Built environment effects on cyclist injury severity in automobile-involved bicycle crashes.
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[1] Karim El-Basyouny,et al. Analyzing the Severity of Bicycle-Motor Vehicle Collision Using Spatial Mixed Logit Models: A City of Edmonton Case Study , 2014 .
[2] Luc Int Panis,et al. A prospective cohort study on minor accidents involving commuter cyclists in Belgium. , 2012, Accident; analysis and prevention.
[3] Gudmundur F. Ulfarsson,et al. Bicyclist injury severities in bicycle-motor vehicle accidents. , 2007, Accident; analysis and prevention.
[4] S. Wood. Generalized Additive Models: An Introduction with R , 2006 .
[5] C Goldenbeld,et al. The use and risk of portable electronic devices while cycling among different age groups. , 2012, Journal of safety research.
[6] Richard Williams. Gologit2: Generalized Logistic Regression Models for Ordinal Dependent Variables , 2005 .
[7] Mohamed Abdel-Aty,et al. Analysis of driver injury severity levels at multiple locations using ordered probit models. , 2003, Journal of safety research.
[8] Ian Walker,et al. Drivers overtaking bicyclists: objective data on the effects of riding position, helmet use, vehicle type and apparent gender. , 2007, Accident; analysis and prevention.
[9] Chandra R. Bhat,et al. On Accommodating Spatial Dependence in Bicycle and Pedestrian Injury Counts by Severity Level , 2013 .
[10] T. Yee. The VGAM Package for Categorical Data Analysis , 2010 .
[11] Martina Bílová,et al. Critical factors in fatal collisions of adult cyclists with automobiles. , 2010, Accident; analysis and prevention.
[12] Nalini Ravishanker,et al. Analysis of driver and passenger crash injury severity using partial proportional odds models. , 2013, Accident; analysis and prevention.
[13] Kara Kockelman,et al. Occupant Injury Severity using a Heteroscedastic Ordered Logit Model : Distinguishing the Effects of Vehicle Weight and Type , 2005 .
[14] Kara M. Kockelman,et al. Use of heteroscedastic ordered logit model to study severity of occupant injury: Distinguishing effects of vehicle weight and type , 2005 .
[15] R G Attewell,et al. Bicycle helmet efficacy: a meta-analysis. , 2001, Accident; analysis and prevention.
[16] F. Rivara,et al. Changes in traffic crash mortality rates attributed to use of alcohol, or lack of a seat belt, air bag, motorcycle helmet, or bicycle helmet, United States, 1982–2001 , 2006, Injury Prevention.
[17] S. Boufous,et al. Cycling Crashes in Children, Adolescents, and Adults—A Comparative Analysis , 2011, Traffic injury prevention.
[18] A. Khattak,et al. Factors Influencing Bicycle Crash Severity on Two-Lane, Undivided Roadways in North Carolina , 1999 .
[19] Naveen Eluru,et al. Evaluating alternate discrete choice frameworks for modeling ordinal discrete variables. , 2013, Accident; analysis and prevention.
[20] Naveen Eluru,et al. Evaluating alternate discrete outcome frameworks for modeling crash injury severity. , 2013, Accident; analysis and prevention.
[21] Richard Williams. Generalized Ordered Logit/Partial Proportional Odds Models for Ordinal Dependent Variables , 2006 .
[22] Alan Agresti,et al. Categorical Data Analysis , 1991, International Encyclopedia of Statistical Science.
[23] Carlo Giacomo Prato,et al. Risk factors associated with bus accident severity in the United States: a generalized ordered logit model. , 2012, Journal of safety research.
[24] Xinping Yan,et al. Motor vehicle-bicycle crashes in Beijing: irregular maneuvers, crash patterns, and injury severity. , 2011, Accident; analysis and prevention.
[25] Chandra R. Bhat,et al. Analytic methods in accident research: Methodological frontier and future directions , 2014 .
[26] John M. Rose,et al. Applied Choice Analysis: A Primer , 2005 .
[27] Peter T. Savolainen,et al. Mixed logit analysis of bicyclist injury severity resulting from motor vehicle crashes at intersection and non-intersection locations. , 2011, Accident; analysis and prevention.
[28] Rajesh Paleti,et al. A spatial generalized ordered response model to examine highway crash injury severity. , 2013, Accident; analysis and prevention.
[29] Dominique Lord,et al. The statistical analysis of highway crash-injury severities: a review and assessment of methodological alternatives. , 2011, Accident; analysis and prevention.
[30] D. Hensher,et al. A mixed generalized ordered response model for examining pedestrian and bicyclist injury severity level in traffic crashes. , 2008, Accident; analysis and prevention.
[31] Raphael Grzebieta,et al. Relative injury severity among vulnerable non-motorised road users: comparative analysis of injury arising from bicycle-motor vehicle and bicycle-pedestrian collisions. , 2010, Accident; analysis and prevention.
[32] Fan Zhang,et al. How to make more cycling good for road safety? , 2012, Accident; analysis and prevention.
[33] Luis F. Miranda-Moreno,et al. Estimating Potential Effect of Speed Limits, Built Environment, and Other Factors on Severity of Pedestrian and Cyclist Injuries in Crashes , 2011 .
[34] Naveen Eluru,et al. A note on generalized ordered outcome models , 2015 .