[1] |
Wang J, Kaza N, McDonald NC, Khanal K. 2022. Socio-economic disparities in activity-travel behavior adaptation during the COVID-19 pandemic in North Carolina. Transport Policy 125:70−78 doi: 10.1016/j.tranpol.2022.05.012 |
[2] |
Bustamante X, Federo R, Fernández-i-Marin X. 2022. Riding the wave: Predicting the use of the bike-sharing system in Barcelona before and during COVID-19. Sustainable Cities and Society 83:103929 doi: 10.1016/j.scs.2022.103929 |
[3] |
Padmakumar A, Patil GR. 2022. COVID-19 effects on urban driving, walking, and transit usage trends: Evidence from Indian metropolitan cities. Cities 126:103697 doi: 10.1016/j.cities.2022.103697 |
[4] |
McKinsey & Company. 2020. The Impact of COVID-19 on Future Mobility Solutions. www.mckinsey.com/industries/automotive-and-assembly/our-insights/the-impact-of-covid-19-on-future-mobility-solutions |
[5] |
Shakibaei S, de Jong GC, Alpkökin P, Rashidi TH. 2021. Impact of the COVID-19 pandemic on travel behavior in Istanbul: A panel data analysis. Sustainable Cities and Society 65:102619 doi: 10.1016/j.scs.2020.102619 |
[6] |
Zixuan L, Raphael S. 2021. Quantifying the traffic impacts of the COVID-19 shutdown. Journal of Transportation Engineering, Part A: Systems 147:4021014 doi: 10.1061/JTEPBS.0000527 |
[7] |
Benita F. 2021. Human mobility behavior in COVID-19: A systematic literature review and bibliometric analysis. Sustainable Cities and Society 70:102916 doi: 10.1016/j.scs.2021.102916 |
[8] |
Alonso-Almeida MDM. 2022. To Use or not use car sharing mobility in the ongoing COVID-19 pandemic? Identifying sharing mobility behaviour in times of crisis. International Journal of Environmental Research and Public Health 19:3127 doi: 10.3390/ijerph19053127 |
[9] |
Braut B, Migheli M, Truant E. 2022. Household mobility in food purchasing during COVID-19 lockdown: Evidence from Torino, Italy. Cities 122:103554 doi: 10.1016/j.cities.2021.103554 |
[10] |
Loa P, Hossain S, Liu Y, Nurul Habib K. 2022. How has the COVID-19 pandemic affected the use of ride-sourcing services? An empirical evidence-based investigation for the Greater Toronto Area. Transportation Research Part A: Policy and Practice 155:46−62 doi: 10.1016/j.tra.2021.11.013 |
[11] |
Song J, Zhang L, Qin Z, Ramli MA. 2022. Spatiotemporal evolving patterns of bike-share mobility networks and their associations with land-use conditions before and after the COVID-19 outbreak. Physica A 592:126819 doi: 10.1016/j.physa.2021.126819 |
[12] |
Paul T, Ornob ABS, Chakraborty R, Anwari N. 2021. Assessment of COVID-19 induced travel pattern changes in Dhaka City. Case Studies on Transport Policy 9:1943−55 doi: 10.1016/j.cstp.2021.11.003 |
[13] |
Awad-Núñez S, Julio R, Gomez J, Moya-Gómez B, González JS. 2021. Post-COVID-19 travel behaviour patterns: impact on the willingness to pay of users of public transport and shared mobility services in Spain. European Transport Research Review 13:20 doi: 10.1186/s12544-021-00476-4 |
[14] |
Coppola P, De Fabiis F. 2021. Impacts of interpersonal distancing on-board trains during the COVID-19 emergency. European Transport Research Review 13:13 doi: 10.1186/s12544-021-00474-6 |
[15] |
Shaik ME, Hossain QS, Rony GMFF. 2021. Impact of COVID-19 on Public Transportation and Road Safety in Bangladesh. SN Computer Science 2:453 doi: 10.1007/s42979-021-00849-5 |
