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  • RRID:SCR_002569

    This resource has 1+ mentions.

http://www.med.unc.edu/bric/ideagroup/free-softwares/unc-infant-0-1-2-atlases

3 atlases dedicated for neonates, 1-year-olds, and 2-year-olds. Each atlas comprises a set of 3D images made up of the intensity model, tissue probability maps, and anatomical parcellation map. These atlases are constructed with the help of state-of-the-art infant MR segmentation and groupwise registration methods, on a set of longitudinal images acquired from 95 normal infants (56 males and 39 females) at neonate, 1-year-old, and 2-year-old.

Proper citation: UNC Infant 0-1-2 Atlases (RRID:SCR_002569) Copy   


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

A 3D stereoscopic (anaglyph method) full brain functional connectivity atlas created using a parcellation atlas published by Craddock et al. (2012). Using 3D Slicer 3.6.3 and the two hundred Region of Interest (ROI) version of the Craddock atlas, 200 grayscale surface models were created using a z-stat threshold > 2.3, and each surface model was processed with a surface decimation algorithm, smoothed with the Taubin algorithm and without surface normals. For improved visualization of the functional connectivity networks and their relative anatomical position, the surface model of five subcortical anatomical structures (corpus callosum, bilateral caudate, pallidum, putamen, thalamus, amygdala and hippocampus) were included in SAIBN. These surfaces were created with 3D Slicer using the segmentation computed with Freesurfer v. 5.1. The viewer should use red-cyan glasses to see the 3D stereoscopic effect using 3D Slicer (version 3.6.3, http://www.slicer.org/pages/Special:SlicerDownloads).

Proper citation: Stereoscopic Atlas of Intrinsic Brain Networks (RRID:SCR_002568) Copy   


  • RRID:SCR_002884

    This resource has 1+ mentions.

http://www.gensat.org/retina.jsp

Collection of images from cell type-specific protein expression in retina using BAC transgenic mice. Images from cell type-specific protein expression in retina using BAC transgenic mice from GENSAT project.

Proper citation: Retina Project (RRID:SCR_002884) Copy   


http://www.nature.com/nature/videoarchive/index.html

For selected articles and letters Nature presents streaming videos featuring interviews with scientists behind the research and analysis from Nature editors. To view the videos you will need the free Flash browser plugin. You can also visit the Nature Video YouTube channel which enables you to easily embed and share our videos through websites, mobile devices, blogs and email.

Proper citation: Nature Online Video Streaming Archive (RRID:SCR_003432) Copy   


http://zebrafinch.brainarchitecture.org/

Atlas of high resolution Nissl stained digital images of the brain of the zebra finch, the mainstay of songbird research. The cytoarchitectural high resolution photographs and atlas presented here aim at facilitating electrode placement, connectional studies, and cytoarchitectonic analysis. This initial atlas is not in stereotaxic coordinate space. It is intended to complement the stereotaxic atlases of Akutegawa and Konishi, and that of Nixdorf and Bischof. (Akutagawa E. and Konishi M., stereotaxic atalas of the brain of zebra finch, unpublished. and Nixdorf-Bergweiler B. E. and Bischof H. J., A Stereotaxic Atlas of the Brain Of the Zebra Finch, Taeniopygia Guttata, http://www.ncbi.nlm.nih.gov.) The zebra finch has proven to be the most widely used model organism for the study of the neurological and behavioral development of birdsong. A unique strength of this research area is its integrative nature, encompassing field studies and ethologically grounded behavioral biology, as well as neurophysiological and molecular levels of analysis. The availability of dimensionally accurate and detailed atlases and photographs of the brain of male and female animals, as well as of the brain during development, can be expected to play an important role in this research program. Traditionally, atlases for the zebra finch brain have only been available in printed format, with the limitation of low image resolution of the cell stained sections. The advantages of a digital atlas over a traditional paper-based atlas are three-fold. * The digital atlas can be viewed at multiple resolutions. At low magnification, it provides an overview of brain sections and regions, while at higher magnification, it shows exquisite details of the cytoarchitectural structure. * It allows digital re-slicing of the brain. The original photographs of brain were taken in certain selected planes of section. However, the brains are seldom sliced in exactly the same plane in real experiments. Re-slicing provides a useful atlas in user-chosen planes, which are otherwise unavailable in the paper-based version. * It can be made available on the internet. High resolution histological datasets can be independently evaluated in light of new experimental anatomical, physiological and molecular studies.

