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Concordance Between Bedside and Electronic Detection of Intracranial Pressure Crises: Insights From the Brain Tissue Oxygen Monitoring and Management in Severe Traumatic Brain Injury II Trial

Journal articles  - Journal Article
Chesnut, RM; Temkin, N; Barber, J; Park, C; Bonow, RH; Diaz-Arrastia, R; Moore, C; Shutter, L; Madden, C; Andaluz, N; Okonkwo, D; Chesnut, R ...
Published in: Critical Care Medicine
January 1, 2026

Objective: – Traumatic brain injury (TBI) research and intracranial pressure (ICP) management depends on bedside ICP (B-ICP) crisis identification. We analyzed background-collected electronic ICP (E-ICP) data to study the concordance of this identification. Design: – Post hoc comparison of background-collected continuous E-ICP data to routine B-ICP information during severe TBI management in the Brain Tissue Oxygen Monitoring and Management in Severe TBI (BOOST II) randomized trial. Setting: – Ten U.S. ICUs. Patients: – Seventy of 110 randomized BOOST II severe TBI patients with complete datasets for this study. Interventions: – None. Measurements and Main Results: – We studied ”minimalist” B-ICP episodes lasting less than or equal to 60 minutes and requiring only tier 1 treatments (83% of total BOOST II I isolated ICP episodes). Bedside clinicians (BCs) identified and treated 509 minimalist B-ICP episodes, defined by 5 minutes of B-ICP greater than or equal to 20 mm Hg (B-ICP5). Corresponding E-ICP during this defining period (E-ICP5) confirmed only 47% of these. The 241 “concordant” B-ICP episodes (both B-ICP5 and E-ICP5 ≥ 20 mm Hg) had average E-ICP values for the entire B-ICP episodes (E-ICPAVG) less than 20 mm Hg in 38%. The 286 “discordant” B-ICP episodes (B-ICP5 ≥ 20 mm Hg but E-ICP5 < 20 mm Hg) had E-ICPAVG values less than 20 mm Hg in 76% and both E-ICPAVG and maximal E-ICP’s (E-ICPMAX) values less than 20 mm Hg in 31%. Testing for confounding (e.g., brief, first, or easily controlled B-ICP episodes) did not provide explanations. Insufficient data were available to evaluate temporal asynchrony between BC and electronic datapoints. Study limitations were lacking a rigid end-of-B-ICP episode definition and inability to fully control for temporal synchrony confounding. Conclusions: – Our findings suggest that current methods of clinical identification of B-ICP episodes may not reliably distinguish true episodes of sustained ICP for the most common B-ICP episode type. We suggest developing open-source, real-time, temporally synchronized electronic B-ICP episode definition methods to direct future treatment and research.

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Published In

Critical Care Medicine

DOI

EISSN

1530-0293

ISSN

0090-3493

Publication Date

January 1, 2026

Related Subject Headings

  • Emergency & Critical Care Medicine
  • 4205 Nursing
  • 3202 Clinical sciences
 

Citation

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Chesnut, R. M., Temkin, N., Barber, J., Park, C., Bonow, R. H., Diaz-Arrastia, R., … Jallo, J. (2026). Concordance Between Bedside and Electronic Detection of Intracranial Pressure Crises: Insights From the Brain Tissue Oxygen Monitoring and Management in Severe Traumatic Brain Injury II Trial. Critical Care Medicine. https://doi.org/10.1097/CCM.0000000000007223
Chesnut, R. M., N. Temkin, J. Barber, C. Park, R. H. Bonow, R. Diaz-Arrastia, C. Moore, et al. “Concordance Between Bedside and Electronic Detection of Intracranial Pressure Crises: Insights From the Brain Tissue Oxygen Monitoring and Management in Severe Traumatic Brain Injury II Trial.” Critical Care Medicine, January 1, 2026. https://doi.org/10.1097/CCM.0000000000007223.
Chesnut RM, Temkin N, Barber J, Park C, Bonow RH, Diaz-Arrastia R, Moore C, Shutter L, Madden C, Andaluz N, Okonkwo D, Chesnut R, Bullock R, McGregor J, Grant G, Shapiro M, Weaver M, LeRoux P, Jallo J. Concordance Between Bedside and Electronic Detection of Intracranial Pressure Crises: Insights From the Brain Tissue Oxygen Monitoring and Management in Severe Traumatic Brain Injury II Trial. Critical Care Medicine. 2026 Jan 1;

Published In

Critical Care Medicine

DOI

EISSN

1530-0293

ISSN

0090-3493

Publication Date

January 1, 2026

Related Subject Headings

  • Emergency & Critical Care Medicine
  • 4205 Nursing
  • 3202 Clinical sciences