Delineating septo-optic dysplasia

被引:3
|
作者
Lubinsky, Mark [1 ]
Encha-Razavi, Ferechte [2 ]
机构
[1] Necker Univ Hosp, Paris, France
[2] Necker Univ Hosp, Fetal & Placental Pathol, Paris, France
来源
BIRTH DEFECTS RESEARCH | 2022年 / 114卷 / 20期
关键词
anterior cerebral artery; disruption; hemorrhage; limbic system; optic nerve hypoplasia; pituitary; schizencephaly; septo-optic dysplasia; septum pellucidum; thrombosis; UNILATERAL CEREBELLAR HYPOPLASIA; NERVOUS-SYSTEM ABNORMALITIES; PITUITARY-HORMONE DEFICIENCY; PRENATAL-DIAGNOSIS; COL4A1; MUTATIONS; CORPUS-CALLOSUM; CHILDREN; MALFORMATIONS; SPECTRUM; PREVALENCE;
D O I
10.1002/bdr2.2095
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background Septo-optic dysplasia (SOD), once a variable triad of septum pellucidum defects (SPDs), optic nerve hypoplasia (ONH), and hypopituitarism, has had multiple findings added, with uncertain causes, definitions, and limits. Method Literature review. Results SOD is a complex vascular sequence with confounders. Conclusions Proximal anterior cerebral artery trunk disruptions cause overlapping primary effects, giving ONH alone most often, and isolated SPD less. ONH disruptions can spread to pituitary, SPD disruptions to the cerebral cortex, causing schizencephaly and related anomalies. Pituitary defects are rare without ONH, and cortical findings are rare without SPD. Extensions are unidirectional, so isolated pituitary or cortical defects are separate from SOD. Micro- an- ophthalmia, a suggested ONH variant, is not part of SOD. Disruption by-products can affect development, causing cognitive and endocrine issues, and structural anomalies such as corpus callosum thinning, ventriculomegaly, and hippocampal and olfactory findings. Limbic extensions may also contribute to the same structural defects as by-products. Midline CNS developmental anomalies can act as disruptive foci, most likely through vascular variants, but have separate pathogenesis. Relative frequencies of specific pituitary hormone defects change as SOD rates increase. Increasing relative rates of midline CNS developmental defects and cortical anomalies are consistent with rising levels of exogenous exposures sensitizing to midline predispositions.
引用
收藏
页码:1343 / 1353
页数:11
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