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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.
Collection based on a collaborative effort of popular neuroscience research software for the Debian operating system as well as Ubuntu and other derivatives. Popular packages include AFNI, FSL, PyMVPA and many others. It contains both unofficial or prospective packages which are not (yet) available from the main Debian archive, as well as backported or simply rebuilt packages also available elsewhere. A listing of current and planned projects is available if you want to get involved. The main goal of the project is to provide a versatile and convenient environment for neuroscientific research that is based on open-source software. To this end, the project offers a package repository that complements the main Debian (and Ubuntu) archive. NeuroDebian is not yet another Linux distribution, but rather an effort inside the Debian project itself. Software packages are fully integrated into the Debian system and from there will eventually migrate into Ubuntu as well. With NeuroDebian, installing and updating neuroscience software is no different from any other part of the operating system. Maintaining a research software environment becomes as easy as installing an editor. There is also virtual machine to test NeuroDebian on Windows or Mac OS. If you want to see your software packaged for Debian, please drop them a note.
Proper citation: neurodebian (RRID:SCR_004401) Copy
http://www.bioinformatics.org/peakanalyzer/wiki/
A set of standalone software programs for the automated processing of any genomic loci, with an emphasis on datasets consisting of ChIP-derived signal peaks. The software is able to identify individual binding / modification sites from enrichment loci, retrieve peak region sequences for motif discovery, and integrate experimental data with different classes of annotated elements throughout the genome. PeakAnalyzer requires a peak file and a feature annotation file in BED or GTF format. Complete annotation files for the current builds of the human (HG19) and mouse (MM9) genomes are provided with the software distribution.
Proper citation: PeakAnalyzer (RRID:SCR_001194) Copy
http://ginolhac.github.io/mapDamage/
Software for tracking and quantifying DNA damage patterns among ancient DNA sequencing reads generated by Next-Generation Sequencing platforms.
Proper citation: mapDamage (RRID:SCR_001240) Copy
http://itb.biologie.hu-berlin.de/~futschik/software/R/cycle/index.html
Software package for the identification of periodically expressed genes using Fourier analysis and the statistical assessment of significance using different background models.
Proper citation: CYCLE (RRID:SCR_001328) Copy
http://bioinf.wehi.edu.au/affylmGUI/
R software package providing a Graphical User Interface for analysis of Affymetrix microarray data, using the limma package (Linear Models for MicroArray data). While not as powerful as limma to the expert user, it offers a simple point-and-click interface to many of the commonly-used limma and affy functions. You need to have R 1.9.0 or later, Tcl/Tk 8.3 or later (ActiveTcl for Windows, Tcl/Tk Source for Linux/Unix, or X11 Tcl/Tk for MacOSX) and the limma, affylmGUI, and tkrplot R packages. It has been succesfully tested on Windows 2000, Windows XP, RedHat/Fedora Linux, and on Mac OSX with X11.
Proper citation: affylmGUI (RRID:SCR_001320) Copy
http://bios.unc.edu/~weisun/software/asSeq.htm
Software that establishes a statistical framework for future developments of eQTL (expression quantitative trait locus) mapping methods using RNA-seq data (e.g., linkage-based eQTL mapping), and the joint study of multiple genetic markers and/or multiple genes. This R package has been submitted to R/bioconductor. It will be available on bioconductor soon. It is recommended to install this R package from bioconductor. You can also install this R package from the source code by yourself. Since the R package contains C code, a C complier is required for installation. With both R and appropriate c complier installed, this R package can be installed using the following command (in Mac Terminal window or Windows command window) R CMD INSTALL asSeq
Proper citation: asSeq (RRID:SCR_001625) Copy
http://www.agcol.arizona.edu/software/tcw/
Software package for assembling, annotating, querying, and comparing transcript and expression level data that consists of two parts: * singleTCW (sTCW): Single transcript sets or assemblies; annotation; differential expression (EdgeR, DEGSeq, DESeq, GoSeq) * multiTCW (mTCW): Comparison of multiple transcript sets; ortholog grouping (e.g., OrthoMCL) It has been tested on Linux and uses Java, mySQL and optionally R.
Proper citation: TCW (RRID:SCR_001875) Copy
http://cran.r-project.org/web/packages/kdetrees/
R package using a non-parametric method for estimating distributions of phylogenetic trees, with the goal of identifying trees that are significantly different from the rest of the trees in the sample.
