Difference between revisions of "Template:Article of the week"

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'''"[[Journal:Information management for enabling systems medicine|Information management for enabling systems medicine]]"'''
'''"[[Journal:Method-centered digital communities on protocols.io for fast-paced scientific innovation|Method-centered digital communities on protocols.io for fast-paced scientific innovation]]"'''


Systems medicine is a data-oriented approach in research and clinical practice to support the study and treatment of complex diseases. It relies on well-defined information management processes providing comprehensive and up-to-date information as the basis for [[Clinical decision support system|electronic decision support]]. The authors suggest a three-layer information technology (IT) architecture for systems medicine and a cyclic data management approach, including a knowledge base that is dynamically updated by extract, transform, and load (ETL) procedures. Decision support is suggested as case-based and rule-based components. Results are presented via a user interface to acknowledging clinical requirements in terms of time and complexity. The systems medicine application was implemented as a prototype. ('''[[Journal:Information management for enabling systems medicine|Full article...]]''')<br />
The internet has enabled online social interaction for scientists beyond physical meetings and conferences. Yet despite these innovations in communication, dissemination of methods is often relegated to just academic publishing. Further, these methods remain static, with subsequent advances published elsewhere and unlinked. For communities undergoing fast-paced innovation, researchers need new capabilities to share, obtain feedback, and publish methods at the forefront of scientific development. For example, a renaissance in virology is now underway given the new metagenomic methods to sequence viral DNA directly from an environment. Metagenomics makes it possible to “see” natural viral communities that could not be previously studied through culturing methods. Yet, the knowledge of specialized techniques for the production and analysis of viral metagenomes remains in a subset of labs. ('''[[Journal:Method-centered digital communities on protocols.io for fast-paced scientific innovation|Full article...]]''')<br />
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''Recently featured'':  
''Recently featured'':  
: ▪ [[Journal:Information management for enabling systems medicine|Information management for enabling systems medicine]]
: ▪ [[Journal:Developing a customized approach for strengthening tuberculosis laboratory quality management systems toward accreditation|Developing a customized approach for strengthening tuberculosis laboratory quality management systems toward accreditation]]
: ▪ [[Journal:Developing a customized approach for strengthening tuberculosis laboratory quality management systems toward accreditation|Developing a customized approach for strengthening tuberculosis laboratory quality management systems toward accreditation]]
: ▪ [[Journal:SistematX, an online web-based cheminformatics tool for data management of secondary metabolites|SistematX, an online web-based cheminformatics tool for data management of secondary metabolites]]
: ▪ [[Journal:SistematX, an online web-based cheminformatics tool for data management of secondary metabolites|SistematX, an online web-based cheminformatics tool for data management of secondary metabolites]]
: ▪ [[Journal:Rethinking data sharing and human participant protection in social science research: Applications from the qualitative realm|Rethinking data sharing and human participant protection in social science research: Applications from the qualitative realm]]

Revision as of 17:29, 19 March 2018

Fig2 Kindler F1000Res2017 5.gif

"Method-centered digital communities on protocols.io for fast-paced scientific innovation"

The internet has enabled online social interaction for scientists beyond physical meetings and conferences. Yet despite these innovations in communication, dissemination of methods is often relegated to just academic publishing. Further, these methods remain static, with subsequent advances published elsewhere and unlinked. For communities undergoing fast-paced innovation, researchers need new capabilities to share, obtain feedback, and publish methods at the forefront of scientific development. For example, a renaissance in virology is now underway given the new metagenomic methods to sequence viral DNA directly from an environment. Metagenomics makes it possible to “see” natural viral communities that could not be previously studied through culturing methods. Yet, the knowledge of specialized techniques for the production and analysis of viral metagenomes remains in a subset of labs. (Full article...)

Recently featured:

Information management for enabling systems medicine
Developing a customized approach for strengthening tuberculosis laboratory quality management systems toward accreditation
SistematX, an online web-based cheminformatics tool for data management of secondary metabolites