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| Resource Name | Proper Citation | Abbreviations | Resource Type |
Description |
Keywords | Resource Relationships | |||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
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LONI Image and Data Archive Resource Report Resource Website 100+ mentions |
LONI Image and Data Archive (RRID:SCR_007283) | IDA, LONI IDA, | data or information resource, database, image collection | Archive used for archiving, searching, sharing, tracking and disseminating neuroimaging and related clinical data. IDA is utilized for dozens of neuroimaging research projects across North America and Europe and accommodates MRI, PET, MRA, DTI and other imaging modalities. | data storage, mri, pet, mra, dti, neuroimaging, image storage, histology, fmri, spect, normal, control, alzheimer's disease, mild cognitive impairment, data sharing, clinical, protection, brain, cryosection, FASEB list |
is recommended by: National Library of Medicine is listed by: NIH Data Sharing Repositories |
Control, Autism, Parkinson's disease, Alzheimer's disease, Mild Cognitive Impairment, Normal control, Aging | NIBIB | Restricted | nif-0000-00040, r3d100012840 | https://ida.loni.usc.edu/login.jsp?search=true, https://doi.org/10.17616/R39N6D | https://ida.loni.ucla.edu/login.jsp | SCR_007283 | , IDA, LONI Database, LONI, Image Data Archive | 2026-09-05 06:26:09 | 113 | |||
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NSR Physiome Project Resource Report Resource Website 1+ mentions |
NSR Physiome Project (RRID:SCR_007379) | NSR Physiome Project | data or information resource, portal, professional program, simulation software, software application, software resource, topical portal, training resource | Database of physiological, pharmacological, and pathological information on humans and other organisms and integration through computational modeling. Models include everything from diagrammatic schema, suggesting relationships among elements composing a system, to fully quantitative, computational models describing the behavior of physiological systems and an organism''s response to environmental change. Each mathematical model is an internally self-consistent summary of available information, and thereby defines a working hypothesis about how a system operates. Predictions from such models are subject to test, with new results leading to new models.BR /> A Tool developed for the NSR Physiome project is JSim, an open source, free software. JSim is a Java-based simulation system for building quantitative numeric models and analyzing them with respect to experimental reference data. JSim''s primary focus is in physiology and biomedicine, however its computational engine is quite general and applicable to a wide range of scientific domains. JSim models may intermix ODEs, PDEs, implicit equations, integrals, summations, discrete events and procedural code as appropriate. JSim''s model compiler can automatically insert conversion factors for compatible physical units as well as detect and reject unit unbalanced equations. JSim also imports the SBML and CellML model archival formats. All JSim models are open source. Goals of the Physiome Project: - To develop and database observations of physiological phenomenon and interpret these in terms of mechanism (a fundamentally reductionist goal). - To integrate experimental information into quantitative descriptions of the functioning of humans and other organisms (modern integrative biology glued together via modeling). - To disseminate experimental data and integrative models for teaching and research. - To foster collaboration amongst investigators worldwide, to speed up the discovery of how biological systems work. - To determine the most effective targets (molecules or systems) for therapy, either pharmaceutic or genomic. - To provide information for the design of tissue-engineered, biocompatible implants. | physiome, computational modeling, cell, organ, organism, human, model, physiological, pharmacological, pathological, model repository, sbml, cellml, biophysics, biochemistry, database, proteome, jsim simulation analysis system, data analysis tool, parameter optimization tool, integrating biological system | has parent organization: University of Washington; Seattle; USA | NSF BE08407; NHLBI T15 HL88516-01; NSF BES-0506477; NHLBI R01HL073598; NIBIB R01EB001973 |
nif-0000-00532 | SCR_007379 | National Simulation Resource Physiome Project | 2026-09-05 06:26:11 | 3 | |||||||
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Brain Architecture Management System Resource Report Resource Website 1+ mentions |
