References
Abe, M. & Khanipour, M. (2019) The 8.2 ka Event and Re‐ microlithization during the Late Mlefaatian in the Zagros Mountains: Analysis of the Flaked Stone Artefacts Excavated from Hormangan in North‐eastern Fars, South‐west Iran. In: Nakamura, S., Adachi, T. & Abe, M. (Eds.) Decades in Deserts: Essays on Near Eastern Archaeology in Honour of Sumio Fujii. Tokyo: Rokuichi Syobou. pp. 305–317.
Aitchison, J. (1982) The statistical analysis of compositional data. Journal of the Royal Statistical Society: Series B (Methodological), 44, 139–160.
Alijani, B. & Harman, J.R. (1985) Synoptic climatology of precipitation in Iran. Annals of the Association of American Geographers, 75, 404–416.
Alinezhad, K., Ramezani, E., Djamali, M., Sharifi, A., Naqinezhad, A., Aubert, C. et al. (2021) Lake Neor reveals how mountain vegetation responded to 7000 years of hydroclimate variability in northwestern Iran. Journal of Quaternary Science, 36, 598–610.
Alizadeh, A, 2021, Review and Synthesis of the Neolithic Cultural Development in Fars, Southern Iran, Journal of Neolithic Archaeology 23: 1-27, doi: 0.12766/jna.2021.1.
Alley, R.B., Mayewski, P.A., Sowers, T., Stuiver, M., Taylor, K.C. & Clark, P.U. (1997) Holocene climatic instability: A prominent, widespread event 8200 yr ago. Geology, 25, 483–486.
Alonso‐Zarza, A.M. (2003) Palaeoenvironmental significance of palustrine carbonates and calcretes in the geological record. Earth‐ Science Reviews, 60, 261–298.
Alpert, P. & Neumann, J. (1989) An Ancient “Correlation” between Streamflow and Distant Rainfall in the near East. Journal of Near Eastern Studies, 48, 313–314.
An, Z., Colman, S.M., Zhou, W., Li, X., Brown, E.T., Jull, A.J.T. et al. (2012) Interplay between the Westerlies and Asian monsoon recorded in Lake Qinghai sediments since 32 ka. Scientific Reports, 2, 619.
Arsalani, M., Grießinger, J. & Bräuning, A. (2022) Tree‐ring‐based seasonal temperature reconstructions and ecological implications of recent warming on oak forest health in the Zagros Mountains, Iran. International Journal of Biometeorology, 66, 2553–2565.
Asouti, E. (2017) Human palaeoecology in Southwest Asia during the Early Pre‐Pottery Neolithic (c. 9700‐8500 cal BC): the plant story. In: Benz, M., Gebel, H.G.K. & Watkins, T. (Eds.) Neolithic Corporate Identities. Berlin: Ex Oriente. pp. 21–43.
Asouti, E., 2017, Human palaeoecology in Southwest Asia during the Early Pre-Pottery Neolithic (c. 9700–8500 cal BC): The plant story. In Benz, M., Gebel, H. G. K., and Watkins, T. (eds.), Neolithic Corporate Identities, Studies in Early Near Eastern Production, Subsistence, and Environment 20, Ex Oriente, Berlin, pp. 21–53.
Asouti, E., and Kabukcu, C. (2014). Holocene semi-arid oak woodlands in the Irano-Anatolian region of Southwest Asia: Natural or anthropogenic? Quaternary Science Reviews 90: 158–182.
Aubert, C., Brisset, E., Djamali, M., Sharifi, A., Ponel, P., Gambin, B. et al. (2017) Late glacial and early Holocene hydroclimate variability in northwest Iran (Talesh Mountains) inferred from chironomid and pollen analysis. Journal of Paleolimnology, 58, 151–167.
Aubert, C., Djamali, M., Jones, M., Lahijani, H., Marriner, N., Naderi‐ Beni, A. et al. (2019) A major hydrobiological change in Dasht‐e Arjan Wetland (southwestern Iran) during the late glacial–early Holocene transition revealed by subfossil chironomids. Canadian Journal of Earth Sciences, 56, 848–856.
