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1.
Transfus Med ; 2024 Sep 28.
Artigo em Inglês | MEDLINE | ID: mdl-39340211

RESUMO

OBJECTIVES: We asked how increasing age interacts with transfusion and mortality among older injured adults at our large regional trauma center. BACKGROUND: Older adults are increasing proportions of acute trauma care and transfusion, but the specific interactions of increasing age with blood product use are unclear. METHODS/MATERIALS: Trauma data (age, injury severity, mechanism, etc.) were linked with transfusion service data (type, timing and numbers of units) for all acute trauma patients treated at our center 2011-2022. Subsets of patients aged ≥55 years were identified by age decade and trends assessed statistically, p < 0.01. RESULTS: Of 73 645 patients, 25 409 (34.5%) were aged ≥55. Within increasing 10-year age cohorts, these older patients were increasingly female (32.2%-67.2%), transferred from outside facilities (55.2%-65.9%) and injured in falls (44.4%-90.3%). Overall, patients ≥55, despite roughly equivalent injury severity, were twice as likely to be transfused (24% vs. 12.8%) as younger patients and to die during hospitalisation (7.5% vs. 2.9%). Cohort survival at all ages and levels of transfusion intensity in the first 4 h of care were more than 50%. Through age 94, numbers of red cell and whole blood units given in the first 4 h of care were a function of injury severity, not age cohort. CONCLUSIONS: In our trauma resuscitation practice, patients aged ≥55 years are more likely to receive blood products than younger patients, but numbers of units given in the first 4 h appear based on injury severity. Age equity in acute resuscitation is demonstrated.

2.
Prehosp Disaster Med ; : 1-9, 2023 Jan 06.
Artigo em Inglês | MEDLINE | ID: mdl-36606324

RESUMO

BACKGROUND: Previous studies have demonstrated the use of virtual reality (VR) in mass-casualty incident (MCI) simulation; however, it is uncertain if VR simulations can be a substitute for in-person disaster training. Demonstrating that VR MCI scenarios can elicit the same desired stress response achieved in live-action exercises is a first step in showing non-inferiority. The primary objective of this study was to measure changes in sympathetic nervous system (SNS) response via a decrease in heart rate variability (HRV) in subjects participating in a VR MCI scenario. METHODS: An MCI simulation was filmed with a 360º camera and shown to participants on a VR headset while simultaneously recording electrocardiography (EKG) and HRV activity. Baseline HRV was measured during a calm VR scenario immediately prior to exposure to the MCI scenarios, and SNS activation was captured as a decrease in HRV compared to baseline. Cognitive stress was measured using a validated questionnaire. Wilcoxon matched pairs signed rank analysis, Welch's t-test, and multivariate logistic regression were performed with statistical significance established at P <.05. RESULTS: Thirty-five subjects were enrolled: eight attending physicians (two surgeons, six Emergency Medicine [EM] specialists); 13 residents (five Surgery, eight EM); and 14 medical students (six pre-clinical, eight clinical-year students). Sympathetic nervous system activation was observed in all groups during the MCI compared to baseline (P <.0001) and occurred independent of age, sex, years of experience, or prior MCI response experience. Overall, 23/35 subjects (65.7%) reported increased cognitive stress in the MCI (11/14 medical students, 9/13 residents, and 3/8 attendings). Resident and attending physicians had higher odds of discordance between SNS activation and cognitive stress compared to medical students (OR = 8.297; 95% CI, 1.408-64.60; P = .030). CONCLUSIONS: Live-actor VR MCI simulation elicited a strong sympathetic response across all groups. Thus, VR MCI training has the potential to guide acquisition of confidence in disaster response.

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