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SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.
| Resource Name | Proper Citation | Abbreviations | Resource Type |
Description |
Keywords | Resource Relationships | |||||||||||||
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Southwestern NMR Center for In Vivo Metabolism Resource Report Resource Website 1+ mentions |
Southwestern NMR Center for In Vivo Metabolism (RRID:SCR_001429) | Southwestern NMR Center | training resource, biomedical technology research center | Biomedical technology research center that develops and applies new methods for analysis of metabolic networks in intact tissues, animals and human patients. The importance of understanding abnormal metabolism in common diseases such as cancer, diabetes and heart disease has long been appreciated. Because of constraints in technology, however, much of this research has been conducted in isolated systems where clinical relevance may be uncertain. Progress in magnetic resonance technology provides a foundation for major advances towards new ways of imaging metabolism in patients. These new techniques offer the advantage of imaging biochemical pathways without radiation. The focus of this Resource is to bring these technologies to a level where clinical research is feasible through the development of new MR contrast agents, NMR spectroscopy at high fields, and imaging of hyperpolarized 13C. | metabolic network, tissue, imaging, metabolism, nuclear magnetic resonance, magnetic resonance, nuclear magnetic resonance spectroscopy | has parent organization: University of Texas Southwestern Medical Center; Texas; USA | Cancer, Diabetes, Heart disease | NIBIB 5P41EB015908-28 | Free, Freely Available | nlx_152653 | SCR_001429 | Southwestern NMR Center for in vivo Metabolism - NIBIB | 2026-08-03 09:31:22 | 1 | |||||
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MIT/ Harvard Center for Magnetic Resonance Resource Report Resource Website |
MIT/ Harvard Center for Magnetic Resonance (RRID:SCR_001412) | CMR | access service resource, training resource, service resource, biomedical technology research center | Biomedical technology research center designated as a biotechnology nuclear magnetic resonance (NMR) resource that hosts research efforts into cancer, neurological diseases, and many other areas. The heart of the 900 MHz magnetic resonance instrument is a superconducting magnet with a field strength of 21 Tesla, the highest field currently available for magnetic resonance spectroscopy, roughly 400,000 times stronger than the earth's magnetic field. Magnetic resonance is a powerful tool for determining the structure of molecules, and has proven especially useful for elucidating the role of proteins in biological processes and diseases. The state of the art facility includes two 17.6 T magnets with a third to be delivered in 2000. With multiple 17.6 T NMR magnets, the CMR is a valuable resource in New England and will continue to serve this research community for years to come. The advent of high magnetic fields has placed demands on the hardware needed to run experiments in these very high fields. The CMR has recently produced new advances in NMR probe technology, in electron magnetic resonance, and in using microwaves to enhance NMR experiments. The results are powerful new methods for performing biological research and they are looking forward to the continued growth of these exciting new areas! | magnet, spectrometer, nuclear magnetic resonance, magnetic resonance spectrometer | has parent organization: Massachusetts Institute of Technology; Massachusetts; USA; | NIBIB 5P41EB002026-41 | nlx_152635 | SCR_001412 | MIT/ Harvard Center for Magnetic Resonance 900 MHz NMR Facility, MIT/ Harvard Center for Magnetic Resonance (CMR) 900 MHz NMR Facility, MIT/Harvard Center for Magnetic Resonance | 2026-08-03 09:31:19 | 0 | |||||||
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National Resource for Imaging Mass Spectrometry Resource Report Resource Website 1+ mentions |