Brain Architecture Management System (RRID:SCR_007251) | BAMS | controlled vocabulary, data or information resource, data repository, database, ontology, service resource, storage service resource | Knowledge management system designed to handle neurobiological information at different levels of organization of vertebrate nervous system. Database and repository for information about neural circuitry, storing and analyzing data concerned with nomenclature, taxonomy, axonal connections, and neuronal cell types. Handles data and metadata collated from original literature, or inserted by scientists that is associated to four levels of organization of vertebrate nervous system. Data about expressed molecules, neuron types and classes, brain regions, and networks of brain regions. | neurobiology, vertebrate, nervous, system, database, repository, neural, circuitry, analysis, data, nomenclature, taxonomy, axonal, connection, cell, |
is used by: NIF Data Federation is used by: Integrated Nervous System Connectivity is related to: Integrated Manually Extracted Annotation has parent organization: University of Southern California; Los Angeles; USA is parent organization of: BAMS Nested Regions is parent organization of: BAMS Connectivity is parent organization of: BAMS Cells is parent organization of: BAMS Neuroanatomical Ontology |
Human Brain Project ; NIBIB ; NIMH MH61223; NINDS NS16686; NINDS NS50792 |
Restricted | nif-0000-00018 | http://brancusi.usc.edu/bkms/ | SCR_007251 | Brain Architecture Management System, The Brain Architecture Management System | 2026-09-05 06:26:09 | 6 | |||||
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jViewbox Resource Report Resource Website |
jViewbox (RRID:SCR_008274) | data processing software, image processing software, software application, software resource | A portable software framework for medical imaging research. jViewbox consists of a set of Java classes organized under a simple but extensive API that provides the core functionality of 2D image presentation needed by most imaging applications. It follows Java's Swing model closely to make it easy for application developers to build GUIs where end users can use various tools in a tool bar to manipulate the image displays. No optional add-ons or native code is used, which makes jViewBox compatible with any standard Java 2 Runtime Environment (version 1.3 or later). | imaging, magnetic resonance imaging, image processing software |
is related to: Laboratory of Neuro Imaging has parent organization: University of Southern California; Los Angeles; USA |
NIBIB 9P41EB015922-15; NCRR 2-P41-RR-013642-15 |
Available for educational and research purposes only | nif-0000-23317 | SCR_008274 | 2026-09-05 06:26:20 | 0 | ||||||||
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GMA Resource Report Resource Website |
GMA (RRID:SCR_009212) | GMA | data analysis software, data processing software, software application, software resource, time-series analysis software | Software package to perform Granger mediation analysis for time series. Includes single level GMA model and two-level GMA model, for time series with hierarchically nested structure. | Granger, meditation, analysis, time, series, level, GMA, model, BRAIN Initiative, bio.tools |
is recommended by: BRAIN Initiative is listed by: Genetic Analysis Software is listed by: Debian is listed by: bio.tools |
NIBIB EB022911 | PMID:31070732 | Free, Available for download, Freely available | nlx_154361, biotools:GMA | https://github.com/chaoning/GMA, https://bio.tools/GMA | http://www.montana.edu/kalinowski/GMA/GMA_Home.htm | SCR_009212 | Granger Mediation Analysis | 2026-09-05 06:26:32 | 0 | |||
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Mango Resource Report Resource Website 100+ mentions |
Mango (RRID:SCR_009603) | Mango | data processing software, data visualization software, image analysis software, image processing software, software application, software resource | A viewer for medical research images that provides analysis tools and a user interface to navigate image volumes. There are three versions of Mango, each geared for a different platform: * Mango ? Desktop ? Mac OS X, Windows, and Linux * webMango ? Browser ? Safari, Firefox, Chrome, and Internet Explorer * iMango ? Mobile ? Apple iPad Key Features: * Built-in support for DICOM, NIFTI, Analyze, and NEMA-DES formats * Customizable: Create plugins, custom filters, color tables, file formats, and atlases * ROI Editing: Threshold and component-based tools for painting and tracing ROIs * Surface