Data-driven identification of temporal glucose patterns in a large cohort of nondiabetic patients with COVID-19 using time-series clustering.

COVID-19 diabetes mellitus real-world data time-series clustering

Journal

JAMIA open
ISSN: 2574-2531
Titre abrégé: JAMIA Open
Pays: United States
ID NLM: 101730643

Informations de publication

Date de publication:
Jul 2021
Historique:
received: 10 05 2021
revised: 01 07 2021
accepted: 09 07 2021
entrez: 19 8 2021
pubmed: 20 8 2021
medline: 20 8 2021
Statut: epublish

Résumé

Hyperglycemia has emerged as an important clinical manifestation of coronavirus disease 2019 (COVID-19) in diabetic and nondiabetic patients. Whether these glycemic changes are specific to a subgroup of patients and persist following COVID-19 resolution remains to be elucidated. This work aimed to characterize longitudinal random blood glucose in a large cohort of nondiabetic patients diagnosed with COVID-19. De-identified electronic medical records of 7502 patients diagnosed with COVID-19 without prior diagnosis of diabetes between January 1, 2020, and November 18, 2020, were accessed through the TriNetX Research Network. Glucose measurements, diagnostic codes, medication codes, laboratory values, vital signs, and demographics were extracted before, during, and after COVID-19 diagnosis. Unsupervised time-series clustering algorithms were trained to identify distinct clusters of glucose trajectories. Cluster associations were tested for demographic variables, COVID-19 severity, glucose-altering medications, glucose values, and new-onset diabetes diagnoses. Time-series clustering identified a low-complexity model with 3 clusters and a high-complexity model with 19 clusters as the best-performing models. In both models, cluster membership differed significantly by death status, COVID-19 severity, and glucose levels. Clusters membership in the 19 cluster model also differed significantly by age, sex, and new-onset diabetes mellitus. This work identified distinct longitudinal blood glucose changes associated with subclinical glucose dysfunction in the low-complexity model and increased new-onset diabetes incidence in the high-complexity model. Together, these findings highlight the utility of data-driven techniques to elucidate longitudinal glycemic dysfunction in patients with COVID-19 and provide clinical evidence for further evaluation of the role of COVID-19 in diabetes pathogenesis.

Identifiants

pubmed: 34409266
doi: 10.1093/jamiaopen/ooab063
pii: ooab063
pmc: PMC8364667
doi:

Types de publication

Journal Article

Langues

eng

Pagination

ooab063

Subventions

Organisme : NIH HHS
ID : S10 OD021644
Pays : United States
Organisme : NLM NIH HHS
ID : T15 LM007124
Pays : United States
Organisme : NCATS NIH HHS
ID : UL1 TR002538
Pays : United States

Commentaires et corrections

Type : ErratumIn

Informations de copyright

© The Author(s) 2021. Published by Oxford University Press on behalf of the American Medical Informatics Association.

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Auteurs

Sejal Mistry (S)

Department of Biomedical Informatics, University of Utah, Salt Lake City, Utah, USA.

Ramkiran Gouripeddi (R)

Department of Biomedical Informatics, University of Utah, Salt Lake City, Utah, USA.

Julio C Facelli (JC)

Department of Biomedical Informatics, University of Utah, Salt Lake City, Utah, USA.

Classifications MeSH