National Resource for Imaging Mass Spectrometry (RRID:SCR_001416) | NRIMS | training resource, biomedical technology research center | Biomedical technology research center with the focus on the application to biomedical research of a new generation of secondary ion mass spectrometer (SIMS), the Multi-Isotope Imaging Mass Spectrometer (MIMS). MIMS is an ion microscope and an ion counter. MIMS provides high mass separation at high transmission (M/lambdaM > 10,000), high spatial resolution (< 40 nm) and has the unique capability of simultaneously recording several atomic mass images. Of the utmost importance, MIMS makes it possible for the first time (and at the intracellular level) to simultaneously image the distribution and measure the accumulation of molecules labeled with any isotopes, in particular with stable isotopes, for example with 15N. Thus, MIMS allows one to study localization, accumulation and turnover of proteins, fats, sugars and foreign molecules in cellular microdomains, donor-receiver cellular trafficking, stem cell nesting and localization of drugs. Their aim is to be a technological, methodological, and intellectual resource for researchers from a variety of disciplines. They seek to explore and develop the unique capabilities of MIMS and to bring cutting-edge information to biology and medicine that is currently unobtainable using existing technologies. | mass spectrometer, mass spectrometery, ion microscope, ion counter, imaging, ion, molecule | has parent organization: Harvard Medical School; Massachusetts; USA | NIBIB P41 EB001974-13 | nlx_152638 | SCR_001416 | 2026-08-03 09:31:19 | 7 | ||||||||
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EEG Motor Movement/Imagery Dataset Resource Report Resource Website 1+ mentions |
EEG Motor Movement/Imagery Dataset (RRID:SCR_004858) | EEG Motor Movement/Imagery Dataset | data or information resource, data set | Data set of over 1500 one- and two-minute EEG recordings, obtained from 109 volunteers. Subjects performed different motor/imagery tasks while 64-channel EEG were recorded using the BCI2000 system (http://www.bci2000.org). Each subject performed 14 experimental runs: two one-minute baseline runs (one with eyes open, one with eyes closed), and three two-minute runs of each of the four following tasks: # A target appears on either the left or the right side of the screen. The subject opens and closes the corresponding fist until the target disappears. Then the subject relaxes. # A target appears on either the left or the right side of the screen. The subject imagines opening and closing the corresponding fist until the target disappears. Then the subject relaxes. # A target appears on either the top or the bottom of the screen. The subject opens and closes either both fists (if the target is on top) or both feet (if the target is on the bottom) until the target disappears. Then the subject relaxes. # A target appears on either the top or the bottom of the screen. The subject imagines opening and closing either both fists (if the target is on top) or both feet (if the target is on the bottom) until the target disappears. Then the subject relaxes. The data are provided here in EDF+ format (containing 64 EEG signals, each sampled at 160 samples per second, and an annotation channel). | eeg, recording, motor, movement, imagery, eyes open, eyes closed, task, open fist, closed fist | has parent organization: PhysioNet | NIBIB EB006356; NIBIB EB00856 |
PMID:15188875 | Acknowledgement requested | nlx_84003 | SCR_004858 | EEG Motor Movement / Imagery Dataset | 2026-08-03 09:32:32 | 4 | |||||
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National Resource for Quantitative Functional MRI Resource Report Resource Website 1+ mentions |
National Resource for Quantitative Functional MRI (RRID:SCR_006716) | Resource for Quantitative Functional MRI | training resource, biomedical technology research center | Biomedical technology research center that provides expertise for the design of quantitative magnetic resonance imaging (MRI) and spectroscopy (MRS) data acquisition and processing technologies that facilitate the biomedical research of a large community of clinicians and neuroscientists in Maryland and throughout the USA. These methods allow noninvasive assessment of changes in brain anatomy as well as in tissue metabolite levels, physiology, and brain functioning while the brain is changing size during early development and during neurodegeneration, i.e. the changing brain throughout the life span. The Kirby Center has 3 Tesla and 7 Tesla state of the art scanners equipped with parallel imaging (8, 16, and 32-channel receive coils) and multi-transmit capabilities. CIS has an IBM supercomputer that is part of a national supercomputing infrastructure. Resources fall into the following categories: * MRI facilities, image acquisition, and processing * Computing facilities and image analysis * Novel statistical methods for functional brain imaging * Translating laboratory discoveries to patient treatment | quantitative magnetic resonance imaging, magnetic resonance spectroscopy, mri, fmri, function, metabolism, physiology, brain, neurodevelopment, neurodegeneration, image acquisition, image processing, computing, image analysis, statistical method, neuroimaging, development |
