Using best–worst scaling to identify barriers to walkability: a study of Porto Alegre, Brazil
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Helena Beatriz Bettella Cybis | Orlando Strambi | Julian Arellana | Ana Margarita Larranaga | Luis Ignacio Rizzi | L. Rizzi | J. Arellana | O. Strambi | H. Cybis | A. Larrañaga
[1] P. Herr,et al. Affective Influences on Evaluative Processing , 2012 .
[2] Chi Kwan Chau,et al. A review on the effects of physical built environment attributes on enhancing walking and cycling activity levels within residential neighborhoods , 2016 .
[3] A. Abele,et al. Thinking about thinking: Causal, evaluative and finalistic cognitions about social situations , 1985 .
[4] Ahmed M El-Geneidy,et al. Measuring Nonmotorized Accessibility: Issues, Alternatives, and Execution , 2008 .
[5] José G. Dias,et al. Can negative characters in soap operas be positive for product placement , 2017 .
[6] Anupama Mantri. A GIS Based Approach to Measure Walkability of a Neighborhood , 2008 .
[7] Andrea L Dunn,et al. Exploring the effect of the environment on physical activity: a study examining walking to work. , 2002, American journal of preventive medicine.
[8] Yiik Diew Wong,et al. Influence of infrastructural compatibility factors on walking and cycling route choices , 2013 .
[9] K. Vohs,et al. Case Western Reserve University , 1990 .
[10] Maria Kamargianni,et al. “Teenager's Travel Patterns for School and After-School Activities.” , 2012 .
[11] H. Badland,et al. Can Virtual Streetscape Audits Reliably Replace Physical Streetscape Audits? , 2010, Journal of Urban Health.
[12] Becky P Y Loo,et al. Geographic Accessibility around Health Care Facilities for Elderly Residents in Hong Kong: A Microscale Walkability Assessment , 2012 .
[13] Mark P. Zanna,et al. Differential weighting of favorable and unfavorable attributes in impressions of personality. , 1972 .
[14] Hannah Badland,et al. Using simple agent-based modeling to inform and enhance neighborhood walkability , 2013, International Journal of Health Geographics.
[15] O. John,et al. Automatic vigilance: the attention-grabbing power of negative social information. , 1991, Journal of personality and social psychology.
[16] Perver K. Baran,et al. Space Syntax and Walking in a New Urbanist and Suburban Neighbourhoods , 2008 .
[17] Ruth L. Steiner,et al. Planning-Level Areawide Multimodal Level-of-Service Analysis: Performance Measures for Congestion Management , 2003 .
[18] Corinne Mulley,et al. Social marketing and the built environment: What matters for travel behaviour change? , 2015 .
[19] Michelle Oswald Beiler,et al. Prioritizing Pedestrian Corridors Using Walkability Performance Metrics and Decision Analysis , 2016 .
[20] Dan Burden,et al. Building Communities with Transportation , 2001 .
[21] Christine M. Hoehner,et al. Perceived and objective environmental measures and physical activity among urban adults. , 2005, American journal of preventive medicine.
[22] K. Shriver. Influence of Environmental Design on Pedestrian Travel Behavior in Four Austin Neighborhoods , 1997 .
[23] Vikas Mehta,et al. Walkable streets: pedestrian behavior, perceptions and attitudes , 2008 .
[24] B. Giles-Corti,et al. The built environment, neighborhood crime and constrained physical activity: an exploration of inconsistent findings. , 2008, Preventive medicine.
[25] B. Saelens,et al. Built environment correlates of walking: a review. , 2008, Medicine and science in sports and exercise.
[26] William Feldman,et al. Analytical Framework for Prioritizing Bicycle and Pedestrian Investments: New Jersey's Statewide Master Plan Update, Phase 2 , 2004 .
[27] Mohamed Al-Hussein,et al. Municipal Infrastructure Asset Levels of Service Assessment for Investment Decisions Using Analytic Hierarchy Process , 2008 .
[28] A. Tversky,et al. Prospect theory: analysis of decision under risk , 1979 .
[29] Ronaldo Iachan,et al. Systematic Sampling: A Critical Review , 1982 .
[30] Daniel A. Rodriguez,et al. The relationship between non-motorized mode choice and the local physical environment , 2004 .
[31] A. Tversky,et al. Prospect Theory : An Analysis of Decision under Risk Author ( s ) : , 2007 .
[32] Li Yin,et al. Assessing Walkability in the City of Buffalo: Application of Agent-Based Simulation , 2013 .
