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New Journal Issues (in Title Keyword Order)
April 16, 2008

Online Only Issues

MathSciNet/Mathematical Reviews. You may chose current month or previous ones, and by MSC classification, and type of material. Be sure to choose Reviewed to see items with reviews.

**Please note, some titles may not connect to the fulltext because we have cancelled them entirely. The tables of contents of cancelled titles are listed only as an alert. If you need to see their fulltext, order the article from Interlibrary Loan.

Printed Journal Issues

Recent articles by UW authors in Math, Applied Math, and Statistics


FN ISI Export Format
VR 1.0
PT J
AU Carlson, JF
   Friedlander, EM
   Pevtsova, J
AF Carlson, Jon F.
   Friedlander, Eric M.
   Pevtsova, Julia
TI Modules of constant Jordan type
SO JOURNAL FUR DIE REINE UND ANGEWANDTE MATHEMATIK
AB We introduce the class of modules of constant Jordan type for a finite
   group scheme G over a field k of characteristic p > 0. This class is
   closed under taking direct sums, tensor products, duals, Heller shifts
   and direct summands, and includes endotrivial modules. It contains all
   modules in an Auslander-Reiten component which has at least one module
   in the class. Highly non-trivial examples are constructed using
   cohomological techniques. We offer conjectures suggesting that there
   are strong conditions on a partition to be the Jordan type associated
   to a module of constant Jordan type.
C1 Univ Georgia, Dept Math, Athens, GA 30602 USA.
   Northwestern Univ, Dept Math, Evanston, IL USA.
   Univ Washington, Dept Math, Seattle, WA 98195 USA.
RP Carlson, JF, Univ Georgia, Dept Math, Athens, GA 30602 USA.
EM jfc@math.uga.edu
   eric@math.northwestem.edu
   julia@math.washington.edu
PD JAN
PY 2008
VL 614
BP 191
EP 234
UT ISI:000254392800006
ER

PT J
AU Sampson, JN
   Self, SG
AF Sampson, Joshua N.
   Self, Steven G.
TI Identifying trait clusters by linkage profiles: application in
   genetical genomics
SO BIOINFORMATICS
AB Motivation: Genes often regulate multiple traits. Identifying clusters
   of traits influenced by a common group of genes helps elucidate
   regulatory networks and can improve linkage mapping.
   Methods: We show that the Pearson correlation coefficient, (rho) over
   capL, between two LOD score profiles can, with high specificity and
   sensitivity, identify pairs of genes that have their transcription
   regulated by shared quantitative trait loci (QTL). Furthermore, using
   theoretical and/or empirical methods, we can approximate the
   distribution of (rho) over capL under the null hypothesis of no common
   QTL. Therefore, it is possible to calculate P-values and false
   discovery rates for testing whether two traits share common QTL. We
   then examine the properties of (rho) over capL through simulation and
   use (rho) over capL to cluster genes in a genetical genomics experiment
   examining Saccharomyces cerevisiae.
   Results: Simulations show that (rho) over capL can have more power than
   the clustering methods currently used in genetical genomics. Combining
   experimental results with Gene Ontology (GO) annotations show that
   genes within a purported cluster often share similar function.
C1 Univ Washington, Dept Biostat, Seattle, WA 98195 USA.
   Univ Washington, Stat Ctr HIV AIDS Res & Prevent, Seattle, WA 98195 USA.
RP Sampson, JN, Univ Washington, Dept Biostat, Seattle, WA 98195 USA.
PD APR 1
PY 2008
VL 24
IS 7
BP 958
EP 964
UT ISI:000254470900010
ER

EF




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Last modified: Wednesday April 16, 2008 (MTucker)