Rendering: Interactive surface models supporting cut planes and overlays * Image Registration: Semi-automatic image coregistration and manual transform editing * Image Stacking: Threshold and transparency-based image overlay stacking * Analysis: Histogram, cross-section, time-series analysis, image and ROI statistics * Processing: Kernel and rank filtering, arithmetic/logic image and ROI calculators | analyze, atlas application, console (text based), dicom, gifti, java, linux, macos, microsoft, magnetic resonance, nifti, os independent, platform, posix/unix-like, quantification, region of interest, registration, rendering, segmentation, spatial transformation, statistical operation, sunos/solaris, surface analysis, temporal transformation, visualization, volumetric analysis, web environment, win32 (ms windows), windows, windows vista, windows xp |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: University of Texas Health Science Center at San Antonio; Texas; USA |
NIBIB P01-EB01955; NIBIB R01-EB015314-01a1; NIMH R01-MH074457 |
Free | nlx_155804 | http://www.nitrc.org/projects/mango | SCR_009603 | Multi-image Analysis GUI | 2026-09-05 06:26:35 | 491 | |||||
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iTools Resource Report Resource Website 50+ mentions |
iTools (RRID:SCR_009626) | iTools | data access protocol, data or information resource, data repository, database, service resource, software repository, software resource, storage service resource, web service | An infrastructure for managing of diverse computational biology resources - data, software tools and web-services. The iTools design, implementation and meta-data content reflect the broad NCBC needs and expertise (www.NCBCs.org). | computational neuroscience, data, experiment control, hardware, imaging genomics, information specification, java, loni pipeline, model, ontology, os independent, metadata |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is related to: National Centers for Biomedical Computing has parent organization: Laboratory of Neuro Imaging |
NIH Roadmap for Medical Research ; NCRR U54-RR021813; NIDA U54-DA021519; NCI U54-CA121852; NHGRI U54-HG004028; NIGMS U54-GM072970; NIBIB U54-EB005149; NLM U54-LM008748 |
PMID:18509477 | GNU Lesser General Public License | nlx_155852 | http://www.nitrc.org/projects/itools, http://www.loni.usc.edu/research/software | http://itools.loni.ucla.edu/ | SCR_009626 | ITools Resourceome, NCBC iTools | 2026-09-05 06:26:35 | 53 | |||
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fanDTasia Java Applet: DT-MRI Processing Resource Report Resource Website 1+ mentions |
fanDTasia Java Applet: DT-MRI Processing (RRID:SCR_009624) | fdt | data processing software, image processing software, software application, software resource | A Java applet tool for DT-MRI processing. It opens Diffusion-Weighted MRI datasets from user's computer and performs very efficient tensor field estimation using parallel threaded processing on user's browser. No installation is required. It runs on any operating system that supports Java (Windows, Mac, Linux,...). The estimated tensor field is guaranteed to be positive definite second order or higher order and is saved in user's local disc. MATLAB functions are also provided to open the tensor fields for your convenience in case you need to perform further processing. The fanDTasia Java applet provides also vector field visualization for 2nd and 4th-order tensors, as well as calculation of various anisotropic maps. Another useful feature is 3D fiber tracking (DTI-based) which is also shown using 3d graphics on the user's browser. | magnetic resonance, dti, diffusion-weighted mri |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: University of Florida; Florida; USA |
NIBIB EB007082; NINDS NS066340 |
Non-Commercial Software License Agreement, Https://www.nitrc.org/include/glossary.php#589, Non-commercial | nlx_155849 | http://www.nitrc.org/projects/fandtasia | SCR_009624 | FanDTasia | 2026-09-05 06:26:35 | 2 | |||||
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JIP Analysis Toolkit Resource Report Resource Website 10+ mentions |
