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Updated: Aug 7, 2026

Mouse Models of Periventricular Leukomalacia
Published on: May 18, 2010
Perinatal white matter injury: the changing spectrum of pathology and emerging insights into pathogenetic mechanisms
1Department of Pediatrics, Oregon Health & Sciences University, Portland, Oregon, USA. backs@ohsu.edu
Insights
Perinatal brain injury, or periventricular white-matter injury (PWMI), affects premature infants. Research suggests evolving injury patterns and identifies factors like ischemia and free radicals contributing to this condition.
Area of Science:
- Neuroscience
- Neonatology
- Developmental Biology
Background:
- Perinatal brain injury predominantly affects the periventricular white matter in premature infants.
- Periventricular white-matter injury (PWMI) is a leading cause of neurological disability in preterm survivors.
- Chronic PWMI manifests as cystic lesions (periventricular leukomalacia; PVL) or diffuse myelination disturbances.
Purpose of the Study:
- To explore the unique predilection for periventricular white matter injury in premature infants.
- To understand the evolving patterns and underlying mechanisms of PWMI.
- To identify factors contributing to the pathogenesis of PWMI.
Main Methods:
- Review of neuroimaging studies on PWMI incidence and patterns.
- Analysis of factors predisposing to PVL, including hypoxia, ischemia, and infection.
- Examination of the role of cerebral blood flow, free radical-mediated injury, and oligodendrocyte progenitor susceptibility.
Main Results:
- The incidence of PVL is decreasing, with non-cystic focal or diffuse injury becoming more prevalent.
- Cerebral blood flow perturbations in immature vasculature initiate PWMI.
- Ischemia targets immature oligodendrocytes, and injury to these cells disrupts myelin formation.
Conclusions:
- PWMI pathogenesis involves ischemia, free radical damage, and the developmental vulnerability of oligodendrocyte progenitors.
- Understanding these mechanisms is crucial for developing preventative strategies for brain injury in preterm infants.
- The shift towards non-cystic injury highlights the need for refined diagnostic and therapeutic approaches.
Abstract:
Perinatal brain injury in survivors of premature birth has a unique and unexplained predilection for periventricular cerebral white matter. Periventricular white-matter injury (PWMI) is now the most common cause of brain injury in preterm infants and the leading cause of chronic neurological morbidity. The spectrum of chronic PWMI includes focal cystic necrotic lesions (periventricular leukomalacia; PVL) and diffuses myelination disturbances. Recent neuroimaging studies support that the incidence of PVL is declining, whereas focal or diffuse noncystic injury is emerging as the predominant lesion. Factors that predispose to PVL during prematurity include hypoxia, ischemia, and maternal-fetal infection. In a significant number of infants, PWMI appears to be initiated by perturbations in cerebral blood flow that reflect anatomic and physiological immaturity of the vasculature. Ischemic cerebral white matter is susceptible to pronounced free radical-mediated injury that particularly targets immature stages of the oligodendrocyte lineage. Emerging experimental data supports that pronounced ischemia in the periventricular white matter is necessary, but not sufficient to generate PWMI. The developmental predilection for PWMI to occur during prematurity appears to be related to both the timing of appearance and regional distribution of susceptible oligodendrocyte progenitors. Injury to oligodendrocyte progenitors may contribute to the pathogenesis of PWMI by disrupting the maturation of myelin-forming oligodendrocytes. Chemical mediators that may contribute to white-matter injury include reactive oxygen species glutamate, cytokines, and adenosine. As our understanding of the pathogenesis of PWMI improves, it is anticipated that new strategies for directly preventing brain injury in premature infants will develop.
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