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Electroconvulsive Therapy01:30

Electroconvulsive Therapy

Electroconvulsive therapy (ECT), or shock therapy, remains a critical biomedical intervention for severe, treatment-resistant depression. While its origins can be traced back to Hippocrates' observations that malaria-induced convulsions alleviated mental illness, modern ECT has evolved significantly from its earlier, more primitive applications. First introduced in 1938 by Ugo Cerletti and his colleagues, ECT involves inducing controlled seizures using electrical currents. In its early years,...

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Related Experiment Video

Updated: Jul 21, 2026

Investigating the Function of Deep Cortical and Subcortical Structures Using Stereotactic Electroencephalography: Lessons from the Anterior Cingulate Cortex
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Investigating the Function of Deep Cortical and Subcortical Structures Using Stereotactic Electroencephalography: Lessons from the Anterior Cingulate Cortex

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Electroencephalography as a post-stroke assessment method: An updated review.

E Monge-Pereira1, F Molina-Rueda1, F M Rivas-Montero1

  • 1Departamento de Fisioterapia, Terapia Ocupacional, Rehabilitación y Medicina Física, Facultad de CC de la Salud, Universidad Rey Juan Carlos. Alcorcón, Madrid, España; Laboratorio de Análisis del Movimiento, Biomecánica, Ergonomía y Control Motor, Universidad Rey Juan Carlos, Alcorcón, Madrid, España.

Neurologia (Barcelona, Spain)
|October 8, 2014
PubMed
Summary

Electroencephalography (EEG) offers a reliable method for assessing stroke recovery. This non-invasive technique monitors brain activity to predict patient outcomes and guide personalized rehabilitation strategies.

Keywords:
Desincronización relacionada con eventosElectroencefalografíaElectroencephalographyEvent-related desynchronisationEvent-related synchronisationIctusMovement-related cortical potentialsPlasticidadPlasticityPotenciales corticales relacionados con el movimientoSincronización relacionada con eventosStroke

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Area of Science:

  • Neuroscience
  • Clinical Neurology
  • Rehabilitation Medicine

Background:

  • Stroke poses a significant global health challenge, necessitating improved diagnostic and prognostic tools.
  • Current methods for assessing stroke recovery lack objectivity, hindering effective clinical decision-making.
  • There is a need for reliable, non-invasive techniques to monitor cerebral changes post-stroke.

Purpose of the Study:

  • To highlight the utility of Electroencephalography (EEG) in evaluating stroke recovery.
  • To demonstrate how EEG can provide objective data for prognosis and treatment planning.
  • To explore the potential of EEG in optimizing patient rehabilitation outcomes.

Main Methods:

  • Utilizing Electroencephalography (EEG) as a low-cost, non-invasive tool.
  • Analyzing EEG data to track changes in cerebral cortex activity during stroke recovery.
  • Correlating EEG patterns with patient prognosis and potential for motor recovery.

Main Results:

  • EEG provides valuable insights into the evolution of cortical activation patterns post-stroke.
  • The data derived from EEG can inform prognosis and guide personalized treatment strategies.
  • EEG monitoring can help prevent maladaptive plasticity and optimize motor recovery.

Conclusions:

  • EEG is a practical and objective tool for assessing stroke recovery and informing prognosis.
  • EEG-guided rehabilitation can help patients achieve their maximum motor potential.
  • This approach facilitates tailored interventions to improve long-term outcomes after stroke.