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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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  • RRID:SCR_024087

    This resource has 1+ mentions.

https://sw-tools.rcsb.org/apps/CORE-WRAPPER/index.html

Software library that exports C++ mmCIF accessors to Python.

Proper citation: Core Wrapper (RRID:SCR_024087) Copy   


  • RRID:SCR_024000

    This resource has 1+ mentions.

https://github.com/brentp/cyvcf2

Software Python library and software package for fast parsing and querying of VCF and BCF files and illustrate its speed, simplicity and utility. Used for variant analysis.

Proper citation: cyvcf2 (RRID:SCR_024000) Copy   


  • RRID:SCR_024125

    This resource has 1+ mentions.

https://github.com/wdecoster/nanolyse

Software package to remove reads mapping to the lambda phage genome from a fastq file.

Proper citation: NanoLyse (RRID:SCR_024125) Copy   


  • RRID:SCR_001572

    This resource has 100+ mentions.

http://www.glycosciences.de/tools/sumo/

Service that searches carbohydrate structures for motifs commonly used for carbohydrate classification, like N- and O-glycan cores, Lewis antigens, etc. Note: Sumo is currently under construction. Motif searches are a frequently used tool in proteomics. For carbohydrate structures, there are also many motifs classified in the literature, e.g. the Lewis antigens or the diverse O-glycan core structures. Sumo is a tool to locate such motifs in a carbohydrate structure given in LINUCS or in IUPAC nomenclature., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.

Proper citation: sumo (RRID:SCR_001572) Copy   


  • RRID:SCR_024693

    This resource has 50+ mentions.

https://simpleitk.org/

Open source software library for multi dimensional image analysis in Python, R, Java, C#, Lua, Ruby, TCL and C++. New interface to Insight Segmentation and Registration Toolkit (ITK) designed to facilitate rapid prototyping, education and scientific activities via high level programming languages. Provides easy to use and simplified interface to ITK's algorithms.

Proper citation: SimpleITK (RRID:SCR_024693) Copy   


https://chordate.bpni.bio.keio.ac.jp/chordate/faba/1.4/top.html

Image resource including ascidian's three-dimensional (3D) and cross-sectional images through the developmental time course. These images were reconstructed from more than 3,000 high-resolution real images collected by confocal laser scanning microscopy (CLSM) at newly defined 26 distinct developmental stages (stages 1-26) from fertilized egg to hatching larva, which were grouped into six periods named the zygote, cleavage, gastrula, neurula, tailbud, and larva periods. The data set will be helpful in standardizing developmental stages for morphology comparison as well as for providing guidelines for several functional studies of a body plan in chordate.

Proper citation: Four-dimensional Ascidian Body Atlas (RRID:SCR_001691) Copy   


  • RRID:SCR_001454

    This resource has 1+ mentions.

http://www.cbs.dtu.dk/services/gwBrowser/

An interactive web application for visualizing genomic data of sequenced prokaryotic chromosomes. It allows users to carry out various analyses such as mapping alignments of homologous genes to other genomes, mapping of short sequencing reads to a reference chromosome, and calculating DNA properties such as curvature or stacking energy along the chromosome. The GeneWiz browser produces an interactive graphic that enables zooming from a global scale down to single nucleotides, without changing the size of the plot. Its ability to disproportionally zoom provides optimal readability and increased functionality compared to other browsers. The tool allows the user to select the display of various genomic features, color setting and data ranges. Custom numerical data can be added to the plot allowing, for example, visualization of gene expression and regulation data. Further, standard atlases are pre-generated for all prokaryotic genomes available in GenBank, providing a fast overview of all available genomes, including recently deposited genome sequences.

Proper citation: GeneWiz browser (RRID:SCR_001454) Copy   


  • RRID:SCR_024205

    This resource has 10+ mentions.

https://github.com/khowe/quicktree/

Software application as implementation of Neighbor-Joining algorithm, capable of reconstructing phylogenies from huge alignments.

Proper citation: quicktree (RRID:SCR_024205) Copy   


  • RRID:SCR_001725

    This resource has 10+ mentions.

http://django.nubic.northwestern.edu/fundo/

Tool that takes a list of genes and finds relevant diseases based on statistical analysis of the Disease Ontology annotation database. It accepts Entrez gene ids or gene symbols, separated by tabs, newlines, or commas. This list of genes can be obtained by microarray, proteomics, sequencing or other high-throughput screening methods.

Proper citation: FunDO (RRID:SCR_001725) Copy   


  • RRID:SCR_024587

    This resource has 1+ mentions.

https://github.com/SciTools/cartopy

Software Python package designed for geospatial data processing in order to produce maps and other geospatial data analyses. Cartographic library with matplotlib support.

Proper citation: Cartopy (RRID:SCR_024587) Copy   


  • RRID:SCR_024588

    This resource has 1+ mentions.

https://mc-stan.org/bayesplot/

Software R package providing extensive library of plotting functions for use after fitting Bayesian models.Plotting functions for posterior analysis, MCMC diagnostics, prior and posterior predictive checks, and other visualizations to support the applied Bayesian workflow.

Proper citation: bayesplot (RRID:SCR_024588) Copy   


  • RRID:SCR_024182

    This resource has 1+ mentions.

https://pyepl.sourceforge.net/

Software library for coding psychology experiments in Python.Supports presentation of both visual and auditory stimuli, and supports both manual and sound input as responses.