JIP Analysis Toolkit (RRID:SCR_009588) | JIP Toolkit | data processing software, image analysis software, software application, software resource, software toolkit | Software toolkit for analysis of rodent and non-human primate fMRI data. The toolkit consists of binary executables, highly portable open-source c code, and image resources that enable 1) Automated registration based upon mutual information (affine, non-linear warps), with flexible control and visualization of each step; 2) visualization of 4-dimensional data using either mosaic or tri-planar display of the z/slice dimension, and integration of a general linear model for graphical display of time series analysis; 3) A simple and flexible 1st-order GLM for fMRI time series analysis, a 1st-order GLM analysis for PET data within the SRTM framework, plus a 2nd-order GLM analysis following the Worsley 2002 scheme, and 4) MRI templates to place your rodent and non-human primate data into standardized spaces. | affine warp, atlas application, atlas data, c, console (text based), image display, image-to-image, linux, macos, magnetic resonance, nifti, nonlinear warp, pet, spect, posix/unix-like, registration, resampling, spatial transformation, time domain analysis, visualization, warping, fmri |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: Massachusetts Institute of Technology; Massachusetts; USA; has parent organization: Harvard Medical School; Massachusetts; USA |
NIBIB R03EB008134 | MGH CSRL License | nlx_155778 | http://www.nitrc.org/projects/jip | SCR_009588 | JIP fMRI Analysis Toolkit | 2026-09-05 06:26:34 | 29 | |||||
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eConnectome Resource Report Resource Website 10+ mentions |
eConnectome (RRID:SCR_009618) | eConnectome | data processing software, image analysis software, image processing software, software application, software resource | An open-source MATLAB software package for imaging brain functional connectivity from electrophysiological signals. It provides interactive graphical interfaces for EEG/ECoG/MEG preprocessing, source estimation, connectivity analysis and visualization. Connectivity from EEG/ECoG/MEG can be mapped over sensor and source domains. This package is designed for use by researchers in neuroscience, psychology, cognitive science, clinical neurophysiology, neurology and other disciplines. The graphical interface-based platform requires little programming knowledge or experience with MATLAB. eConnectome is developed by the Biomedical Functional Imaging and Neuroengineering Laboratory at the University of Minnesota, directed by Dr. Bin He. The visualization module is jointly developed with Drs. Fabio Babiloni and Laura Astolfi at the University of Rome La Sapienza. | eeg, meg, electrocorticography, forward - inverse, matlab, microsoft, modeling, multivariate analysis, region of interest, segmentation, statistical operation, visualization, windows, windows xp |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: University of Minnesota Twin Cities; Minnesota; USA |
NIBIB RO1 EB006433; NIBIB RO1 EB007920 |
GNU General Public License | nlx_155844 | http://www.nitrc.org/projects/econnectome | SCR_009618 | Electrophysiological Connectome | 2026-09-05 06:26:35 | 31 | |||||
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DTI BrainImageScope Resource Report Resource Website |
DTI BrainImageScope (RRID:SCR_009559) | dtiBrainScope | data processing software, image processing software, software application, software resource | Software package for processing diffusion tensor imaging data. The following functions are included: 1. Converting imaging data in DICOME format to ANALYZE format 2. Extracting binary brain mask for quick scalp-removing 3. Correcting eddy-current induced distortion 4. Optimized tensor estimation based on noisy diffusion-weighted imaging (DWI) data 5. Scalp removal using a brain mask image 6. Corregistering imaging data and generating deformation field for mapping images from individual spaces to a template or target space 7. Spatial Normalization and Warping DTI 8. Fiber tracking 9. Clustering fiber tracts 10. Identifying brain ventricles and generating binary masks for the baseline and DW imaging data 11. Deriving diffusion anisotropy indices (DAIs) and principal directions (PD) and the corresponding color-coded PD-map. | magnetic resonance, diffusion tensor imaging |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is related to: INCF Software Center has parent organization: Columbia University; New York; USA |
NIBIB 1R03EB008235-01A1; Shanghai CST 10440710200 |
Other/Commercial license License | nlx_155739 | SCR_009559 | 2026-09-05 06:26:34 | 0 | |||||||
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National ESCA and Surface Analysis Center for Biomedical Problems Resource Report Resource Website 1+ mentions |
