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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.
http://www.scienceexchange.com/facilities/nnin-nano-research-facility-wustl
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 15,2024. Nano Research Facility (NRF) at Washington University in St. Louis is a NNIN nodal facility supported by the National Science Foundation. It cultivates an open, shared research, and education environment that brings researchers across disciplines together, particularly in the emerging area of nanomaterials with applications in the energy, environment, and biomedical fields. The mission is to be a resource to the scientific and technical community for the advancement of nanoscience and nanotechnology in a safe and environmentally benign manner. NRF includes a micro- and nano-fabrication lab (clean room), surface characterization lab, particle technology lab, and imaging lab with a focus on bio-imaging. NRF provides unique technical expertise in: Knowledge-based synthesis of nanostructured materials Particle instrumentation tools for toxicity studies Non-invasive imaging modalities for biological applications Clean Energy Applications Energy and Environmental nanotechology Environmental Health and Safety As a member of the National Nanotechnology Infrastructure Network (NNIN), supported by the National Science Foundation, NRF is available to both academic and industrial users nation-wide and across the globe.
Proper citation: WUSTL NNIN - Nano Research Facility (RRID:SCR_012674) Copy
https://github.com/nlm-irp-jianglab/SpikeHunter
Software deep learning tool for identifying phage tailspike proteins. Used to identify phage tailspike proteins.
Proper citation: SpikeHunter (RRID:SCR_024831) Copy
https://github.com/xinhe-lab/GSFA
Software R package that performs sparse factor analysis and differential gene expression discovery simultaneously on single cell CRISPR screening data.
Proper citation: Guided Sparse Factor Analysis (RRID:SCR_025023) Copy
Software tool for analysis of non-covalent interactions in molecular dynamics trajectories. Implemented in Python and is universally applicable to any kind of MD trajectory supported by MDAnalysis package.
Proper citation: PyContact (RRID:SCR_025066) Copy
Open access knowledge base for microbial natural products discovery. Database of microbially derived natural product structures. Provides coverage of bacterial and fungal natural products to visualize chemical diversity. Includes compounds and contains referenced data for structure, compound names, source organisms, isolation references, total syntheses, and instances of structural reassignment. Interactive web portal permits searching by structure, substructure, and physical properties. Provides mechanisms for visualizing natural products chemical space and dashboards for displaying author and discovery timeline data. Atlas has been developed under FAIR principles.
Proper citation: Natural Products Atlas (RRID:SCR_025107) Copy
http://www.bios.unc.edu/research/genomic_software/Matrix_eQTL/
Software tool for ultra fast eQTL analysis via large matrix operations.
Proper citation: MatrixEQTL (RRID:SCR_025513) Copy
https://bioconductor.org/packages/release/bioc/html/SomaticSignatures.html
Software R package for identifying mutational signatures of single nucleotide variants (SNVs) from high-throughput experiments.
Proper citation: SomaticSignatures (RRID:SCR_025620) Copy
Publicly accessible 3D data repository where subject experts, educators, and general public can find, view, interact with, and download 3D and 2D media representing physical objects important to the world’s natural history, cultural heritage, and scientific collections. Media data are contributed by a community that includes museums, institutions, researchers, scholars, and other subject experts who use MorphoSource to archive data, share findings, and increase scholarly impact. Contributed media represent both biological objects such as fossils and representatives of living species, as well as artifacts and objects created by humans that are critical to our shared cultural heritage.
Proper citation: MorphoSource (RRID:SCR_025654) Copy
https://nationalmaglab.org/user-facilities/high-b-t-facility
Facility to conduct experiments in high magnetic fields up to 15 tesla and at very low temperatures down to 0.4 mK simultaneously. Located at University of Florida in Gainesville, it is operated as part of Physics Department Microkelvin Laboratory.
Proper citation: National High Magnetic Field Laboratory High B/T Core Facility (RRID:SCR_017360) Copy
Facility offers array of solid state, solution state, MRI/S (animal and human), MR microscopy and diffusion capabilities and techniques. Among their machines is 900 MHz 105 mm bore magnet. Techniques and instruments are available at two different MagLab facilities in Florida, NMR-MRI/S Facility at MagLab headquarters near Florida State University in Tallahassee and Advanced Magnetic Resonance Imaging and Spectroscopy Facility (AMRIS) housed within McKnight Brain Institute at University of Florida in Gainesville.
Proper citation: National High Magnetic Field Laboratory Advanced Magnetic Resonance Imaging and Spectroscopy Core Facility (RRID:SCR_017362) Copy
http://bioimaging.dbi.udel.edu
Microscopy facility that houses equipment including confocal microscopes: LSM780 confocal microscope (Located at CBBI),LSM880 confocal microscope (Located at DBI 117),electron microscopes and their accessory instrumentation:Thermo Scientific Apreo VS SEM microscope,Hitachi S-4700, Leica EM ACE600 and Tousimis Autosamdri-815B,CX7 high content analysis system. Our staff has technical expertise across different microscopy platforms and methodologies.
