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Clinical Trials/NCT02757313
NCT02757313CompletedPhase 1

Neuroscience of Marijuana Impaired Driving

Yale University1 site in 1 country62 target enrollmentStarted: October 2016Last updated:
Conditions
Interventions
Drugs

Trial Snapshot

Phase
Phase 1
Status
Completed
Enrollment
62
Locations
1
Primary Endpoint
Change in performance on fMRI simulated driving Gap Acceptance Task

Study Overview

Brief Summary

Marijuana is one of the most widely used substances. However, marijuana intoxication is not fully understood in relation to driving. This study will help the investigators learn more about the potential impairments related to marijuana intoxicated driving. A combination of MRI and neuropsychological tests (which are computer and paper/pencil tasks) will be used to measure intoxication and impairment. This study will also assess levels of marijuana in blood and saliva samples. This study takes place in Hartford, Connecticut.

Detailed Description

Cannabis is a commonly abused drug whose use cuts across social class, is linked to cognitive impairment, and may be a major contributor to intoxication-related accidents - either alone or with alcohol. However, cannabis intoxication is little studied in relation to driving compared to alcohol. Not only does the current NHTSA Strategic Plan for Behavioral Research prioritize understanding how drugs other than alcohol contribute to traffic crashes, it has recently become more pressing to understand the effects of cannabis because of increasing rates of legalized medical and/or recreational use, that will likely result in more cannabis intoxicated drivers. Social and legal policy will be unable to effectively address the many concerns about driving safety raised by more frequent and widespread use of cannabis without new research to better determine the parameters within which cannabis use does, or does not, increase automobile accident risk. The purpose of this study is to better describe specific, driving-related cognitive impairments caused by acute cannabis intoxication, their persistence over time, underlying functional brain anatomy, and relationship to performance on a state-of the art validated simulated driving task in which the investigators have prior experience. In a randomized, counterbalanced, double-blinded fashion, the investigators will administer two cannabis doses and placebo of smoked cannabis (paced inhalation using a vaporizer) to 48 regular cannabis users and 48 occasional cannabis users on 3 separate occasions. Following cannabis dosing cognitive and driving impairment will be assessed longitudinally for several hours using a combination of fMRI and neuropsychological tests, to clarify relationships between subjective and objective measures of intoxication and of impairment, that include expert assessment of THC and its metabolite levels in blood and saliva. This study takes place in Hartford, Connecticut.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Single Group
Primary Purpose
Other
Masking
Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)

Eligibility Criteria

Ages
18 Years to 40 Years (Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Must have a current driver's license
  • Have used marijuana before
  • Right handed

Exclusion Criteria

  • Females who are pregnant or breast feeding
  • Unable or unsafe to have an MRI
  • Any serious medical, or neurological disorder
  • Any psychiatric disorder
  • No major head traumas

Arms & Interventions

Regular Users

Experimental

People who use marijuana regularly will be given a low dose THC marijuana, high dose THC marijuana and placebo marijuana, in a randomized order, at the study visits.

Intervention: Placebo marijuana (Drug)

Occasional Users

Experimental

People who use marijuana occasionally will be given a low dose THC marijuana, high dose THC marijuana and placebo marijuana, in a randomized order, at the study visits.

Intervention: Low dose THC marijuana (Drug)

Regular Users

Experimental

People who use marijuana regularly will be given a low dose THC marijuana, high dose THC marijuana and placebo marijuana, in a randomized order, at the study visits.

Intervention: Low dose THC marijuana (Drug)

Regular Users

Experimental

People who use marijuana regularly will be given a low dose THC marijuana, high dose THC marijuana and placebo marijuana, in a randomized order, at the study visits.

Intervention: High dose THC marijuana (Drug)

Occasional Users

Experimental

People who use marijuana occasionally will be given a low dose THC marijuana, high dose THC marijuana and placebo marijuana, in a randomized order, at the study visits.

Intervention: High dose THC marijuana (Drug)

Occasional Users

Experimental

People who use marijuana occasionally will be given a low dose THC marijuana, high dose THC marijuana and placebo marijuana, in a randomized order, at the study visits.

