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2023: Two-year Impact Factor: 2.4
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CiteScore (2023):7.1
 
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Health Promot Perspect. 2018;8(4): 268-274. doi: 10.15171/hpp.2018.38
PMID: 30479980        PMCID: PMC6249494

Original Article

Assessment of contrast perception of obstacles in tunnel entrance

Ahmad Mehri 1, Somayeh Farhang Dehghan 2, Milad Abbasi 3,4, Mohammad Hosein Beheshti 5, Javad Sajedifar 6, Sayed Mohammad Jafari 7, Monireh Khadem 8, Roohalah Hajizadeh 9 *

Cited by CrossRef: 12


1- Peña-García A, Cabeza-Lainez J. Daylighting of road tunnels through external ground-based light-pipes and complex reflective geometry. Tunnelling and Underground Space Technology. 2023;131:104788 [Crossref]
2- Chen Y, Tao S, Sun Z, Tao J. Distance perception characteristics of drivers in tunnel environment. 2023;1(3):9180020 [Crossref]
3- Mehri A, Aliabadi M, Golmohammadi R, Zakerian S. An empirical investigation of disability glare and visibility level during driving inside very long road tunnels: A case study. Tunnelling and Underground Space Technology. 2022;125:104496 [Crossref]
4- Mehri A, Zakerian A, Abbasi M, Mirzaei R, Mohammadian F, Sajedifar J. Assessment of Glare Caused by High Consumption Cars Headlights in Iran. johe. 2021;8(1):55 [Crossref]
5- Mehri A, Sajedifar J, Abbasi M, Tajbakhsh M. The effect of veiling luminance on the disability glare of car headlamps designed in Iran. International Journal of Occupational Safety and Ergonomics. 2022;28(2):1213 [Crossref]
6- Mehri A, Abbasi M, Zakerian S, Yeganeh R, Mousavi Kordmiri S, Mohammadian F, Sajedifar J. Evaluation of disability glare caused by headlights of most common vehicles in Iran. Arch Trauma Res. 2021;10(2):73 [Crossref]
7- Leung M, Sieh L, Yin R. An integrated model for luminous environment and quality of life of older people in care and attention homes. Building and Environment. 2023;244:110821 [Crossref]
8- Mehri A, Sajedifar J, Abbasi M, Naimabadi A, Mohammadi A, Teimori G, Zakerian S. Safety evaluation of lighting at very long tunnels on the basis of visual adaptation. Safety Science. 2019;116:196 [Crossref]
9- Peña-García A, Gómez-Lorente D. Installation of solar panels in the surroundings of tunnel portals: A double-targeted strategy to decrease lighting requirements and consumption. Tunnelling and Underground Space Technology. 2020;97:103251 [Crossref]
10- Chen S, Zhang B, Zeng X, Lin Y, Zhao H. Methods to Reduce Flicker and Light Pollution of Low-Mounting-Height Luminaires in Urban Road Lighting. Sustainability. 2023;15(10):8185 [Crossref]
11- Chen S, Lin Y, Zhao H. Effects of flicker with various brightness contrasts on visual fatigue in road lighting using fixed low-mounting-height luminaires. Tunnelling and Underground Space Technology. 2023;136:105091 [Crossref]
12- Peña-García A. Optical coupling of grouped tunnels to decrease the energy and materials consumption of their lighting installations. Tunnelling and Underground Space Technology. 2019;91:103007 [Crossref]

Indexing and Abstracting

2-year Impact Factor: 2.4

SCOPUS CiteScore: 7.1

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