Proper citation: University of Delaware BioImaging Center Core Facility (RRID:SCR_017814) Copy
http://www.udel.edu/chem/beebe/surface.htm
Core provides consulting and services in X-ray Photoelectron Spectroscopy (XPS or ESCA), Time-of-Flight Secondary-Ion Mass Spectrometry (TOF-SIMS), X-ray Photoelectron Imaging, Auger Electron Spectroscopy (AES), Scanning Auger Microscopy or Imaging (SAM), Secondary-Electron Microscopy (SEM), Ion-Scattering Spectroscopy (ISS or LEIS), Scanning Probe Microscopy (STM and AFM).
Proper citation: Delaware University Surface Analysis Core Facility (RRID:SCR_017796) Copy
https://www.mccormick.northwestern.edu/materials-science/clammp/
Core provides mechanical testing machines and accessories for conducting educational, research, and outreach experiments on most solid materials.
Proper citation: Northwestern University Central Laboratory for Materials Mechanical Properties Core Facility (RRID:SCR_017877) Copy
http://crl.berkeley.edu/molecular-imaging-center/
Microscopy core specializing in laser based fluorescence techniques. Offers training and expertise in 20 different microscope systems, including live cell and in vivo imaging, laser scanning (LSM) and spinning disk (SDC) confocal, multi-photon (2p), fluorescent lifetime imaging (FLIM), light-sheet microscopy (SPIM), super resolution (Airyscan), slide scanning and patterned illumination for optogenetic manipulation and readout. Provides offline computer analysis workstations for image processing, visualization and analysis, including GPU workstations. MIC operates in 3 different buildings on campus, with primary locations in Life Sciences Addition (LSA), North-side core in Barker Hall, and small outpost in Li Ka Shing Center for Biomedical and Health Sciences (LKS).Provides equipment in categories:Confocal and multi photon laser scanning microscopes,Spinning disk confocal microscopes,Lightsheet (SPIM) microscopes,Epifluorescence/widefield scopes and Computer workstations.
Proper citation: University of California at Berkeley Cancer Research Laboratory Molecular Imaging Center Core Facility (RRID:SCR_017852) Copy
https://www.danforthcenter.org/our-work/core-facilities/advanced-bioimaging-laboratory/
Core provides instruments for live cell imaging including Leica SP8-X confocal microscope and other fluorescence microscopes. Facility provides workstation for confocal image processing, ancillary equipment required for transmission electron microscopy. Services are provided as self services after user training by IMF staff or as full services done by core facility staff.
Proper citation: Donald Danforth Plant Science Center Advanced Bioimaging Laboratory Core Facility (RRID:SCR_018951) Copy
https://www.colorado.edu/rc/resources/petalibrary
Provides service to support storage, archival, and sharing of research data. Available at subsidized cost to any researcher affiliated with University of Colorado Boulder.
Proper citation: University of Colorado Boulder High Performance Computing PetaLibrary Core Facility (RRID:SCR_019299) Copy
https://github.com/kharchenkolab/conos
Software R package for joint analysis of multiple single-cell RNA-seq datasets. Used to wire together large collections of single-cell RNA-seq datasets, which allows for both identification of recurrent cell clusters and propagation of information between datasets in multi-sample or atlas-scale collections.
Proper citation: Conos (RRID:SCR_026381) Copy
https://github.com/compgenomics/MeTPeak
Software package for finding the location of m6A sites in MeRIP-seq data.
Proper citation: MeTPeak (RRID:SCR_026533) Copy
https://github.com/YuningHao/FARDEEP
Software R tool for enumerating immune cell subsets from whole tumor tissue samples. Utilizes adaptive least trimmed square to automatically detect and remove outliers before estimating cell compositions.
Proper citation: FARDEEP (RRID:SCR_026704) Copy
T-REX is a free, platform-independent online tool that allows for an integrated, rapid, and more robust analysis of T-RFLP data. Despite increasing popularity and improvements in terminal restriction fragment length polymorphism (T-RFLP) and other microbial community fingerprinting techniques, there are still numerous obstacles that hamper the analysis of these datasets. Many steps are required to process raw data into a format ready for analysis and interpretation. These steps can be time-intensive, error-prone, and can introduce unwanted variability into the analysis. Accordingly, we developed T-REX, free, online software for the processing and analysis of T-RFLP data. Analysis of T-RFLP data generated from a multiple-factorial study was performed with T-REX. With this software, we were able to i) label raw data with attributes related to the experimental design of the samples, ii) determine a baseline threshold for identification of true peaks over noise, iii) align terminal restriction fragments (T-RFs) in all samples (i.e., bin T-RFs), iv) construct a two-way data matrix from labeled data and process the matrix in a variety of ways, v) produce several measures of data matrix complexity, including the distribution of variance between main and interaction effects and sample heterogeneity, and vi) analyze a data matrix with the additive main effects and multiplicative interaction (AMMI) model.
Proper citation: T-REX (RRID:SCR_010715) Copy
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