Proper citation: Kdetrees (RRID:SCR_004522) Copy
http://www-math.u-strasbg.fr/genpred/spip.php?article3
R software package to study, predict and simulate the diffusion of a signal through a temporal gene network. It predicts changes in gene expressions after a biological perturbation in the network and provides graphical outputs that allow monitoring the spread of a signal through the network., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: Cascade (RRID:SCR_005861) Copy
http://wpicr.wpic.pitt.edu/WPICCompGen/bars.htm
Software application that is a statistical method that bridges the gap between single-locus and haplotype-based tests of association. It is based on the non-parametric regression techniques embodied by Bayesian Adaptive Regression Splines. (entry from Genetic Analysis Software), THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: BARS (RRID:SCR_009123) Copy
https://github.com/ahmohamed/NetPathMiner
Software that implements a flexible module-based process flow for network path mining and visualization, which can be fully inte-grated with user-customized functions. It supports construction of various types of genome scale networks from three different pathway file formats (KGML, SBML and BioPAX), enabling its utility to most common pathway databases. In addition, it provides different visualization techniques to facilitate the analysis of even thousands of output paths.
Proper citation: NetPathMiner (RRID:SCR_002757) Copy
http://cran.r-project.org/web/packages/pairheatmap/
A software tool to compare two heatmaps and discover patterns within and across groups. In the context of biology, group can be defined based on gene ontology.
Proper citation: pairheatmap (RRID:SCR_003109) Copy
http://www.bioconductor.org/packages/release/bioc/html/triplex.html
Software package that provides functions for identification and visualization of potential intramolecular triplex patterns in DNA sequence. The main functionality is to detect the positions of subsequences capable of folding into an intramolecular triplex (H-DNA) in a much larger sequence. The potential H-DNA (triplexes) should be made of as many canonical nucleotide triplets as possible. The package includes visualization showing the exact base-pairing in 1D, 2D or 3D.
Proper citation: Triplex (RRID:SCR_003061) Copy
http://www.bioconductor.org/packages/release/bioc/html/QDNAseq.html
Software package for quantitative DNA sequencing for chromosomal aberrations providing a robust, cost-effective WGS method for DNA copy number analysis. The genome is divided into non-overlapping fixed-sized bins, number of sequence reads in each counted, adjusted with a simultaneous two-dimensional loess correction for sequence mappability and GC content, and filtered to remove spurious regions in the genome. Downstream steps of segmentation and calling are also implemented via packages DNAcopy and CGHcall, respectively.
Proper citation: QDNAseq (RRID:SCR_003174) Copy
http://www.bioconductor.org/packages/release/bioc/html/CAMERA.html
A Bioconductor package integrating algorithms to extract compound spectra, annotate isotope and adduct peaks, and propose the accurate compound mass even in highly complex data.
Proper citation: CAMERA - Collection of annotation related methods for mass spectrometry data (RRID:SCR_002466) Copy
http://cran.r-project.org/web/packages/isa2/
A biclustering algorithm that finds modules in an input matrix. A module or bicluster is a block of the reordered input matrix.
Proper citation: Iterative Signature Algorithm (RRID:SCR_002327) Copy
http://cran.r-project.org/web/packages/ExomeDepth/
Software that calls copy number variants (CNVs) from targeted sequence data, typically exome sequencing experiments designed to identify the genetic basis of Mendelian disorders.
Proper citation: ExomeDepth (RRID:SCR_002663) Copy
http://www.bioconductor.org/packages/devel/bioc/html/MethylAid.html
Software for visual and interactive quality control of large Illumina 450k data sets. Bad quality samples are detected using sample-dependent and sample-independent controls present on the array and user adjustable thresholds. In depth exploration of bad quality samples can be performed using several interactive diagnostic plots of the quality control probes present on the array. Furthermore, the impact of any batch effect provided by the user can be explored.
Proper citation: MethylAid (RRID:SCR_002659) Copy
http://patchwork.r-forge.r-project.org/
Software tool for analyzing and visualizing allele-specific copy numbers and loss-of-heterozygosity in cancer genomes. The data input is in the format of whole-genome sequencing data which enables characterization of genomic alterations ranging in size from point mutations to entire chromosomes. High quality results are obtained even if samples have low coverage, ~4x, low tumor cell content or are aneuploid. Patchwork takes BAM files as input whereas PatchworkCG takes input from CompleteGenomics files. TAPS performs the same analysis as Patchwork but for microarray data.
Proper citation: Patchwork (RRID:SCR_000072) Copy
http://bioconductor.org/packages/release/bioc/html/CorMut.html
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on August 16,2023. Software package for computing correlated mutations based on selection pressure. Three methods are provided for detecting correlated mutations, including conditional selection pressure, mutual information and Jaccard index. The computation consists of two steps: First, the positive selection sites are detected; second, the mutation correlations are computed among the positive selection sites. Note that the first step is optional. Meanwhile, CorMut facilitates the comparison of the correlated mutations between two conditions by the means of correlated mutation network.
Proper citation: CorMut (RRID:SCR_000053) Copy
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