Association of driving with blood THC: A systematic review.

IF 4.5 2区 医学 Q1 CLINICAL NEUROLOGY
D Behzad, S Zhao, R Besa, B Brands, C M Wickens, M A Huestis, B Le Foll, P Di Ciano
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引用次数: 0

Abstract

Importance: Driving under the influence of cannabis increases the risk of motor vehicle collisions. In some jurisdictions, deterrence rests on the ability to detect delta-9-tetrahydrocannabinol (THC) in blood. Recent evidence suggests that there may be a nuanced relationship of blood THC to driving.

Objective: The purpose of this systematic review was to summarize all published papers investigating the presence of a linear relationship between blood THC and driving, primarily measured by simulated driving in the lab.

Outcomes: The main outcomes assessed included 'weaving'/lateral control (e.g., standard deviation of lateral position (SDLP)), speed, car following (following distance; coherence), reaction time, and overall driving performance.

Results: Of the 4,845 records from the literature search, only 12 met the criteria. 10 of these reported no significant linear correlations between blood THC and measures of driving (8 out of 9 for 'weaving'/lateral control, 4 out of 5 for speed, 2 of 3 for car following tasks (coherence / headway maintenance task), 1/1 for reaction time, 3/3 for overall driving performance). The studies that did find an association between driving and blood THC employed complex driving situations.

Conclusions: This synthesis has important implications for road safety given driving situations can be complex due to challenging road situations and increases in potency of cannabis over the past years. Current methods of detection of impairment may be suited to some types of situations but more large-scale studies on the relationship of blood THC and driving are needed that systematically vary driving complexity and cannabis potency.

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来源期刊
CiteScore
8.40
自引率
2.10%
发文量
230
审稿时长
4-8 weeks
期刊介绍: The central focus of the journal is on research that advances understanding of existing and new neuropsychopharmacological agents including their mode of action and clinical application or provides insights into the biological basis of psychiatric disorders and thereby advances their pharmacological treatment. Such research may derive from the full spectrum of biological and psychological fields of inquiry encompassing classical and novel techniques in neuropsychopharmacology as well as strategies such as neuroimaging, genetics, psychoneuroendocrinology and neuropsychology.
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