Proper citation: pyepl (RRID:SCR_024182) Copy   


  • RRID:SCR_001714

    This resource has 100+ mentions.

http://www.homozygositymapper.org/

A web-based approach of homozygosity mapping that can handle tens of thousands markers. User can upload their own SNP genotype files to the database. Intuitive graphic interface is provided to view the homozygous stretches, with the ability of zooming into single chromosomes or user-defined chromosome regions. The underlying genotypes in all samples are displayed. The software is also integrated with our candidate gene search engine, GeneDistiller, so that users can interactively determine the most promising gene. (entry from Genetic Analysis Software)

Proper citation: HOMOZYGOSITYMAPPER (RRID:SCR_001714) Copy   


  • RRID:SCR_000930

    This resource has 1+ mentions.

http://www.worm.mpi-cbg.de/phenobank/cgi-bin/ProjectInfoPage.py

A database that provides primary data from two high-content screens that profile the set of ~900 essential C. elegans genes (~5% of the genome) required for embryo production and/or events during the first two embryonic divisions. Phenobank houses the movies, scored defects, and phenotypic classification data for the embryo-filming and gonad morphology screens.

Proper citation: PhenoBank (RRID:SCR_000930) Copy   


  • RRID:SCR_000654

    This resource has 1+ mentions.

http://retractionwatch.wordpress.com/

Retraction Watch is a blog of retractions in the scientific literature. It is maintained by Adam Marcus and Ivan Oransky and has been operating since August 2010.

Proper citation: RetractionWatch.com (RRID:SCR_000654) Copy   


  • RRID:SCR_002273

    This resource has 1+ mentions.

http://weatherby.genetics.utah.edu/cgi-bin/Phevor/PhevorWeb.html

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on October 28,2025. Tool that integrates phenotype, gene function, and disease information with personal genomic data for improved power to identify disease-causing alleles. It works by combining knowledge resident in multiple biomedical ontologies with the outputs of variant prioritization tools. It does so using an algorithm that propagates information across and between ontologies. This process enables Phevor to accurately reprioritize potentially damaging alleles identified by variant prioritization tools in light of gene function, disease, and phenotype knowledge. Phevor is especially useful for single exome and family trio-based diagnostic analyses, the most commonly occurring clinical scenarios, and ones for which existing personal-genomes diagnostic tools are most inaccurate and underpowered. Phevor not only improves diagnostic accuracy for individuals presenting with established disease phenotypes, but also for those with previously undescribed and atypical disease presentations. Importantly, Phevor is not limited to known diseases, or known disease-causing alleles.

Proper citation: Phevor (RRID:SCR_002273) Copy   


  • RRID:SCR_024202

    This resource has 10+ mentions.

https://github.com/bxlab/bx-python

Software Python library and associated set of scripts for rapid implementation of genome scale analyses.

Proper citation: python-bx (RRID:SCR_024202) Copy   


  • RRID:SCR_001979

    This resource has 1+ mentions.

http://eyegene.ophthy.med.umich.edu/madeline/

Software tool designed for preparing, visualizing, and exploring human pedigree data used in genetic linkage studies. It converts pedigree and marker data into formats required by popular linkage analysis packages, provides powerful ways to query pedigree data sets, and produces Postscript pedigree drawings that are useful for rapid data review.

Proper citation: MADELINE (RRID:SCR_001979) Copy   


  • RRID:SCR_001010

    This resource has 100+ mentions.

http://blast.ncbi.nlm.nih.gov/Blast.cgi?PROGRAM=blastp&PAGE_TYPE=BlastSearch&LINK_LOC=blasthome

Data analysis service whose programs search protein databases using a protein query. The algorithms used include blastp, psi-blast, phi-blast, and delta-blast.

Proper citation: BLASTP (RRID:SCR_001010) Copy   


  • RRID:SCR_001371

    This resource has 1+ mentions.

http://blogs.plos.org/

PLoS Blogs has been set up to bring a select group of independent science and medicine bloggers together with the editors and staff who run our blogs. Our independent network is made up of writers who love science and medicine, and scientists and physicians that love to write. Here, you'll find an equal mix of blogs from journalists and researchers tackling diverse issues in science and medicine. There are three very distinct types of blogs on the PLoS Blogs network: the official PLoS blog, the PLoS journal blogs (collectively known as The PLoS Blogs), and blogs from the independent network (a.k.a. The PLoS Blogosphere) # The official PLoS blog: This content is produced, edited, and/or maintained by PLoS staff. # The journal blogs: This content is produced, edited, and/or maintained by PLoS journal staff: The current journal blogs are Speaking of Medicine (PLoS Medicine's blog) and everyONE (PLoS ONE's blog). # Our independent network of bloggers (The PLoS Blogosphere): This content is produced, edited, and/or maintained by the authors. * All of the content in The PLoS Blogosphere came from the minds of the authors. PLoS does not screen, edit, or otherwise meddle with content on the these blogs in any way. Our bloggers and our users are held to exactly the same standards, and the community guidelines apply to everyone that uses our site. If a blogger has posted content that you believe violates our site abuse policy, please contact PLoS. * Bloggers monitor their own comment threads: All comments will be reviewed by the author of the blog where you leave your thoughts. Just follow our simple community guidelines and we'll all get along just fine.

Proper citation: PLoS Blogs (RRID:SCR_001371) Copy   



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