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Influence of Oxytocin on Neurophysiological Responses to Live Faces

Influence of Oxytocin on Neurophysiological Responses to Direct and Averted Gaze

Status
Completed
Phases
Phase 1Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03272321
Enrollment
56
Registered
2017-09-05
Start date
2017-07-24
Completion date
2018-05-18
Last updated
2019-08-01

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

Conditions

Oxytocin

Keywords

biomedical intervention, oxytocin, EEG, skin conductance response, heart rate, gaze direction, eye contact

Brief summary

Previous research has indicated that direct eye gaze compared to averted gaze, elicits a higher skin conductance response (SCR), and a more pronounced left frontal cortex activity than right frontal cortex activity (resulting in positive asymmetry scores). On a behavioral level, participants tend to look shorter at live faces with a direct gaze as compared to averted gaze (Akechi et al., 2013). Further, subjective evaluations showed that a direct gaze is rated more arousing and less pleasant than an averted gaze (Akechi et al., 2013; Hietanen, Leppänen, Peltola, Linna-aho, & Ruuhiala, 2008). Importantly, oxytocin administration increases the number of fixations and to looking time towards the eye region during live social interaction. Further, oxytocin has been shown to influence SCR and heart rate variability. Therefore, it is conceivable that oxytocin will not only influence the gaze duration of the participant, but also the physiological and neurological responses elicited by direct eye gaze. In this study, the investigators will investigate whether oxytocin modulates the behavioural (eye gaze and subjective ratings), neurological (EEG) and physiological (skin conductance, heart rate and respiration) responses elicited by direct gaze.

Detailed description

Previous research has indicated that direct eye gaze compared to averted gaze, elicits a higher skin conductance response (SCR), and a more pronounced left frontal cortex activity than right frontal cortex activity (resulting in positive asymmetry scores). On a behavioral level, participants tend to look shorter at live faces with a direct gaze as compared to averted gaze (Akechi et al., 2013). Further, subjective evaluations showed that a direct gaze is rated more arousing and less pleasant than an averted gaze (Akechi et al., 2013; Hietanen, Leppänen, Peltola, Linna-aho, & Ruuhiala, 2008). Importantly, oxytocin administration increases the number of fixations and to looking time towards the eye region during live social interaction. Further, oxytocin has been shown to influence SCR and heart rate variability. Therefore, it is conceivable that oxytocin will not only influence the gaze duration of the participant, but also the physiological and neurological responses elicited by direct eye gaze. In this randomized, placebo controlled, double blinded study, the investigators will investigate whether oxytocin modulates the behavioral and neurophysiological responses elicited by direct gaze. In order to do so, the investigators will measure behavioural (eye gaze and subjective feelings), physiological (skin conductance, blood volume pulse, and respiration) and neurological (EEG) responses during presentations of a live person's face with direct gaze and closed eyes, before and after oxytocin or placebo administration. The investigators hypotheses that oxytocin attenuates the heightened SCR and pronounced EEG asymmetry during direct gaze. Further, they expect that oxytocin increases the number of fixations and duration of those fixations towards the eye region. Exploratory, the investigators will also investigate whether oxytocin administration influences respiration and the subjective reports on experience of live eye contact. Lastly (and also exploratory), they will explore whether certain personality traits (as measured by SAAM (state adult attachment measure) and SRS (social responsiveness scale)) influence the modulatory effect of oxytocin on neurological and behavioural responses. Note that this study is part of a larger study in which the investigators also register several neurophysiological responses (blood volume pulse, respiration, heart rate, EEG, skin conductance) during rest before and after oxytocin or placebo administration.

Interventions

DRUGOxytocin

Syntocinon nasal spray

DRUGPlacebo

Placebo nasal spray

Sponsors

Research Foundation Flanders
CollaboratorOTHER
KU Leuven
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
TRIPLE (Subject, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
MALE
Age
18 Years to 35 Years
Healthy volunteers
Yes

Inclusion criteria

* right-handed * male * age between 18 and 35 * Normal or adjusted-to-normal vision (with lenses only) * Dutch as mother tongue

Exclusion criteria

* not right-handed * female * age below 18 or above 35 * Need to wear glasses * Dutch not as mother tongue

Design outcomes

Primary

MeasureTime frameDescription
Change in EEG asymmetry after oxytocin administrationAverage over several trials, baseline and 40 min after oxytocin or placebo administrationThe influence of oxytocin administration on EEG asymmetry
Change in skin conductance (type of electrodermal activity) response after oxytocin administrationAverage over several trials, baseline and 40 min after oxytocin or placebo administrationThe influence of oxytocin administration on skin conductance response

Secondary

MeasureTime frameDescription
Change in duration of fixations to face regions after oxytocin administrationAssesment over several trials, baseline and 40 min after oxytocin or placebo administrationThe influence of oxytocin administration on gaze behavior (duration of fixation to upper and lower face regions)
Change in number of fixations to face regions after oxytocin administrationAssesment over several trials, baseline and 40 min after oxytocin or placebo administrationThe influence of oxytocin administration on gaze behavior (number of fixation to upper and lower face regions)

Countries

Belgium

Outcome results

None listed

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