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Novel Surgical Approaches in Childhood Epilepsy: Laser, Brain Stimulation, and Focused Ultrasound
Kalman A Katlowitz1,2, Daniel J Curry1,2, Howard L Weiner3,4
1Department of Neurosurgery, Baylor College of Medicine, Houston, TX, USA.
Insights
Pediatric epilepsy affects 1% of children worldwide, often leading to significant deficits. Innovative surgical techniques like laser ablation, nerve stimulation, and focused ultrasound offer new hope for treating drug-resistant epilepsy when traditional methods fail.
Area of Science:
- Neurology
- Neurosurgery
- Pediatric Epilepsy
Background:
- Pediatric epilepsy affects approximately 1% of children globally, causing significant long-term deficits in executive function, cognition, and development.
- A third of pediatric epilepsy cases are resistant to medical treatment, necessitating surgical intervention for potential cure or palliation.
- Epilepsy surgery remains underutilized, with long delays between diagnosis of drug-resistant epilepsy (DRE) and surgical intervention, particularly in children.
Purpose of the Study:
- To highlight the underutilization of epilepsy surgery in pediatric patients.
- To introduce innovative surgical alternatives beyond classical resection for pediatric epilepsy.
- To encourage exploration of all treatment avenues by patients and providers.
Main Methods:
- Review of current literature on pediatric epilepsy prevalence and treatment outcomes.
- Discussion of three novel surgical approaches: laser ablation, nervous system stimulation, and focused ultrasound.
- Analysis of the potential benefits and applications of these advanced techniques in pediatric epilepsy management.
Main Results:
- Despite its potential, epilepsy surgery is significantly underutilized in pediatric populations.
- Rates of pediatric epilepsy surgery are increasing, driven by innovations in surgical techniques.
- Minimally invasive and non-ablative surgical options are expanding the scope of surgical candidacy.
Conclusions:
- Innovative surgical techniques such as laser ablation, nerve stimulation, and focused ultrasound offer promising alternatives to traditional resections for pediatric epilepsy.
- These advanced methods can minimize complications and potentially treat previously inaccessible seizure foci.
- Increased awareness and understanding of these surgical options are crucial for improving outcomes in children with drug-resistant epilepsy.
Abstract:
Pediatric epilepsy has a worldwide prevalence of approximately 1% (Berg et al., Handb Clin Neurol 111:391-398, 2013) and is associated with not only lower quality of life but also long-term deficits in executive function, significant psychosocial stressors, poor cognitive outcomes, and developmental delays (Schraegle and Titus, Epilepsy Behav 62:20-26, 2016; Puka and Smith, Epilepsia 56:873-881, 2015). With approximately one-third of patients resistant to medical control, surgical intervention can offer a cure or palliation to decrease the disease burden and improve neurological development. Despite its potential, epilepsy surgery is drastically underutilized. Even today only 1% of the millions of epilepsy patients are referred annually for neurosurgical evaluation, and the average delay between diagnosis of Drug Resistant Epilepsy (DRE) and surgical intervention is approximately 20 years in adults and 5 years in children (Solli et al., Epilepsia 61:1352-1364, 2020). It is still estimated that only one-third of surgical candidates undergo operative intervention (Pestana Knight et al., Epilepsia 56:375, 2015). In contrast to the stable to declining rates of adult epilepsy surgery (Englot et al., Neurology 78:1200-1206, 2012; Neligan et al., Epilepsia 54:e62-e65, 2013), rates of pediatric surgery are rising (Pestana Knight et al., Epilepsia 56:375, 2015). Innovations in surgical approaches to epilepsy not only minimize potential complications but also expand the definition of a surgical candidate. In this chapter, three alternatives to classical resection are presented. First, laser ablation provides a minimally invasive approach to focal lesions. Next, both central and peripheral nervous system stimulation can interrupt seizure networks without creating permanent lesions. Lastly, focused ultrasound is discussed as a potential new avenue not only for ablation but also modulation of small, deep foci within seizure networks. A better understanding of the potential surgical options can guide patients and providers to explore all treatment avenues.
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