Proper citation: Zebrafinch Brain Architecture Project (RRID:SCR_004277) Copy   


http://www.youtube.com/user/SacklerColloquia#g/u

This is the Sackler Colloquia YouTube channel. The Arthur M. Sackler Colloquia of the National Academy of Sciences address scientific topics of broad and current interest, cutting across the boundaries of traditional disciplines. Each year, several colloquia are scheduled, typically two days in length and international in scope. Each colloquium is organized by a member of the Academy, often with the assistance of an organizing committee, and feature presentations by leading scientists in the field and discussions with a hundred or more researchers with an interest in the topic. These colloquia are made possible by a generous gift from Jill Sackler, in memory of her husband, Arthur M. Sackler.

Proper citation: Sackler Colloquia's YouTube Channel (RRID:SCR_005126) Copy   


http://www.youtube.com/user/WholeBrainCatalog?feature=autoshare

Videos uploaded to YouTube by the Whole Brain Catalog.

Proper citation: WholeBrainCatalog's Channel - YouTube (RRID:SCR_005436) Copy   


http://cmrm.med.jhmi.edu/cmrm/atlas/human_data/file/JHUtemplate_newuser.html

DTI white matter atlases with different data sources and different image processing. These include single-subject, group-averaged, B0 correction, processed atlases (White Matter Parcellation Map, Tract-probability maps, Conceptual difference between the WMPM and tract-probability maps), and linear or non-linear transformation for automated white matter segmentation. # Adam single-subject white matter atlas (old version): These are electronic versions of atlases published in Wakana et al, Radiology, 230, 77-87 (2004) and MRI Atlas of Human White Matter, Elsevier. ## Original Adam Atlas: 256 x 256 x 55 (FOV = 246 x 246 mm / 2.2 mm slices) (The original matrix is 96x96x55 (2.2 mm isotropic) which is zerofilled to 256 x 256 ## Re-sliced Adam Atlas: 246 x 246 x 121 (1 mm isotropic) ## Talairach Adam: 246 x 246 x 121 (1 mm isotropic) # New Eve single-subject white matter atlas: The new version of the single-subject white matter atlas with comprehensive white matter parcellation. ## MNI coordinate: 181 x 217 x 181 (1 mm isotropic) ## Talairach coordinate: 181 x 217 x 181 (1 mm isotropic) # Group-averaged atlases: This atlas was created from their normal DTI database (n = 28). The template was MNI-ICBM-152 and the data from the normal subjects were normalized by affine transformation. Image dimensions are 181x217x181, 1 mm isotropic. There are two types of maps. The first one is the averaged tensor map and the second one is probabilistic maps of 11 white matter tracts reconstructed by FACT. # ICBM Group-averaged atlases: This atlas was created from ICBM database. All templates follow Radiology convention. You may need to flip right and left when you use image registration software that follows the Neurology convention.

Proper citation: DTI White Matter Atlas (RRID:SCR_005279) Copy   


  • RRID:SCR_005463

http://www.youtube.com/user/sfnvideo

The Society for Neuroscience (SfN) is a nonprofit membership organization of scientists and physicians who study the brain and nervous system. SFNVideo - YouTube are videos uploaded to YouTube by the Society for Neuroscience (SfN). Since inception in 1969, the Society has grown from 500 members to more than 41,000. Today, SfN is the world''s largest organization of scientists and physicians devoted to advancing understanding of the brain and nervous system.

Proper citation: sfnvideo - YouTube (RRID:SCR_005463) Copy   


https://www.youtube.com/user/iniusc

Videos uploaded to YouTube by the Laboratory of Neuro Imaging (LONI). The Laboratory of Neuro Imaging at UCLA strives to improve our understanding of the brain in health and disease. LONI is a leader in the development of advanced computational algorithms and scientific approaches for the comprehensive and quantitative mapping of brain structure and function.