National ESCA and Surface Analysis Center for Biomedical Problems (RRID:SCR_001430) | NESAC/BIO | access service resource, analysis service resource, biomaterial analysis service, biomedical technology research center, material analysis service, production service resource, service resource, training resource | Biomedical technology research center that provides state-of-the-art surface analysis expertise, instrumentation, experimental protocols, and data analysis methods to address surface-related biomedical problems. NESAC/BIO develops and applies surface science methodologies that produce a full understanding of the surface composition, structure, spatial distribution, and orientation of biomaterials and adsorbed biomolecules. The NESAC/BIO program identifies areas where surface science must evolve to keep pace with the growth in biochemical knowledge and biomaterial fabrication technology, and develops instrumentation, experimental protocols, and data analysis methods to achieve this evolution. NESAC/BIO provides state-of-the-art surface analysis tools to researchers in the biomedical community. You can gain access to the NESAC/BIO facilities in one of the following ways: * Collaborative: Propose a project to collaborate on with NESAC/BIO. The project should be rewarding for both groups, and the results should reflect the utility of surface analysis for biomedical research * Service: Ask NESAC/BIO to analyze your biomaterial specimens. The spectra obtained from the analyses will be interpreted for you. * Training: Visit the University of Washington to receive training in surface analysis and personally run experiments for your individual research projects. These experiments should have a high probability for yielding useful information and should not involve the development of new ESCA techniques or methodologies. | surface, composition, structure, spatial distribution, orientation, biomaterial, biomolecule, surface science, biochemical, biomaterial fabrication, surface analysis | has parent organization: University of Washington; Seattle; USA | NIBIB 5P41RR001296-11 | Free, Freely Available | nlx_152654 | SCR_001430 | NESAC/BIO - National ESCA and Surface Analysis Center for Biomedical Problems | 2026-09-05 06:24:34 | 1 | ||||||
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MRI Studio Resource Report Resource Website 100+ mentions |
MRI Studio (RRID:SCR_001398) | data processing software, data visualization software, image analysis software, image processing software, software application, software resource | An image processing program running under Windows suitable for such tasks as tensor calculation, color mapping, fiber tracking, and 3D visualization. Most of operations can be done with only a few clicks. This tool evolved from DTI Studio. Tools in the program can be grouped in the following way: * Image Viewer * Diffusion Tensor Calculations * Fiber Tracking and Editing * 3D Visualization * Image File Management * Region of Interesting (ROI) Drawing and Statistics * Image Registration | tensor calculation, color mapping, fiber tracking, 3d visualization, dti, image registration, mri, diffusion mr fiber tracking, microsoft, c++, analyze |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is related to: Diffusion Tensor Imaging ToolKit has parent organization: Johns Hopkins University; Maryland; USA works with: UManitoba - JHU Functionally Defined Human White Matter Atlas |
NCRR ; Biomedical Informatics Research Network ; NIBIB |
Free, Freely Available | nif-0000-00291 | http://www.nitrc.org/projects/mri_studio | SCR_001398 | dtiStudio, DTI Studio | 2026-09-05 06:24:34 | 180 | ||||||
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PNEUMA Resource Report Resource Website 1+ mentions |
PNEUMA (RRID:SCR_001391) | PNEUMA | simulation software, software application, software resource, software toolkit | A set of modules that are used to simulate the autoregulation of the cardiovascular and respiratory systems under conditions of changing sleep-wake state and a variety of physiological and pharmacological interventions. It models the dynamic interactions that take place among the various component mechanisms, including those involved in the chemical control of breathing, heart rate, and blood pressure, as well as the effects of changes in the sleep-wake state and arousal from sleep. PNEUMA includes the autonomic control of the cardiovascular system, chemoreflex and state-related control of breath-to-breath ventilation, state-related and chemoreflex control of upper airway potency, as well as respiratory and circulatory mechanics. The model is capable of simulating the cardiorespiratory responses to sleep onset, arousal, continuous positive airway pressure, the administration of inhaled carbon dioxide and oxygen, Valsalva and Mueller maneuvers, and Cheyne-Stokes