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| Resource Name | Proper Citation | Abbreviations | Resource Type |
Description |
Keywords | Resource Relationships | |||||||||||||
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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 | material service resource, service resource, instrument manufacture, production 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 | 2026-08-03 09:31:18 | 0 | ||||||||
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Farsight Toolkit Resource Report Resource Website 1+ mentions |
Farsight Toolkit (RRID:SCR_001728) | FARSIGHT | image processing software, software toolkit, software application, data processing software, image analysis software, software resource | 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 | 2026-08-03 09:31:32 | 2 | |||||
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Atlas3D Resource Report Resource Website 10+ mentions |
Atlas3D (RRID:SCR_001808) | software application, data processing software, atlas, data or information resource, software resource, data visualization software | 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 | 2026-08-03 09:31:34 | 17 | ||||||
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MS lesion segmentation challenge 2008 Resource Report Resource Website 1+ mentions |
MS lesion segmentation challenge 2008 (RRID:SCR_002425) | MS Lesion Segmentation 08 | narrative resource, data set, data or information resource, training material | Training material for the MS lesion segmentation challenge 2008 to compare different algorithms to segment the MS lesions from brain MRI scans. Data used for the workshop is composed of 54 brain MRI images and represents a range of patients and pathology which was acquired from Children's Hospital Boston and University of North Carolian. Data has initially been randomized into three groups: 20 training MRI images, 24 testing images for the qualifying and 8 for the onsite contest at the 2008 workshop. The downloadable online database consists now of the training images (including reference segmentations) and all the 32 combined testing images (without segmentations). The naming has not been changed in comparison to the workshop compeition in order to allow easy comparison between the workshop papers and the online database papers. One dataset has been removed (UNC_test1_Case02) due to considerable motion present only in its T2 image (without motion artifacts in T1 and FLAIR). Such a dataset unfairly penalizes methods that use T2 images versus methods that don't use the T2 image. Currently all cases have been segmented by expert raters at each institution. They have significant intersite variablility in segmentation. MS lesion MRI image data for this competition was acquired seperately by Children's Hospital Boston and University of North Carolina. UNC cases were acquired on Siemens 3T Allegra MRI scanner with slice thickness of 1mm and in-plane resolution of 0.5mm. To ease the segmentation process all data has been rigidly registered to a common reference frame and resliced to isotrophic voxel spacing using b-spline based interpolation. Pre-processed data is stored in NRRD format containing an ASCII readable header and a separate uncompressed raw image data file. This format is ITK compatible. If you want to join the competition, you can download data set from links here, and submit your segmentation results at http://www.ia.unc.edu/MSseg after registering your team. They require team name, password, and email address for future contact. Once experiment is completed, you can submit the segmentation data in a zip file format. Please refer submission page for uploading data format. | magnetic resonance, competition, challenge, segmentation, segment, ms lesion, brain, mri scan, mri, image collection |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: University of North Carolina at Chapel Hill School of Medicine; North Carolina; USA |
Multiple Sclerosis | NIH Roadmap for Medical Research ; NIBIB U54 EB005149-01 |
Free, Available for download, Freely available | nlx_155799 | SCR_002425 | 2008 MICCAI MS Lesion Segmentation Challenge | 2026-08-03 09:31:56 | 1 | |||||
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WFU Biological Parametric Mapping Toolbox Resource Report Resource Website 1+ mentions |
WFU Biological Parametric Mapping Toolbox (RRID:SCR_002613) | WFU_BPM, WFU BPM | software toolkit, software application, data processing software, image analysis software, software resource | Software toolbox that performs SPM analysis with voxel-wise imaging covariates. The BPM toolbox incorporates information obtained from other modalities as regressors in a voxel-wise analysis, thereby permitting investigation of more sophisticated hypotheses. The BPM toolbox has been developed in Matlab with a user-friendly interface for performing analyses, including voxel-wise multimodal correlation, ANCOVA, and multiple regression. It has a high degree of integration with the SPM (statistical parametric mapping) software relying on it for visualization and statistical inference. Furthermore, statistical inference for a correlation field, rather than a widely used T-field, has been implemented in the correlation analysis for more accurate results. Requirements: * SPM2 or SPM5 * MATLAB version 6.5 or higher | analyze, matlab, microsoft, magnetic resonance, nifti, posix/unix-like, statistical operation, win32 (ms windows), windows |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is related to: SPM has parent organization: Wake Forest School of Medicine; North Carolina; USA |