has parent organization: Kennedy Krieger Institute has parent organization: Johns Hopkins University; Maryland; USA |
NIBIB P41 EB015909; NCRR P41 RR015241 |
nlx_152634 | http://mri.kennedykrieger.org/nationalresource/index.html | SCR_006716 | Resource for Quantitative Functional Magnetic Resonance Imaging | 2026-08-03 09:33:13 | 1 | ||||||
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Waxholm Space Atlas of the Sprague Dawley Rat Brain Resource Report Resource Website 10+ mentions |
Waxholm Space Atlas of the Sprague Dawley Rat Brain (RRID:SCR_017124) | WHS-SD-atlas | waxholm atlas, data or information resource, atlas | Open access volumetric atlas of anatomical delineations of rat brain based on structural contrast in isotropic magnetic resonance and diffusion tensor images acquired ex vivo from 80 day old male Sprague Dawley rat at Duke Center for In Vivo Microscopy. Spatial reference is provided by Waxholm Space coordinate system. Location of bregma and lambda are identified as anchors towards stereotaxic space. Application areas include localization of signal in non structural images. Atlas, MRI and DTI volumes, and diffusion tensor data are shared in NIfTI format. | volumetric, atlas, anatomical, delineation, rat, brain, structural, contrast, isotropic, MIR, DTI, male, Sprague Dawley, image |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is related to: ITK-SNAP is related to: PMOD Software is related to: Duke University; North Carolina; USA has parent organization: University of Oslo; Oslo; Norway works with: MeshView works with: VisuAlign |
Research Council of Norway ; EC Human Brain Project ; NIBIB P41 EB015897; NCI U24 CA092656 |
PMID:24726336 PMID:25585022 |
Free, Available for download, Freely available | SCR_017124 | WHS SD rat atlas, WHS_SD_rat_atlas, WHS-SD-rat-atlas | 2026-08-03 09:37:00 | 35 | ||||||
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DICOMConvert Resource Report Resource Website |
DICOMConvert (RRID:SCR_014100) | software resource, software application, standalone software | A DICOM image converter based on the ITK IO mechanism for reading and writing images. The formats currently supported by the converter are DICOM to: Analyze (*.hdr); MetaImage (*.mhd); Nrrd (*.nhdr, *.nrrd). | standalone software, dicom, image converter |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: National Institutes of Health |
Center for Infectious Disease Imaging ; NIAID ; NIBIB |
Available for download | SCR_014100 | Dicom Converter | 2026-08-03 09:35:22 | 0 | ||||||||
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UCSD Center for NMR Spectroscopy and Imaging of Proteins Resource Report Resource Website |
UCSD Center for NMR Spectroscopy and Imaging of Proteins (RRID:SCR_001401) | NMR Resource at UCSD | access service resource, training resource, service resource, biomedical technology research center | Biomedical technology research center that develops new technology for NMR spectroscopy and makes it available to the biomedical research community for structure determination of proteins in biological supramolecular assemblies, such as membrane proteins or virus particles. The principal applications are to membrane-associated proteins; however, the approach is generally applicable to polypeptides that cannot be prepared in forms suitable for X-ray crystallography or multidimensional solution NMR spectroscopy. As a result, there are also applications to viruses and other biological systems. The principal instrumentation consists of high-field NMR spectrometers dedicated to high-resolution solid-state NMR spectroscopy. The spectrometers are capable of the full-range of multiple-resonance experiments on stationary and spinning samples; however, the major emphasis is on methods that utilize mechanically or magnetically oriented samples. Development encompasses preparation of samples, including: * Expression and purification of membrane proteins * Design and construction of instrumentation, especially probes * Implementation of new pulse sequences and other experimental protocols for solid-state NMR spectroscopy * Calculations for the processing of experimental data and protein structure determination from the orientational constraints derived from these data | nmr spectroscopy, structure, protein, nmr spectrometer, expression, purification, membrane protein, probe, pulse sequence, virus particle | has parent organization: University of California at San Diego; California; USA | NIBIB P41EB002031 | THIS RESOURCE IS NO LONGER IN SERVICE | nlx_152626 | SCR_001401 | Center for NMR Spectroscopy and Imaging of Proteins, Resource for NMR Molecular Imaging of Proteins | 2026-08-03 09:31:18 | 0 | ||||||