[33] D. Scott,et al. Barriers to Walking: An Investigation of Adults in Hamilton (Ontario, Canada) , 2016, International journal of environmental research and public health.
[34] C. Zegras. The Built Environment and Motor Vehicle Ownership and Use: Evidence from Santiago de Chile , 2010 .
[35] J. Sallis,et al. Urban Form Relationships with Walk Trip Frequency and Distance among Youth , 2007, American journal of health promotion : AJHP.
[36] Helena Beatriz Bettella Cybis,et al. Application of multi-criteria decision analysis methods for assessing walkability: A case study in Porto Alegre, Brazil , 2018, Transportation Research Part D: Transport and Environment.
[37] Sugie Lee,et al. Residential built environment and walking activity: Empirical evidence of Jane Jacobs’ urban vitality , 2015 .
[38] N. Owen,et al. Explaining socio-economic status differences in walking for transport: an ecological analysis of individual, social and environmental factors. , 2009, Social science & medicine.
[39] Shelley E. Taylor,et al. Asymmetrical effects of positive and negative events: the mobilization-minimization hypothesis. , 1991, Psychological bulletin.
[40] Jinhyun Hong,et al. The role of the built environment on perceived safety from crime and walking: examining direct and indirect impacts , 2014 .
[41] Toru Hagiwara,et al. Overall Level of Service of Urban Walking Environment and Its Influence on Pedestrian Route Choice Behavior , 2007 .
[42] Kathryn M Neckerman,et al. Neighborhood safety and green space as predictors of obesity among preschool children from low-income families in New York City. , 2013, Preventive medicine.
[43] Philip Bors,et al. Reliability and Validity of Two Instruments Designed to Assess the Walking and Bicycling Suitability of Sidewalks and Roads , 2003, American journal of health promotion : AJHP.
[44] David S. Vale,et al. Active accessibility: A review of operational measures of walking and cycling accessibility , 2016 .
[45] Samira Ramezani,et al. An integrated assessment of factors affecting modal choice: towards a better understanding of the causal effects of built environment , 2018 .
[46] Magdalini Pitsiava-Latinopoulou,et al. Development of a Model for the Estimation of Pedestrian Level of Service in Greek Urban Areas , 2012 .
[47] Mintesnot Woldeamanuel,et al. Measuring Walk Access to Transit in Terms of Sidewalk Availability, Quality, and Connectivity , 2016 .
[48] G. Cardon,et al. Neighborhood SES and walkability are related to physical activity behavior in Belgian adults. , 2010, Preventive medicine.
[49] Susan L Handy,et al. Measuring the Unmeasurable: Urban Design Qualities Related to Walkability , 2009 .
[50] Arnaldo Cecchini,et al. Evaluating walkability: a capability-wise planning and design support system , 2015, Int. J. Geogr. Inf. Sci..
[51] Emily Lancsar,et al. Several methods to investigate relative attribute impact in stated preference experiments. , 2007, Social science & medicine.
[52] J. Louviere,et al. A comparison of importance weights and willingness-to-pay measures derived from choice-based conjoint, constant sum scales and best-worst scaling , 2008 .
[53] J. Lee,et al. The Best–Worst Scaling Approach: An Alternative to Schwartz's Values Survey , 2008, Journal of personality assessment.
[54] Julien O. Teitler,et al. Using Google Street View to audit neighborhood environments. , 2011, American journal of preventive medicine.
[55] Linda B. Dixon. Bicycle and Pedestrian Level-of-Service Performance Measures and Standards for Congestion Management Systems , 1996 .
[56] Sybil Derrible,et al. Development and application of the Pedestrian Environment Index (PEI) , 2014 .
[57] J. Sallis,et al. Environmental correlates of walking and cycling: Findings from the transportation, urban design, and planning literatures , 2003, Annals of behavioral medicine : a publication of the Society of Behavioral Medicine.
[58] A. Cheadle,et al. Operational Definitions of Walkable Neighborhood: Theoretical and Empirical Insights. , 2006, Journal of physical activity & health.
[59] Z. Dobesová,et al. Walkability Index in the Urban Planning: A Case Study in Olomouc City , 2012 .
[60] Susan L Handy,et al. Measuring Nonmotorized Accessibility and Connectivity in a Robust Pedestrian Network , 2012 .
[61] N Gallin. Quantifying Pedestrian Friendliness - Guidelines for Assessing Pedestrian Level of Service , 2001 .