Proper citation: Laboratory of Neuro Imaging - YouTube (RRID:SCR_005462) Copy   


  • RRID:SCR_023604

    This resource has 1+ mentions.

https://www.keyence.com/

Direct sales organization that develops and manufactures automation sensors, vision systems, barcode readers, laser markers, measuring instruments, and digital microscopes. Founder Takemitsu Takizaki. Headquarters Osaka, Osaka, Japan.

Proper citation: Keyence (RRID:SCR_023604) Copy   


  • RRID:SCR_023721

    This resource has 1+ mentions.

https://github.com/KumarLabJax/JABS-behavior-classifier

Video based phenotyping platform for laboratory mouse. Provides complete details of software and hardware, including 3D designs used for data collection. Data acquisition system consists of video collection hardware and software, behavior labeling and active learning app, and online database for sharing classifiers. Hardware and software solution collects high quality data for behavior analysis.

Proper citation: JAX Animal Behavior System (RRID:SCR_023721) Copy   


https://industry.nikon.com/en-us/products/x-ray-ct/xt-h-225-xt-h-320/

Provides insight into the inside of components and specimens, allowing users to visualize, analyze and measure complex internal geometry as well as surfaces, all non-destructively. Versatile microfocus CT system for high resolution inspection in R&D and failure analysis of components ranging from tiny plastic connectors up to aluminum castings.

Proper citation: Nikon: XT H 225 ST uCT system (RRID:SCR_023687) Copy   


  • RRID:SCR_023609

    This resource has 10+ mentions.

https://andor.oxinst.com/

Provides development and manufacture of high performance scientific digital cameras, microscopy systems and spectrographs for academic, industrial and government applications.

Proper citation: Andor (RRID:SCR_023609) Copy   


  • RRID:SCR_023608

    This resource has 10+ mentions.

https://www.bruker.com/en.html

Bruker Daltonics is subsidary of Bruker Corporation American. Bruker is manufacturer of scientific instruments for molecular and materials research, as well as for industrial and applied analysis.

Proper citation: Bruker Daltonics (RRID:SCR_023608) Copy   


https://www.10xgenomics.com/instruments/xenium-analyzer

Xenium Analyzer offers subcellular profiling of 100s to 1,000s of RNA targets alongside multiplexed protein, in fresh, frozen or FFPE tissue.

Proper citation: 10x Genomics: Xenium Analyzer (RRID:SCR_023910) Copy   


https://github.com/eMetaboHUB/Forum-LiteraturePropagation

Method extending ’guilt by association’ principle to literature information by using Bayesian framework to suggest diseases associated with overlooked metabolites.

Proper citation: Forum Literature Propagation (RRID:SCR_023874) Copy   


  • RRID:SCR_023774

    This resource has 10+ mentions.

https://www.akoyabio.com/

Spatial biology company offering solutions for high parameter tissue analysis from discovery through clinical and translational research, enabling development of more precise therapies for immuno-oncology and other drug development applications.

Proper citation: Akoya Biosciences (RRID:SCR_023774) Copy   


https://www.akoyabio.com/phenocycler/instrument/

PhenoCycler-Fusion system is integrated platform combining automated, ultrahigh-plex cycling platform, Akoya PhenoCycler, and its high-speed imaging platform, PhenoImager (formerly Phenoptics), into end-to-end, integrated workflow.

Proper citation: Akoya Biosciences: PhenoCycler-Fusion (RRID:SCR_023773) Copy   


https://www.shoprainin.com/Pipettes/Single-Channel-Manual-Pipettes/Pipet-Lite-XLS-LTS/Pipet-Lite-LTS-Pipette-L-1000XLS%2B/p/17014382

Pipet-Lite™ XLS+ manual single-channel pipette, 100-1000 μL, uses LTS™ LiteTouch™ tips. Accurate and precise, ergonomic, autoclavable liquid end, rugged and durable (L-1000XLS+)

Proper citation: Rainin: Pipet-Lite LTS Pipette L-1000XLS+ (RRID:SCR_023894) Copy   



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