Human Brain Project ; NIBIB 1R01EB004673 |
PMID:17070709 | Free, Available for download, Freely available | nlx_156016 | http://www.nitrc.org/projects/wfu_bpm | SCR_002613 | BPM - Integrated Tool for Biological Parametric Mapping, WFU Biological Parametric Mapping, BPM toolbox, BPM | 2026-08-03 09:32:03 | 4 | ||||
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Synchronized Histological Image Viewing Architecture Resource Report Resource Website |
Synchronized Histological Image Viewing Architecture (RRID:SCR_002690) | SHIVA | image processing software, software application, data processing software, d visualization software, image analysis software, software resource | A Java-based visualization and analysis application that can process 2D and 3D image files and provides convenient methods for users to overlay multiple datasets. * Simultaneous visualization of multiple image volumes. * Tools for labeling and masking of structures. * Framework for the Mouse Atlas Project. | data visualization, image analysis, 3d image, image, microscopy, magnetic resonance, java, manifold viewer |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is listed by: Biositemaps has parent organization: Laboratory of Neuro Imaging |
NIBIB 9P41EB015922-15; NCRR 2-P41-RR-013642-15 |
Free, Freely available | nif-0000-23318 | http://www.nitrc.org/projects/shiva | SCR_002690 | Synchronized Histological Image View Arc | 2026-08-03 09:31:47 | 0 | |||||
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Non-Rigid Image Registration Evaluation Project Resource Report Resource Website 1+ mentions |
Non-Rigid Image Registration Evaluation Project (RRID:SCR_002505) | NIREP | standard specification, database, narrative resource, data or information resource, software resource | Project to develop software tools and provide shared image validation databases for rigorous testing of non-rigid image registration algorithms. NIREP will extend the scope of prior validation projects by developing evaluation criteria and metrics using large image populations, using richly annotated image databases, using computer simulated data, and increasing the number and types of evaluation criteria. The goal of this project is to establish, maintain, and endorse a standardized set of relevant benchmarks and metrics for performance evaluation of nonrigid image registration algorithms. Furthermore, these standards will be incorporated into an exportable computer program to automatically evaluate the registration accuracy of nonrigid image registration algorithms. | magnetic resonance, registration software |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) has parent organization: University of Iowa; Iowa; USA |
NIBIB R33 EB004126 | THIS RESOURCE IS NO LONGER IN SERVICE | nlx_155904 | http://www.nitrc.org/projects/nirep | SCR_002505 | Non-Rigid Image Registration Evaluation Project, Non-Rigid Image Registration Evaluation Project (NIREP) | 2026-08-03 09:31:52 | 7 | |||||
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FFT Library Resource Report Resource Website |
FFT Library (RRID:SCR_002698) | FFT Library | image processing software, software toolkit, software application, data processing software, software library, software resource | Java library used for the execution of discrete Fourier transforms in 1-D, 2-D and 3-D through the implementation of Fast Fourier Transform (FFT) algorithms. * The FFT library has been written in Java for portability across different platforms, integrated into a single jar file for easy implementation. * The FFT library provides forward and backward fast Fourier transforms in 1-D, 2-D and 3-D with an easy-to-use manner. * The FFT requires the length equal to a number with an integer power of two. This library automatically examines the input data and detects the length to prevent improper execution. | fourier transform, fast fourier transform, magnetic resonance |
is listed by: NeuroImaging Tools and Resources Collaboratory (NITRC) is listed by: Biositemaps has parent organization: Laboratory of Neuro Imaging |
NIBIB 9P41EB015922-15; NCRR 2-P41-RR-013642-15; NCRR U54 RR021813 |
PMID:24822428 | Free, Freely available | nif-0000-23324 | http://www.nitrc.org/projects/fft http://www.loni.ucla.edu/Software/FFT | SCR_002698 | Fast Fourier Transform JavaLibrary, FFT Java library, Fast Fourier Transform Library, Fast Fourier Transform (FFT) JavaLibrary | 2026-08-03 09:31:58 | 0 | ||||
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MIDAS Resource Report Resource Website 1+ mentions |
MIDAS (RRID:SCR_015704) | image processing software, software application, data processing software, image analysis software, software resource | Software for processing, display, and analysis of magnetic resonance spectroscopic imaging data. MIDAS supports a "whole-brain" MRSI acquisition method that has been implemented on MRI systems from three major manufacturers., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025. | mrsi, magnetic resonance spectroscopic imaging, processing software, brain imaging | NIBIB R01EB00822; NIBIB R01EB016064 |