[62] Deborah I Thompson,et al. Psychometric assessment of scales for a Model of Goal Directed Vegetable Parenting Practices (MGDVPP) , 2013, International Journal of Behavioral Nutrition and Physical Activity.
[63] Byron W. Keating,et al. Best–Worst Scaling Approach to Predict Customer Choice for 3PL , 2011 .
[64] Michael Duncan,et al. Walking, bicycling, and urban landscapes: evidence from the San Francisco Bay Area. , 2003, American journal of public health.
[65] Kelly J. Clifton,et al. Local shopping as a strategy for reducing automobile travel , 2001 .
[66] Christine M. Hoehner,et al. Measuring the built environment for physical activity: state of the science. , 2009, American journal of preventive medicine.
[67] E. Klinger,et al. Motivational correlates of thought content frequency and commitment. , 1980 .
[68] Andrew Daly,et al. Dummy coding vs effects coding for categorical variables: Clarifications and extensions , 2016 .
[69] Sally Jensen,et al. Pedestrian and Bicyclist Level of Service on Roadway Segments , 2007 .
[70] Jae Seung Lee,et al. Perception-Based Walkability Index to Test Impact of Microlevel Walkability on Sustainable Mode Choice Decisions , 2014 .
[71] Wann-Ming Wey,et al. Assessing the walkability of pedestrian environment under the transit-oriented development , 2013 .
[72] Joffre Swait,et al. A joint best–worst scaling and stated choice model considering observed and unobserved heterogeneity: An application to residential location choice , 2015 .
[73] Aaron Elias. Automobile-Oriented or Complete Street? , 2011 .
[74] Patrick A. Singleton,et al. Safety and Security in Discretionary Travel Decision Making , 2014 .
[75] Hugh Millward,et al. Time and Money: A New Look at Poverty and the Barriers to Physical Activity in Canada , 2010 .
[76] A. Bauman,et al. Residents' perceptions of walkability attributes in objectively different neighbourhoods: a pilot study. , 2005, Health & place.
[77] Mariela Alfonzo,et al. To Walk or Not to Walk? The Hierarchy of Walking Needs , 2005 .
[78] Jennifer Ailshire,et al. Using Google Earth to conduct a neighborhood audit: reliability of a virtual audit instrument. , 2010, Health & place.
[79] Todd Litman,et al. Integrating Public Health Objectives in Transportation Decision-Making , 2003, American journal of health promotion : AJHP.
[80] Mehdi Moeinaddini,et al. Pedestrian safety index for evaluating street facilities in urban areas , 2015 .
[81] F. Moura,et al. Measuring walkability for distinct pedestrian groups with a participatory assessment method: A case study in Lisbon , 2017 .
[82] Lawrence D. Frank,et al. The Built Environment and Human Activity Patterns: Exploring the Impacts of Urban Form on Public Health , 2001 .
[83] Kin Fai Ellick Wong,et al. Bad is freer than good: Positive–negative asymmetry in attributions of free will , 2016, Consciousness and Cognition.
[84] K. Kockelman,et al. Models for Anticipating Non-motorized Travel Choices, and Role of the Built Environment , 2014 .
[85] Robert B. Noland,et al. Walking frequency, cars, dogs, and the built environment , 2011 .
[86] J. M. Oakes,et al. Design and Destinations: Factors Influencing Walking and Total Physical Activity , 2008 .
[87] J. Whitty,et al. Best-Worst scaling…reflections on presentation, analysis, and lessons learnt from case 3 BWS experiments , 2013 .
[88] A. Tversky,et al. Advances in prospect theory: Cumulative representation of uncertainty , 1992 .
[89] T. Flynn. Valuing citizen and patient preferences in health: recent developments in three types of best–worst scaling , 2010, Expert review of pharmacoeconomics & outcomes research.
[90] J. Sallis,et al. Linking objectively measured physical activity with objectively measured urban form: findings from SMARTRAQ. , 2005, American journal of preventive medicine.
[91] B. Giles-Corti,et al. Socioeconomic status differences in recreational physical activity levels and real and perceived access to a supportive physical environment. , 2002, Preventive medicine.
[92] Ted M. Matley,et al. Pedestrian Travel Potential in Northern New Jersey: A Metropolitan Planning Organization’s Approach to Identifying Investment Priorities , 2000 .
[93] Xinyu Cao,et al. Examining the Impacts of Residential Self‐Selection on Travel Behaviour: A Focus on Empirical Findings , 2009 .
