1. Abedi, R., Abedi, T. 2020. Some non-linear height–diameter models performance for mixed stand in forests in Northwest Iran. Journal of Mountain Science, 17(5): 1084-1095. 2. Abedi, R., Pourbabaei, H. 2011. Ecological species groups in the rural heritage museum of Guilan Province, Iran. Caspian Journal of Environmental Science, 9(2): 115-123. 3. Beadle, C., Sands, R. 2004. Tree physiology, physiology, and silviculture. Encyclopedia of Forest Science, p: 1568-1577. 4. Cabuk, S.N., Değerliyurt, M., Metin, T.C., Çabuk, A. 2016. Evaluating geodesign with ecophysiography. 41st Iahs World Congress Sustainability and Innovation for the Future 13-16th September 2016 Albufeira, Algarve, Portugal, p. 1 -11. 5. Cirimwami, L., Doumenge, C., Marie Kahindo, J., Amani, C. 2019. The effect of elevation on species richness in tropical forests depends on the considered lifeform: results from an East African mountain forest. Tropical Ecology, 60: 473–484 6. Ferry-Graham, L.A., Gibb, A.C. 2008. Ecophisiology. Encyclopedia of ecology (second edition), 3: 346-349. 7. Griffiths, R.P., Madritch, M.D., Swanson, A.K. 2009. The effects of topography on forest soil characteristics in the Oregon Cascade Mountains (USA): Implications for the effects of climate change on soil properties. Forest Ecology and Management, 257: 1–7. 8. Liang, P., Wang, X., Sun, H., Fan, Y., Wu, Y., Lin, X., Chang, J. 2019. Forest type and height are important in shaping the altitudinal change of radial growth response to climate change. Scientific Reports, 9 (1336): 1-9. 9. Mazon, M.M., Klanderud, K., Finegan, B., Veintimilla, D., Bermeo, D., Murrieta, E., Delgado, D., Sheil, D. 2020. How forest structure varies with elevation in old growth and secondary forest in Costa Rica. Forest Ecology and Management, 469: 118191. 10. Nath, B., Ni-Meister, W. 2021. The Interplay between Canopy Structure and Topography and Its Impacts on Seasonal Variations in Surface Reflectance Patterns in the Boreal Region of Alaska-Implications for Surface Radiation Budget. Remote Sensing, 13(3108): 1-22. 11. Nie, X., Guo, W., Huang, B., Zhuo, M., Li, D., Li, Z., Yuan, Z. 2019. Effects of soil properties, topography and landform on the understory biomass of a pine forest in a subtropical hilly region. Catena, 176: 104–111. 12. Pfeifer, M., Gonsamo, A., Woodgate, W., Cayuela, L., Marshall, A.R., Ledo A., et al. 2018. Tropical forest canopies and their relationships with climate and disturbance results from a global dataset of consistent field-based measurements. Forest Ecosystems, 5 (7): 1-14. 13. Rahman, A. Khan, N., Bräuning, A., Ullah R., Rahman, I. 2022. Effects of environmental and spatial gradients on Quercus-dominated Mountain forest communities in the Hindu-Kush ranges of Pakistan. Saudi Journal of Biological Sciences, 29 (4): 2867-2877. 14. Rezaei, H., Jafarzadeh, A.A., Alijanpour, A., Shahbazi F., Valizadeh Kamra, Kh. 2020. Soil Organic Matter Condition in Forest Stands of Arasbaran. Journal of Water and Soil, 34(1): 115-127. 15. Sinha, S., Badola, H.K., Chhetri, B., Gaira, K.S., Lepcha, J., Dhyani, P.P. 2018. Effect of altitude and climate in shaping the forest compositions of Singalila National Park in Khangchendzonga Landscape, Eastern Himalaya, India. Journal of Asia-Pacific Biodiversity, 11: 267e275.
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