Literature DB >> 15799148

Association between dynamic cerebral autoregulation and mortality in severe head injury.

R B Panerai1, V Kerins, L Fan, P M Yeoman, T Hope, D H Evans.   

Abstract

The objective of the study was to test the hypothesis that dynamic cerebral pressure-autoregulation is associated with the outcome of patients with severe head injury and to derive optimal criteria for future studies on the predictive value of autoregulation indices. Repeated measurements were performed on 32 patients with severe head injury. Arterial blood pressure (ABP) was measured continuously with an intravascular catheter, intracranial pressure (ICP) was recorded with a subdural semiconductor transducer and cerebral blood flow velocity (CBFV) was measured with Doppler ultrasound in the middle cerebral artery. Transfer function analysis was performed on mean beat-to-beat values, using ABP or CBFV as input variables and CBFV or ICP as the output variables. A dynamic index of autoregulation (ARI) ranging between 0 and 9 was extracted from the CBFV step response for a change in ABP. No significant differences between survivors and non-survivors were found due to mean values of ICP, ABP, CPP, CBFV, pCO2, GCS, age or heart rate. The transfer functions between ABP-ICP and CBFV-ICP did not show any significant differences either. The median [lower, upper quartiles] ARI was significantly lower for non-survivors compared with survivors [4.8 (0.0, 5.9) v. 6.9 (5.9, 7.4), p= 0.004]. The correlation between ARI and GOS was also significant (r=0.464, p=0.011). Cohen's coefficient was optimal for a threshold of ARI= 5.86 (kappa 0.51, p=0.0036), leading to a sensitivity for death of 75%, specificity=76.5%, odds ratio =9.75 and overall precision = 75.8%. The difference in ARI values between survivors and non-survivors persisted when results were adjusted for GCS (p = 0.028). A similar analysis for the Marshall CT scale did not reach significance (p = 0.072). A logistic regression analysis confirmed that apart from the ARI, no other variables had a significant contribution to predict outcome. In this group of patients, death following severe head injury could not be explained by traditional indices of risk, but was strongly correlated to indices of dynamic cerebral pressure-autoregulation extracted by means of transfer function analysis. Future studies using a prospective design are needed to validate the predictive value of the ARI index, as estimated by transfer function analysis, in relation to death and other unfavourable outcomes.

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Year:  2004        PMID: 15799148     DOI: 10.1080/02688690400012343

Source DB:  PubMed          Journal:  Br J Neurosurg        ISSN: 0268-8697            Impact factor:   1.596


  22 in total

1.  Critical thresholds for transcranial Doppler indices of cerebral autoregulation in traumatic brain injury.

Authors:  Enrico Sorrentino; Karol P Budohoski; Magdalena Kasprowicz; Peter Smielewski; Basil Matta; John D Pickard; Marek Czosnyka
Journal:  Neurocrit Care       Date:  2011-04       Impact factor: 3.210

2.  Intracranial pressure and cerebral oxygenation changes after decompressive craniectomy in a child with traumatic brain swelling.

Authors:  A A Figaji; A G Fieggen; S J I Sandler; A C Argent; P D Le Roux; J C Peter
Journal:  Childs Nerv Syst       Date:  2007-07-14       Impact factor: 1.475

Review 3.  Transcranial Doppler for evaluation of cerebral autoregulation.

Authors:  Ronney B Panerai
Journal:  Clin Auton Res       Date:  2009-04-16       Impact factor: 4.435

Review 4.  Practical aspects of bedside cerebral hemodynamics monitoring in pediatric TBI.

Authors:  Anthony A Figaji
Journal:  Childs Nerv Syst       Date:  2010-04       Impact factor: 1.475

5.  Detection of impaired cerebral autoregulation improves by increasing arterial blood pressure variability.

Authors:  Emmanuel Katsogridakis; Glen Bush; Lingke Fan; Anthony A Birch; David M Simpson; Robert Allen; John F Potter; Ronney B Panerai
Journal:  J Cereb Blood Flow Metab       Date:  2012-12-12       Impact factor: 6.200

6.  Acute hypoxia impairs dynamic cerebral autoregulation: results from two independent techniques.

Authors:  Andrew W Subudhi; Ronney B Panerai; Robert C Roach
Journal:  J Appl Physiol (1985)       Date:  2009-08-06

Review 7.  Neuroprotective measures in children with traumatic brain injury.

Authors:  Shruti Agrawal; Ricardo Garcia Branco
Journal:  World J Crit Care Med       Date:  2016-02-04

8.  Effect of Body Temperature on Cerebral Autoregulation in Acutely Comatose Neurocritically Ill Patients.

Authors:  Krishma Adatia; Romergryko G Geocadin; Ryan Healy; Wendy Ziai; Luciano Ponce-Mejia; Mirinda Anderson-White; Dhaval Shah; Batya R Radzik; Caitlin Palmisano; Charles W Hogue; Charles Brown; Lucia Rivera-Lara
Journal:  Crit Care Med       Date:  2018-08       Impact factor: 7.598

9.  Should the neurointensive care management of traumatic brain injury patients be individualized according to autoregulation status and injury subtype?

Authors:  Ulf Johnson; Anders Lewén; Elisabeth Ronne-Engström; Tim Howells; Per Enblad
Journal:  Neurocrit Care       Date:  2014-10       Impact factor: 3.210

Review 10.  Autoregulation in the Neuro ICU.

Authors:  Anson Wang; Santiago Ortega-Gutierrez; Nils H Petersen
Journal:  Curr Treat Options Neurol       Date:  2018-05-17       Impact factor: 3.598

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