[16] |
Wang W, Miao W, Liu Y, Deng Y, Cao Y. 2022. The impact of COVID-19 on the ride-sharing industry and its recovery: Causal evidence from China. Transportation Research Part A: Policy and Practice 155:128−41 doi: 10.1016/j.tra.2021.10.005 |
[17] |
Wang D, Tayarani M, He BY, Gao J, Chow JYJ, et al. 2021. Mobility in post-pandemic economic reopening under social distancing guidelines: Congestion, emissions, and contact exposure in public transit. Transportation Research Part A: Policy and Practice 153:151−70 doi: 10.1016/j.tra.2021.09.005 |
[18] |
Shearston JA, Martinez ME, Nunez Y, Hilpert M. 2021. Social-distancing fatigue: Evidence from real-time crowd-sourced traffic data. Science of The Total Environment 792:148336 doi: 10.1016/j.scitotenv.2021.148336 |
[19] |
Xu A, Chen J, Liu Z. 2021. Exploring the effects of carpooling on travelers' behavior during the COVID-19 pandemic: a case study of metropolitan city. Sustainability 13(20):11136 doi: 10.3390/su132011136 |
[20] |
Kim K. 2021. Impact of COVID-19 on usage patterns of a bike-sharing system: case study of Seoul. Journal of Transportation Engineering, Part A: Systems 147:5021006 doi: 10.1061/JTEPBS.0000591 |
[21] |
Dolins S, Wong YZ, Nelson JD. 2021. The 'Sharing Trap': a case study of societal and stakeholder readiness for on-demand and autonomous public transport in New South Wales, Australia. Sustainability 13(17):9574 doi: 10.3390/su13179574 |
[22] |
Aparicio JT, Arsenio E, Henriques R. 2021. Understanding the impacts of the COVID-19 pandemic on public transportation travel patterns in the city of Lisbon. Sustainability 13(15):8342 doi: 10.3390/su13158342 |
[23] |
Liu Q, An Z, Liu Y, Ying W, Zhao P. 2021. Smartphone-based services, perceived accessibility, and transport inequity during the COVID-19 pandemic: A cross-lagged panel study. Transportation Research Part D: Transport and Environment 97:102941 doi: 10.1016/j.trd.2021.102941 |
[24] |
Luan S, Yang Q, Jiang Z, Wang W. 2021. Exploring the impact of COVID-19 on individual's travel mode choice in China. Transport Policy 106:271−80 doi: 10.1016/j.tranpol.2021.04.011 |
[25] |
Frank LD, Hong A, Ngo VD. 2021. Build it and they will cycle: Causal evidence from the downtown Vancouver Comox Greenway. Transport Policy 105:1−11 doi: 10.1016/j.tranpol.2021.02.003 |
[26] |
Molloy J, Schatzmann T, Schoeman B, Tchervenkov C, Hintermann B, et al. 2021. Observed impacts of the Covid-19 first wave on travel behaviour in Switzerland based on a large GPS panel. Transport Policy 104:43−51 doi: 10.1016/j.tranpol.2021.01.009 |
[27] |
Shokouhyar S, Shokoohyar S, Sobhani A, Gorizi AJ. 2021. Shared mobility in post-COVID era: New challenges and opportunities. Sustainable Cities and Society 67:102714 doi: 10.1016/j.scs.2021.102714 |
[28] |
Mouratidis K, Peters S, van Wee B. 2021. Transportation technologies, sharing economy, and teleactivities: Implications for built environment and travel. Transportation Research Part D: Transport and Environment 92:102716 doi: 10.1016/j.trd.2021.102716 |
[29] |
Almannaa MH, Alsahhaf FA, Ashqar HI, Elhenawy M, Masoud M, et al. 2021. Perception analysis of E-scooter riders and non-riders in Riyadh, Saudi Arabia: Survey outputs. Sustainability 13(2):863 doi: 10.3390/su13020863 |
