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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.bioconductor.org/packages/release/bioc/html/iASeq.html
Software that uses a Bayesian hierarchical mixture model to learn correlation patterns of allele-specificity among multiple proteins.
Proper citation: iASeq (RRID:SCR_000420) Copy
https://github.com/yongchao/flowPeaks
Software for fast and automatic clustering to classify the cells into subpopulations based on finding the peaks from the overall density function generated by K-means.
Proper citation: flowPeaks (RRID:SCR_000407) Copy
http://www.bioconductor.org/packages/release/bioc/html/QUALIFIER.html
Software that provides quality control and quality assessment tools for gated flow cytometry data.
Proper citation: QUALIFIER (RRID:SCR_000389) Copy
https://github.com/PacificBiosciences/stsPlots
Software to plot primary analysis quality control metrics to assess potential SMRTcell loading problems.
Proper citation: stsPlots (RRID:SCR_000449) Copy
http://sourceforge.net/projects/exorca/
A Matlab package extending the scope of established COBRA metabolic modelling.
Proper citation: ORCA (RRID:SCR_012097) Copy
http://opencobra.sourceforge.net/openCOBRA/Welcome.html
Software Python package that provides support for basic COnstraint-Based Reconstruction and Analysis (COBRA) methods.
Proper citation: COBRApy (RRID:SCR_012096) Copy
https://code.google.com/p/glycresoft/
A software package for automated recognition of glycans from LC/MS data.
Proper citation: GlycReSoft (RRID:SCR_012122) Copy
http://www.bioconductor.org/packages/release/bioc/html/SamSPECTRAL.html
Software that identifies cell population in flow cytometry data. It demonstrates significant advantages in proper identification of populations with non-elliptical shapes, low density populations close to dense ones, minor subpopulations of a major population and rare populations. It samples large data such that spectral clustering is possible while preserving density information in edge weights. More specifically, given a matrix of coordinates as input, SamSPECTRAL first builds the communities to sample the data points. Then, it builds a graph and after weighting the edges by conductance computation, the graph is passed to a classic spectral clustering algorithm to find the spectral clusters. The last stage of SamSPECTRAL is to combine the spectral clusters. The resulting connected components estimate biological cell populations in the data sample.
Proper citation: SamSPECTRAL (RRID:SCR_001858) Copy
http://www.bioconductor.org/packages/release/bioc/html/RchyOptimyx.html
Software that constructs a hierarchy of cells using flow cytometry for maximization of an external variable (e.g., a clinical outcome or a cytokine response).
Proper citation: RchyOptimyx (RRID:SCR_001889) Copy
https://www.bioconductor.org/packages//2.10/bioc/html/spade.html
An analysis and visualization software tool for high dimensional flow cytometry data that organizes cells into hierarchies of related phenotypes.
Proper citation: SPADE (RRID:SCR_001810) Copy
http://www.bioconductor.org/packages/release/bioc/html/flowType.html
Software for phenotyping Flow Cytometry assays using multidimentional expansion of single dimentional partitions.
Proper citation: flowType (RRID:SCR_001957) Copy
https://cran.r-project.org/src/contrib/Archive/PurBayes/
An MCMC-based algorithm that uses next-generation sequencing data to estimate tumor purity and clonality for paired tumor-normal data.
Proper citation: PurBayes (RRID:SCR_002068) Copy
http://www.bioconductor.org/packages/release/bioc/html/flowViz.html
Software that provides visualization tools for flow cytometry data.
Proper citation: flowViz (RRID:SCR_002075) Copy
https://www.bioconductor.org/packages//2.11/bioc/html/flowQB.html
A fully automated R Bioconductor package to calculate automatically the detector efficiency (Q), optical background (B) and intrinsic CV of the beads.
Proper citation: flowQB (RRID:SCR_002144) Copy
http://www.bioconductor.org/packages/release/bioc/html/flowFit.html
A Bioconductor package designed to perform quantitative analysis of cell proliferation in tracking dye-based experiments. The package uses an R implementation of the Levenberg-Marquardt algorithm (minpack.lm) to fit a set of peaks (corresponding to different generations of cells) over the proliferation-tracking dye distribution in a FACS experiment.
Proper citation: flowFit (RRID:SCR_002286) Copy
http://www.bioconductor.org/packages/release/bioc/html/flowPlots.html
Software for analysis plots and data class for gated flow cytometry data.
Proper citation: flowPlots (RRID:SCR_002177) Copy
http://www.bioconductor.org/packages/release/bioc/html/flowCore.html
A Bioconductor software package for high throughput flow cytometry that provides S4 data structures and basic functions.
Proper citation: flowCore (RRID:SCR_002205) Copy
https://www.nitrc.org/projects/uncbcp_4d_atlas/
Software package for constructing longitudinal atlases, which are the necessary steps for many brain-related applications.
Proper citation: 4D Atlases Construction (RRID:SCR_002227) Copy
http://www.bioconductor.org/packages/release/bioc/html/flowBeads.html
Software package for the analysis of flow cytometry bead data. It extends flowCore to provide functionality specific to bead data. One of the goals of this package is to automate analysis of bead data for the purpose of normalization.
Proper citation: flowBeads (RRID:SCR_002440) Copy
http://www.bioconductor.org/packages/release/bioc/html/flowCyBar.html
A software package to analyze flow cytometric data using gate information to follow population / community dynamics.
Proper citation: flowCyBar (RRID:SCR_002319) Copy
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