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Evaluation of Ventricle Size Measurements in Infants by Pediatric Emergency Medicine Physicians
Brunhild M Halm1, Tina A Leone2, Lindsey T Chaudoin1
1From the Departments of Pediatrics.
Insights
Pediatric emergency medicine physicians can use point-of-care ultrasound (POCUS) to rule out hydrocephalus in infants with high specificity. Further research is needed to confirm its diagnostic accuracy for identifying this condition.
Area of Science:
- Pediatric Emergency Medicine
- Neonatal Imaging
- Ultrasound Diagnostics
Background:
- Hydrocephalus diagnosis in infants is critical.
- Cranial point-of-care ultrasound (POCUS) by pediatric emergency medicine (PEM) physicians has not been evaluated.
- Assessing POCUS for hydrocephalus detection in neonates is important.
Purpose of the Study:
- To pilot the use of cranial POCUS by PEM physicians for identifying hydrocephalus in infants.
- To determine the test characteristics of POCUS for hydrocephalus diagnosis.
- To assess interrater reliability between PEM physicians and radiologists.
Main Methods:
- 15 infants from the neonatal intensive care unit underwent cranial POCUS by PEM physicians.
- Ventricle size was measured via anterior horn width using POCUS.
- Radiologist measurements from cranial ultrasound served as the criterion standard.
Main Results:
- The POCUS sensitivity was 66.7% and specificity was 94.4% for identifying hydrocephalus.
- Positive and negative predictive values were 88.9% and 81.0%, respectively.
- High interrater reliability (r = 0.91) was observed between PEM physicians and radiologists.
Conclusions:
- PEM physicians demonstrated high specificity in ruling out hydrocephalus using cranial POCUS.
- Insufficient evidence exists to support POCUS for definitive hydrocephalus identification.
- Larger studies are required to accurately determine the test characteristics of cranial POCUS.
Objectives:
The identification of hydrocephalus in infants by pediatric emergency medicine (PEM) physicians using cranial point-of-care ultrasound (POCUS) has not been evaluated. We aimed to conduct a pilot/proof-of-concept study to evaluate whether PEM physicians can identify hydrocephalus (anterior horn width >5 mm) in 15 infants (mean 69 ± 42 days old) from the neonatal intensive care unit using POCUS. Our exploratory aims were to determine the test characteristics of cranial POCUS performed by PEM physicians for diagnosing hydrocephalus and the interrater reliability between measurements made by the PEM physicians and the radiologist.
Methods:
Depending on the availability, 1 or 2 PEM physicians performed a cranial POCUS through the open anterior fontanel for each infant after a 30-minute didactic lecture to determine the size of the left and right ventricles by measuring the anterior horn width at the foramen of Monroe in coronal view. Within 1 week, an ultrasound (US) technologist performed a cranial US and a radiologist determined the ventricle sizes from the US images; these measurements were the criterion standard.
Results:
A radiologist determined 12 of the 30 ventricles as hydrocephalic. The sensitivity and specificity of the PEM physicians performed cranial POCUS was 66.7% (95% confidence interval [CI], 34.9%-90.1%) and 94.4% (95% CI, 72.7%-99.9%), whereas the positive and negative predictive values were 88.9% (95% CI, 53.3%-98.2%) and 81.0% (95% CI, 65.5%-90.5%), respectively. The interrater reliability between the PEM physician's and radiologist's measurements was r = 0.91. The entire POCUS examinations performed by the PEM physicians took an average of 1.5 minutes. The time between the cranial POCUS and the radiology US was, on average, 4 days.
Conclusions:
While the PEM physicians in our study were able to determine the absence of hydrocephalus in infants with high specificity using cranial POCUS, there was insufficient evidence to support the use of this modality for identifying hydrocephalus. Future studies with more participants are warranted to accurately determine test characteristics.
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