Ahmadi Moghadam, M., & Mahmoudi, P. (2012). Analysis of air pollution data of Tehran in the last decade (1379-1388). Health and Environment, 6(1); 33-44.
Alisultani, T., Shafipour Motlaq, M., Ashrafi, K., & Habibian, M. (2018). Multi-criteria evaluation of Tehran’s Sadr Bridge traffic scenarios considering air pollution. Civil Engineering (Modares Technical and Engineering), 19(6); 103-113.
Al-Sheikh, A. A., Karagozlu, A., & Sajjadian, M. (2011). Investigating air pollution resulting from traffic in Tehran using LUR model in combination with GIS and emission coefficients. Geographical Journal of Zagros Landscape, 4(11); 143-158.
Bastan Fard, M. (2017). Air pollution control by bio-based shells (a solution to control air pollution in Tehran). Bagh Nazar, 15(65); 25-40.
Bayat, R., Daroudi, R., & Hassanvand, M.S. (2020). Economic Analysis of the Cost of Deaths Due to Air Pollution in Tehran. Journal Of Urban Economics and Planning, 1(3); 188-197.
Berber, E., Sumbria, D., & Canakoglu, N. (2021). Meta-analysis and comprehensive study of coronavirus outbreaks: SARS, MERS and COVID-19. J Infect Public Health, 14(8);1051–1064.
Dashti, M., Shahbazi, M., Azar, A., & Maleki, M. (2019). The life cycle of the air pollution control project in Tehran: a key stakeholder analysis approach. Farda Management, 19(64); 23-38.
Davidson, G. (2004). Car Wars: How the car won Our Hears and Conquered our cities. Sydney: Allen & Unwin.
Dennis. K. (2007). Cars. Cities, Futures. Lancaster: The Department of Sociology, Lancaster University.
Heydari Bahadri, P., Hosseini, M. (2021). The effect of air pollution on housing prices in Tehran. Planning and Budgeting, 26(4); 3-33.
Klasner, A. E., Smith, S. R., Thompson, M. W., & Scalzo, A. J. (1998). Carbon Monoxide mass exposure in a pediatric population. Acad Emerge Med, 5(10); 992-996.
Kolehmainen, M., Martikainen, H., & Ruuskanen, J. (2001). Neural networks and periodic components used in air quality forecasting. Atmospheric Environment, 35(5); 815-825.
Moazami, S., Noori, R., Jabbarian Amiri, B., Yeganeh, B., Partani, S., & Safavi, S. (2016). Reliable prediction of carbon monoxide using developed support vector machine. Atmospheric Pollution Research, 7(3); 412-418.
Noori, R., Farahani, F., Jun, C., Aradpour, S., Bateni, S.M., Ghazban, F., Hosseinzadeh, M., Maghrebi, M., Naseh, M.R.V., & Abolfathi, S. (2022). A non-threshold model to estimate carcinogenic risk of nitrate-nitrite in drinking water. J. Clean. Product, 363(2); 132432.
Noori, R., Moazami, S., Salimian, M., & Momeni, M. (2017). Evaluation of Support Vector Machine Performance for Carbon Monoxide Prediction. MCEJ, 17(3); 195-202.
Noori, R., Hoshyaripour, G., Ashrafi, K., & Nadjar Araabi, B. (2010). Uncertainty analysis of developed ANN and ANFIS models in prediction of carbon monoxide daily concentration. Atmospheric Environment, 44(4); 476-482.
Noori, R., Hoshyaripour, G., Ashrafi, K., & Rasti, O. (2013). Introducing an Appropriate Model using Support Vector Machine for Predicting Carbon Monoxide Daily Concentration in Tehran Atmosphere. ijhe, 6(1); 1-10.
Ravindra, K., Singh, T., Mor, S. (2022). Preventable mortality attributable to exposure to air pollution at the rural district of Punjab, India. Environmental Science and Pollution Research, 29(21); 32271–32278.
Te-qi, D., & Feng-jun, J. (2009). Formation of Los Angeles, s low density and high car dependence. Journal of Chongqing University: Eng Edm, 8(1);25-31.
Yu, X., & Li, N. (2020). Understanding the beginning of a pandemic: China’s response to the emergence of COVID-19. J Infect Public Health,14(3); 347–352.