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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.

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On page 34 showing 661 ~ 680 out of 688 results
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  • RRID:SCR_017000

    This resource has 1+ mentions.

http://casestudies.brain-map.org/celltax

Cellular Taxonomy of Mouse Visual Cortex by analyzing gene expression patterns at single cell level. Construction of cellular taxonomy of one cortical region, primary visual cortex, in adult mice done on basis of single cell RNA sequencing.

Proper citation: CellTax vignette (RRID:SCR_017000) Copy   


http://neuralsci.org/neuracell

Core facility provides neural stem cells (NSC) and everything you need to grow them, custom lentiviral shRNA and over-expression vectors, consult based characterization service where we can assess how your products or reagents affect stem cell performance and behavior. Services include:Cell Supply,Adult SVZ Neural Stem Cells,Any Age Embryonic stem cells from any region of the brain,Human Retinal Pigmented Epithelial cells,RPE iPSCs,iPSCs,Neural Progenitor Cells (NPCs),Custom Orders,Media/ Dissociation Reagents,High-performance Media formulated according to optimal cell growth conditions,Complete Defined Media for Neural Stem Cell Culture,Complete Defined Media for Human Retinal Pigmented Epithelial Culture,Cell characterization. Performs assays to verify how stem cell populations behave in response to certain environments, plastics, reagents, etc., using trade secret assays via FACS and cell culture techniques. This can be used for neural stem cells as well as embryonic stem cells.Cell banking solutions shall ensure that their integrity is maintained, and that sufficient supply is readily available. We will also expand cells, harvest cells, generation the freezing medium and thaw cells to test performance. Provides Generation of custom lentiviral shRNA constructs,Generation of custom lentiviral over-expression constructs,Supply of NSC lines already expressing these shRNA or over-expression constructs.

Proper citation: Neural Stem Cell Institute NeuraCell Core Facility (RRID:SCR_017821) Copy   


http://www.uzh.ch/keyinst/loreta

Software application which computes cortical three-dimensional distribution of current density of the brain based on the scalp-recorded electric potential distribution. The exact low resolution brain electromagnetic tomography method has the property of exact localization to test point sources, yielding images of current density with exact localization, albeit with low spatial resolution. eLORETA has no localization bias even in the presence of structured noise. Deep structures, such as the anterior cingulate cortex and mesial temporal lobes, can be correctly localized with these methods.

Proper citation: exact Low Resolution Electromagnetic Tomography (RRID:SCR_013830) Copy   


https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3520032/

Algorithm for computational imaging of MRI data that detects and quantifies ischemic core–penumbra using only a single MRI modality (T2- or diffusion-weighted imaging, T2WI/DWI). It can be used with 3D data on lesions and normal-appearing brain matter (NABM) volumes.

Proper citation: Hierarchical Region Splitting (RRID:SCR_016398) Copy   


  • RRID:SCR_017348

    This resource has 100+ mentions.

https://www.mbfbioscience.com/neurolucida-explorer

Companion analytical software for Neurolucida and Neurolucida 360, designed to perform extensive morphometric analysis on neuron reconstructions, serial section reconstructions, and brain maps.

Proper citation: Neurolucida Explorer (RRID:SCR_017348) Copy   


https://sourceforge.net/projects/bva-io/

Software package for interfacing the Brain Vision Analyser data files (load/save) for ongoing development of Matlab routines . This package is also compatible with the EEGLAB software, and may be uncompressed in the plugin folder of this software.

Proper citation: BVA import/export EEGLAB plugin (RRID:SCR_016333) Copy   


  • RRID:SCR_000576

    This resource has 1+ mentions.

http://neurobureau.projects.nitrc.org/ADHD200/Introduction.html

Preprocessed versions of the ADHD-200 Global Competition data including both preprocessed versions of structural and functional datasets previously made available by the ADHD-200 consortium, as well as initial standard subject-level analyses. The ADHD-200 Sample is pleased to announce the unrestricted public release of 776 resting-state fMRI and anatomical datasets aggregated across 8 independent imaging sites, 491 of which were obtained from typically developing individuals and 285 in children and adolescents with ADHD (ages: 7-21 years old). Accompanying phenotypic information includes: diagnostic status, dimensional ADHD symptom measures, age, sex, intelligence quotient (IQ) and lifetime medication status. Preliminary quality control assessments (usable vs. questionable) based upon visual timeseries inspection are included for all resting state fMRI scans. In accordance with HIPAA guidelines and 1000 Functional Connectomes Project protocols, all datasets are anonymous, with no protected health information included. They hope this release will open collaborative possibilities and contributions from researchers not traditionally addressing brain data so for those whose specialties lay outside of MRI and fMRI data processing, the competition is now one step easier to join. The preprocessed data is being made freely available through efforts of The Neuro Bureau as well as the ADHD-200 consortium. They ask that you acknowledge both of these organizations in any publications (conference, journal, etc.) that make use of this data. None of the preprocessing would be possible without the freely available imaging analysis packages, so please also acknowledge the relevant packages and resources as well as any other specific release related acknowledgements. You must be logged into NITRC to download the ADHD-200 datasets, http://www.nitrc.org/projects/neurobureau