PMID:16763967 | THIS RESOURCE IS NO LONGER IN SERVICE | SCR_015704 | MIDAS Software, Metabolite Imaging and Data Analysis System, MIDAS: Metabolite Imaging and Data Analysis System | 2026-08-03 09:36:12 | 1 | ||||||||
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BECA Resource Report Resource Website 1+ mentions |
BECA (RRID:SCR_015846) | BECA | software application, data processing software, image analysis software, software resource, data visualization software | Visualization and analysis software for interactive visual exploration and mining of fiber-tracts and brain networks with their genetic determinants and functional outcomes. BECA includes an fMRI and Diseases Analysis version as well as a Genome Explorer version. | visual exploration, brain, neuroscience, network, genetic determinant, fmri, neuroimaging, genome | has parent organization: Indiana University School of Medicine; Indiana; USA | NLM R01 LM011360; NIA U01 AG024904; NIA RC2 AG036535; NIA R01 AG19771; NIA P30 AG10133; NSF IIS-1117335; NIBIB R01 EB022574 |
PMID:27171688 | Free, Available for download | SCR_015846 | Brain Explorer for Connectome Analysis (BECA), BECA - Brain Explorer for Connectome Analysis | 2026-08-03 09:36:14 | 5 | ||||||
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Archive of Data on Disability to Enable Policy (ADDEP) Resource Report Resource Website |
Archive of Data on Disability to Enable Policy (ADDEP) (RRID:SCR_016315) | ADDEP | service resource, data or information resource, data repository, storage service resource | Provides access to data including wide range of topics related to disability. ADDEP data can be used to better understand and inform the implementation of Americans with Disabilities Act and other disability policies. | Data, access, disability | is recommended by: National Library of Medicine | NICHD ; NINDS ; NIBIB |
SCR_016315 | Archive of Data on Disability to Enable Policy | 2026-08-03 09:36:22 | 0 | ||||||||
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Center for EPR Imaging in Vivo Physiology Resource Report Resource Website |
Center for EPR Imaging in Vivo Physiology (RRID:SCR_001410) | Center for EPR Imaging in Vivo Physiology | training resource, biomedical technology research center | Biomedical technology research center that develops instrumentation, analysis techniques, spin probes and spin traps, and methodologies for imaging physiologically relevant aspects of tissue fluids, including high-resolution oxygen maps, with very low frequency electron paramagnetic resonance imaging (EPRI). Novel bridges and high-access, low-field magnet/gradient systems have produced physiologically relevant measurements and accommodate a number of resonant structures. The Center is a consortium between the University of Chicago, the University of Denver, the University of Maryland and Novosibirsk Institute of Organic Chemistry (NIOC), Russia. | electron paramagnetic resonance, in vivo, spin probe | has parent organization: University of Chicago; Illinois; USA | Diseased, Healthy | NIBIB 4P41EB002034-17 | nlx_152632 | SCR_001410 | Center for Electron Paramagnetic Resonance (EPR) Imaging in Vivo Physiology, Center for Electron Paramagnetic Resonance Imaging in Vivo Physiology, Very Low Frequency ERP Imaging In Vivo Physiology | 2026-08-03 09:31:19 | 0 | ||||||
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Laser Microbeam and Medical Program Resource Report Resource Website 1+ mentions |
Laser Microbeam and Medical Program (RRID:SCR_001409) | LAMMP | training resource, biomedical technology research center | Biomedical technology research center dedicated to the use of lasers and optics in biology and medicine with activities in technological research and development, collaborative research, service, training, and dissemination. One of the primary goals of LAMMP is to facilitate translational research by rapidly moving basic science and technology discoveries from blackboard to benchtop to bedside. This is accomplished by combining state of the art optical technologies with specialized resource facilities for cell and tissue engineering, histopathology, pre-clinical animal models, and clinical care. The resource center has been organized into 3 cores: * Microscopy and Microbeam Technologies (MMT) for high-resolution functional imaging and manipulation of living cells and tissues * Medical Translational Technologies (MTT) for non- and minimally-invasive monitoring, treating, and imaging pre-clinical animal models and human subjects, and * Virtual Photonics Technologies (VPT) for developing computational models and methods that advance the performance of biophotonic technologies, and enhance the information content derived from optical measurements. LAMMP cores contain complementary technologies that are capable of quantitatively characterizing, imaging, and perturbing structure and biochemical function in cells and tissues with scalable resolution and depth sensitivity ranging from micrometers to centimeters. | laser, optics, biology, medicine, imaging, microscopy, microbeam, photonics, computational model, cell, tissue | has parent organization: University of California at Irvine; California; USA | NIBIB P41EB015890 | Free, Freely Available | nlx_152631 | http://lammp.bli.uci.edu/ | SCR_001409 | 2026-08-03 09:31:21 | 4 | ||||||
