Literature DB >> 24798696

Subarachnoid hemorrhage prevalence and its association with short-term outcome in pediatric severe traumatic brain injury.

Elana Hochstadter1, Tanya Charyk Stewart, Ibrahim M Alharfi, Adrianna Ranger, Douglas D Fraser.   

Abstract

BACKGROUND: Subarachnoid hemorrhage (SAH) is an independent prognostic indicator of outcome in adult severe traumatic brain injury (sTBI). There is a paucity of investigations on SAH in pediatric sTBI. The goal of this study was to determine in pediatric sTBI patients SAH prevalence, associated factors, and its relationship to short-term outcome.
METHODS: We retrospectively analyzed 171 sTBI patients (pre-sedation GCS ≤8 and head MAIS ≥4) who underwent CT head imaging within the first 24 h of hospital admission. Data were analyzed with both univariate and multivariate techniques.
RESULTS: SAH was found in 42 % of sTBI patients (n = 71/171), and it was more frequently associated with skull fractures, cerebral edema, diffuse axonal injury, contusion, and intraventricular hemorrhage (p < 0.05). Patients with SAH had higher Injury Severity Scores (p = 0.032) and a greater frequency of fixed pupil(s) on admission (p = 0.001). There were no significant differences in etiologies between sTBI patients with and without SAH. Worse disposition occurred in sTBI patients with SAH, including increased mortality (p = 0.009), increased episodes of central diabetes insipidus (p = 0.002), greater infection rates (p = 0.002), and fewer ventilator-free days (p = 0.001). In sTBI survivors, SAH was associated with increased lengths of stay (p < 0.001) and a higher level of care required on discharge (p = 0.004). Despite evidence that SAH is linked to poorer outcomes on univariate analyses, multivariate analysis failed to demonstrate an independent association between SAH and mortality (p = 0.969).
CONCLUSION: SAH was present in almost half of pediatric sTBI patients, and it was indicative of TBI severity and a higher level of care on discharge. SAH in pediatric patients was not independently associated with increased risk of mortality.

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Mesh:

Year:  2014        PMID: 24798696     DOI: 10.1007/s12028-014-9986-7

Source DB:  PubMed          Journal:  Neurocrit Care        ISSN: 1541-6933            Impact factor:   3.210


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1.  Diabetes insipidus in neurosurgical patients.

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Journal:  Ann Acad Med Singapore       Date:  1998-05       Impact factor: 2.473

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3.  Traumatic subarachnoid hemorrhage as a predictable indicator of delayed ischemic symptoms.

Authors:  M Taneda; K Kataoka; F Akai; T Asai; I Sakata
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Authors:  H J Feickert; S Drommer; R Heyer
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5.  Prognostic factors in children with severe diffuse brain injuries: a study of 74 patients.

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6.  Clinical outcome after head injury in children.

Authors:  R Kalff; W Kocks; J Pospiech; W Grote
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