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Brain Changes in EEG and Brain Pulsatility to Novel Stimuli (Electro-PulCe)

Modifications Electrophysiologiques et de la Pulsatilité Cérébrale à la détection de Stimuli Nouveaux (Electro-PulCe)

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04702919
Acronym
Electro-Pulce
Enrollment
25
Registered
2021-01-11
Start date
2022-02-21
Completion date
2022-06-17
Last updated
2022-07-19

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Healthy Volunteers

Keywords

Brain Tissue Pulsatility (BTP), Electroencephalogram (EEG), Auditive oddball task, Tissue Pulsatility Imaging (TPI)

Brief summary

The oddball paradigm is one of the most widely used methods of brain exploration for the study of attentional processes. It allows the measurement, by means of an Electro-Enchephalogram (EEG), of evoked potentials reflecting the electrophysiological reactivity to the detection of novel stimuli within a stream of standard stimuli. Other studies have recently suggested that, in addition to neuronal activation, certain other physiological processes related to cerebrovascular reactivity, such as the Brain Tissue Pulsatility (BTP), could also be sensitive to various cognitive processes and in particular to attentional processes. In one of the latest studies published in collaboration with our group, it was shown that the amplitude of the electrophysiological response classically associated with attentional activity (P300 wave) was significantly correlated with the amplitude of BTP, suggesting the involvement of cerebrovascular processes in attentional functions. Nevertheless, in this study, the two methods of EEG and Tissue Pulsatility Imaging (TPI) were not synchronized, since TPI was performed at rest and not during the oddball task itself, and to date no study has sought to couple the methods of EEG and ultrasound TPI in an oddball paradigm, for a simultaneous characterization of neuronal and cerebrovascular responsiveness during attentional processes. The general objective of this study will be to evaluate changes in BTP during the detection of novel stimuli in an oddball task in healthy volunteers, in which the two methods of TPI and EEG will be coupled and synchronized.

Detailed description

The oddball paradigm is one of the most widely used methods of brain exploration for the study of attentional processes. It allows the measurement, by means of an Electro-Enchephalogram (EEG), of evoked potentials reflecting the electrophysiological reactivity to the detection of novel stimuli within a stream of standard stimuli. Numerous studies have thus used the oddball paradigm to identify the neuronal reactivity involved in attentional orientation towards target stimuli. Other studies have recently suggested that, in addition to neuronal activation, certain other physiological processes related to cerebrovascular reactivity, such as the Brain Tissue Pulsatility (BTP), could also be sensitive to various cognitive processes and in particular to attentional processes. Ultrasound measurement of BTP is made possible by recent advances in both the development of ultrasound equipment and ultrasound signal processing. Our team and others have validated the measurement of BTP by ultrasound (Tissue Pulsatility Imaging - TPI) in healthy volunteers and clinical populations, and our results suggest that the mechanisms of BTP are significantly influenced by cerebrovascular physiology. In one of the latest studies published in collaboration with our group, it was shown that the amplitude of the electrophysiological response classically associated with attentional activity (P300 wave) was significantly correlated with the amplitude of BTP, suggesting the involvement of cerebrovascular processes in attentional functions. Nevertheless, in this study, the two methods of EEG and TPI were not synchronized, since TPI was performed at rest and not during the oddball task itself, and to date no study has sought to couple the methods of EEG and ultrasound TPI in an oddball paradigm, for a simultaneous characterization of neuronal and cerebrovascular responsiveness during attentional processes. The general objective of this study will be to evaluate changes in BTP during the detection of novel stimuli in an oddball task in healthy volunteers, in which the two methods of TPI and EEG will be coupled and synchronized.

Interventions

Synchronized recording of BTP in ultrasound, brain activity by EEG, heart rate and blood pressure.

OTHERAuditive oddball task

Presentation of an auditory sequence, comprising 'Standard' (probability of occurrence: p = 0.90) and 'Deviants' (p = 0.10, targets) sounds via loudspeakers.

Sponsors

University Hospital, Tours
Lead SponsorOTHER

Study design

Observational model
OTHER
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 45 Years
Healthy volunteers
Yes

Inclusion criteria

* Age between 18 and 45 years old included * Normal hearing

Exclusion criteria

* History of neurologic, psychiatric or cardiologic diseases (stroke, severe head trauma, mood disorder, psychotic disorder, coronary syndrome, heart rhythm disorder, etc.) * Treatment which could impact Brain Tissue Pulsatility (Beta-Blockers, Neuroleptics, etc...) and electrophysiological (Sedatives, Benzodiazepines, etc...) parameters. * Legal protection measures * Opposition to data processing

Design outcomes

Primary

MeasureTime frameDescription
Change in Brain Tissue Pulsatility indexesBaseline and during the auditive oddball task (20 minutes)Measured by the Tissue Pulsatility Imaging technique - TPI

Secondary

MeasureTime frameDescription
P300 waveBaseline and during the auditive oddball task (20 minutes)Evoked potential P300 measured by Electroencephalogram (EEG)
Heart Rate changes and Heart Rate VariabilityBaseline and during the auditive oddball task (20 minutes)Measured by electrocardiogram (ECG)
Arterial pressure bloodBaseline and during the auditive oddball task (20 minutes)Measured by a non-invasive and continuous blood pressure bracelet.

Countries

France

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026