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Published on: January 4, 2013
Inversion of T Waves on Admission is Associated with Mortality in Spontaneous Intracerebral Hemorrhage
Andrea Loggini1, Ali Mansour2, Faten El Ammar1
1Neurosciences Intensive Care Unit, Department of Neurology, University of Chicago Medicine and Biological Sciences, Chicago, Illinois, USA.
Insights
Electrocardiogram (EKG) abnormalities, specifically T wave inversions (TWI), are linked to higher mortality in patients with intracerebral hemorrhage (ICH). TWI presence independently predicts death, improving prognostic models for ICH outcomes.
Area of Science:
- Neurology
- Cardiology
- Critical Care Medicine
Background:
- Cardiac dysfunction following intracerebral hemorrhage (ICH) is not well understood.
- The impact of cardiac changes on ICH patient outcomes remains uncertain.
Purpose of the Study:
- To investigate the association between electrocardiographic (EKG) abnormalities and mortality in patients with ICH.
- To determine if specific EKG patterns predict outcomes in intracerebral hemorrhage.
Main Methods:
- Retrospective analysis of EKG patterns on admission for 301 patients with ICH.
- Review of patient demographics, medical history, clinical presentation, EKG, and head CT.
- Statistical analysis to identify correlations between EKG findings and mortality.
Main Results:
- QTc prolongation (56%) and T wave inversions (TWI) (37%) were the most common EKG abnormalities.
- TWI on admission was independently associated with increased mortality in ICH patients (OR: 3.04, p < 0.01).
- Adding TWI to the ICH score improved its prognostic accuracy (AUC 0.81).
Conclusions:
- T wave inversion on admission is an independent predictor of mortality in intracerebral hemorrhage.
- The presence of TWI is an unmodifiable factor associated with poor outcomes in ICH.
- Further research is required to understand the mechanisms behind EKG changes in ICH.
Introduction:
Cardiac dysfunction directly caused by spontaneous intracerebral hemorrhage (ICH) is a poorly understood phenomenon, and its impact on outcome is still uncertain. The aim of this study is to investigate the relationship between electrocardiographic (EKG) abnormalities and mortality in ICH.
Methods:
This is a retrospective study analyzing EKG patterns on admission in patients admitted with ICH at a tertiary care center over an eight-year period. For each patient, demographics, medical history, clinical presentation, EKG on admission and during hospitalization, and head CT at presentation were reviewed. Mortality was noted.
Results:
A total of 301 ICH patients were included in the study. The most prevalent EKG abnormalities were QTc prolongation in 56% of patients (n = 168) followed by inversion of T waves (TWI) in 37% of patients (n = 110). QTc prolongation was associated with ganglionic location (p = 0.03) and intraventricular hemorrhage (IVH) (p = 0.01), TWIs were associated with ganglionic location (p = 0.02), and PR prolongation was associated with IVH (p = 0.01), while QRS prolongation was associated with lobar location (p < 0.01). Volume of ICH, hemispheric laterality, and involvement of insular cortex were not correlated with specific EKG patterns. In a logistic regression model, after correcting for ICH severity and prior cardiac history, presence of TWI was independently associated with mortality (OR: 3.04, CI:1.6-5.8, p < 0.01). Adding TWI to ICH score improved its prognostic accuracy (AUC 0.81, p = 0.04). Disappearance of TWI during hospitalization did not translate into improvement of survival (p = 0.5).
Conclusion:
Presence of TWI on admission is an independent and unmodifiable factor associated with mortality in ICH. Further research is needed to elucidate the pathophysiologic mechanisms underlying electrocardiographic changes after primary intracerebral hemorrhage.
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