band heterotopia
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2022 ◽  
pp. 77-79
Author(s):  
John M. Stern ◽  
Noriko Salamon
Keyword(s):  

2021 ◽  
Vol 12 ◽  
Author(s):  
Frank G. Gilliam ◽  
Paddy Ssentongo ◽  
Michael Sather ◽  
Yuka I. Kawasawa

Subcortical band heterotopia (SBH), also known as double cortex syndrome, is a malformation of cortical development caused by inherited or somatic gene variants. We present a case of a young adult with posterior SBH and electroclinical features of focal neocortical temporal lobe epilepsy. Genomic blood analysis identified a pathogenic somatic mosaicism duplication variant of the PAFAH1B1 gene. Despite bilateral cortical MRI abnormalities, the interictal and ictal EEG findings indicated a focal epileptogenic region in the left posterior temporal region. Chronic responsive cortical neurostimulation across two four-contact depth electrodes placed 5 mm on either side of the maximal interictal spiking identified during intraoperative electrocorticography resulted in a consistent 28% reduction in duration of electrographic seizures and as well as constricted propagation. Although electrographic seizures continued, the family reported no clinical seizures and a marked improvement in resistant behaviors. This observation supports that focal neocortical neuromodulation can control clinical seizures of consistently localized origin despite genetic etiology, bilateral structural brain abnormalities, and continuation of non-propagating electrographic seizures. We propose that a secondary somatic mutation may be the cause of the focal neocortical temporal lobe epilepsy.


Author(s):  
Vasileios G Xydis ◽  
Anastasia Giantsouli ◽  
Effrosyni Styliara ◽  
George A Alexiou ◽  
Iliada Nakou ◽  
...  

2021 ◽  
Vol 34 (1) ◽  
Author(s):  
Surendran Kalambattumadathil Surabhi ◽  
Anithakumari Ayirolimeethal ◽  
Pankajakshan Vijayanthi Indu

Seizure ◽  
2021 ◽  
Vol 86 ◽  
pp. 144-146
Author(s):  
Nino Epitashvili ◽  
Yulia Novitskaya ◽  
Dirk-Matthias Altenmüller ◽  
Horst Urbach ◽  
Andreas Schulze-Bonhage

2021 ◽  
pp. mbc.E19-09-0530
Author(s):  
Peijun Li ◽  
Luyao Li ◽  
Binyuan Yu ◽  
Xinye Wang ◽  
Qi Wang ◽  
...  

Mutations in the doublecortin ( DCX) gene, which encodes a microtubule-binding protein, cause human cortical malformations, including lissencephaly and subcortical band heterotopia. A deficiency in DCX and doublecortin-like kinase 1 (DCLK1), a functionally redundant and structurally similar cognate of DCX, decreases neurite length and increases the number of primary neurites directly arising from the soma. The underlying mechanism is not completely understood. In this study, the elongation of the somatic Golgi apparatus into proximal dendrites, which have been implicated in dendrite patterning, was significantly decreased in the absence of DCX/DCLK1. Phosphorylation of DCX at S47 or S327 was involved in this process. DCX deficiency shifted the distribution of CLASP2 proteins to the soma from the dendrites. In addition to CLASP2, dynein and its co-factor JIP3 were abnormally distributed in DCX-deficient neurons. The association between JIP3 and dynein was significantly increased in the absence of DCX. Downregulation of CLASP2 or JIP3 expression with specific shRNAs rescued the Golgi phenotype observed in DCX-deficient neurons. We conclude that DCX regulates the elongation of the Golgi apparatus into proximal dendrites through microtubule-associated proteins and motors.


Author(s):  
Kalliopi Moustaki ◽  
Emmanuelle Buhler ◽  
Robert Martinez ◽  
Françoise Watrin ◽  
Alfonso Represa ◽  
...  

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