Azizi Kharanaghi, Mohammad Hossein and Morteza Khanipour, 2014, “New Evidence from the Neolithic and Bakun Periods Based on the Third Season of Archaeological Excavations at Rahmatabad Tepe, Pasargadae,” in Proceedings of the International Conference of Young Archaeologists, Tehran: University Press. (in Persian)
Azizi Kharanaghi, Mohammad Hossein et al., 2014, “Survey and Study of the Neolithic Period in Fars Based on Archaeological Findings from Rahmatabad Tepe” (unpublished), Ph.D. Dissertation in Archaeology, Department of Archaeology, University of Tehran. (in Persian)
Azizi Kharanaghi, Mohammad Hossein, 2012, “Rahmatabad Tepe, Pasargadae: Relative and Absolute Chronology,” Iran Nameh, Vol. 27, pp. 78–101. (in Persian)
Bagheri‐Seyedshokri, S., Yamani, M., JafarBigloo, M., Karimi, H. & Moghimi, E. (2013) Evaluation of hydrodynamic properties of karstic aquifers using time series analysis (Case studies: Karst aquifers of Gilan Gharb and Khorrin in Kermanshah province. Quantitative Geomorphological Research, 3, 1–16.
Bar-Yosef, O., 2009, Social changes triggered by the Younger Dryas and the early Holocene climatic fluctuations in the Near East, in: Christopher T. Fisher, J. Brett Hill and Gary M. Feinman (eds.), the archaeology of environmental change, The University of Arizona Press, Tucson
Bar-Yosef, O., Meadow, R., 1995, The Origins of agriculture in the Near East, in: T. Douglas Price and Anne Birgette Gebauer (eds.), Last hunters, first farmers: new perspectives on the prehistoric transition to agriculture, Santa Fe: School of American Research Press
Bobek, H. (1951) Die naturlichen Walder und Geholzfluren Irans. Bonner Geogr. Abhand, 8, 62S.
Bond, G., Heinrich, H., Broecker, W., Labeyrie, L., McManus, J., Andrews, J. et al. (1992) Evidence for massive discharges of icebergs into the North Atlantic Ocean during the last glacial period. Nature, 360, 245–249.
Bond, G., Kromer, B., Beer, J., Muscheler, R. et al. 2001, persistent solar influence on North - Atlantic climate during the Holocene, Science 294: 2130-2136.
Bond, G., Showers, W., Cheseby, M. et al. 1997, a perspective millennial scale cycle in North Atlantic Holocene and glacial climates, Science 278: 1257-1265.
Borrell, F., Junno, A. & Barceló, J.A. (2015) Synchronous environmental and cultural change in the emergence of agricultural economies 10 000 years ago in the Levant. PLoS One, 10, e0134810.
Bottema, S. (1986) A late Quaternary pollen diagram from Lake Urmia (northwestern Iran). Review of Palaeobotany and Palynology, 47, 241–261.
Braidwood, R. J., 1960, The agricultural revolution. Scientific American 203(3): 130–152.
Bryson, Reid A. & Bryson, Robert U., “Holocene climate of Anatolia: as simulated with archaeoclimatic models”, TUBA- AR: Turkish Academy of Science, Journal of Archaeology, Vol. 2, 1999, pp. 1-14.
Burroughs, W. J., 2005, Climate Change in Prehistory, The End of the Reign of Chaos-Cambridge University Press.
COHAMP Members, “Climate changes of the last 18.000 years: observations & model simulations”, Science, New Series, Vol. 241, No. 4869, 1988, pp. 1043-1052.
Darabi, H. (2015) An introduction to the Neolithic revolution of the central Zagros. Iran: Archaeopress.
Darabi, H., Bangsgaard, P., Arranz‐Otaegui, A., Ahadi, G. & Olsen, J. (2020) Early Neolithic occupation of the lowlands of south‐western Iran: new evidence from Tapeh Mahtaj. Antiquity, 95(379), 27–44.