[30] |
Pase F, Chiariotti F, Zanella A, Zorzi M. 2020. Bike sharing and urban mobility in a post-pandemic world. IEEE Access 8:187291−306 doi: 10.1109/ACCESS.2020.3030841 |
[31] |
Monterde-i-Bort H, Sucha M, Risser R, Kochetova T. 2022. Mobility Patterns and Mode Choice Preferences during the COVID-19 Situation. Sustainability 14(2):768 doi: 10.3390/su14020768 |
[32] |
Awad-Núñez S, Julio R, Moya-Gómez B, Gomez J, Sastre González J. 2021. Acceptability of sustainable mobility policies under a post-COVID-19 scenario. Evidence from Spain. Transport Policy 106:205−14 doi: 10.1016/j.tranpol.2021.04.010 |
[33] |
Luo Q, Gee M, Piccoli B, Work D, Samaranayake S. 2022. Managing public transit during a pandemic: The trade-off between safety and mobility. Transportation Research Part C: Emerging Technologies 138:103592 doi: 10.1016/j.trc.2022.103592 |
[34] |
Wang Y, Shen Q, Abu Ashour L, Dannenberg AL. 2022. Ensuring equitable transportation for the disadvantaged: Paratransit usage by persons with disabilities during the COVID-19 pandemic. Transportation Research Part A: Policy and Practice 159:84−95 doi: 10.1016/j.tra.2022.03.013 |
[35] |
Manzira CK, Charly A, Caulfield B. 2022. Assessing the impact of mobility on the incidence of COVID-19 in Dublin City. Sustainable Cities and Society 80:103770 doi: 10.1016/j.scs.2022.103770 |
[36] |
He Q, Rowangould D, Karner A, Palm M, LaRue S. 2022. Covid-19 pandemic impacts on essential transit riders: Findings from a U.S. Survey. Transportation Research Part D: Transport and Environment 105:103217 doi: 10.1016/j.trd.2022.103217 |
[37] |
Hörcher D, Singh R, Graham DJ. 2022. Social distancing in public transport: mobilising new technologies for demand management under the Covid-19 crisis. Transportation 49:735−64 doi: 10.1007/s11116-021-10192-6 |
[38] |
Wang F, Ge X, Huang D. 2022. Government intervention, human mobility, and COVID-19: a causal pathway analysis from 121 countries. Sustainability 14(6):3694 doi: 10.3390/su14063694 |
[39] |
Baig F, Kirytopoulos K, Lee J, Tsamilis E, Mao R, Ntzeremes P. 2022. Changes in People’s Mobility Behavior in Greece after the COVID-19 Outbreak. Sustainability 14(6):3567 doi: 10.3390/su14063567 |
[40] |
Bohman H, Ryan J, Stjernborg V, Nilsson D. 2021. A study of changes in everyday mobility during the Covid-19 pandemic: As perceived by people living in Malmö, Sweden. Transport Policy 106:109−19 doi: 10.1016/j.tranpol.2021.03.013 |
[41] |
Bagdatli MEC, Ipek F. 2022. Transport mode preferences of university students in post-COVID-19 pandemic. Transport Policy 118:20−32 doi: 10.1016/j.tranpol.2022.01.017 |
[42] |
Shortall R, Mouter N, Van Wee B. 2022. COVID-19 passenger transport measures and their impacts. Transport Reviews 42:441−66 doi: 10.1080/01441647.2021.1976307 |
[43] |
Gkiotsalitis K, Cats O. 2021. Public transport planning adaption under the COVID-19 pandemic crisis: literature review of research needs and directions. Transport Reviews 41:374−92 doi: 10.1080/01441647.2020.1857886 |
[44] |
König A, Dreßler A. 2021. A mixed-methods analysis of mobility behavior changes in the COVID-19 era in a rural case study. European Transport Research Review 13:15 doi: 10.1186/s12544-021-00472-8 |
[45] |