respiration during sleep. In PNEUMA 3.0, we have extended the existing integrative model of respiratory, cardiovascular, and sleepwake state control, to incorporate a sub-model of glucoseinsulinfatty acid regulation. The extended model is capable of simulating the metabolic control of glucoseinsulin dynamics and its interactions with the autonomic nervous system. The interactions between autonomic and metabolic control include the circadian regulation of epinephrine secretion, epinephrine regulation on dynamic fluctuations in glucose and free fatty acids in plasma, metabolic coupling among tissues and organs mediated by insulin and epinephrine, as well as the effect of insulin on peripheral vascular sympathetic activity. This extended model represents a starting point from which further in silico investigations into the interaction between the autonomic nervous system and the metabolic control system can proceed. Features in PNEUMA 3.0 * Incorporates metabolic component based on prior models of glucose-insulin regulation and free fatty acid (FFA) regulation. * Changes in sympathetic activity from the autonomic portion of PNEUMA produce changes in epinephrine output, which in turn affects the metabolic sub-model. * Inputs from the dietary intake of glucose and external interventions, such as insulin injections, have also been incorporated. * Also incorporated is autonomic feedback from the metabolic component to the rest of PNEUMA: changes in insulin level lead to changes in sympathetic tone. System Requirements: PNEUMA requires Matlab R2007b or higher with the accompanying version of Simulink to be installed on your computer. | matlab, simulate, autoregulation, cardiovascular system, respiratory system, sleep-wake state, physiological intervention, pharmacological intervention, drug, breathing, heart rate, blood pressure, respiration, glucose, insulin, fatty acid, regulation, autonomic nervous system, chemoreflex, ventilation, circulation, cardiorespiratory, metabolic control system, circadian, regulation, epinephrine | has parent organization: Biomedical Simulations Resource | NIBIB P41-EB001978; NCRR P41-RR01861 |
PMID:17271149 | Free, Freely Available | nlx_152572 | SCR_001391 | 2026-09-05 06:24:34 | 3 | ||||||
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Center for Gamma Ray Imaging Resource Report Resource Website |
Center for Gamma Ray Imaging (RRID:SCR_001384) | Center for Gamma-Ray Imaging | instrument manufacture, material service resource, production service resource, service resource | Biomedical technology resource center that develops new gamma-ray imaging instruments and techniques that yield substantially improved spatial and temporal resolutions. The Center makes its imagers and expertise available to a wide community of biomedical and clinical researchers through collaborative and service-oriented interactions. The collaborative research applies these new imaging tools to basic research in functional genomics, proteomics, cancer, cardiovascular disease and cognitive neuroscience, and to clinical research in tumor detection and other selected topics. There are five core research projects: * Detector technology research and development * Reconstruction algorithms and system modeling * Data acquisition, signal processing, and system development * Image-quality assessment and system optimization * Techniques for molecular imaging | spect, ct, imaging, clinical, gamma-ray, imaging instrument, basic research, functional genomics, cardiovascular disease, cognitive neuroscience, breast cancer, tumor detection, proteomics, cancer | has parent organization: University of Arizona; Arizona; USA | NIBIB EB002035-14 | nlx_152567 | SCR_001384 | 2026-09-05 06:24:34 | 0 | ||||||||
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Computer Integrated Systems for Microscopy and Manipulation Resource Report Resource Website 1+ mentions |
Computer Integrated Systems for Microscopy and Manipulation (RRID:SCR_001413) | CISMM | training resource | Biomedical technology research center that develops force technologies applicable over a wide range of biological settings, from the single molecule to the tissue, with integrated systems that orchestrate facile instrument control, multimodal imaging, and analysis through visualization and modeling. The Force Microscope Technologies Core designs instruments in an area of science where there are unusual opportunities: the measurement of forces and the integration with optical microscopy. Force technologies play the obvious role of both measuring events in the sample and modifying the sample during the experiment. It