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Diaphragmatic Ultrasound in Adults: Image Acquisition and Interpretation
Published on: January 31, 2025
Sonographic assessment of pediatric chest wall thickness and width of the intercostal space: correlation with
Tom Terboven1, Ivette Betka1, Christel Weiss2
1Department of Anaesthesiology and Intensive Care Medicine, University Medical Center Mannheim, Theodor-Kutzer-Ufer 1-3, 68167, Mannheim, Germany.
Insights
Emergent needle decompression in children requires precise measurements. Ultrasound assessment of chest wall thickness and intercostal space width is reliable for guiding needle insertion depth, reducing injury risk.
Area of Science:
- Pediatric Emergency Medicine
- Critical Care
- Ultrasound Imaging
Background:
- Emergent needle decompression in children is rare but carries a high risk of intrathoracic injury.
- Accurate knowledge of pediatric chest wall dimensions is crucial for safe needle decompression.
- Understanding correlations between chest dimensions and patient factors can guide procedures.
Purpose of the Study:
- To investigate the correlation between chest wall thickness and intercostal space width with age and anthropometric data in children.
- To assess the reliability of ultrasound for measuring these dimensions.
- To determine the presence of vital structures at potential needle decompression sites.
Main Methods:
- Prospective observational study of 300 children (0-10 years) undergoing elective surgery.
- Ultrasound measurements of chest wall thickness and intercostal space width at the 2nd ICS MCL and 4th ICS AAL.
- Correlation analysis with age, height, weight, BMI, and Broselow color; assessed reproducibility and vital structure proximity.
Main Results:
- Moderate correlation found between chest wall thickness and weight/BMI; weaker correlations with age, height, and Broselow color.
- Intercostal space width showed stronger correlation with height (r=0.71).
- Ultrasound measurements demonstrated excellent reproducibility (ICC=0.93); vital structures were more frequent at the 2nd ICS MCL.
Conclusions:
- Anthropometric data provide only moderate prediction of chest wall thickness and intercostal space width.
- Ultrasound assessment of the pediatric thoracic wall is a reliable method.
- Ultrasound can aid in reducing injury risk and improving needle decompression success in children.
Background:
Emergent needle decompression in children is a rare event for emergency medicine and critical care providers. Hereby, risk of injury of intrathoracic structures is high and knowledge of age-specific values of chest wall thickness and width of the intercostal space (ICS) is crucial to avoid injuries. Investigation of the correlation of chest wall thickness and width of the intercostal space with age and body dimension like weight and height could provide guidance on depth of insertion and choice of the needle.
Methods:
We performed a prospective observational clinical trial in a pediatric surgery operating room that included a convenient sample of children aged 0-10 years undergoing elective surgery. Chest wall thickness and width of the intercostal space were measured with ultrasound at 2nd ICS midclavicular line (MCL) and 4th ICS anterior axillary line (AAL). Correlation of these measures with age, height, weight, BMI and Broselow color was calculated. Furthermore, intra-class correlation coefficient was calculated as a measure of reproducibility and the presence of vital structures (e.g., heart, thymus gland, large pulmonary vessels) at the possible insertion sites for needle decompression was investigated.
Results:
Of 410 potentially eligible patients, 300 were included in the study. Correlation of chest wall thickness was moderate with weight (2nd ICS MCL: r = 0.57; 4th ICS MCL: r = 0.64) and BMI (r = 0.44 and r = 0.6) and was lower with age (r = 0.38 for both intercostal spaces), height (r = 0.42 and r = 0.40) and Broselow color (r = 0.42 and r = 0.38). Correlation of width of the ICS with anthropometric data was generally stronger, with height showing the strongest, albeit not really strong, correlation (r = 0.71 and r = 0.62). Intra-class correlation was excellent with an ICC of 0.93. Vital structures were significantly more often present at 2nd ICS MCL then at 4th ICS AAL (14 vs. 2 patients; p = 0.0042).
Conclusions:
Correlation of chest wall thickness and width of the intercostal space with anthropometric data is at most moderate. Insertion depth and width of the intercostal space can therefore not be predicted accurately from anthropometric data. Ultrasound assessment of the thoracic wall appears to be a reliable technique and could therefore assist in reducing the risk of injury and increasing decompression success. Trial registration German clinical trials register, DRKS00014973, Registered February 11th 2019, https://www.drks.de/drks_web/navigate.do?navigationId=trial.HTML&TRIAL_ID=DRKS00014973.
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