlinear normalization of numerous cynomolgus monkey brains mapped to an average template image that is faithful to the location of anatomical structures. Tools for registering a native MRI to the cynomolgus macaque atlas can be found in the Software section. Viewing the atlas and associated volumes online requires Java browser support. Additionally, you may download the atlas and associated files in your chosen format. | long-tailed macaque, brain, early adult, mri, neuroanatomy | has parent organization: McConnell Brain Imaging Center | Normal | PMID:21256229 | nlx_144294 | SCR_008793 | BIC MNI Cynomolgus Macaque Atlas | 2026-09-05 06:30:44 | 0 | ||||||
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3D DTI Atlas of the Rat Brain In Postnatal Day 5 14 and Adulthood Resource Report Resource Website 1+ mentions |
3D DTI Atlas of the Rat Brain In Postnatal Day 5 14 and Adulthood (RRID:SCR_009437) | 3D DTI Atlas of the Rat Brain | atlas, data or information resource, reference atlas | 3D DTI anatomical rat brain atlases have been created by the UNC- Chapel Hill Department of Psychiatry and the CAMID research collaboration. There are three age groups, postnatal day 5, postnatal day 14, and postnatal day 72. The subjects were Sprague-Dawley rats that were controls in a study on cocaine abuse and development. The P5 and P14 templates were made from scans of twenty rats each (ten female, ten male); the P72, from six females. The individual cases have been resampled to isotropic resolution, manually skull-stripped, and deformably registered via an unbiased atlas building method to create a template for each age group. Each template was then manually segmented using itk-SNAP software. Each atlas is made up of 3 files, a template image, a segmentation, and a label file. | magnetic resonance, adult rat, newborn rat, infant rat, young rat, sprague dawley, male, female |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: University of North Carolina at Chapel Hill; North Carolina; USA |
Control, Normal | UNC Neurodevelopment Disorders Research Center ; NICHD HD 03110; NINDS R41 NS059095; NIDA IP01DA022446-02 |
nlx_155577 | SCR_009437 | 3-Dimensional Diffusion Tensor Imaging (DTI) Atlas of the Rat Brain In Postnatal Day 5 14 and Adulthood | 2026-09-05 06:30:45 | 2 | ||||||
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Synapse Resource Report Resource Website 1000+ mentions |
Synapse (RRID:SCR_006307) | Synapse | data or information resource, data repository, database, service resource, storage service resource | A cloud-based collaborative platform which co-locates data, code, and computing resources for analyzing genome-scale data and seamlessly integrates these services allowing scientists to share and analyze data together. Synapse consists of a web portal integrated with the R/Bioconductor statistical package and will be integrated with additional tools. The web portal is organized around the concept of a Project which is an environment where you can interact, share data, and analysis methods with a specific group of users or broadly across open collaborations. Projects provide an organizational structure to interact with data, code and analyses, and to track data provenance. A project can be created by anyone with a Synapse account and can be shared among all Synapse users or restricted to a specific team. Public data projects include the Synapse Commons Repository (SCR) (syn150935) and the metaGenomics project (syn275039). The SCR provides access to raw data and phenotypic information for publicly available genomic data sets, such as GEO and TCGA. The metaGenomics project provides standardized preprocessed data and precomputed analysis of the public SCR data. | data sharing, collaboration, data management, analysis, genome, phenotype, crowd sourcing, open data, provenance, resource management, annotation, authoring, markup, r, python, java, command-line, cloud, FASEB list |
is used by: NF Data Portal is listed by: FORCE11 is listed by: DataCite is listed by: re3data.org is related to: clearScience is related to: Exemplar Microscopy Images of Tissues has parent organization: Sage Bionetworks |
Cancer, Normal, Cardiovascular disease, Floppy hat syndrome | Life Sciences Discovery Fund ; NCI ; NHLBI ; Alfred P. Sloan Foundation |
The community can contribute to this resource | nlx_151983, DOI:10.17616/R3B934, r3d100011894, DOI:10.7303 | https://doi.org/10.17616/R3B934, https://doi.org/10.48550/arxiv.1506.00272, https://doi.org/10.7303/, https://dx.doi.org/10.7303, https://doi.org/10.17616/R3B934 | SCR_006307 | 2026-09-05 06:30:00 | 1104 | |||||