Proper citation: ADHD-200 Preprocessed Data (RRID:SCR_000576) Copy   


  • RRID:SCR_000170

http://mindhacks.com/

Mind Hacks: Neuroscience and psychology tricks to find out what's going on inside your brain. Mind Hacks is also a book by Tom Stafford and Matt Webb.

Proper citation: Mind Hacks (RRID:SCR_000170) Copy   


https://www.utsouthwestern.edu/education/medical-school/departments/neurology/research/microscopy-facility/

Core suited to advance study of traumatic brain injury, as well as other neurological and psychiatric disorders.Utilizes microscopy strategies to evaluate neuropathology across micro-, meso-, and macro-scales of inquiry. Provides access to microscopes including TissueCyte 1000 multi-photon microscopes,Hamamatsu NanoZoomer 2.0-HT,Zeiss Axioscan.Z1. Offers access to fluorescence stereomicroscope and upright microscope, both with digital cameras, as well as sectioning equipment (cryostat, microtome, and vibrotome). Provide computer available for use running MicroBrightField Stereo Investigator and Neurolucida software packages for offline stereological analysis, neuron tracing, and 3D rendering of large, whole-brain datasets.

Proper citation: Texas University Southwestern Medical Center Whole Brain Microscopy Core Facility (RRID:SCR_017949) Copy   


https://www.bidmc.org/research/research-by-department/radiology/mri-research/mri-facilities/translational-mri-research-core

Core provides MRI capabilities for imaging human subjects and potentially large animals as part of research studies. Facility operates GE Discovery MR750 3T whole-body scanner and can provide access to 1.5T system. Scanner is FDA cleared for clinical use. It has proprietary software including pulse programming environments and reconstruction programs and customizable software and protocols for applications including functional and structural brain imaging, abdominal perfusion and diffusion, muscle functional imaging and spectroscopy are available to users.Support for fMRI acquisition and visual and auditory stimulus presentation, diffusion tensor imaging, spectroscopy, and high quality anatomic imaging is available. The system has specialized receiver coils for sensitive imaging of particular anatomy. Additional customized coils can be manufactured in our RF lab. The system also has full broadband capability for multinuclear MRI and MRS, including (F-19, C-13, P-31, and Na-23).Our facility can also provide Image Post-processing and computerized image transfer, assistance to ensure MRI equipment safety, and can facilitate Clinical Readings.

Proper citation: Beth Israel Deaconess Medical Center Translational MRI Research Core Facility (RRID:SCR_017950) Copy   


http://www.strokecenter.org/radiology/

The Internet Stroke Center at Washington University is pleased to offer this module for viewing CT, MR, and angiogram images of cerebrovascular and neurological diseases. While this project is still being perfected -- and many more cases have yet to be added -- we hope that you will find this collection useful in your education and practice. The images presented here are for educational use only. This information may not be used for diagnosis or treatment. All images are protected property of the Internet Stroke Center at Washington University and may not be reproduced without permission. Permission may be granted to students and professionals to borrow images from this site for educational purposes and/or presentations; we just ask that an email be sent detailing both the desired material and the intended use. Please direct all comments, questions, and requests to the Site Editor of the Internet Stroke Center.

Proper citation: Neurology Image Library from The Internet Stroke Center (RRID:SCR_013633) Copy   


  • RRID:SCR_013736

    This resource has 100+ mentions.

http://web.stanford.edu/group/barres_lab/brain_rnaseq.html

Database containing RNA-Seq transcriptome and splicing data from glia, neurons, and vascular cells of cerebral cortex. Collection of RNA-Seq transcriptome and splicing data from glia, neurons, and vascular cells of mouse cerebral cortex. RNA-Seq of cell types isolated from mouse and human brain.

