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Published on: March 26, 2019
Prognostic role of EEG identical bursts in patients after cardiac arrest: Multimodal correlation
Giuseppina Barbella1, Jan Novy2, Pedro Marques-Vidal3
1Neurology Unit, San Gerardo Hospital, Monza, Italy; School of Medicine and Surgery and Milan-Center for Neuroscience (NeuroMI), University of Milano-Bicocca, Milan, Italy; Department of Neurology, Lausanne University Hospital (CHUV) and University of Lausanne, Switzerland.
Insights
Identical bursts (IB) in EEG are highly specific for poor outcomes after cardiac arrest (CA). However, IB do not significantly improve multimodal prognostic scores when other predictors are considered.
Area of Science:
- Neuroscience
- Critical Care Medicine
- Neurology
Background:
- EEG burst-suppression (BS) is a known indicator of poor prognosis post-cardiac arrest (CA).
- Identical bursts (IB) within BS patterns have been proposed as a highly specific, isolated predictor of poor outcomes.
Purpose of the Study:
- To assess the prevalence of identical bursts (IB) in EEG patterns following cardiac arrest (CA).
- To evaluate the added predictive value of IB for poor neurological outcome in a multimodal prognostic framework.
Main Methods:
- Retrospective analysis of 522 comatose adult CA patients with EEG monitoring.
- Visual assessment of burst-suppression (BS) and identical bursts (IB).
- Comparison of multimodal prognostic scores with and without IB using ROC curves.
Main Results:
- 147 patients (28%) exhibited BS, with 53 (10% of total) showing IB.
- IB were 100% specific for poor outcome but did not significantly improve the predictive performance of the multimodal score.
Conclusions:
- Identical bursts (IB) occur in 10% of post-cardiac arrest patients and are highly specific for poor outcomes.
- In a multimodal prognostic context, IB appear redundant with other established predictors.
Aims:
EEG burst-suppression (BS) heralds poor outcome after cardiac arrest (CA). Within this pattern, identical bursts (IB) have been suggested to be absolutely specific, in isolation. We assessed IB prevalence and their added predictive value for poor outcome in a multimodal prognostic approach.
Methods:
We retrospectively analyzed a registry of comatose adults with CA (April 2011-February 2019), undergoing EEG at 5-36 h and 36-72 h. SB and IB were visually assessed. Cerebral Performance Categories (CPC) at 3 months were dichotomized as "good" (CPC 1-2), or "poor" (CPC 3-5). Sensitivity, specificity, positive, negative predictive values of BS and IB for poor outcome were calculated. A multimodal prognostic score was created assigning one point each to unreactive and epileptiform EEG, pupillary light reflex and SSEPs absence, NSE > 75 μg/l. In a second score, IB were added; predictive performances were compared using Receiver Operating Characteristic (ROC) curves.
Results:
Of 522 patients, 147 (28%) had BS in any EEG (10 [7%] had good outcome and 129 [88%] died). Of them, 53/147 (36%, 10% of total) showed IB, 47/53 (89%) of which within 36 h. IB were 100% specific for poor outcome, and associated with higher serum NSE than BS. However, there was no significant difference between the scores with and without IB for CPC 3-5 (p = 0.116).
Conclusion:
IB occur in 10% of patients after CA. In our multimodal context, IB, albeit being very specific for poor outcome, seem redundant with other predictors.
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