Re: Robustspline and two dimentional loess for two color agilent data
samane fazeli <[email protected]> Fri, 22 Aug 2014 10:25:51 +0430
| Newsgroups | gmane.science.biology.informatics.conductor |
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| Message-ID | <CABX2hpfaZRgc60m8jUHUmzXaQppOcTVfQUCDds0PG2uNcPdEQA@mail.gmail.com> |
Dear Dr. Smyth, Thank you for your reply. I am comparing within-array normalization methods (Median, Loess, robust-spline) in Agilent data. In order to select the best method in my data, I computed mean of variability among replicated arrays. Based on this criteria robust-spline outperforms loess method. This difference was significant (Wilcoxon test, p-value<0.05). In this situation, Can I apply robust-spline method on agilent data. Regards Samane On 8/22/14, Gordon K Smyth <smyth-QpO9qclcJEu6c6uEtOJ/[email protected]> wrote: > Dear Samaneh Fazeli, > > I am guessing that this is question about > > normalizeWithinArrays(RG, method="robustspline") > > in the limma package. When there are no print tips, robust-spline > normalization reduces to loess normalization. Hence you should use: > > normalizeWithinArrays(RG, method="loess") > > for Agilent arrays. > > Best wishes > Gordon > > >> Date: Thu, 21 Aug 2014 01:54:20 -0700 (PDT) >> From: "Samane [guest]" <[email protected]> >> To: [email protected], [email protected] >> Subject: [BioC] Robustspline and two dimentional loess for two color >> agilent data >> >> Hi > >> Since there is no print tip in Agilent technology, Could I use >> robust-spline and two dimensional loess on such data sets? I am >> comparing some normalization methods on two color Agilent data; In the >> most of times, robust-spline goes the best method based on comparison of >> variance and ICC among replicated arrays. However I can not find lots of >> papers which have applied these methods on Agilent data. > >> I am looking forward to hearing from u. >> Regards, >> Samaneh Fazeli >> >> >> -- output of sessionInfo(): >> >> R >> >> -- >> Sent via the guest posting facility at bioconductor.org. > > ______________________________________________________________________ > The information in this email is confidential and intended solely for the > addressee. > You must not disclose, forward, print or use it without the permission of > the sender. > ______________________________________________________________________ > _______________________________________________ Bioconductor mailing list [email protected] https://stat.ethz.ch/mailman/listinfo/bioconductor Search the archives: http://news.gmane.org/gmane.science.biology.informatics.conductor