Related Experiment Video
Updated: Apr 22, 2026

Transient Middle Cerebral Artery Occlusion Model of Neonatal Stroke in P10 Rats
Published on: April 21, 2017
Neonatal deep white matter venous infarction and liquefaction: a pseudo-abscess lesion
Lynne Ruess1, Carly M Dent, Hailey J Tiarks
1Department of Radiology, Nationwide Children's Hospital, 700 Children's Drive, Columbus, OH, 43205, USA, lynne.ruess@nationwidechildrens.org.
Background:
Deep white matter hemorrhagic venous infarction with subsequent cavitation due to necrosis and liquefaction has been described in neonates and may be associated with infection and meningitis. In our experience, the MRI pattern of these lesions is confused with the pattern seen with cerebral abscesses.
Objective:
The purpose of our study was to characterize the MRI findings of post infarction necrosis and liquefaction after hemorrhagic deep white matter venous infarction in infants and to distinguish these lesions from cerebral abscesses.
Materials And Methods:
An institutional review board approved a retrospective review of imaging records to identify all patients with cerebral venous infarction at a children's hospital during a 10-year period. Nine infants had deep white matter hemorrhagic venous infarction with white matter fluid signal cavitary lesions. A diagnosis of cerebral abscess was considered in all. The imaging and laboratory findings in these patients are reviewed and compared to descriptions of abscesses found in the literature.
Results:
There were six female and three male infants. The mean age at presentation was 20 days (range: 0-90 days), while the corrected age at presentation was less than 30 days for all patients. Seven patients presented with seizures and signs of infection; one infant presented with lethargy and later proved to have protein C deficiency. MRI was performed 0-12 days from presentation in these eight patients. Another patient with known protein C deficiency underwent MRI at 30 days for follow-up of screening US abnormalities. There were a total of 38 deep cerebral white matter fluid signal cavitary lesions: 25 frontal, 9 parietal, 2 temporal, 2 occipital. Larger lesions had dependent debris. All lesions had associated hemorrhage and many lesions had evidence of adjacent small vessel venous thrombosis. Lesions imaged after gadolinium showed peripheral enhancement. Three lesions increased in size on follow-up imaging. Three patients, two with meningitis confirmed via microbiology and one with presumed meningitis by CSF counts, underwent surgical aspiration of a total of six lesions. All specimens were sent for pathology and culture and were negative for microorganisms.
Conclusion:
Recognizing the MR appearance of cavitary necrosis and liquefaction after deep white matter cerebral venous infarction in neonates can distinguish this entity from cerebral abscess and potentially avoid an unnecessary neurosurgical aspiration procedure.
Insights
Deep white matter venous infarction in infants can cause cavitary lesions that mimic cerebral abscesses on MRI. Recognizing specific MRI findings helps differentiate these post-infarction lesions from abscesses, avoiding unnecessary procedures.
Area of Science:
- Neonatal neurology
- Pediatric neuroradiology
- Neuroimaging
Background:
- Deep white matter hemorrhagic venous infarction in neonates can lead to cavitation, necrosis, and liquefaction.
- These lesions are often mistaken for cerebral abscesses on MRI.
- Infection and meningitis are potential associated factors.
Purpose of the Study:
- To characterize MRI findings of post-infarction necrosis and liquefaction in infants.
- To differentiate these lesions from cerebral abscesses using MRI.
- To improve diagnostic accuracy in neonatal brain imaging.
Main Methods:
- Retrospective review of imaging records over 10 years.
- Identification of infants with deep white matter hemorrhagic venous infarction.
- Comparison of imaging and laboratory findings with literature descriptions of abscesses.
Main Results:
- Nine infants with deep white matter lesions were identified, with cavitation, hemorrhage, and peripheral enhancement on MRI.
- Lesions showed dependent debris and evidence of small vessel venous thrombosis.
- Cultures from aspirated lesions were negative for microorganisms, ruling out abscess.
Conclusions:
- The MR appearance of cavitary necrosis and liquefaction post-venous infarction is distinct from cerebral abscess.
- Accurate MRI interpretation can prevent unnecessary neurosurgical aspiration.
- Early recognition aids in appropriate management of neonatal brain lesions.
Related Concept Videos
Cerebral Edema ll: Pathophysiology
Ischemic Stroke ll: Pathophysiology
Hemorrhagic Stroke ll: Pathophysiology
Hemorrhagic Stroke l: Introduction

