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Updated: Mar 22, 2026

Image Acquisition Method for the Sonographic Assessment of the Inferior Vena Cava
Published on: January 13, 2023
Inferior vena cava calibre on paediatric trauma CT may be a useful predictor for the development of shock
J L Barber1, P Touska1, A S Negus1
1Radiology Department, St George's Hospital, Blackshaw Road, London SW17 0QT, UK.
Insights
Inferior vena cava (IVC) size on paediatric trauma CT scans can predict shock development in children. IVC calibre is a better indicator of impending haemodynamic instability than heart rate or blood pressure.
Area of Science:
- Radiology
- Paediatric Trauma
- Critical Care Medicine
Background:
- Assessing haemodynamic status in paediatric trauma is critical.
- Computed tomography (CT) is a key diagnostic tool in paediatric trauma.
- Predictive markers for shock in children are needed.
Purpose of the Study:
- To determine if inferior vena cava (IVC) calibre on paediatric trauma CT scans can predict patient outcomes.
- To evaluate IVC calibre as a predictor of shock and haemodynamic instability in children.
Main Methods:
- Retrospective review of 52 paediatric trauma CT scans and clinical records.
- Measurement of IVC dimensions and assessment for haemorrhage and hypoperfusion complex.
- Analysis of clinical data including vital signs, blood gas results, and mortality.
Main Results:
- A significant relationship was found between IVC dimensions and shock development within 24 hours.
- IVC calibre did not correlate with admission haemodynamics or predict hospital stay length.
- Serum lactate showed a weak correlation with IVC dimensions.
Conclusions:
- Inferior vena cava (IVC) calibre on CT is a more effective predictor of shock than heart rate or blood pressure in paediatric trauma.
- IVC calibre may serve as a valuable tool for anticipating haemodynamic instability in children.
- Larger studies are required to validate these findings and explore age-related variations.
Aim:
To investigate whether inferior vena cava (IVC) calibre on paediatric trauma computed tomography (CT) can help anticipate outcomes in children.
Materials And Methods:
The imaging and clinical records of 52 paediatric trauma admissions to the level 1 major trauma centre at St George's Hospital, London, UK, were retrospectively reviewed. The IVC dimensions, evidence of significant haemorrhage on CT, and the presence of components of the classical hypoperfusion complex, such as bowel and adrenal hyperenhancement, were recorded. Clinical data included observations at the time of admission and for the subsequent 48-hour period where available, blood gas results, length of stay, and mortality.
Results:
There was a significant relationship between IVC dimensions in this cohort and the development of shock during the 24-hour admission period. IVC dimensions did not, however, reflect the haemodynamic status at the time of admission, and were not predictive of a longer hospital stay. There were no mortalities among the cases. A weak correlation was also seen with serum lactate, a finding that has also been seen in adults, but is of uncertain clinical significance.
Conclusions:
IVC calibre was found to be a more useful predictor of shock than heart rate or blood pressure, and may, therefore, prove to be a useful predictor of impending haemodynamic instability in children as it is in adults. Although the study was carried out at a busy unit, the numbers are acknowledged to be small and a larger study would be needed to validate these findings and identify whether there is any variation in the CT appearances between different age groups.
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