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Pittsburgh NMR Center for Biomedical Research Resource Report Resource Website |
Pittsburgh NMR Center for Biomedical Research (RRID:SCR_001408) | Pittsburgh NMR Center for Biomedical Research | training resource, biomedical technology research center | THIS RESOURCE IS NO LONGER IN SERVICE. Documented on March 19,2024. Biomedical Technology Research Center that develops methodologies for the acquisition of morphological, biochemical, cellular, and functional information in living animals using nuclear magnetic resonance imaging (MRI) and spectroscopy (MRS). Novel techniques utilizing multidimensional MR imaging, magnetic resonance microscopy (MRM), and multinuclear in vivo spectroscopy are being applied to a wide range of problems in the biomedical sciences. | mri, magnetic resonance spectroscopy, imaging, in vivo, nuclear magnetic resonance imaging, magnetic resonance microscopy, multinuclear | has parent organization: Carnegie Mellon University; Pennsylvania; USA | NIBIB P41 EB001977 | THIS RESOURCE IS NO LONGER IN SERVICE | nlx_152651 | SCR_001408 | 2026-08-03 09:31:18 | 0 | |||||||
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Hyperpolarized MRI Technology Resource Center Resource Report Resource Website |
Hyperpolarized MRI Technology Resource Center (RRID:SCR_001405) | Hyperpolarized MRI Technology Resource Center | training resource, biomedical technology research center | Biomedical technology research center developing, investigating, and disseminating new hyperpolarized MR techniques, new 13C agents and specialized analysis open-source software for data reconstruction and interpretation. The Technology Research & Development projects will leverage the extensive DNP facilities and experience of the project leaders to develop improved, robust hyperpolarized MRI methods. These technology developments will be driven by Collaborative Projects led by outstanding clinical and basic scientists who aim to use hyperpolarized 13C MRI to accomplish the scientific goals of their funded research. These technical developments will also be disseminated to the Service Project investigators for extramural feedback and then widely to the scientific community via a dedicated website and onsite training. This center will provide state-of-the-art training in this new metabolic imaging field and sponsor a yearly symposium focused on hyperpolarized MR technology development. | mri, hyperpolarized, dynamic nuclear polarization, imaging, carbon-13 | has parent organization: University of California at San Francisco; California; USA | NIBIB P41EB013598 | Free, Freely Available | nlx_152628 | SCR_001405 | UCSF Hyperpolarized MRI Technology Resource Center | 2026-08-03 09:31:18 | 0 | ||||||
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Radiological Research Accelerator Facility Resource Report Resource Website 1+ mentions |
Radiological Research Accelerator Facility (RRID:SCR_001425) | RARAF | access service resource, training resource, service resource, biomedical technology research center | Biomedical technology research center dedicated for radiobiological research with available ionizing radiations such as protons, alpha particles, and neutrons. RARAF is well-established and highly user-friendly. The focus of RARAF is the development of high-throughput single-cell/single-particle microbeams, which can deliver defined amounts of ionizing radiation into individual cells with a spatial resolution of a few microns or better. The ability of a microbeam to put double strand break damage at any specific known location in a given cell has allowed new approaches to the study of damage signaling. | radiobiological, ionizing radiation, proton, alpha particle, neutron, radiation, microbeam, irradiator, accelerator, ion, x-ray, cell | has parent organization: Columbia University; New York; USA | NIBIB P41 EB002033 | Free, Freely Available | nlx_152647 | SCR_001425 | Columbia University Radiological Research Accelerator Facility | 2026-08-03 09:31:19 | 1 | ||||||
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Center for In Vivo Microscopy Resource Report Resource Website 10+ mentions |
Center for In Vivo Microscopy (RRID:SCR_001426) | CIVM | training resource, biomedical technology research center | Biomedical technology research center dedicated to the development of novel imaging methods for the basic scientist and the application of the methods to important biomedical questions. The CIVM has played a major role in the development of magnetic resonance microscopy with specialized MR imaging systems capable of imaging at more than 500,000x higher resolution than is common in the clinical domain. The CIVM was the first to demonstrate MR images using hyperpolarized 3He which has been moved from mouse to man with recent clinical trials performed at Duke in collaboration with GE. More recently the CIVM has developed the molecular imaging workbench---a system dedicated to multimodality cardiopulmonary imaging in the rodent. Their collaborators are employing these unique imaging systems in an extraordinary range of mouse and rat models of neurologic disease, cardiopulmonary disease and cancer to illuminate the underlying biology and explore new therapies. | imaging, magnetic resonance microscopy, magnetic resonance imaging, clinical, mri, ct, x-ray, ultrasound, confocal, optical, spect | has parent organization: Duke University; North Carolina; USA | Cardiopulmonary disease, Cancer, Neurological disease | NIBIB 4P41EB015897-27 | Free, Freely Available | nlx_152650 | SCR_001426 | Duke Center for In Vivo Microscopy | 2026-08-03 09:31:22 | 10 | |||||
