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Computed tomography vs magnetic resonance imaging for identifying acute lesions in pediatric traumatic brain injury
Sandra D W Buttram1, Pamela Garcia-Filion2, Jeffrey Miller3
1Divisions of Critical Care Medicine, Department of Child Health, University of Arizona College of Medicine Phoenix, Phoenix, Arizona sbuttram@phoenixchildrens.com.
Insights
Magnetic Resonance Imaging (MRI) detects more brain lesions in pediatric traumatic brain injury (TBI) cases than Computed Tomography (CT). This is especially true for abusive head trauma, suggesting MRI may offer more detailed insights.
Area of Science:
- Pediatric neuroimaging
- Traumatic brain injury diagnostics
- Medical imaging comparison
Background:
- Pediatric traumatic brain injury (TBI) is a significant cause of child morbidity and mortality.
- Computed Tomography (CT) is the standard for initial brain injury screening.
- Magnetic Resonance Imaging (MRI) may offer more detailed diagnostic information.
Purpose of the Study:
- To compare the effectiveness of CT and MRI in detecting brain lesions in pediatric TBI patients.
- To evaluate the agreement between CT and MRI findings in this population.
Main Methods:
- Retrospective analysis of pediatric TBI patients (0-21 years) who underwent both CT and MRI.
- CT scans were performed on the day of injury; MRI scans within two weeks.
- Agreement was assessed using the κ statistic, stratified by injury mechanism.
Main Results:
- MRI detected significantly more intraparenchymal lesions (34%) compared to CT (15%).
- In abusive head trauma cases, MRI identified lesions in 43% of patients versus 11% with CT.
- Six of eight patients with normal CT scans showed abnormalities on MRI.
Conclusions:
- MRI is superior to CT in identifying intraparenchymal lesions in pediatric TBI.
- MRI may be particularly valuable in diagnosing abusive head trauma.
- Further research is needed to determine the prognostic value of MRI findings; clinical decisions should weigh risks and benefits.
Background And Objective:
Pediatric traumatic brain injury (TBI) is a leading cause of morbidity and mortality in children. Computed tomography (CT) is the modality of choice to screen for brain injuries. MRI may provide more clinically relevant information. The purpose of this study was to compare lesion detection between CT and MRI after TBI.
Methods:
Retrospective cohort of children (0-21 years) with TBI between 2008 and 2010 at a Level 1 pediatric trauma center with a head CT scan on day of injury and a brain MRI scan within 2 weeks of injury. Agreement between CT and MRI was determined by κ statistic and stratified by injury mechanism.
Results:
One hundred five children were studied. Of these, 78% had mild TBI. The MRI scan was obtained a median of 1 day (interquartile range, 1-2) after CT. Overall, CT and MRI demonstrated poor agreement (κ=-0.083; P=.18). MRI detected a greater number of intraparenchymal lesions (n=36; 34%) compared with CT (n=16; 15%) (P<.001). Among patients with abusive head trauma, MRI detected intraparenchymal lesions in 16 (43%), compared with only 4 (11%) lesions with CT (P=.03). Of 8 subjects with a normal CT scan, 6 out of 8 had abnormal lesions on MRI.
Conclusions:
Compared with CT, MRI identified significantly more intraparenchymal lesions in pediatric TBI, particularly in children with abusive head trauma. The prognostic value of identification of intraparenchymal lesions by MRI is unknown but warrants additional inquiry. Risks and benefits from early MRI (including sedation, time, and lack of radiation exposure) compared with CT should be weighed by clinicians.
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Description of the Procedures
Computed Tomography (CT) scan:
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Magnetic Resonance Imaging
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These technologies include computerized axial tomography (CAT or CT scans), positron-emission tomography (PET scans), magnetic resonance imaging (MRI), functional magnetic resonance imaging (fMRI), and Transcranial Magnetic...
Computed Tomography
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