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Cell Line Ontology by Mahadevan Resource Report Resource Website |
Cell Line Ontology by Mahadevan (RRID:SCR_010281) | MCCL | controlled vocabulary, data or information resource, ontology | A comprehensive ontology on primary and established cell lines-both normal and pathologic. It covers around 400 cell lines. This ontology has been built to include the major domains in the field of biology like anatomy, bio-molecules, chemicals and drugs, pathological conditions and genetic variations around the cell lines. An extensive network of relations has been built across these concepts to enable different combinations of queries. The ontology covers all cell lines from major sources like ATCC, DSMZ, ECACC, ICLC etc. and is built in OWL format. | owl, cell line | is listed by: BioPortal | Normal, Pathologic | nlx_157356 | SCR_010281 | Cell Line Ontology (by Mahadevan) | 2026-09-05 06:30:03 | 0 | |||||||
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UCL Biobank Resource Report Resource Website |
UCL Biobank (RRID:SCR_000517) | UCL Biobank | biomaterial supply resource, material resource | Two University College London (UCL) biobanks, one based at the Royal Free Hospital (RFH) Campus and the other based at Bloomsbury supporting Pathology and the Cancer Institute, will act as physical repositories for collections of biological samples and data from patients consented at UCLH, Partners Hospitals and external sources. This will incorporate collections of existing stored samples and new collections. UCL-RFH BioBank, the physical repository at the Royal Free, presents a unique opportunity to advance medical research through making access to research tissue easier, faster and much more efficient. The BioBank is both a physical repository, with capacity for up to 1 million cryogenically stored samples and a virtual repository for all tissue, cell, plasma, serum, DNA and RNA samples stored throughout UCLP. In particular, samples considered "relevant material", such as tissues and cells, that are licensed by the Human Tissue Authority, can be stored long term. Existing holdings of tissues and cells where appropriate can be transferred to the Physical BioBank at the Royal Free. UCL - Royal Free BioBank provides a flexible approach to banking, allowing the Depositor to pick and choose services that are tailored to fit their requirements. Collaborations arising from publicizing of the existence of the holdings are entirely at the discretion of the depositor, as the facility ensures that access to the deposits remains at the decision of the Depositor/User. UCL Biobank for studying Health and Disease (based at Pathology-Rockefeller building and the UCL-Cancer Institute will support projects principally involved in the study of human disease. The aim is to support primarily, research in the Pathology Department, UCLH and the UCL-Cancer Institute but it will also support other UCLH partners. The biobank will store normal and pathological specimens, surplus to diagnostic requirements, from relevant tissues and bodily fluids. Stored tissues will include; snap-frozen or cryopreserved tissue, formalin-fixed tissue, paraffin-embedded tissues, and slides prepared for histological examination. Tissues will include resection specimens obtained surgically or by needle core biopsy. Bodily fluids will include; whole blood, serum, plasma, urine, cerebrospinal fluid, milk, saliva and buccal smears and cytological specimens such as sputum and cervical smears. Fine needle aspirates obtained from tissues and bodily cavities (e.g. pleura and peritoneum) will also be collected. Where appropriate the biobank will also store separated cells, protein, DNA and RNA isolated from collected tissues and bodily fluids described above. Some of the tissue and aspirated samples will be stored in the diagnostic archive. | tissue, cell, plasma, serum, dna, rna, blood, serum, plasma, urine, cerebral spinal fluid, milk, saliva, buccal smear, sputum, cervical smear, pleura, peritoneum, protein, body fluid, cryopreserved, frozen, snap-frozen, formalin-fixed, paraffin-embedded, slide, cancer, disease, normal |
is listed by: One Mind Biospecimen Bank Listing has parent organization: University College London; London; United Kingdom |
Cancer, Disease, Normal | THIS RESOURCE IS NO LONGER IN SERVICE | nlx_36620 | SCR_000517 | Biobanking at UCL | 2026-09-05 06:32:21 | 0 |
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