Transcranial magnetic stimulation combined with high-density EEG in altered states of consciousness
Martino Napolitani, Olivier Bodart, Paola Canali, Francesca Seregni, Adenauer G. Casali, Steven Laureys, Mario Rosanova, Marcello Massimini, Olivia Gosseries
Brain Injury August 1, 2014 DOI: 10.3109/02699052.2014.920524 via OpenAlex
Summary
AI-generated from the abstractTranscranial magnetic stimulation combined with high-density electroencephalography (TMS-hdEEG) offers advantages over other brain imaging techniques for assessing consciousness. A key requirement for consciousness is the brain's capacity to rapidly integrate information across specialized cortical areas. TMS-EEG stimulates any cortical area and records immediate electrical responses, successfully measuring changes in brain complexity under physiological, pharmacological, and pathological conditions. This technique reliably discriminates between conscious and unconscious patients at the single subject level, though further validation as a clinical tool is needed.
Study at a glance
| Characteristics | Review Peer reviewed |
|---|---|
| Population | Patients with disorders of consciousness |
| Intervention | transcranial magnetic stimulation combined with high-density electroencephalography |
| Keywords | Transcranial magnetic stimulation Electroencephalography Persistent vegetative state Neuroscience Minimally conscious state |
| Citations | 44 |
| Key finding | TMS-EEG reliably discriminates between conscious and unconscious patients at the single subject level. |
Abstract
BACKGROUND: This review discusses the advantages of transcranial magnetic stimulation combined with high-density electroencephalography (TMS-hdEEG) over other current techniques of brain imaging. METHODS AND RESULTS: Its application was reviewed, focusing particularly on disorders of consciousness, in the perspective of recent theories of consciousness. Assessment of non-communicative patients with disorders of consciousness remains a clinical challenge and objective measures of the level of consciousness are still needed. Current theories suggest that a key requirement for consciousness is the brain's capacity to rapidly integrate information across different specialized cortical areas. TMS-EEG allows the stimulation of any given cortical area and the recording of the immediate electrical cortical response. This technique has recently been successfully employed to measure changes in brain complexity under physiological, pharmacological and pathological conditions. CONCLUSIONS: This suggests that TMS-EEG is a reliable tool to discriminate between conscious and unconscious patients at the single subject level. Future works are needed to validate and implement this technique as a clinical tool.