Zhou Y, Liu XC, Grubesic T. 2021. Unravel the impact of COVID-19 on the spatio-temporal mobility patterns of microtransit. Journal of Transport Geography 97:103226 doi: 10.1016/j.jtrangeo.2021.103226 |
[46] |
Chang HH, Meyerhoefer CD, Yang FA. 2021. COVID-19 prevention, air pollution and transportation patterns in the absence of a lockdown. Journal of Environmental Management 298:113522 doi: 10.1016/j.jenvman.2021.113522 |
[47] |
Dogra S, O'Rourke N, Jenkins M, Hoornweg D. 2021. Integrated urban mobility for our health and the climate: recommended approaches from an interdisciplinary consortium. Sustainability 13(22):12717 doi: 10.3390/su132212717 |
[48] |
Rodríguez González AB, Wilby MR, Vinagre Díaz JJ, Fernández Pozo R. 2021. Characterization of COVID-19's Impact on Mobility and Short-Term Prediction of Public Transport Demand in a Mid-Size City in Spain. Sensors 21:6574 doi: 10.3390/s21196574 |
[49] |
Teixeira JF, Silva C, Moura E Sá F. 2021. The motivations for using bike sharing during the COVID-19 pandemic: Insights from Lisbon. Transportation Research Part F: Traffic Psychology and Behaviour 82:378−399 doi: 10.1016/j.trf.2021.09.016 |
[50] |
Parashar L, Cheriyan CA. 2021. Application of mobility related data during pandemic: opportunities, issues and challenges in India. Transport Policy 111:74−81 doi: 10.1016/j.tranpol.2021.07.009 |
[51] |
Lei Y, Ozbay K. 2021. A robust analysis of the impacts of the stay-at-home policy on taxi and Citi Bike usage: A case study of Manhattan. Transport Policy 110:487−98 doi: 10.1016/j.tranpol.2021.07.003 |
[52] |
Thombre A, Agarwal A. 2021. A paradigm shift in urban mobility: Policy insights from travel before and after COVID-19 to seize the opportunity. Transport Policy 110:335−53 doi: 10.1016/j.tranpol.2021.06.010 |
[53] |
Zhang J, Zhang R, Ding H, Li S, Liu R, et al. 2021. Effects of transport-related COVID-19 policy measures: A case study of six developed countries. Transport Policy 110:37−57 doi: 10.1016/j.tranpol.2021.05.013 |
[54] |
Brough R, Freedman M, Phillips DC. 2021. Understanding socioeconomic disparities in travel behavior during the COVID-19 pandemic. Journal of Regional Science 61:753−74 doi: 10.1111/jors.12527 |
[55] |
Shaer A, Rezaei M, Moghani Rahimi B, Shaer F. 2021. Examining the associations between perceived built environment and active travel, before and after the COVID-19 outbreak in Shiraz city, Iran. Cities 115:103255 doi: 10.1016/j.cities.2021.103255 |
[56] |
Chan HY, Chen A, Ma W, Sze NN, Liu X. 2021. COVID-19, community response, public policy, and travel patterns: A tale of Hong Kong. Transport Policy 106:173−84 doi: 10.1016/j.tranpol.2021.04.002 |
[57] |
Hasselwander M, Tamagusko T, Bigotte JF, Ferreira A, Mejia A, et al. 2021. Building back better: The COVID-19 pandemic and transport policy implications for a developing megacity. Sustainable Cities and Society 69:102864 doi: 10.1016/j.scs.2021.102864 |
[58] |
Sahraei MA, Kuşkapan E, Çodur MY. 2021. Public transit usage and air quality index during the COVID-19 lockdown. Journal of Environmental Management 286:112166 doi: 10.1016/j.jenvman.2021.112166 |
[59] |
Dostál R, Kocourek J, Matysková A, Moudrá K, Nižňanský V. 2021. The implementation of the smart city process—researchers' knowledge in detecting transport system defects. Sustainability 13(6):3296 doi: 10.3390/su13063296 |
[60] |
