Claudia Ann Smith, Stefan Yu Bögli, Michał Placek, Manuel Cabeleira, Deborah White, Esther Daubney, Adam Young, Erta Beqiri, Riaz Kayani, Roddy O'Donnell, Nazima Pathan, Suzanna Watson, Anna Maw, Matthew Garnett, Hari Krishnan Kanthimathinathan, Harish Bangalore, Santosh Sundararajan, Gayathri Subramanian, Dusan Raffaj, Simona Lampariello, Avishay Sarfatti, Anton Mayer, Oliver Ross, Marek Czosnyka, Peter John Hutchinson, Peter Smielewski, Shruti Agrawal
{"title":"星际飞船第2部分:儿童严重创伤性脑损伤的压力反应障碍持续时间和程度-结果含义。","authors":"Claudia Ann Smith, Stefan Yu Bögli, Michał Placek, Manuel Cabeleira, Deborah White, Esther Daubney, Adam Young, Erta Beqiri, Riaz Kayani, Roddy O'Donnell, Nazima Pathan, Suzanna Watson, Anna Maw, Matthew Garnett, Hari Krishnan Kanthimathinathan, Harish Bangalore, Santosh Sundararajan, Gayathri Subramanian, Dusan Raffaj, Simona Lampariello, Avishay Sarfatti, Anton Mayer, Oliver Ross, Marek Czosnyka, Peter John Hutchinson, Peter Smielewski, Shruti Agrawal","doi":"10.1177/08977151251367052","DOIUrl":null,"url":null,"abstract":"<p><p>Cerebral autoregulation (CA) plays a critical role in maintaining cerebral blood flow (CBF) amid fluctuations in systemic blood pressure, with dysfunction increasing vulnerability to secondary brain injury, particularly after traumatic brain injury (TBI). While extensively studied in adults, CA dynamics in pediatric TBI (pTBI) remain relatively unexplored. Studying Trends in AutoRegulation in Severe Head Injury in Pediatrics (STARSHIP), the first multicenter, prospective study on CA in pTBI, investigates the pressure reactivity index (PRx) and its association with outcomes. PRx, calculated as the Pearson's correlation between mean arterial pressure and intracranial pressure, provides insights into the patient's CA status. In this article, STARSHIP Part 2 characterizes PRx disturbances using dose metrics that take the magnitude of PRx disturbance, and the time in which the patient experiences this derangement, into consideration. We calculated the dose (overall and hourly) and percentage time spent with a PRx above thresholds 0-0.4 in 135 children with TBI. Associations with outcome were explored via summary metrics and over time, using uni- and multivariable, and ordinal regression with propensity score matching, correcting for known outcome predictors. Patients with poor outcomes exhibited higher PRx dose and percentage time above threshold, even after adjusting for clinical predictors. Time trend analyses highlighted elevated PRx metrics in poor outcome groups during the first-week post-injury. Duration of impaired pressure reactivity, as denoted by the percentage time a patient spent with a PRx >0, is robustly and independently associated with dichotomized outcome at 12 months post-ictus. Our results highlight the predictive strength of PRx metrics, with percentage time above a threshold of 0 emerging as the most robust indicator of 12-month outcome. 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Associations with outcome were explored via summary metrics and over time, using uni- and multivariable, and ordinal regression with propensity score matching, correcting for known outcome predictors. Patients with poor outcomes exhibited higher PRx dose and percentage time above threshold, even after adjusting for clinical predictors. Time trend analyses highlighted elevated PRx metrics in poor outcome groups during the first-week post-injury. Duration of impaired pressure reactivity, as denoted by the percentage time a patient spent with a PRx >0, is robustly and independently associated with dichotomized outcome at 12 months post-ictus. Our results highlight the predictive strength of PRx metrics, with percentage time above a threshold of 0 emerging as the most robust indicator of 12-month outcome. 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STARSHIP Part 2: Disturbed Pressure Reactivity Duration and Magnitude in Pediatric Severe Traumatic Brain Injury-Outcome Implications.
Cerebral autoregulation (CA) plays a critical role in maintaining cerebral blood flow (CBF) amid fluctuations in systemic blood pressure, with dysfunction increasing vulnerability to secondary brain injury, particularly after traumatic brain injury (TBI). While extensively studied in adults, CA dynamics in pediatric TBI (pTBI) remain relatively unexplored. Studying Trends in AutoRegulation in Severe Head Injury in Pediatrics (STARSHIP), the first multicenter, prospective study on CA in pTBI, investigates the pressure reactivity index (PRx) and its association with outcomes. PRx, calculated as the Pearson's correlation between mean arterial pressure and intracranial pressure, provides insights into the patient's CA status. In this article, STARSHIP Part 2 characterizes PRx disturbances using dose metrics that take the magnitude of PRx disturbance, and the time in which the patient experiences this derangement, into consideration. We calculated the dose (overall and hourly) and percentage time spent with a PRx above thresholds 0-0.4 in 135 children with TBI. Associations with outcome were explored via summary metrics and over time, using uni- and multivariable, and ordinal regression with propensity score matching, correcting for known outcome predictors. Patients with poor outcomes exhibited higher PRx dose and percentage time above threshold, even after adjusting for clinical predictors. Time trend analyses highlighted elevated PRx metrics in poor outcome groups during the first-week post-injury. Duration of impaired pressure reactivity, as denoted by the percentage time a patient spent with a PRx >0, is robustly and independently associated with dichotomized outcome at 12 months post-ictus. Our results highlight the predictive strength of PRx metrics, with percentage time above a threshold of 0 emerging as the most robust indicator of 12-month outcome. This work supports further investigation into the feasibility and impact of interventions guided by real-time CA monitoring in severe pTBI.
期刊介绍:
Journal of Neurotrauma is the flagship, peer-reviewed publication for reporting on the latest advances in both the clinical and laboratory investigation of traumatic brain and spinal cord injury. The Journal focuses on the basic pathobiology of injury to the central nervous system, while considering preclinical and clinical trials targeted at improving both the early management and long-term care and recovery of traumatically injured patients. This is the essential journal publishing cutting-edge basic and translational research in traumatically injured human and animal studies, with emphasis on neurodegenerative disease research linked to CNS trauma.