is through the microscope that the force data is correlated with simultaneous 3D optical images. The force technology development includes the magnetic bead technology in the 3D Force Microscope project, Atomic Force Microscopy in the nanoManipulator project, and Control Software to drive the instrumentation. This core is focused on providing the physical capability to perform the experiments and probe structure/property correlations. The Ideal User Interfaces core makes the connection between the user and the instrument, the model building, and the data. This includes control systems that allow the user to move the bead inside the cell culture with a handheld pen and the visualization techniques to view the optical microscope data as a rendered 3D image collocated with the force data. Using data to create, change, and understand a model is the focus of the Advanced Model Fitting and Analysis core. The quantitative reduction of images to structural, shape, and velocity parameters is the goal of Image Analysis. The immediate understanding of correlations across image fields and between data sets in the challenge of Visualization. The power of combining the strength of a computer science graphics group with a microscopy technology group is most evident in the Graphics Hardware Acceleration project, which seeks to harness the speed of graphics processors for microscope data analysis and simulation. The Advanced Technology core pushes the boundaries of the Human Computer Interface through the investigation of improved techniques for the interaction of users with virtual environments, the real time lighting of virtual settings, and the enabling of multi-person collaboration. These techniques are validated and evaluated through physiological measures in virtual environments effectiveness evaluation studies. | microscope, visual analytics, image analysis, biomedical, bioinstrumatics, scanning electron microscope, light microscope, microscopy | has parent organization: University of North Carolina at Chapel Hill; North Carolina; USA | Thrombosis, Lung disease, Cancer | NIBIB 5-P41-EB002025 | Freely Available | nlx_152648 | http://cismm.cs.unc.edu/ | SCR_001413 | UNC Chapel Hill Computer Integrated Systems for Microscopy and Manipulation | 2026-09-05 06:24:34 | 8 | ||||
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Center for Biomedical OCT Research Resource Report Resource Website 1+ mentions |
Center for Biomedical OCT Research (RRID:SCR_001418) | CBORT | training resource | Biomedical technology research center that pioneers and provides access to microscopic imaging instruments for biologic and clinical research. Optical coherence tomography (OCT) has evolved over the last two decades to become a standard of care for diagnostic ophthalmic imaging and is poised to make significant impact in the fields of cardiology and gastrointestinal endoscopy. Access to state-of-the-art instrumentation, however, has been limited to a relatively few research laboratories and the optimization of instruments for new biomedical applications has hindered the investigation of new opportunities. A major focus of CBORT will be to cultivate strategic research collaborations and respond to a pressing need for application-specific OCT instrumentation and hardware. | imaging, optical coherence tomography, microscope, catheter, endoscopy, near infrared fluorescence | has parent organization: Harvard Medical School; Massachusetts; USA | NIBIB P41EB015903 | Free, Freely Available | nlx_152640 | SCR_001418 | Center for Biomedical OCT Research and Translation | 2026-09-05 06:24:34 | 2 | ||||||
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BioMEMS Resource Center Resource Report Resource Website 1+ mentions |
BioMEMS Resource Center (RRID:SCR_001417) | BMRC | training resource | Biomedical technology research center that provides biomedical investigators with novel microsystems engineering tools for biological discovery, diagnostic, prognostic, and therapeutic applications. Thrust areas of interest are the development of novel living cell-based, lab-on-a-chip type devices for sorting blood cells, for high-throughput biochemistry in small volumes, and for studying cellular behavior in controlled microenvironments. | cell, tissue, microengineering, diagnostics, chip | has parent organization: Massachusetts Institute of Technology; Massachusetts; USA; | NIBIB 5P41EB002503-12 | Free, Freely Available | nlx_152639 | SCR_001417 | Bio MicroElectroMechanical Systems (BioMEMS) Resource Center, Biomicroelectromechanical Systems (BioMEMS) Resource Center, BioMEMS, Bio MicroElectroMechanical Systems Resource Center | 2026-09-05 06:24:34 | 4 | ||||||
