University of California, Berkeley
Berkeley, California, 94720, United States
Location status: Recruiting
NCT Number: NCT05265546
The long-term objective of this project is to characterize how psilocybin affects visual perception and the brain's representation of the visual environment. It is known that psilocybin alters aspects of visual perception, but the underlying brain mechanisms contributing to these effects are poorly understood. The proposed work will address these questions in a large, diverse sample of healthy human subjects by using functional magnetic resonance imaging (fMRI) to measure the brain's responses to visual stimuli. The proposed research will document which brain areas mediate the effects of psilocybin. The technique of fMRI will be employed to measure brain activity in different brain areas while subjects are performing a visual perceptual task.
Interested in participating?
Request Info21 year and older
All sexes
Interventional
Phase 1
Berkeley, California, 94720, United States
Location status: Recruiting
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Serotonin Reuptake Inhibitors (SSRIs and SNRIs) Tricyclic Antidepressants (TCAs) Monoamine Oxidase Inhibitors (MAOIs) Atypical antidepressants (e.g., mirtazapine, trazodone, buspar) Antipsychotics/Neuroleptics (typical and atypical) Anti-epileptics or mood stabilizers (e.g., lithium, valproate) (does not include gabapentin used for non-epilepsy conditions) Efavirenz (Sustiva, in Atripla) Lorcaserin Over-the-counter supplements intended to affect mood or anxiety (e.g., 5HT-P, SAMe or St. John's Wort).
Other drugs associated with the serotonin syndrome (e.g., ondansetron) used within 48 hours of study drug administration (70).
Vasoactive drugs (e.g., sildenafil, sumatriptan, calcium channel blockers) used within 48 hours of study drug administration.
The effects of different doses of psilocybin (0 - 14 mg) will be compared.
Time frame: Functional MRI recordings will begin approximately 30 minutes after oral administration of experimental or comparator arm treatment and will continue for up to two hours.
Functional magnetic resonance imaging (fMRI) responses to visual stimuli will be recorded.
Time frame: Statistical tests will be performed after all data collection is complete.
Within-subject inferential statistical testing will be used to assess the effects of doses of psilocybin (0-14 mg) on participants' abilities to update prior expectations based on new information. Specifically, paired t-tests will be used to contrast perceptual measures collected at MRI scan sessions.
Time frame: Modeling of fMRI data will be performed within subjects after experiment data collection is complete.
Voxelwise modeling results will be quantified by measuring the amount of variance in fMRI responses to presentation of stimuli that is accounted for by the model in each voxel. Cross-validation using held-out data will be used to assess possible overfitting and to facilitate unbiased interpretations. Model weights associated with each parameter will be contrasted between the effects of doses of psilocybin (0-14 mg) and quantified for individual brain areas using paired t-tests and appropriate corrections for multiple comparisons.
Time frame: Statistical tests will be performed after all data collection is complete.
Within-subject inferential statistical testing will be used to assess the effects of doses of psilocybin (0 - 14 mg) on subjective effects. Specifically, paired t-tests and between-group effect sizes with 95% confidence intervals will be used to contrast patient-reported outcomes (MEQ-30, ChEQ, 11D-ASC and POMS-SF), corrected for multiple comparisons.
Contact information is provided by the study sponsor or research team.
University of California, Berkeley
Other
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