Related Experiment Video
Updated: Jul 7, 2026

Analysis of Gene Expression Changes in the Rat Hippocampus After Deep Brain Stimulation of the Anterior Thalamic Nucleus
Published on: March 8, 2015
Elective and Emergency Deep Brain Stimulation in Refractory Pediatric Monogenetic Movement Disorders Presenting with
M Garofalo1, M Beudel2,3, J M Dijk2,3
1Department of Child Neurology, Emma Children's Hospital, Amsterdam UMC Location University of Amsterdam, Amsterdam, the Netherlands.
Insights
Deep brain stimulation (DBS) offers a promising treatment for pediatric dystonia, particularly when medication is ineffective. Early consideration of DBS can significantly improve motor symptoms and achieve patient-centered goals in monogenetic movement disorders.
Area of Science:
- Neurology
- Pediatric Neurology
- Neurosurgery
Background:
- Dystonia involves abnormal muscle contractions causing twisting movements, significantly impacting children's quality of life.
- Pharmacological treatments for pediatric dystonia are frequently inadequate and associated with adverse effects.
- Deep brain stimulation (DBS) presents a viable therapeutic alternative for children with medication-resistant dystonia.
Approach:
- This study presents two pediatric cases of monogenetic dystonia treated with DBS.
- A comprehensive literature review on pediatric DBS for dystonia was conducted.
- Case details include patients with ADCY5 and GNAO1 gene mutations, one undergoing elective and the other emergency DBS.
Key Points:
- A 6-year-old girl with ADCY5-related dystonia showed a 65% improvement in motor symptoms post-DBS, achieving therapeutic goals.
- An 8-year-old boy with GNAO1-related status dystonicus experienced successful termination of symptoms via emergency DBS.
- Literature review indicates prior success with DBS in ADCY5-related disorders and highlights this as the eighth reported GNAO1 case.
Conclusions:
- Deep brain stimulation (DBS) demonstrates efficacy in treating monogenetic pediatric dystonia.
- Early consideration of DBS in the disease course is recommended for optimal outcomes.
- Establishing patient-centered therapeutic goals through a multidisciplinary approach is crucial for evaluating DBS effectiveness.
Background:
Dystonia is characterized by sustained or intermittent muscle contractions, leading to abnormal posturing and twisting movements. In pediatric patients, dystonia often negatively influences quality of life. Pharmacological treatment for dystonia is often inadequate and causes adverse effects. Deep brain stimulation (DBS) appears to be a valid therapeutic option for pharmacoresistant dystonia in children.
Methods:
To illustrate the current clinical practice, we hereby describe two pediatric cases of monogenetic movement disorders presenting with dystonia and treated with DBS. We provide a literature review of similar previously described cases and on different clinical aspects of DBS in pediatric dystonia.
Results:
The first patient, a 6-year-old girl with severe dystonia, chorea, and myoclonus due to an ADCY5 gene mutation, received DBS in an elective setting. The second patient, an 8-year-old boy with GNAO1-related dystonia and chorea, underwent emergency DBS due to a pharmacoresistant status dystonicus. A significant amelioration of motor symptoms (65% on the Burke-Fahn-Marsden Dystonia Rating Scale) was observed postoperatively in the first patient and her personal therapeutic goals were achieved. DBS was previously reported in five patients with ADCY5-related movement disorders, of which three showed objective improvement. Emergency DBS in our second patient resulted in the successful termination of his GNAO1-related status dystonicus, this being the eighth case reported in the literature.
Conclusion:
DBS can be effective in monogenetic pediatric dystonia and should be considered early in the disease course. To better evaluate the effects of DBS on patients' functioning, patient-centered therapeutic goals should be discussed in a multidisciplinary approach.
More Related Videos
08:25Combined Invasive Subcortical and Non-invasive Surface Neurophysiological Recordings for the Assessment of Cognitive and Emotional Functions in Humans
Published on: May 19, 2016
14:14Targeting Neuronal Fiber Tracts for Deep Brain Stimulation Therapy Using Interactive, Patient-Specific Models
Published on: August 12, 2018