MEASUREMENTS AND MAIN RESULTS:We studied 476 patients and grouped them by TD status on days 1 and 3 of the PICU admission. There might be a risk of unintended bias since we excluded 386 patients because of the absence of consent, inadequate blood samples, loss of identifier information, and recent vitamin supplementation. On day 1, TD was present in 53 of 476 patients (11.1%) and median (minimum-maximum) thiamine levels were 65.5 ng/mL (5-431 ng/mL). On day 3, TD was present in 27 of 199 patients (13.6%) with repeated measurement. The median (minimum-maximum) thiamine levels were 63 ng/mL (13-357 ng/mL). The time course of TD from day 1 to day 3 in these 199 patients was as follows. In 21 of 199 patients (10.6%) with TD on day 1, 11 of 21 (52%) continued to have TD on day 3 and the other 10 of 21 patients (48%) improved to no longer having TD. In 178 of 199 patients (89.4%) without TD on day 1, 16 of 178 (9%) went on to develop TD by day 3, and the other 162 of 178 (91%) continued to have normal thiamine status. CONCLUSIONS:In the PICU population in three centers in Turkey, the prevalence of TD in the sample of patients was 11.1%. In those TD patients who had serial studies, we also identified that by day 3 some continued to be TD, and some patients improved to normal thiamine status. Of concern, however, is the population who develop TD over the course of PICU stay.
BACKGROUND: Motor vehicle collisions (MVCs) are the number one cause of death in the pediatric age group. The aim of this study was to determine the differences between MVCs and other trauma mechanisms (OTMs) in patients who were followed up at a pediatric intensive care unit (PICU). METHODS: Data were retrospectively collected for pediatric trauma patients hospitalized at a third level PICU between 2014 and 2018. Patients have been divided into two groups as MVC and OTM. Demographic data, pre-PICU interventions (cardiopulmonary resuscitation, intubation, injury severity scores, time period before intensive care), intensive care interventions (invasive mechanical ventilation, non-invasive mechanical ventilation, need for surgery, type of surgery, need for transfusion, and inotrope therapy) were compared between two groups. Outcomes were evaluated by survival, discharge from hospital, Pediatric Cerebral Performance Category (PCPC) at discharge, tracheotomy presence, and amputation performed. RESULTS: During the 5-year study period, 135 patients were hospitalized for trauma. The injured body regions were the head and neck (61.5%), abdomen and lumbar spine (39.4%), and extremities and pelvis (36.3%). Multiple trauma was mostly seen in the MVC trauma group (p=0.001). The need for invasive mechanical ventilation and inotrope therapy was greater in the MVC group (p=0.002, 0.001 respectively). One hundred and twenty-three patients (91.1%) survived. The mortality rate was higher in the MVC group (p=0.026). The PCPC results were better in the OTM group (p=0.017). CONCLUSION: MVCs lead to more multiple trauma cases than OTMs. Invasive mechanical ventilation, inotropes, and other intensive care interventions were necessary much more often in MVC victims than in OTM patients.
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