Intervention: Placebo marijuana (Drug)

Outcomes

Primary Outcomes

Change in performance on fMRI simulated driving Gap Acceptance Task

Time Frame: Post drug administration at: 30 min, 3 hours and 5.25 hours

The Gap Acceptance Task measures strategic control of the vehicle. Strategic control of the vehicle is measured by size of headway gaps that the participant chooses in pulling out into a stream of traffic.

Change in performance on fMRI simulated driving Road Tracking Task.

Time Frame: Post drug administration at: 30 min, 3 hours and 5.25 hours

The Road Tracking Task measures operational control of the vehicle. Operational control is measured by standard deviation of lane position from the center point of the lane.

Change in concentration of THC/metabolites in oral fluid tested using Draeger Drug Detection Kits

Time Frame: Baseline and post drug administration at: 5 min, 20 min, 1 hr 10 min, 1 hr 45 min, 2 hrs 30 min, 4 hrs, and 6 hrs 30 min,

Saliva samples will be taken at 8 total time points throughout the day using the Draeger Drug Detection kits to assess for changes in concentration of THC and its metabolites.

Change in performance on fMRI simulated driving Car Following Task.

Time Frame: Post drug administration at: 30 min, 3 hours and 5.25 hours

The Car Following Task measures tactical control of the vehicle. Tactical control of the vehicle is measured by following distance from a lead vehicle.

Change in concentration of THC/metabolites in oral fluid tested using Quantisal Oral Fluid Collection devices.

Time Frame: Baseline and post drug administration at: 5 min, 20 min, 1 hr 10 min, 1 hr 45 min, 2 hrs 30 min, 4 hrs, and 6 hrs 30 min,

Saliva samples will be taken at 8 total time points throughout the day using the Quantisal Oral Fluid Collection devices to assess for changes in concentration of THC and its metabolites.

Change in concentration of THC/metabolites in blood samples.

Time Frame: Baseline and post drug administration at: 5 min, 20 min, 1 hr 10 min, 1 hr 45 min, 2 hrs 30 min, 4 hrs, and 6 hrs 30 min,

Blood samples will be taken at 8 total time points throughout the day to assess for changes in concentration of THC and its metabolites.

Marijuana performance changes on the Cogstate 1-back/2-back task.

Time Frame: Post drug administration at two of the following time points (which varies dependent on the visit day): 2 hours; 4.25 hours; 6.5 hours

The Cogstate 1-back/2-back task assesses working memory, it will be administered prior to dosing and at various time points after dosing.

Marijuana performance changes on the Critical Tracking Task.

Time Frame: Post drug administration at two of the following time points (which varies dependent on the visit day): 2 hours; 4.25 hours; 6.5 hours

The Critical Tracking Task assesses visuomotor tracking, it will be administered prior to dosing and at various time points after dosing.

Marijuana performance changes on the Tower of London task.

Time Frame: Post drug administration at two of the following time points (which varies dependent on the visit day): 2 hours; 4.25 hours; 6.5 hours

The Tower of London is a task that assesses executive functioning, it will be administered prior to dosing and at various time points after dosing.

Marijuana performance changes on the Cogstate Detection Task.

Time Frame: Post drug administration at two of the following time points (which varies dependent on the visit day): 2 hours; 4.25 hours; 6.5 hours

The Cogstate Detection Task assesses processing speed, it will be administered prior to dosing and at various time points after dosing.

Marijuana performance changes on the Cogstate Set Shifting Task.

Time Frame: Post drug administration at two of the following time points (which varies dependent on the visit day): 2 hours; 4.25 hours; 6.5 hours

The Cogstate Set Shifting Task assesses executive functioning, it will be administered prior to dosing and at various time points after dosing.

Secondary Outcomes

  • Change in performance on fMRI Set-Shifting paradigm.(Post drug administration at: 1.25 hours, 3.5 hours and 6 hours)
  • Change in performance on fMRI Time Estimation paradigm.(Post drug administration at: 1.25 hours, 3.5 hours and 6 hours)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Godfrey Pearlson

Founding Director Olin Neuropsychiatry Research Center; Professor Yale University

Yale University

Study Sites (1)

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