Efforts Towards Accessible And Reliable Bioinformatics

The aim of the presented work was contributing to making scientific computing more accessible, reliable, and thus more efficient for researchers, primarily computational biologists and molecular biologists. Many approaches are possible and necessary towards these goals, and many layers need to be ta...

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Bibliographic Details
Main Author: Kalaš, Matúš
Format: Thesis
Language:English
Published: Zenodo 2015
Subjects:
Psi
ren
Online Access:https://dx.doi.org/10.5281/zenodo.33715
https://zenodo.org/record/33715
id ftdatacite:10.5281/zenodo.33715
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institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language English
topic Integrative bioinformatics
Software integration
Data model
Ontology
Workbench
World Wide Web
Web service
BioXSD
EDAM
eSysbio
Free software
Open-source software
Accessibility
Reliability
Efficiency
Maintainability
Best practice
Community effort
spellingShingle Integrative bioinformatics
Software integration
Data model
Ontology
Workbench
World Wide Web
Web service
BioXSD
EDAM
eSysbio
Free software
Open-source software
Accessibility
Reliability
Efficiency
Maintainability
Best practice
Community effort
Kalaš, Matúš
Efforts Towards Accessible And Reliable Bioinformatics
topic_facet Integrative bioinformatics
Software integration
Data model
Ontology
Workbench
World Wide Web
Web service
BioXSD
EDAM
eSysbio
Free software
Open-source software
Accessibility
Reliability
Efficiency
Maintainability
Best practice
Community effort
description The aim of the presented work was contributing to making scientific computing more accessible, reliable, and thus more efficient for researchers, primarily computational biologists and molecular biologists. Many approaches are possible and necessary towards these goals, and many layers need to be tackled, in collaborative community efforts with well-defined scope. As diverse components are necessary for the accessible and reliable bioinformatics scenario, our work focussed in particular on the following: In the BioXSD project, we aimed at developing an XML-Schema-based data format compatible with Web services and programmatic libraries, that is expressive enough to be usable as a common, canonical data model that serves tools, libraries, and users with convenient data interoperability. The EDAM ontology aimed at enumerating and organising concepts within bioinformatics, including operations and types of data. EDAM can be helpful in documenting and categorising bioinformatics resources using a standard “vocabulary”, enabling users to find respective resources and choose the right tools. The eSysbio project explored ways of developing a workbench for collaborative data analysis, accessible in various ways for users with various tasks and expertise. We aimed at utilising the World-Wide-Web and industrial standards, in order to increase compatibility and maintainability, and foster shared effort. In addition to these three main contributions that I have been involved in, I present a comprehensive but non-exhaustive research into the various previous and contemporary efforts and approaches to the broad topic of integrative bioinformatics, in particular with respect to bioinformatics software and services. I also mention some closely related efforts that I have been involved in. The thesis is organised as follows: In the Background chapter, the field is presented, with various approaches and existing efforts. Summary of results summarises the contributions of my enclosed projects – the BioXSD data format, the EDAM ontology, and the eSysbio workbench prototype – to the broad topics of the thesis. The Discussion chapter presents further considerations and current work, and concludes the discussed contributions with alternative and future perspectives. In the printed version, the three articles that are part of this thesis, are attached after the Discussion and References. In the electronic version (in PDF), the main thesis is optimised for reading on a screen, with clickable cross-references ( e.g. from citations in the text to the list of References) and hyperlinks ( e.g. for URLs and most References). A PDF viewer with “back“ function is recommended. : Dissertation for the degree of Philosophiae Doctor (PhD) at the University of Bergen. 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format Thesis
author Kalaš, Matúš
author_facet Kalaš, Matúš
author_sort Kalaš, Matúš
title Efforts Towards Accessible And Reliable Bioinformatics
title_short Efforts Towards Accessible And Reliable Bioinformatics
title_full Efforts Towards Accessible And Reliable Bioinformatics
title_fullStr Efforts Towards Accessible And Reliable Bioinformatics
title_full_unstemmed Efforts Towards Accessible And Reliable Bioinformatics
title_sort efforts towards accessible and reliable bioinformatics
publisher Zenodo
publishDate 2015
url https://dx.doi.org/10.5281/zenodo.33715
https://zenodo.org/record/33715
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spelling ftdatacite:10.5281/zenodo.33715 2023-05-15T17:06:50+02:00 Efforts Towards Accessible And Reliable Bioinformatics Kalaš, Matúš 2015 https://dx.doi.org/10.5281/zenodo.33715 https://zenodo.org/record/33715 en eng Zenodo http://www.uib.no/nye-doktorgrader/93458/open-source-samfunn-gj%C3%B8r-forskernes-liv-enklere Open Access Creative Commons Attribution Share-Alike 4.0 https://creativecommons.org/licenses/by-sa/4.0 info:eu-repo/semantics/openAccess CC-BY-SA Integrative bioinformatics Software integration Data model Ontology Workbench World Wide Web Web service BioXSD EDAM eSysbio Free software Open-source software Accessibility Reliability Efficiency Maintainability Best practice Community effort Text Thesis article-journal ScholarlyArticle 2015 ftdatacite https://doi.org/10.5281/zenodo.33715 2021-11-05T12:55:41Z The aim of the presented work was contributing to making scientific computing more accessible, reliable, and thus more efficient for researchers, primarily computational biologists and molecular biologists. Many approaches are possible and necessary towards these goals, and many layers need to be tackled, in collaborative community efforts with well-defined scope. As diverse components are necessary for the accessible and reliable bioinformatics scenario, our work focussed in particular on the following: In the BioXSD project, we aimed at developing an XML-Schema-based data format compatible with Web services and programmatic libraries, that is expressive enough to be usable as a common, canonical data model that serves tools, libraries, and users with convenient data interoperability. The EDAM ontology aimed at enumerating and organising concepts within bioinformatics, including operations and types of data. EDAM can be helpful in documenting and categorising bioinformatics resources using a standard “vocabulary”, enabling users to find respective resources and choose the right tools. The eSysbio project explored ways of developing a workbench for collaborative data analysis, accessible in various ways for users with various tasks and expertise. We aimed at utilising the World-Wide-Web and industrial standards, in order to increase compatibility and maintainability, and foster shared effort. In addition to these three main contributions that I have been involved in, I present a comprehensive but non-exhaustive research into the various previous and contemporary efforts and approaches to the broad topic of integrative bioinformatics, in particular with respect to bioinformatics software and services. I also mention some closely related efforts that I have been involved in. The thesis is organised as follows: In the Background chapter, the field is presented, with various approaches and existing efforts. Summary of results summarises the contributions of my enclosed projects – the BioXSD data format, the EDAM ontology, and the eSysbio workbench prototype – to the broad topics of the thesis. The Discussion chapter presents further considerations and current work, and concludes the discussed contributions with alternative and future perspectives. In the printed version, the three articles that are part of this thesis, are attached after the Discussion and References. In the electronic version (in PDF), the main thesis is optimised for reading on a screen, with clickable cross-references ( e.g. from citations in the text to the list of References) and hyperlinks ( e.g. for URLs and most References). A PDF viewer with “back“ function is recommended. : Dissertation for the degree of Philosophiae Doctor (PhD) at the University of Bergen. Pre-print. : {"references": ["Afgan, E., Baker, D., Coraor, N., Chapman, B., Nekrutenko, A., and Taylor, J. (2010). 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