Dehghani, M., Djamali, M., Gandouin, E. & Akhani, H. (2017) A pollen rain‐vegetation study along a 3600 m mountain‐desert transect in the Irano‐Turanian region; implications for the reliability of some pollen ratios as moisture indicators. Review of Palaeobo-tany and Palynology, 247, 133–148.
Djamali, M., Akhani, H., Andrieu‐Ponel, V., Braconnot, P., Brewer, S., de Beaulieu, J.‐L. et al. (2010) Indian Summer Monsoon variations could have affected the early‐Holocene woodland expansion in the Near East. The Holocene, 20, 813–820.
Djamali, M., Akhani, H., Khoshravesh, R., Andrieu‐Ponel, V., Ponel, P. & Brewer, S. (2011) Application of the global bioclimatic classification to Iran: implications for understanding the modern vegetation and biogeography. Ecologia mediterranea, 37, 91–114.
Djamali, M., Baumel, A., Brewer, S., Jackson, S.T., Kadereit, J.W., López‐ Vinyallonga, S. et al. (2012a) Ecological implications of Cousinia Cass. (Asteraceae) persistence through the last two glacial–interglacial cycles in the continental Middle East for the Irano‐Turanian flora. Review of Palaeobotany and Palynology, 172, 10–20.
Djamali, M., Brewer, S., Breckle, S.W. & Jackson, S.T. (2012b) Climatic determinism in phytogeographic regionalization: a test from the Irano‐ Turanian region, SW and Central Asia. Flora‐Morphology, Distribution, Functional Ecology of Plants, 207, 237–249.
Djamali, M., de Beaulieu, J.‐L., Shah‐hosseini, M., Andrieu‐Ponel, V., Ponel, P., Amini, A. et al. (2008) A late Pleistocene long pollen record from Lake Urmia, NW Iran. Quaternary Research, 69, 413–420.
Djamali, M., Gondet, S., Ashjari, J., Aubert, C., Brisset, E., Longerey, J. et al. (2018) Karstic Spring wetlands of the Persepolis Basin, southwest Iran: unique sediment archives of Holocene environmental change and human impacts. Canadian Journal of Earth Sciences, 55, 1158–1172.
Djamali, M., Jones, M.D., Migliore, J., Balatti, S., Fader, M., Contreras, D. et al. (2016) Olive cultivation in the heart of the Persian Achaemenid Empire: new insights into agricultural practices and environmental changes reflected in a late Holocene pollen record from Lake Parishan, SW Iran. Vegetation history and archaeobotany, 25, 255–269.
Düring, Bleda S., “North- Central Anatolia during the early Holocene: Exploaring an archaeological Terra Incognita”, Paper Presented at the Conference of Archaeology in Anatolia: Current Researches at the Institute of Archaeology, UCL, London: IOA, UCL, 25th May 2007.
Flohr, P., Fleitmann, D., Matthews, R., Matthews, W. & Black, S. (2016) Evidence of resilience to past climate change in Southwest Asia: Early farming communities and the 9.2 and 8.2 ka events. Quaternary Science Reviews, 136, 23–39.
Flohr, P., Matthews, R., Matthews, W., Richardson, A. & Fleitmann, D. (2020) Radiocarbon dating of Bestansur and Shimshara. In: Matthews, R., Matthews, W. & Richardson, A. (Eds.) The Early Neolithic of the Eastern Fertile Crescent: Excavations at Bestansur and Shimshara, Iraqi Kurdistan CZAP Reports 2. Oxford: Oxbow. pp. 187–195.
Fuller, Dorian Q., “Agricultural origins and frontiers in south Asia: a working synthesis”, Journal of World Prehistory, Vol. 20, 2006, pp. 1-86.
Garazhian, Omran, “Darestan: a group of PPN sites in SE Iran”, Antiquity, Vol. 83, No. 319, Project gallery, 2009.
Grove A. T. et al., “The geography of semi-arid lands’, Philosophical Transactions of the Royal Society of London, Series B, Biological Sciences, Vol. 278, No. 962, 1977, pp. 457-475.
