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Original Articles

Are Age-Based Licensing Restrictions a Meaningful Way to Enhance Rural Older Driver Safety? The Need for Exposure Considerations in Policy Development

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Pages 24-30 | Received 09 Aug 2010, Accepted 15 Sep 2010, Published online: 22 Jan 2011
 

Abstract

The stated and revealed travel behavior of a sample of 60 rural drivers aged 54–92 years provided a basis to explore the potential effectiveness of two common driver's license restrictions aimed at older drivers: time of day and road class. The potential utility and impact of these restrictions have not been explored with revealed data for jurisdictions with a large population of rural older drivers where automobile dependence is high. Data were drawn from a multiday Global Positioning System–based travel diary survey of rural older drivers in New Brunswick, Canada. Revealed travel data showed that over 50 percent of the rural drivers in the sample did not drive after dark, and 40 percent drove less than 1 percent of their total surveyed kilometers on major highways, higher rates than from participant-stated responses. The proportion of participants taking night trips and traveling on major highways decreased with age. The majority of trips taken after dark by all participants had a rural destination. The average daily kilometers driven on major highways by men and women aged 75 years and older was nearly identical (1.79 km/day). These exposure considerations suggest that restricting night travel and major highway travel for the oldest rural drivers (75 years and older) may have limited utility given that the majority of participants did not drive in these situations, and for those who did, most of their trips were in rural areas where enforcement could be expected to be limited. A better approach may be to encourage increased self-regulation through training, age-friendly upgrades to transportation infrastructure to help rural older drivers stay driving safely as long as possible, and the development of appropriate rural alternatives to help a driver transition to nondriver.

ACKNOWLEDGMENTS

The authors acknowledge the support of Professor Albert and Ena Stevens and the National Sciences and Engineering Research Council. The authors also acknowledge the anonymous reviewers for their insightful and helpful comments.

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