SHRINE: enabling nationally scalable multi-site disease studies
about
An autism case history to review the systematic analysis of large-scale data to refine the diagnosis and treatment of neuropsychiatric disordersIntegrating Heterogeneous Biomedical Data for Cancer Research: the CARPEM infrastructureClinical Research Informatics: Recent Advances and Future DirectionsA system to build distributed multivariate models and manage disparate data sharing policies: implementation in the scalable national network for effectiveness researchMission and Sustainability of Informatics for Integrating Biology and the Bedside (i2b2)Translational research platforms integrating clinical and omics data: a review of publicly available solutionsClinical research data warehouse governance for distributed research networks in the USA: a systematic review of the literatureOntology-based data integration between clinical and research systemsFacilitating biomedical researchers' interrogation of electronic health record data: Ideas from outside of biomedical informaticsOrchestrating differential data access for translational research: a pilot implementation.Modular design, application architecture, and usage of a self-service model for enterprise data delivery: the Duke Enterprise Data Unified Content Explorer (DEDUCE)Stability metrics for multi-source biomedical data based on simplicial projections from probability distribution distances.Federated queries of clinical data repositories: Scaling to a national networkData interchange using i2b2Applying probabilistic temporal and multisite data quality control methods to a public health mortality registry in Spain: a systematic approach to quality control of repositories.Metadata-driven Clinical Data Loading into i2b2 for Clinical and Translational Science Institutes.A Harmonized Data Quality Assessment Terminology and Framework for the Secondary Use of Electronic Health Record Data.ODaCCI: Ontology-guided Data Curation for Multisite Clinical Research Data Integration in the NINDS Center for SUDEP Research.SMART-on-FHIR implemented over i2b2Federated Aggregate Cohort Estimator (FACE): an easy to deploy, vendor neutral, multi-institutional cohort query architecture.Scalable Collaborative Infrastructure for a Learning Healthcare System (SCILHS): architecture.Information technology for clinical, translational and comparative effectiveness research. Findings from the section clinical research informaticsImproved de-identification of physician notes through integrative modeling of both public and private medical text.Cross border semantic interoperability for clinical research: the EHR4CR semantic resources and servicesDesiderata for computable representations of electronic health records-driven phenotype algorithms.Software-Enabled Distributed Network Governance: The PopMedNet ExperienceDesigning Reliable Cohorts of Cardiac Patients across MIMIC and eICU.Using i2b2 to Bootstrap Rural Health Analytics and Learning NetworksLeveraging Terminology Services for Extract-Transform-Load Processes: A User-Centered Approach.Evolving Research Data Sharing Networks to Clinical App Sharing Networks.[Strategies for biobank networks. Classification of different approaches for locating samples and an outlook on the future within the BBMRI-ERIC].Taking advantage of continuity of care documents to populate a research repository.The use of electronic health records for psychiatric phenotyping and genomics.A modular informatics platform for effective support of collaborative and multicenter studies in cardiology.Sensor-based architecture for medical imaging workflow analysis.i2b2 implemented over SMART-on-FHIR.Automating Installation of the Integrating Biology and the Bedside (i2b2) Platform.Biases in electronic health record data due to processes within the healthcare system: retrospective observational study.Secondary use of electronic medical records for clinical research: Challenges and OpportunitiesTranslational informatics in personalized medicine: an update for 2014
P2860
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P2860
SHRINE: enabling nationally scalable multi-site disease studies
description
2013 nî lūn-bûn
@nan
2013 թուականին հրատարակուած գիտական յօդուած
@hyw
2013 թվականին հրատարակված գիտական հոդված
@hy
2013年の論文
@ja
2013年論文
@yue
2013年論文
@zh-hant
2013年論文
@zh-hk
2013年論文
@zh-mo
2013年論文
@zh-tw
2013年论文
@wuu
name
SHRINE: enabling nationally scalable multi-site disease studies
@ast
SHRINE: enabling nationally scalable multi-site disease studies
@en
SHRINE: enabling nationally scalable multi-site disease studies
@en-gb
SHRINE: enabling nationally scalable multi-site disease studies
@nl
type
label
SHRINE: enabling nationally scalable multi-site disease studies
@ast
SHRINE: enabling nationally scalable multi-site disease studies
@en
SHRINE: enabling nationally scalable multi-site disease studies
@en-gb
SHRINE: enabling nationally scalable multi-site disease studies
@nl
prefLabel
SHRINE: enabling nationally scalable multi-site disease studies
@ast
SHRINE: enabling nationally scalable multi-site disease studies
@en
SHRINE: enabling nationally scalable multi-site disease studies
@en-gb
SHRINE: enabling nationally scalable multi-site disease studies
@nl
P2093
P2860
P3181
P1433
P1476
SHRINE: enabling nationally scalable multi-site disease studies
@en
P2093
Andrew J McMurry
Clint Gilbert
Douglas MacFadden
John Orechia
Jonathan Bickel
Nich Wattanasin
Philip Trevvett
Shawn N Murphy
Susanne Churchill
William W Simons
P2860
P304
P3181
P356
10.1371/JOURNAL.PONE.0055811
P407
P577
2013-01-01T00:00:00Z