[94] Bruce W Landis,et al. Multimodal Level-of-Service Analysis at Planning Level , 2000 .
[95] Åse Svensson,et al. Satisfaction or compensation? The interaction between walking preferences and neighbourhood design , 2017 .
[96] Tan Yigitcanlar,et al. Development and validity of a virtual street walkability audit tool for pedestrian route choice analysis—SWATCH , 2018, Journal of Transport Geography.
[97] Miles Tight,et al. A comparison of three methods for assessing the walkability of the pedestrian environment , 2011 .
[98] A. Bégué,et al. Identifying landscape features associated with Rift Valley fever virus transmission, Ferlo region, Senegal, using very high spatial resolution satellite imagery , 2013, International Journal of Health Geographics.
[99] Tae-Ho Kim,et al. A Development of Integrated Evaluation Criteria for Quality of Service on Pedestrian Networks by Using Multi-Criteria Decision Analysis , 2009 .
[100] Jaisung Choi,et al. Roadside walking environments and major factors affecting pedestrian level of service , 2013 .
[101] Susan L Handy,et al. The Influences of the Built Environment and Residential Self-Selection on Pedestrian Behavior: Evidence from Austin, TX , 2005 .
[102] Terry N. Flynn,et al. Best-worst scaling: consistency of preferences with discrete choice experiments and stability over time , 2011 .
[103] Mehdi Moeinaddini,et al. Non-motorised Level of Service: Addressing Challenges in Pedestrian and Bicycle Level of Service , 2013 .
[104] Francisco Escobar,et al. Assessing Walking and Cycling Environments in the Streets of Madrid: Comparing On-Field and Virtual Audits , 2015, Journal of Urban Health.
[105] Chulmin Jun,et al. An empirical study on sustainable walkability indices for transit-oriented development by using the analytic network process approach , 2011 .
[106] A. M. Larrañaga,et al. THE RELATIONSHIP BETWEEN BUILT ENVIRONMENT AND WALKING FOR DIFFERENT TRIP PURPOSES IN PORTO ALEGRE, BRAZIL , 2014 .
[107] Seiichi Kagaya,et al. METHOD TO DETERMINE OVERALL LEVEL-OF-SERVICE OF PEDESTRIAN WALKWAYS BASED ON TOTAL UTILITY VALUE , 2005 .
[108] A. Roets,et al. The morality of action : the asymmetry between judgments of praise and blame in the action–omission effect , 2016 .
[109] A. Bauman,et al. Walkability of local communities: using geographic information systems to objectively assess relevant environmental attributes. , 2007, Health & place.
[110] Moshe Ben-Akiva,et al. Discrete Choice Analysis: Theory and Application to Travel Demand , 1985 .
[111] A. Loukaitou-Sideris. Is it Safe to Walk?1 Neighborhood Safety and Security Considerations and Their Effects on Walking , 2006 .
[112] R. Larsen,et al. Intensity and frequency: dimensions underlying positive and negative affect. , 1985, Journal of personality and social psychology.
[113] R. Cervero,et al. Influences of Built Environments on Walking and Cycling: Lessons from Bogotá , 2009 .
[114] Bruce W Landis,et al. Modeling the Roadside Walking Environment: Pedestrian Level of Service , 2001 .
[115] Michiel C.J. Bliemer,et al. Constructing Efficient Stated Choice Experimental Designs , 2009 .
[116] Julio A. Soria-Lara,et al. Q-PLOS, developing an alternative walking index. A method based on urban design quality , 2015 .
[117] Reid Ewing,et al. A walk trip generation model for Portland, OR , 2017 .
[118] Jennie Middleton,et al. ‘Stepping in Time’: Walking, Time, and Space in the City , 2009 .
[119] Theodore Anton Petritsch,et al. Multimodal Level of Service for Urban Streets , 2008 .
[120] J. Louviere,et al. The Role of the Scale Parameter in the Estimation and Comparison of Multinomial Logit Models , 1993 .
[121] Christopher K. Hsee,et al. Asymmetries Between Positives and Negatives , 2014 .
[122] Randall Guensler,et al. Measuring Walkability: Development of an Automated Sidewalk Quality Assessment Tool , 2013 .
[123] Donal E. Carlston,et al. Caught in the act: When impressions based on highly diagnostic behaviours are resistant to contradiction , 1992 .
[124] R. Cervero,et al. TRAVEL DEMAND AND THE 3DS: DENSITY, DIVERSITY, AND DESIGN , 1997 .