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Farsight Toolkit Resource Report Resource Website 1+ mentions |
Farsight Toolkit (RRID:SCR_001728) | FARSIGHT | data processing software, image analysis software, image processing software, software application, software resource, software toolkit | THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 23, 2022. A collection of software modules for image data handling, pre-processing, segmentation, inspection, editing, post-processing, and secondary analysis. These modules can be scripted to accomplish a variety of automated image analysis tasks. All of the modules are written in accordance with software practices of the Insight Toolkit Community. Importantly, all modules are accessible through the Python scripting language which allows users to create scripts to accomplish sophisticated associative image analysis tasks over multi-dimensional microscopy image data. This language works on most computing platforms, providing a high degree of platform independence. Another important design principle is the use of standardized XML file formats for data interchange between modules. | editing, 2d, 3d, algorithm, analysis, bio-format, computational, data, graphical, inspection, metadata, microscopy, morphological, morphology, pixel, processing, segmentation, taxonomy, image | has parent organization: University of Houston; Texas; USA | NIBIB R01-EB005157; NSF EEC-9986821; NIBIB R01EB005157 |
PMID:24808857 | THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-10227 | SCR_001728 | FARSIGHTWiki | 2026-09-05 06:24:38 | 2 | |||||
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Atlas3D Resource Report Resource Website 10+ mentions |
Atlas3D (RRID:SCR_001808) | atlas, data or information resource, data processing software, data visualization software, software application, software resource | A multi-platform visualization tool which allows import and visualization of 3-D atlas structures in combination with tomographic and histological image data. The tool allows visualization and analysis of the reconstructed atlas framework, surface modeling and rotation of selected structures, user-defined slicing at any chosen angle, and import of data produced by the user for merging with the atlas framework. Tomographic image data in NIfTI (Neuroimaging Informatics Technology Initiative) file format, VRML and PNG files can be imported and visualized within the atlas framework. XYZ coordinate lists are also supported. Atlases that are available with the tool include mouse brain structures (3-D reconstructed from The Mouse Brain in Stereotaxic Coordinates by Paxinos and Franklin (2001)) and rat brain structures (3-D reconstructed from The Rat Brain in Stereotaxic Coordinates by Paxinos and Watson (2005)). Experimental data can be imported in Atlas3D and warped to atlas space, using manual linear registration, with the possibility to scale, rotate, and position the imported data. This facilitates assignment of location and comparative analysis of signal location in tomographic images. | analysis, brain, histological, mouse, rat, slicing, structure, 3d, tomographic, visualization, neuroimaging, image, magnetic resonance, visualization |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: University of Oslo; Oslo; Norway |
Research Council of Norway ; NIH ; NIBIB R01-EB00790; NCRR U24-RR021382 |
Free, Freely available | nif-0000-10373 | http://www.nitrc.org/projects/incf_atlas3d | SCR_001808 | Neural Systems and Graphics Computing Laboratory: Atlas3D Software, NeSys Atlas3D | 2026-09-05 06:24:39 | 18 |
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Welcome to the dkNET Resources search. From here you can search through a compilation of resources used by dkNET and see how data is organized within our community.
You are currently on the Community Resources tab looking through categories and sources that dkNET has compiled. You can navigate through those categories from here or change to a different tab to execute your search through. Each tab gives a different perspective on data.
If you have an account on dkNET then you can log in from here to get additional features in dkNET such as Collections, Saved Searches, and managing Resources.
Here is the search term that is being executed, you can type in anything you want to search for. Some tips to help searching:
If you are logged into dkNET you can add data records to your collections to create custom spreadsheets across multiple sources of data.
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