Diagnostic analysis of the logistic model for pedestrian injury severity in traffic crashes

被引:267
作者
Sze, N. N. [1 ]
Wong, S. C. [1 ]
机构
[1] Univ Hong Kong, Dept Civil Engn, Hong Kong, Hong Kong, Peoples R China
基金
中国国家自然科学基金;
关键词
binary logistic regression; pedestrian casualty; injury severity; interaction effect; Hosmer-Lemeshow statistic; logistic regression diagnostics;
D O I
10.1016/j.aap.2007.03.017
中图分类号
TB18 [人体工程学];
学科分类号
1201 ;
摘要
This study attempts to evaluate the injury risk of pedestrian casualties in traffic crashes and to explore the factors that contribute to mortality and severe injury, using the comprehensive historical crash record that is maintained by the Hong Kong Transport Department. The injury, demographic, crash, environmental, geometric, and traffic characteristics of 73,746 pedestrian casualties that were involved in traffic crashes from 1991 to 2004 are considered. Binary logistic regression is used to determine the associations between the probability of fatality and severe injury and all contributory factors. A consideration of the influence of implicit attributes on the trend of pedestrian injury risk, temporal confounding, and interaction effects is progressively incorporated into the predictive model. To verify the goodness-of-fit of the proposed model, the Hosmer-Lemeshow test and logistic regression diagnostics are conducted. It is revealed that there is a decreasing trend in pedestrian injury risk, controlling for the influences of demographic, road environment, and other risk factors. In addition, the influences of pedestrian behavior, traffic congestion, and junction type on pedestrian injury risk are subject to temporal variation. (C) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1267 / 1278
页数:12
相关论文
共 38 条
[1]   Pedestrian-vehicle crashes and analytical techniques for stratified contingency tables [J].
Al-Ghamdi, AS .
ACCIDENT ANALYSIS AND PREVENTION, 2002, 34 (02) :205-214
[2]   Travel survey data required to inform transport safety policy and practice [J].
Allsop, Richard E. .
TRANSPORTMETRICA, 2005, 1 (03) :241-245
[3]   Pedestrian injuries and vehicle type in Maryland, 1995-1999 [J].
Ballesteros, MF ;
Dischinger, PC ;
Langenberg, P .
ACCIDENT ANALYSIS AND PREVENTION, 2004, 36 (01) :73-81
[4]   Globalization in road safety: explaining the downward trend in road accident rates in a single country (Israel) [J].
Beenstock, M ;
Gafni, D .
ACCIDENT ANALYSIS AND PREVENTION, 2000, 32 (01) :71-84
[5]  
CLAYTON D, 1993, STAT METHODS EPIDEMI
[6]   Relating severity of pedestrian injury to impact speed in vehicle-pedestrian crashes - Simple threshold model [J].
Davis, GA .
2001 TRB DISTINGUISHED LECTURE, PT 1 - BICYCLE AND PEDESTRIAN RESEARCH, PT 2: SAFETY AND HUMAN PERFORMANCE, 2001, (1773) :108-113
[7]   Pedestrians injured by automobiles: Relationship of age to injury type and severity [J].
Demetriades, D ;
Murray, J ;
Martin, M ;
Velmahos, G ;
Salim, A ;
Alo, K ;
Rhee, P .
JOURNAL OF THE AMERICAN COLLEGE OF SURGEONS, 2004, 199 (03) :382-387
[8]   The impact of speed and other variables on pedestrian safety in Maine [J].
Gårder, PE .
ACCIDENT ANALYSIS AND PREVENTION, 2004, 36 (04) :533-542
[9]   The effects of area deprivation on the incidence of child and adult pedestrian casualties in England [J].
Graham, D ;
Glaister, S ;
Anderson, R .
ACCIDENT ANALYSIS AND PREVENTION, 2005, 37 (01) :125-135
[10]   Traffic accident statistics and risk perceptions in Japan and the United States [J].
Hayakawa, H ;
Fischbeck, PS ;
Fischhoff, B .
ACCIDENT ANALYSIS AND PREVENTION, 2000, 32 (06) :827-835