[125] Ioannis Kaparias,et al. Analysing the perceptions of pedestrians and drivers to shared space , 2012 .
[126] Brian Stone,et al. Google walkability: a new tool for local planning and public health research? , 2012, Journal of physical activity & health.
[127] F. Bull,et al. Developing a framework for assessment of the environmental determinants of walking and cycling. , 2003, Social science & medicine.
[128] Luke Kelleher,et al. Connectivity and physical activity: using footpath networks to measure the walkability of built environments , 2016 .
[129] F Jaskiewicz,et al. PEDESTRIAN LEVEL OF SERVICE BASED ON TRIP QUALITY , 2000 .
[130] J. Sallis,et al. Many Pathways from Land Use to Health: Associations between Neighborhood Walkability and Active Transportation, Body Mass Index, and Air Quality , 2006 .
[131] Helena Beatriz Bettella Cybis,et al. The influence of built environment and travel attitudes on walking: A case study of Porto Alegre, Brazil , 2016 .
[132] Tomoko Ikegami,et al. Positive‐negative asymmetry of priming effects on impression formation , 1993 .
[133] Wei Wang,et al. Research on Methods of Assessing Pedestrian Level of Service for Sidewalk , 2007 .
[134] Andy P. Jones,et al. Developing and testing a street audit tool using Google Street View to measure environmental supportiveness for physical activity , 2013, International Journal of Behavioral Nutrition and Physical Activity.
[135] A. Adachi-Mejia,et al. Perceived intrinsic barriers to physical activity among rural mothers. , 2010, Journal of women's health.
[136] Patxi J. Lamíquiz,et al. Effects of built environment on walking at the neighbourhood scale. A new role for street networks by modelling their configurational accessibility , 2015 .
[137] P. Rietveld. Biking and Walking: The Position of Non-Motorised Transport Modes in Transport Systems , 2001 .
[138] T. Flynn. Using Conjoint Analysis and Choice Experiments to Estimate QALY Values , 2012, PharmacoEconomics.
[139] Seung-Jae Lee,et al. A New Approach for the Evaluation of the Walking Environment , 2013 .
[140] Thomas Brothen,et al. Attention, attraction, and individual differences in reaction to criticism. , 1980 .
[141] Munzilah Md Rohani,et al. Pedestrian footpath level of service (FOOT-LOS) model for Johor Bahru , 2016 .
[142] Yen-Cheng Chiang,et al. Using expert decision-making to establish indicators of urban friendliness for walking environments: a multidisciplinary assessment , 2016, International Journal of Health Geographics.
[143] Shelley E. Taylor. Adjustment to threatening events: A theory of cognitive adaptation. , 1983 .
[144] J. Louviere,et al. Some probabilistic models of best, worst, and best–worst choices , 2005 .
[145] Marlon G. Boarnet,et al. Built Environment as Determinant of Walking Behavior: Analyzing Nonwork Pedestrian Travel in Portland, Oregon , 2001 .
[146] Carol M. Werner,et al. Assessing Built Environment Walkability using Activity-Space Summary Measures. , 2016, Journal of transport and land use.
[147] Sungjin Park,et al. Meso- or micro-scale? Environmental factors influencing pedestrian satisfaction , 2014 .
[148] Sungjin Park,et al. Defining, Measuring, and Evaluating Path Walkability, and Testing Its Impacts on Transit Users’ Mode Choice and Walking Distance to the Station , 2008 .
[149] J. Sallis,et al. Neighborhood Environment Walkability Scale: validity and development of a short form. , 2006, Medicine and science in sports and exercise.
[150] A. Moudon,et al. Correlates of Walking for Transportation or Recreation Purposes. , 2006, Journal of physical activity & health.
[151] Asha Weinstein Agrawal,et al. How Far, by Which Route and Why? A Spatial Analysis of Pedestrian Preference , 2007 .
[152] Marco Petrelli,et al. Walkability Indicators for Pedestrian-Friendly Design , 2014 .
[153] Rupert Brown,et al. Development of the positive-negative asymmetry effect: In-group exclusion norm as a mediator of children’s evaluations on negative attributes , 2007 .
[154] A. Awasthi,et al. AHP-Based Approach for Location Planning of Pedestrian Zones: Application in Montreal, Canada , 2013 .
[155] N. Wells,et al. Neighborhood design and walking. A quasi-experimental longitudinal study. , 2008, American journal of preventive medicine.
[156] Reid Ewing,et al. Travel and the Built Environment , 2010 .