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Published on: August 25, 2022
Changes in Internal Cerebral Vein Pulsation and Intraventricular Hemorrhage in Extremely Preterm Infants
Kenichi Tanaka1, Shirou Matsumoto1, Youhei Minamitani1
1Division of Neonatology, Kumamoto University Hospital, Kumamoto, Japan.
Insights
Internal cerebral vein (ICV) pulsations are stronger in preterm infants with severe intraventricular hemorrhage (IVH). The ICV pulsation index (ICVPI) can help predict severe IVH, guiding early intervention for better outcomes.
Area of Science:
- Neonatal neurology
- Pediatric cardiology
- Medical imaging
Background:
- Intraventricular hemorrhage (IVH) is a common complication in preterm infants.
- The relationship between cerebral venous pulsations and IVH severity is not fully understood.
- Early prediction of IVH is crucial for timely intervention and improved outcomes.
Purpose of the Study:
- To investigate the association between internal cerebral vein (ICV) pulsation and the severity of intraventricular hemorrhage (IVH) in preterm infants.
- To determine predictive cut-off values for ICV pulsation to identify infants at risk of IVH.
- To test the hypothesis that increased ICV flow pulsations correlate with increased IVH severity.
Main Methods:
- Prospective observational study involving 61 extremely preterm infants.
- Ultrasonographic measurement of ICV flow at multiple time points post-birth (up to 28 days).
- Calculation of the ICV pulsation index (ICVPI) and comparison across IVH severity groups (Papile classification); ROC analysis for cut-off values.
Main Results:
- Lower ICVPI values were observed in infants with severe IVH (SIVH) compared to those without IVH (NIVH).
- Specific ICVPI cut-off values were identified for predicting SIVH within the first 60 hours after birth.
- Infants with ICVPI below cut-off values ≥3 times between 13-60 hours showed significantly higher SIVH incidence (57.1% vs. 1.9%).
Conclusions:
- Sustained, pronounced ICV pulsations are associated with severe IVH in preterm infants.
- The ICVPI serves as a potential non-invasive biomarker for predicting SIVH.
- Further research into strategies for reducing venous pressure may aid in IVH prevention.
Objectives:
This study aimed to investigate the relationship between internal cerebral vein (ICV) pulsation and intraventricular hemorrhage (IVH) and to identify the cut-off values that predict IVH. We hypothesized that the severity of ICV flow pulsations was related to IVH severity.
Study Design:
In this prospective observational study, ICV flow was measured in 61 extremely preterm infants using ultrasonography at every 12 hours until 96 hours after birth and on days 7, 14, and 28. The ICV pulsation index (ICVPI = minimum/maximum ICV speed) was calculated and compared among the groups determined by Papile's IVH classification. The ICVPI cut-off values for IVH were determined by receiver operating characteristic curve analysis.
Results:
Compared with those in the no IVH (NIVH) group (n = 51), the ICVPI median values in the severe IVH (SIVH; grades 3 and 4) group (n = 5) were lower at 25 to 96 hours and on day 7, whereas those in the mild IVH (MIVH; grades 1 and 2) group (n = 5) were lower at 37 to 60 hours. All SIVH events were initially detected within 60 hours after birth. The ICVPI cut-off values for SIVH were 0.92 at 13 to 24 hours, 0.42 at 25 to 36 hours, 0.58 at 37 to 48 hours, and 0.55 at 49 to 60 hours. Infants whose ICVPI values were below the cut-off value ≥3 times between 13 and 60 hours had a significantly higher SIVH incidence than those whose ICVPI values were below the cut-off value ≤2 times (57.1 vs. 1.9%, p < 0.001).
Conclusion:
Our results indicate that SIVH had sustained pronounced internal cerebral vein pulsations and that the ICVPI values may help predict SIVH. Further research on strategies to decrease venous pressure for IVH prevention is needed.
Key Points:
· IVH preterm infants had sustained ICV pulsations.. · ICV flow in SIVH pulsated stronger.. · ICVPI fluctuation implies postnatal adaptation.. · We newly defined ICVPI to predict SIVH..
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