Corazza MV, Musso A. 2021. Urban transport policies in the time of pandemic, and after: An ARDUOUS research agenda. Transport Policy 103:31−44 doi: 10.1016/j.tranpol.2021.01.010 |
[61] |
Qian X, Ukkusuri SV. 2021. Connecting urban transportation systems with the spread of infectious diseases: A Trans-SEIR modeling approach. Transportation Research Part B: Method ological 145:185−211 doi: 10.1016/j.trb.2021.01.008 |
[62] |
Munawar HS, Khan SI, Qadir Z, Kouzani AZ, Mahmud MA. 2021. Insight into the Impact of COVID-19 on Australian Transportation Sector: An Economic and Community-Based Perspective. Sustainability 13(3):1276 doi: 10.3390/su13031276 |
[63] |
Naletina D. 2021. Public Transportation during the Covid-19 pandemic in the city of Zagreb. InterEULawEast 8:29−51 doi: 10.22598/iele.2021.8.2.2 |
[64] |
Sahraei MA, Kuşkapan E, Çodur MY. 2021. Impact of Covid-19 on public transportation usage and ambient air quality in Turkey. Promet – Traffic & Transportation 33:179−91 doi: 10.7307/ptt.v33i2.3704 |
[65] |
Jiao J, Azimian A. 2021. Exploring the factors affecting travel behaviors during the second phase of the COVID-19 pandemic in the United States. Transportation Letters 13:331−43 doi: 10.1080/19427867.2021.1904736 |
[66] |
Becken S, Hughey KF. 2022. Impacts of changes to business travel practices in response to the COVID-19 lockdown in New Zealand. Journal of Sustainable Tourism 30:108−27 doi: 10.1080/09669582.2021.1894160 |
[67] |
Tarasi D, Daras T, Tournaki S, Tsoutsos T. 2021. Transportation in the Mediterranean during the COVID-19 pandemic era. Global Transitions 3:55−71 doi: 10.1016/j.glt.2020.12.003 |
[68] |
Timokhina G, Ivashkova N, Skorobogatykh I, Murtuzalieva T, Musatova Z. 2020. Management of Competitiveness of Metropolis Public Transport in the COVID-19 Pandemic Based on Core Consumers' Values. Journal of Open Innovation: Technology, Market, and Complexity 6:192 doi: 10.3390/joitmc6040192 |
[69] |
Filipe Teixeira J, Silva C, Moura E Sá F. 2022. The role of bike sharing during the coronavirus pandemic: An analysis of the mobility patterns and perceptions of Lisbon's GIRA users. Transportation Research Part A: Policy and Practice 159:17−34 doi: 10.1016/j.tra.2022.03.018 |
[70] |
Ton D, Arendsen K, de Bruyn M, Severens V, van Hagen M, et al. 2022. Teleworking during COVID-19 in the Netherlands: understanding behaviour, attitudes, and future intentions of train travellers. Transportation Research Part A: Policy and Practice 159:55−73 doi: 10.1016/j.tra.2022.03.019 |
[71] |
Rafiq R, McNally MG, Sarwar Uddin Y, Ahmed T. 2022. Impact of working from home on activity-travel behavior during the COVID-19 Pandemic: An aggregate structural analysis. Transportation Research Part A: Policy and Practice 159:35−54 doi: 10.1016/j.tra.2022.03.003 |
[72] |
Costa CS, Pitombo CS, Souza FLUd. 2022. Travel Behavior before and during the COVID-19 Pandemic in Brazil: Mobility Changes and Transport Policies for a Sustainable Transportation System in the Post-Pandemic Period. Sustainability 14(8):4573 doi: 10.3390/su14084573 |
[73] |
Sunio V, Li WJ, Pontawe J, Dizon A, Bienne Valderrama J, et al. 2022. Service contracting as a policy response for public transport recovery during the Covid-19 pandemic: A preliminary evaluation. Transportation Research Interdisciplinary Perspectives 13:100559 doi: 10.1016/j.trip.2022.100559 |