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Richard M. Lucas Center for Imaging Resource Report Resource Website 1+ mentions |
Richard M. Lucas Center for Imaging (RRID:SCR_001406) | Lucas Center, CAMRT | training resource, biomedical technology research center | Biomedical technology research center that develops innovative technologies in five core research areas of magnetic resonance imaging and spectroscopy (MRI/MRS): # image reconstruction, fast imaging and radiofrequency (RF) pulse design methods, # R hardware development, # body imaging methods, # neuroimaging methods. # MR spectroscopy methods. In each of these areas, they capitalize on the long-standing, successful partnership and extensive experience in Stanford's Radiology and Electrical Engineering departments to improve and expand imaging technology for use in basic research and clinical care, and to provide cutting edge opportunities to the extramural community for biomedical research with MRI. Over its more than 18 years of existence, CAMRT has been motivated by and has served a wide base of extramurally sponsored collaborators and service users from leading medical and research institutions. Examples of collaborative projects are the development of real-time functional MRI biofeedback methods for neuroscience and clinical applications such as pain remediation, development of methods to mitigate metal artifacts in musculoskeletal imaging, development of novel RF pulses for many applications, and studies of breast cancer with efficient MRS methods. | magnetic resonance imaging, spectroscopy, x-ray imaging, ct imaging, imaging, neuroimaging | has parent organization: Stanford University School of Medicine; California; USA | Brain disorder, Cancer, Stroke, Heart disease | NIBIB | Free, Freely Available | nlx_152629 | http://med.stanford.edu/rsl/about/lucas.html | SCR_001406 | Lucas Center for Imaging, Center for Advanced Magnetic Resonance Technology | 2026-08-03 09:31:21 | 1 | ||||
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Center for Functional Neuroimaging Technologies Resource Report Resource Website 1+ mentions |
Center for Functional Neuroimaging Technologies (RRID:SCR_001423) | CFNT | access service resource, training resource, service resource, biomedical technology research center | Biomedical technology research center that develops and applies innovative neuroimaging technologies and techniques to enable closer examination of the human brain, and thereby contribute to better understanding of the brain in health and disease. They develop new techniques and advance existing technologies for acquisition and analysis of functionally specific images of the working brain, with unprecedented physiological precision and spatiotemporal resolution. The research and development aims to improve and extend existing methods for non-invasive magnetic resonance image analysis and acquisition, electromagnetic source imaging, optical neuroimaging, and most recently, combined MR-PET neuroimaging. The Resource provides an essential interactive environment, within which an interdisciplinary team of highly skilled scientists, engineers, and clinicians with diverse expertise in multiple modalities and disciplines. The resource supports service use of the Center's facilities by neuroscientists throughout the country, provide extensive training opportunities for students, fellows, and staff scientists, and seek to advance the field of brain mapping through active dissemination of new knowledge and technology. | mri, neuroimaging, pet, acquisition, analysis, brain, electromagnetic source imaging, optical neuroimaging, multimodal, magnetic resonance, eeg, meg, electrocorticography, information resource, optical imaging |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: Harvard Medical School; Massachusetts; USA |
NIBIB 5P41EB015896-18 | Free, Available for download, Freely available | nlx_152644 | http://www.nitrc.org/projects/cfnt | SCR_001423 | 2026-08-03 09:31:22 | 1 | ||||||