Proper citation: Brain RNA-Seq (RRID:SCR_013736) Copy   


  • RRID:SCR_014757

    This resource has 10+ mentions.

http://findlab.stanford.edu/functional_ROIs.html

Atlas of functional ROI's, including individual networks (auditory network, sensorimotor network, etc.). Atlases of individual networks and combined networks are available for download directly from the website.

Proper citation: 90 fROI atlas (RRID:SCR_014757) Copy   


http://www.cdtdb.neuroinf.jp/CDT/Top.jsp

A platform that allow users to visualize and analyze transcriptome data related to the genetics that underlie the development, function, and dysfunction stages and states of the brain. Users can search for cerebellar development genes by name, ID, keyword, expression, and tissue specificity. Search results include general information, links, temporal, spatial, and tissue information, and gene category.

Proper citation: Brain Transcriptome Database (RRID:SCR_014457) Copy   


http://www.nitrc.org/projects/whs-sd-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.

Proper citation: Waxholm Space Atlas of the Sprague Dawley Rat Brain (RRID:SCR_017124) Copy   


  • RRID:SCR_017479

    This resource has 100+ mentions.

http://mouse.brain-map.org/

Genome wide database of gene expression in mouse brain. Genome-wide atlas of gene expression in the adult mouse brain.

Proper citation: ABA Mouse Brain: Atlas (RRID:SCR_017479) Copy   


  • RRID:SCR_016229

http://www.nitrc.org/projects/bravissima

Project that is a translation of the BraVa arterial vasculature database into the NIFTI MRI file format that can be applied to stroke studies, fMRI resting state imaging studies and other clinical neuroscience studies. Group artery region labels and arterial density maps are provided as well. Human Brain Major Artery Atlas 10.7490/f1000research.1114378.1

Proper citation: Bravissima (RRID:SCR_016229) Copy   


  • RRID:SCR_017566

    This resource has 1+ mentions.

http://www.nitrc.org/projects/miitra/

Atlas for studies of older adult brain. Includes T1-weighted template of older adult brain and tissue probability maps. Exhibits high image sharpness, provides higher inter-subject spatial normalization accuracy compared to other standardized templates and similar normalization accuracy to well-constructed study-specific templates.

Proper citation: MIITRA atlas (RRID:SCR_017566) Copy   


  • RRID:SCR_018690

    This resource has 1+ mentions.

http://catlas.org/mousebrain/#!/

Atlas of gene regulatory elements in adult mouse cerebrum. Atlas of CIS elements, providing information on accessible chromatin in individual cells from regions of adult mouse isocortex, olfactory bulb, hippocampus and cerebral nuclei. Uses resulting data to define candidate cis-regulatory DNA elements in distinct cell groups. Many are linked to putative target genes expressed in diverse cerebral cell types and uncover transcriptional regulators involved in broad spectrum of molecular and cellular pathways in different neuronal and glial cell populations. Used for analysis of gene regulatory programs of mammalian brain and interpretation of non-coding risk variants associated with various neurological disease and traits in humans.

Proper citation: CATlas (RRID:SCR_018690) Copy   


  • RRID:SCR_006099

    This resource has 100+ mentions.

http://www.pymvpa.org

A Python package intended to ease statistical learning analyses of large datasets. It offers an extensible framework with a high-level interface to a broad range of algorithms for classification, regression, feature selection, data import and export. While it is not limited to the neuroimaging domain, it is eminently suited for such datasets. PyMVPA is truly free software (in every respect) and additionally requires nothing but free-software to run. Decoding patterns of neural activity onto cognitive states is one of the central goals of functional brain imaging. Standard univariate fMRI analysis methods, which correlate cognitive and perceptual function with the blood oxygenation-level dependent (BOLD) signal, have proven successful in identifying anatomical regions based on signal increases during cognitive and perceptual tasks. Recently, researchers have begun to explore new multivariate techniques that have proven to be more flexible, more reliable, and more sensitive than standard univariate analysis. Drawing on the field of statistical learning theory, these new classifier-based analysis techniques possess explanatory power that could provide new insights into the functional properties of the brain. However, unlike the wealth of software packages for univariate analyses, there are few packages that facilitate multivariate pattern classification analyses of fMRI data. This Python-based, cross-platform, open-source software toolbox software toolbox for the application of classifier-based analysis techniques to fMRI datasets makes use of Python's ability to access libraries written in a large variety of programming languages and computing environments to interface with the wealth of existing machine learning packages.

Proper citation: PyMVPA (RRID:SCR_006099) Copy   



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