[74] |
Naveen BR, Gurtoo A. 2022. Public transport strategy and epidemic prevention framework in the Context of Covid-19. Transport Policy 116:165−74 doi: 10.1016/j.tranpol.2021.12.005 |
[75] |
Kar A, Le HTK, Miller HJ. 2022. What is essential travel? Socioeconomic differences in travel demand in Columbus, Ohio, during the COVID-19 lockdown. Annals of the American Association of Geographers 112:1023−46 doi: 10.1080/24694452.2021.1956876 |
[76] |
Ding H, Loukaitou-Sideris A, Wasserman JL. 2022. Homelessness on public transit: A review of problems and responses. Transport Reviews 42:134−156 doi: 10.1080/01441647.2021.1923583 |
[77] |
Dias C, Abd Rahman N, Abdullah M, Sukor NSA. 2021. Influence of COVID-19 mobility-restricting policies on individual travel behavior in Malaysia. Sustainability 13(24):13960 doi: 10.3390/su132413960 |
[78] |
Strömblad E, Winslott Hiselius L, Smidfelt Rosqvist L, Svensson H. 2021. Adaptive travel behaviors to cope with COVID-19: A Swedish qualitative study focusing on everyday leisure trips. Sustainability 13(23):12979 doi: 10.3390/su132312979 |
[79] |
Sogbe E. 2021. The evolving impact of coronavirus. COVID-19. pandemic on public transportation in Ghana. Case Studies on Transport Policy 9:1607−14 doi: 10.1016/j.cstp.2021.08.010 |
[80] |
Gouda M, Fan J, Luc K, Ibrahim S, El-Basyouny K. 2021. Effect of redesigning public shared space amid the COVID-19 pandemic on physical distancing and traffic safety. Journal of Transportation Engineering, Part A: Systems 147:4021077 doi: 10.1061/JTEPBS.0000596 |
[81] |
Li A, Zhao P, He H, Mansourian A, Axhausen KW. 2021. How did micro-mobility change in response to COVID-19 pandemic? A case study based on spatial-temporal-semantic analytics. Computers, Environment and Urban Systems 90:101703 doi: 10.1016/j.compenvurbsys.2021.101703 |
[82] |
Park K, Chamberlain B, Song Z, Nasr Esfahani H, Sheen J, et al. 2022. A double jeopardy: COVID-19 impacts on the travel behavior and community living of people with disabilities. Transportation Research Part A: Policy and Practice 156:24−35 doi: 10.1016/j.tra.2021.12.008 |
[83] |
Shaer A, Haghshenas H. 2021. Evaluating the effects of the COVID-19 outbreak on the older adults' travel mode choices. Transport Policy 112:162−172 doi: 10.1016/j.tranpol.2021.08.016 |
[84] |
Liu Y, Tong LC, Zhu X, Du W. 2021. Dynamic activity chain pattern estimation under mobility demand changes during COVID-19. Transportation Research Part C: Emerging Technologies 131:103361 doi: 10.1016/j.trc.2021.103361 |
[85] |
Lee J, Baig F, Pervez A. 2021. Impacts of COVID-19 on individuals' mobility behavior in Pakistan based on self-reported responses. Journal of Transport & Health 22:101228 doi: 10.1016/j.jth.2021.101228 |
[86] |
Parker MEG, Li M, Bouzaghrane MA, Obeid H, Hayes D, et al. 2021. Public transit use in the United States in the era of COVID-19: Transit riders' travel behavior in the COVID-19 impact and recovery period. Transport Policy 111:53−62 doi: 10.1016/j.tranpol.2021.07.005 |
[87] |
Echaniz E, Rodríguez A, Cordera R, Benavente J, Alonso B, et al. 2021. Behavioural changes in transport and future repercussions of the COVID-19 outbreak in Spain. Transport Policy 111:38−52 doi: 10.1016/j.tranpol.2021.07.011 |
