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PubMed · 233076

Cerebellar malformations: some pathogenetic considerations.

Abstract

1) Destructive processes are responsible for most cases of cerebellar microgyria of the trabecular pattern. Erosion and subsequent fusion of the folia produce the disorganized pattern in which the various cellular elements retain their noraml relationship and are capable of normal maturation. Intrauterine infection is responsible for most cases; the evidence is conclusive in some cases, presumptive in others. 2) Faulty genetic coding, as illustrated by the trisomies, may lead to formation of heterotopias. The primitive cells aggregating around the dentate nucleus should be interpreted as matrix cells and not as cells of the external granular layer. Cortical heterotopias with attempted internal organisation also occur; their origin is obscure. The unusual, possibly unique, transposition of the internal granular and Purkinje cell layers observed in one case may be ascribed to faulty formation of the Bergmann glia by analogy with the weaver mouse. 3) It is impossible at present to disentangle the role of genetic and environmental factors in the pathogenesis of the hysraphic malformations. It is possible, however, that defective fusion of the intraventricular cerebellar primordium plays a part in the development of the Dandy-Walker malformation, of midine cerebellar clefts in some cases of occipital encephalocele, and of extra-axial ependymal cysts of the posterior fossa.

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BibTeXRIS

H Urich. 1979. Cerebellar malformations: some pathogenetic considerations.. https://pubmed.ncbi.nlm.nih.gov/233076/

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Dysplasia: a common finding in intractable pediatric temporal lobe epilepsy.

BACKGROUND: Risk factors for temporal lobe epilepsy (TLE) include history of CNS infection, family history of epilepsy, and history of febrile convulsions (FC). Pre-existing cortical dysplasia (CD) may also predispose to refractory TLE, independent of other risk factors for epilepsy. METHODS: The authors reviewed the neuropathologic features of surgical tissue from temporal lobectomies of 33 pediatric patients with refractory TLE, with and without a history of epilepsy risk factors. RESULTS: CD was found in 64% (21/33) of all patients with refractory TLE, including 73% (11/15) patients with a history of FC, 66% (2/3) patients with CNS infections, and 83% (5/6) patients with a family history of epilepsy. Disrupted cortical lamination, dystrophic and maloriented neurons, and balloon cells characterized the CD found in the temporal neocortex. CONCLUSION: CD was seen in 21 of 33 surgical specimens from children with refractory TLE, including those with and without other epilepsy risk factors.

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