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Updated: Jan 1, 2026

Early Pathological and Magnetic Resonance Detection of Cerebral Injury Using a Rat Model of Neonatal Hypoxic Ischemic Encephalopathy
Published on: October 28, 2022
Magnetic resonance imaging features of four neonates with total brain injury
Sachiko Koshino1,2, Katsumi Hayakawa3, Koichi Tanda4
1Radiology, Japanese Red Cross Kyoto Daiichi Hospital, Honnmachi higashiyama-ku, Kyoto City, 605-0981, Japan. ar-melon@koto.kpu-m.ac.jp.
Purpose:
The most severe form of profound asphyxia in neonates is now known as "total brain injury," which forms part of the clinical spectrum of hypoxic-ischemic encephalopathy (HIE). Although the magnetic resonance (MR) imaging features of total brain injury remain to be determined, a widespread hyperintensity of the supratentorial brain, known as the "white cerebrum sign," has been reported in diffusion-weighted images (DWI).
Methods:
We examined four neonates who developed severe profound asphyxia.
Results:
In the first week of life, all neonates showed the white cerebrum sign on DWI. A follow-up of these cases over a period of 1 month revealed diffuse bilateral multicystic encephalomalacia (MCE) as well as shrinkage of the basal ganglia and thalami (BG/T). These MR findings were common to all neonates, and all the neonates had severe adverse clinical outcomes.
Conclusion:
Neonates, who exhibit the white cerebrum sign on MR imaging due to profound asphyxia, develop major disabilities, and MCE with shrinkage of the BG/T suggests miserable outcomes.
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