Catalogue Search | MBRL
Search Results Heading
Explore the vast range of titles available.
MBRLSearchResults
-
DisciplineDiscipline
-
Is Peer ReviewedIs Peer Reviewed
-
Item TypeItem Type
-
SubjectSubject
-
YearFrom:-To:
-
More FiltersMore FiltersSourceLanguage
Done
Filters
Reset
3
result(s) for
"Stiehr, Gary"
Sort by:
Genome Modeling System: A Knowledge Management Platform for Genomics
by
Abbott, Travis E.
,
Mardis, Elaine R.
,
Lolofie, Justin T.
in
Algorithms
,
Automation
,
Breast cancer
2015
In this work, we present the Genome Modeling System (GMS), an analysis information management system capable of executing automated genome analysis pipelines at a massive scale. The GMS framework provides detailed tracking of samples and data coupled with reliable and repeatable analysis pipelines. The GMS also serves as a platform for bioinformatics development, allowing a large team to collaborate on data analysis, or an individual researcher to leverage the work of others effectively within its data management system. Rather than separating ad-hoc analysis from rigorous, reproducible pipelines, the GMS promotes systematic integration between the two. As a demonstration of the GMS, we performed an integrated analysis of whole genome, exome and transcriptome sequencing data from a breast cancer cell line (HCC1395) and matched lymphoblastoid line (HCC1395BL). These data are available for users to test the software, complete tutorials and develop novel GMS pipeline configurations. The GMS is available at https://github.com/genome/gms.
Journal Article
Genome Modeling System: A Knowledge Management Platform for Genomics
by
Wilson, Richard K
,
Skidmore, Zachary L
,
Oberkfell, Ben J
in
Automation
,
Bioinformatics
,
Breast cancer
2015
In this work, we present the Genome Modeling System (GMS), an analysis information management system capable of executing automated genome analysis pipelines at a massive scale. The GMS framework provides detailed tracking of samples and data coupled with reliable and repeatable analysis pipelines. The GMS also serves as a platform for bioinformatics development, allowing a large team to collaborate on data analysis, or an individual researcher to leverage the work of others effectively within its data management system. Rather than separating ad-hoc analysis from rigorous, reproducible pipelines, the GMS promotes systematic integration between the two. As a demonstration of the GMS, we performed an integrated analysis of whole genome, exome and transcriptome sequencing data from a breast cancer cell line (HCC1395) and matched lymphoblastoid line (HCC1395BL). These data are available for users to test the software, complete tutorials and develop novel GMS pipeline configurations. The GMS is available at https://github.com/genome/gms.
Journal Article
Differing Levels of Low Fertility
1994
Our purpose in this chapter is not to explain fertility change, but to arrive at a better understanding of the societal context in which such change took place. Specifically, we want to situate fertility change within a number of transformations in the structure of women’s lives in contemporary Euro-American society. Our goal is to use this contextual approach to move toward a typology of fertility behaviour in industrialized societies that can be plausibly related to other dimensions of social change in the same societies. The level of analysis is, then, macroscopic, and the nature of the discussion is inductive rather
Book Chapter