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Showing papers by "Georgia Ramantani published in 2019"


Journal ArticleDOI
TL;DR: This study demonstrates that epilepsy surgery in very young children is safe as well as efficient regarding long-term seizure freedom and antiepileptic drug cessation in selected candidates, thus supporting early surgical intervention.
Abstract: Background Although the majority of children undergoing epilepsy surgery are younger than 3 yr at epilepsy manifestation, only few actually receive surgical treatment in early childhood. Past studies have, however, suggested that earlier intervention may correlate with superior developmental outcomes. Objective To identify predictors for long-term seizure freedom and cognitive development following epilepsy surgery in the first 3 yr of life and determine the appropriate timing for surgical treatment in this age group. Methods We retrospectively analyzed the data of 48 consecutive children aged 1.1 ± 0.7 yr at surgery. Results Final surgeries comprised 52% hemispherotomies, 13% multilobar, and 35% intralobar resections. Etiology included cortical malformations in 71%, peri- or postnatal ischemic lesions in 13%, and benign tumor or tuberous sclerosis in 8% each. At last follow-up (median 4.3, range 1-14.3 yr), 60% of children remained seizure-free: 38% had discontinued antiepileptic drugs. Intralobar lesionectomy resulted more often in seizure control than multilobar or hemispheric surgery. Postsurgical seizure freedom was determined by the completeness of resection. Early postsurgical seizures were key markers of seizure recurrence. Presurgical adaptive and cognitive developmental status was impaired in 89% children. Longer epilepsy duration and larger lesion extent were detrimental to presurgical development, which, in turn, determined the postsurgical developmental outcome. Conclusion Our study demonstrates that epilepsy surgery in very young children is safe as well as efficient regarding long-term seizure freedom and antiepileptic drug cessation in selected candidates. Longer epilepsy duration is the only modifiable predictor of impaired adaptive and cognitive development, thus supporting early surgical intervention.

56 citations


Journal ArticleDOI
TL;DR: This study investigated whether scalp HFO in drug-resistant focal epilepsy correspond to epilepsy severity and how they are affected by surgical therapy, and the first step towards using non-invasively recorded scalp H FO to monitor disease severity in patients affected by epilepsy.
Abstract: High-frequency oscillations (HFO) are promising EEG biomarkers of epileptogenicity. While the evidence supporting their significance derives mainly from invasive recordings, recent studies have extended these observations to HFO recorded in the widely accessible scalp EEG. Here, we investigated whether scalp HFO in drug-resistant focal epilepsy correspond to epilepsy severity and how they are affected by surgical therapy. In eleven children with drug-resistant focal epilepsy that underwent epilepsy surgery, we prospectively recorded pre- and postsurgical scalp EEG with a custom-made low-noise amplifier (LNA). In four of these children, we also recorded intraoperative electrocorticography (ECoG). To detect clinically relevant HFO, we applied a previously validated automated detector. Scalp HFO rates showed a significant positive correlation with seizure frequency (R2 = 0.80, p < 0.001). Overall, scalp HFO rates were higher in patients with active epilepsy (19 recordings, p = 0.0066, PPV = 86%, NPV = 80%, accuracy = 84% CI [62% 94%]) and decreased following successful epilepsy surgery. The location of the highest HFO rates in scalp EEG matched the location of the highest HFO rates in ECoG. This study is the first step towards using non-invasively recorded scalp HFO to monitor disease severity in patients affected by epilepsy.

41 citations


Journal ArticleDOI
TL;DR: Denser spatial sampling by hd-ECoG improved FR detection compared to standard ECoG, and may advance seizure freedom after epilepsy surgery.

33 citations


Journal ArticleDOI
TL;DR: Recent progress made in the etiology, diagnosis, and treatment of neonatal seizures are outlined and areas that deserve further research are highlighted.
Abstract: Neonatal seizures are the most prevalent and distinctive sign of neurologic dysfunction in early life and pose an immense challenge for clinicians. Improvements in neonatal care have increased the survival rate of extremely premature infants, considerably changing the spectrum of underlying etiologies, and instigating a gradual shift from mortality to morbidity. Recognizing neonatal seizures can be challenging due to variability in presentation but clinical features can often provide valuable clues about etiology. Yet, the majority of neonatal seizures are subclinical. Even though conventional electroencephalography (EEG) with simultaneous video detection of seizures still represents the diagnostic gold standard, continuous monitoring using a one- to two-channel amplitude-integrated EEG with concurrent unprocessed EEG can be crucial for early recognition and intervention. Furthermore, tremendous progress has been made in neuroimaging, and all infants with seizures should have a magnetic resonance imaging (MRI) to help identify the underlying etiology. While the majority of neonatal seizures are caused by hypoxic-ischemic events, stroke, hemorrhage, or infection, approximately 15% of patients will require more sophisticated algorithms for diagnostic workup, including metabolic and genetic screening. These recent developments have led to renew interest in the classification of neonatal seizures, which aim to help identify etiology and guide appropriate therapeutic and prognostic decisions. In this review, we outline recent progress made in the etiology, diagnosis, and treatment of neonatal seizures and highlight areas that deserve further research.

30 citations



Journal ArticleDOI
TL;DR: The pilot data show that closed-loop acoustic stimulation is feasible and well tolerated in children with spike wave activity during sleep and improves precision in phase targeting and personalized stimulation parameters in a larger sample of subjects.
Abstract: Slow waves, the electroencephalographic (EEG) hallmark of deep sleep, can be systematically manipulated by acoustic stimulation: stimulation time-locked to the down phase of slow waves reduces, whereas stimulation time-locked to the up phase increases slow waves. Spike-waves during sleep seem to be related to slow waves, raising the question of whether spike-waves can be systematically influenced by such acoustic stimulation. In five pediatric patients, all-night EEG was recorded, combined with real-time slow wave detection. Throughout the night, acoustic stimulation was performed in a 3 × 5-min-block design (no stimulation-stimulation-no stimulation). Tones were applied time-locked either to the up or to the down phase of the detected slow waves in an alternating pattern. All patients tolerated the acoustic stimulation during sleep well. They showed high sleep quality and no signs of clinical or non-convulsive electrographic seizures. Our preliminary analysis shows no systematic effect of acoustic stimulation on spike-wave activity. Moreover, with our stimulation approach tones were distributed over a rather broad phase-range during the DOWN or UP stimulation and showed inter-individual differences in their distribution. In this study, we applied for the first time an acoustic closed-loop slow wave stimulation tool for a non-invasive manipulation of spike-wave activity. Thus, our pilot data show that closed-loop acoustic stimulation is feasible and well tolerated in children with spike wave activity during sleep. Improved precision in phase targeting and personalized stimulation parameters in a larger sample of subjects might be needed to show systematic effects.

14 citations



Journal ArticleDOI
TL;DR: It is demonstrated that multilobar epilepsy surgery is effective for lasting seizure control for selected 3T MRI-negative candidates, leading to favorable outcomes for all 4 of the authors' patients.

4 citations