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3D MRI Atlas of Mouse Development Resource Report Resource Website 1+ mentions |
3D MRI Atlas of Mouse Development (RRID:SCR_008090) | MRI Atlas of Mouse Development, | data or information resource, atlas |
THIS RESOURCE IS NO LONGER IN SERVICE, documented May 10, 2017. A pilot effort that has developed a centralized, web-based biospecimen locator that presents biospecimens collected and stored at participating Arizona hospitals and biospecimen banks, which are available for acquisition and use by researchers. Researchers may use this site to browse, search and request biospecimens to use in qualified studies. The development of the ABL was guided by the Arizona Biospecimen Consortium (ABC), a consortium of hospitals and medical centers in the Phoenix area, and is now being piloted by this Consortium under the direction of ABRC. You may browse by type (cells, fluid, molecular, tissue) or disease. Common data elements decided by the ABC Standards Committee, based on data elements on the National Cancer Institute''s (NCI''s) Common Biorepository Model (CBM), are displayed. These describe the minimum set of data elements that the NCI determined were most important for a researcher to see about a biospecimen. The ABL currently does not display information on whether or not clinical data is available to accompany the biospecimens. However, a requester has the ability to solicit clinical data in the request. Once a request is approved, the biospecimen provider will contact the requester to discuss the request (and the requester''s questions) before finalizing the invoice and shipment. The ABL is available to the public to browse. In order to request biospecimens from the ABL, the researcher will be required to submit the requested required information. Upon submission of the information, shipment of the requested biospecimen(s) will be dependent on the scientific and institutional review approval. Account required. Registration is open to everyone.. Documented on October, 01, 2019. 3D digital atlas of normal mouse development constructed from magnetic resonance image data. The download is a zipped file containing the six atlases Theiler Stages (ts) 13, 21,23, 24, 25 and 26 and MRI data for an unlabeled ts19 embryo. To view the atlases, download and install MBAT from: http://mbat.loni.ucla.edu Specimens were prepared in aqueous, isotonic solutions to avoid tissue shrinkage. Limited specimen handling minimized physical perturbation of the embryos to ensure accurate geometric representations of developing mouse anatomy. Currently, the atlas contains orthogonal sections through MRI volumes, three stages of embryos that have annotated anatomy, photographs of several stages of development, lineage trees for annotated embryos and a gallery of images and movies derived from the annotations. Anatomical annotations can be viewed by selecting a transverse section and selecting a pixel on the displayed slice. |
embryo, embryogenesis, development, magnetic resonance imaging, mouse, developing, c57bl/6, development, anatomy, embryonic mouse | is related to: Mouse BIRN Atlasing Toolkit | Normal | Human Brain Project ; Biomedical Informatics Research Network ; Beckman Institute at Caltech ; NCRR ; NIBIB |
PMID:10091864 | THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-10989 | SCR_008090 | Caltech micro MRI Atlas of Mouse Development, microMRI Atlas of Mouse Development, Caltech MRI Atlas of Mouse Development, micro MRI Atlas of Mouse Development | 2026-08-03 09:33:39 | 1 | ||||
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ReproSchema Resource Report Resource Website |
ReproSchema (RRID:SCR_027848) | software resource, software application, source code | Software standardized framework for creating, sharing, and reusing cognitive and clinical assessments. Standardized form generation and data collection schema to harmonize results by design across projects. Used for enhancing research reproducibility through standardized survey data collection. | ReproNim, FAIR, standardized framework, creating, sharing, reusing, cognitive, clinical, assessment, standardized form generation, data collection schema, | NIBIB P41EB019936; NIH Office of the Director OT2OD032720 |
PMID:40644691 | Free, Available for download, Freely available | SCR_027848 | 2026-08-03 09:39:19 | 0 |
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