gnu: Add r-acme.
* gnu/packages/bioconductor.scm (r-acme): New variable. Signed-off-by: Ricardo Wurmus <rekado@elephly.net>master
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@ -11661,6 +11661,33 @@ storing these data. Basic methods are accessing/replacing, subsetting,
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printing and plotting @code{aCGH} objects.")
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(license license:gpl2)))
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(define-public r-acme
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(package
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(name "r-acme")
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(version "2.50.0")
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(source (origin
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(method url-fetch)
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(uri (bioconductor-uri "ACME" version))
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(sha256
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(base32
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"0h4bqbbqcwc938q7lysk5l35f64xz9d1bsniv2wshmlr4rr0zpcg"))))
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(properties `((upstream-name . "ACME")))
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(build-system r-build-system)
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(propagated-inputs (list r-biobase r-biocgenerics))
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(home-page "https://bioconductor.org/packages/aCGH/")
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(synopsis "Calculating microarray enrichment")
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(description
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"This package implements @dfn{algorithms for calculating microarray
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enrichment} (ACME), and it is a set of tools for analysing tiling array of
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@dfn{combined chromatin immunoprecipitation with DNA microarray} (ChIP/chip),
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DNAse hypersensitivity, or other experiments that result in regions of the
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genome showing enrichment. It does not rely on a specific array technology
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(although the array should be a tiling array), is very general (can be applied
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in experiments resulting in regions of enrichment), and is very insensitive to
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array noise or normalization methods. It is also very fast and can be applied
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on whole-genome tiling array experiments quite easily with enough memory.")
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(license license:gpl2+)))
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;; This is a CRAN package, but it depends on Bioconductor packages, so we put
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;; it here.
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(define-public r-activedriverwgs
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