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RESBIO Resource Report Resource Website 1+ mentions |
RESBIO (RRID:SCR_001424) | RESBIO | training resource, biomedical technology research center | Biomedical technology research center that works to develop integrated tools and technologies that advance the discovery of polymeric biomaterials for regenerative medicine, the delivery of biological agents, and the next generation of medical implants. To achieve its mission, RESBIO's research is focused on the development of combinatorial and computational approaches to biomaterials design and optimization. Within this framework, RESBIO employs and uses: * Advanced multi-photon confocal laser microscopy to explore, understand, and control the response of cells in contact with artificial surfaces * Electron microscopy techniques to study the effect of nano-scale surface morphological features on cell behavior RESBIO research emphasizes the integration of a strong synthetic effort to create new biomaterial candidates with the development of rapid screening techniques for key material and biological properties relevant to the performance of a biomaterial in a given medical application. | polymeric biomaterial, regenerative medicine, biological agent, medical implant, biomaterial, design, optimization, delivery, confocal laser microscopy, electron microscopy, cell | has parent organization: Rutgers University; New Jersey; USA | NIBIB 4P41EB001046-14 | Free, Freely Available | nlx_152646 | http://www.njbiomaterials.org/web/index.php?p=resbio | SCR_001424 | Polymeric Biomaterials Resource, Integrated Technologies for Polymeric Biomaterials | 2026-08-03 09:31:19 | 1 | |||||
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Center for Magnetic Resonance and Optical Imaging Resource Report Resource Website 1+ mentions |
Center for Magnetic Resonance and Optical Imaging (RRID:SCR_001428) | CMROI | training resource, biomedical technology research center | Biomedical technology research center dedicated to the development and application of innovative, novel magnetic resonance and optical imaging techniques. The facility's core sections provide research and computing resources for numerous user, collaborative, and training projects. The focus of this resource is on developing instrumentation, methodologies, and data analysis techniques for the quantitative assessment of functional, structural, and metabolic parameters in humans with the use of multinuclear magnetic resonance, novel spectral, perfusion, functional, and optical imaging techniques. These technological developments are driven by collaboration with scientists from within and outside University of Pennsylvania, the primary institution. Specifically, the Resource is focused on the development of quantitative, noninvasive MR and optical imaging based biomarkers for studying tissue metabolism and function, with an eye towards clinical translation through early diagnosis. The Center also provides support in the development and evaluation of new therapies in a variety of diseases. | magnetic resonance imaging, optical imaging, multinuclear magnetic resonance | has parent organization: University of Pennsylvania Perelman School of Medicine; Pennsylvania; USA | NIBIB P41 EB015893 | Free, Freely Available | nlx_152652 | http://cmroi.med.upenn.edu/ | SCR_001428 | 2026-08-03 09:31:19 | 1 | ||||||
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National Center for Image-Guided Therapy Resource Report Resource Website 1+ mentions |
National Center for Image-Guided Therapy (RRID:SCR_001419) | NCIGT | training resource, biomedical technology research center | Biomedical Technology Resource Center that serves as a national resource for all aspects of research into medical procedures that are enhanced by imaging. Its common goal is to provide more effective patient care. The center is focused on the multidisciplinary development of innovative image-guided intervention technologies to enable effective, less invasive clinical treatments that are not only more economical, but also produce better results for patients. The NCIGT is helping to implement this vision by serving as a proving ground for some of the next generation of medical therapies. | clinical, patient care, imaging, medical procedure | has parent organization: Harvard Medical School; Massachusetts; USA | NIBIB P41EB015898 | Free, Freely Available | nlx_152641 | SCR_001419 | National Center for Image Guided Therapy | 2026-08-03 09:31:22 | 2 |
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