Key result
Model combining diastolic blood pressure and pulse interval scaling predicts intraventricular haemorrhage with ~0.92 AUC.
Why the study?
Does time series analysis of blood pressure and respiratory signals accurately predict intraventricular haemorrhage in preterm infants?
Observational (n=27)
No
Does time series analysis of blood pressure and respiratory signals accurately predict intraventricular haemorrhage in preterm infants?
Effect estimate: AUC 0.921 (95% CI 0.82-1.00)
p-value: p=0.035
Time series analysis of blood pressure and respiratory signals shows high accuracy in predicting intraventricular haemorrhage in preterm infants, potentially allowing earlier intervention.
May support early IVH prediction via HR/BP variability in preterm infants; leaves open prospective validation before clinical use.
Despite the decline in mortality rates of extremely preterm infants, intraventricular haemorrhage (IVH) remains common in survivors. The need for resuscitation and cardiorespiratory management, particularly within the first 24 hours of life, are important factors in the incidence and timing of IVH. Variability analyses of heart rate and blood pressure data has demonstrated potential approaches to predictive monitoring. In this study, we investigated the early identification of infants at a high risk of developing IVH, using time series analysis of blood pressure and respiratory data. We also explore approaches to improving model performance, such as the inclusion of multiple variables and signal pre-processing to enhance the results from detrended fluctuation analysis. Of the models we evaluated, the highest area under receiver-operator characteristic curve (5th, 95th percentile) achieved was 0.921 (0.82, 1.00) by mean diastolic blood pressure and the long-term scaling exponent of pulse interval (PI α2), exhibiting a sensitivity of >90% at a specificity of 75%. Following evaluation in a larger population, our approach may be useful in predictive monitoring to identify infants at high risk of developing IVH, offering caregivers more time to adjust intensive care treatment.
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Huvanandana et al. (2017) conducted an observational in Intraventricular haemorrhage in preterm infants (n=27). Mean diastolic blood pressure and long-term scaling exponent of pulse interval (PI α2) was evaluated on Prediction of intraventricular haemorrhage (Area Under the ROC Curve) (AUC 0.921, 95% CI 0.82-1.00, p=0.035). A multivariable model combining mean diastolic blood pressure and the long-term scaling exponent of pulse interval (PI α2) predicted intraventricular haemorrhage with an AUC of 0.921.
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