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Targeting Neuronal Fiber Tracts for Deep Brain Stimulation Therapy Using Interactive, Patient-Specific Models
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Special Issue: Trends in Clinical Deep Brain Stimulation.

Marcus L F Janssen1,2, Yasin Temel2,3

  • 1Department of Clinical Neurophysiology, Maastricht University Medical Center, P. Debyelaan 25, 6229 HX Maastricht, The Netherlands.

Journal of Clinical Medicine
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Summary

Deep brain stimulation (DBS) is a proven therapy for neurological and psychiatric conditions. Further research is exploring its expanded therapeutic potential in diverse patient populations.

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Area of Science:

  • Neuromodulation
  • Neurosurgery
  • Neuroscience

Background:

  • Deep brain stimulation (DBS) is an established therapeutic intervention for various neurological and psychiatric disorders.
  • The efficacy of DBS is attributed to the precise modulation of aberrant neural circuits implicated in disease pathophysiology.
  • Current applications of DBS primarily target movement disorders like Parkinson's disease and essential tremor, as well as certain psychiatric conditions.

Discussion:

  • The precise mechanisms underlying DBS efficacy remain under investigation, with ongoing research focusing on network-level effects.
  • Understanding the complex interactions between stimulation parameters and neural tissue is crucial for optimizing treatment outcomes.
  • Challenges include identifying optimal targets, refining stimulation protocols, and managing potential side effects.

Key Insights:

  • DBS offers a significant therapeutic option for patients with refractory neurological and psychiatric conditions.
  • The adaptability of DBS technology allows for potential application in a broader spectrum of disorders.
  • Continued investigation into DBS mechanisms promises to enhance its clinical utility and patient benefit.

Outlook:

  • Future research directions include exploring novel DBS targets and advanced stimulation techniques, such as closed-loop systems.
  • Investigating the potential of DBS in less common neurological and psychiatric disorders is a key area for expansion.
  • Personalized DBS approaches, tailored to individual patient neurophysiology, are anticipated to improve treatment efficacy and reduce adverse events.