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Updated: Feb 23, 2026

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Controlling Parkinson's Disease With Adaptive Deep Brain Stimulation
Published on: July 16, 2014
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Adaptive deep brain stimulation in Parkinson's disease.
Martijn G J de Neeling1, Bart J Keulen1, Mariëlle J Stam1
1Department of Neurology, and Amsterdam Neuroscience, Amsterdam University Medical Center, Amsterdam, Netherlands.
Lancet (London, England)
|February 21, 2026
Summary
Adaptive deep brain stimulation (aDBS) offers real-time, biomarker-guided treatment for Parkinson's disease. This approach promises more personalized and responsive neuromodulation compared to traditional methods.
Area of Science:
- Neurology
- Biomedical Engineering
Background:
- Parkinson's disease treatment traditionally relies on fixed deep brain stimulation (DBS).
- Adaptive DBS (aDBS) introduces real-time modulation of stimulation based on physiological markers.
Purpose of the Study:
- To outline the pathophysiological rationale for aDBS in Parkinson's disease.
- To review clinical evidence comparing aDBS with conventional DBS.
- To explore the clinical implementation and future directions of aDBS.
Main Methods:
- Review of clinical evidence comparing aDBS and conventional DBS.
- Analysis of technical developments in sensing-enabled devices and stimulation algorithms.
- Discussion of physiomarker variability, signal artifacts, and programming protocols.
Main Results:
- aDBS modulates stimulation amplitude based on subthalamic beta activity (13-30 Hz) and related physiomarkers.
- Evidence suggests potential benefits in motor improvement, side-effect reduction, and energy efficiency for aDBS.
- Limitations include physiomarker variability and lack of standardized protocols.
Conclusions:
- aDBS represents a shift towards physiomarker-guided neuromodulation for Parkinson's disease.
- Implementation requires new infrastructure, clinician training, and further real-world studies.
- aDBS holds promise for more personalized and responsive Parkinson's treatment.
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