[88] |
Betarelli Junior AA, Faria WR, Proque AL, Perobelli FS, de Almeida Vale V. 2021. COVID-19, public agglomerations and economic effects: Assessing the recovery time of passenger transport services in Brazil. Transport Policy 110:254−72 doi: 10.1016/j.tranpol.2021.06.004 |
[89] |
Advani M, Sharma N, Dhyani R. 2021. Mobility change in Delhi due to COVID and its' immediate and long term impact on demand with intervened non motorized transport friendly infrastructural policies. Transport Policy 111:28−37 doi: 10.1016/j.tranpol.2021.07.008 |
[90] |
Porter G, Murphy E, Adamu F, Dayil PB, De Lannoy A, et al. 2021. Women's mobility and transport in the peripheries of three African cities: Reflecting on early impacts of COVID-19. Transport Policy 110:181−90 doi: 10.1016/j.tranpol.2021.05.025 |
[91] |
Loa P, Hossain S, Mashrur SM, Liu Y, Wang K, et al. 2021. Exploring the impacts of the COVID-19 pandemic on modality profiles for non-mandatory trips in the Greater Toronto Area. Transport Policy 110:71−85 doi: 10.1016/j.tranpol.2021.05.028 |
[92] |
Li T, Wang J, Huang J, Yang W, Chen Z. 2021. Exploring the dynamic impacts of COVID-19 on intercity travel in China. Journal of Transport Geography 95:103153 doi: 10.1016/j.jtrangeo.2021.103153 |
[93] |
Pawar DS, Yadav AK, Choudhary P, Velaga NR. 2021. Modelling work- and non-work-based trip patterns during transition to lockdown period of COVID-19 pandemic in India. Travel Behaviour and Society 24:46−56 doi: 10.1016/j.tbs.2021.02.002 |
[94] |
Ozbilen B, Wang K, Akar G. 2021. Revisiting the impacts of virtual mobility on travel behavior: An exploration of daily travel time expenditures. Transportation Research Part A: Policy and Practice 145:49−62 doi: 10.1016/j.tra.2021.01.002 |
[95] |
Brezina T, Tiran J, Ogrin M, Laa B. 2021. COVID-19 impact on daily mobility in Slovenia. Acta Geographica Slovenica 61:91−107 doi: 10.3986/AGS.9390 |
[96] |
Borkowski P, Jażdżewska-Gutta M, Szmelter-Jarosz A. 2021. Lockdowned: Everyday mobility changes in response to COVID-19. Journal of Transport Geography 90:102906 doi: 10.1016/j.jtrangeo.2020.102906 |
[97] |
de Palma A, Vosough S, Liao F. 2022. An overview of effects of COVID-19 on mobility and lifestyle: 18 months since the outbreak. Transportation Research Part A: Policy and Practice 159:372−97 doi: 10.1016/j.tra.2022.03.024 |
[98] |
Ciuffini F, Tengattini S, Bigazzi AY. 2023. Mitigating increased driving after the COVID-19 pandemic: an analysis on mode share, travel demand, and public transport capacity. Transportation Research Record 2677:154−67 doi: 10.1177/03611981211037884 |
[99] |
Rankavat S, Gurram AR, Pawar DS, Kushwaha V. 2023. Study of COVID-19 impact on users' perception for transport modes choice in India. IATSS Research 47:73−83 doi: 10.1016/j.iatssr.2023.01.005 |
[100] |
Fallah Zavareh M, Mehdizadeh M, Nordfjærn T. 2022. Demand for mitigating the risk of COVID-19 infection in public transport: The role of social trust and fatalistic beliefs. Transportation Research Part F: Traffic Psychology and Behaviour 84:348−62 doi: 10.1016/j.trf.2021.12.010 |
[101] |
Sim J. 2023. Impacts of COVID-19 on bike-share usage: The case of Daejeon, Korea. Transportation Research Interdisciplinary Perspectives 21:100856 doi: 10.1016/j.trip.2023.100856 |