Gurjazkaite, K., Routh, J., Djamali, M., Vaezi, A., Poher, Y., Beni, A.N. et al. (2018) Vegetation history and human‐environment interactions through the late Holocene in Konar Sandal, SE Iran. Quaternary Science Reviews, 194, 143–155.
Hamzeh, M.A., Mahmudy Gharaie, M.H., Alizadeh Ketek Lahijani, H., Djamali, M., Moussavi Harami, R. & Naderi Beni, A. (2016) Holocene hydrological changes in SE Iran, a key region between Indian summer monsoon and Mediterranean winter precipitation zones, as revealed from a lacustrine sequence from Lake Hamoun. Quaternary International, 408, 25–39.
Harris, D., 2010, Origins of agriculture in Western Central Asia, an environmental-archaeological study, Philadelphia: University of Pennsylvania Museum of archaeology and anthropology
Heinrich, H. (1988) Origin and consequences of cyclic ice rafting in the northeast Atlantic Ocean during the past 130 000 years. Quaternary research, 29, 142–152.
Heydari-Guran, Saman and Elham Qasidian, 2020, Iranian Paleolithic 1, Archaeological Reports Series (Second Series, No. 7), Tehran: Research Institute of Cultural Heritage and Tourism. (in Persian)
Hillman, Gordon C. & Moore, Andrew M. T., “The Pleistocene to Holocene transition & human economy in southwest Asia: the impact of Younger Dryas”, American Antiquity, Vol. 57, No. 3, 1992, pp. 482-494.
Hole, Frank, “Investigating the origins of Mesopotamian civilization”, Science, New Series, Vol. 153, No. 3736, 1966, pp. 605-611.
Hoorn, Carina & Cremaschi, Mauro “Late Holocene palaeoenvironmental history of Khawr Rawri and Khawr Al Balid (Dhofar, Sultanate of Oman)”, Palaeogeography Palaeoclimatology Palaeoecology, Vol. 213, No. 1-2, 2004, pp. 1-36.
Hutchinson, George E & Cogwill, U. M., “Chemical examination of a core from Lake Zeribar, Iran”, Science, New Series, Vol. 140, No.3562, 1963, pp. 67-69.
Jafarbigloo, M., Veysi, A., Nuraeesefat, I. & Naderi, S. (2015) Study of drought impact assessment on Hashiland Wetland. Wetland Ecobiol-ogy, 7, 81–92.
Jafari, Samira, Rouhollah Shirazi, and Cyrus Barfi, “Distribution of Paleolithic and Epipaleolithic Settlements Identified in the Southern Zagros: A Case Study of the Marvdasht and Arsanjan Plains,” Iranian Paleolithic 1, Archaeological Reports Series (Second Series, No. 7), Tehran: Research Institute of Cultural Heritage and Tourism, pp. 106–121. (in Persian)
Jones, M. D., Abu-Jaber, N., Al Shdaifat, A., Baird, D., Cook, B. I., Cuthbert, M. O., et al. (2019). 20,000 years of societal vulnerability and adaptation to climate change in Southwest Asia. Water 2019: e1330.
Kelts, Kerry & Shahrabi, Mustafa, “Holocene sedimentology of hyper saline Lake Urmia, NW Iran”, Palaeogeography Palaeoclimatology Plaeoecology, Vol. 54, No. 1-4, 1986, pp. 105-130.
Khanipour, Morteza and Kamal al-Din Niknami, 2018, “Harmangan: A Neolithic Settlement in the Bovanat River Basin,” Iranian Journal of Archaeological Research, Vol. 8, No. 19, pp. 27–46. (in Persian)
Khoshakhlagh, F., Safaierad, R. & Salmani, D. (2014) The Synoptic analysis of flood occurrence on November 2011 in Behbahan and Likak cities. Physical Geography Research Quarterly, 46, 509–524.
Kuniholm, Peter I., “Archaeological evidence & non-evidence for climatic change”, Philosophical Transactions of the Royal Society of London, Series A, Mathematical & Physical Sciences, Vol. 330, No. 1615 (the Earth's Climate & Variability of the Sun over Recent Millennia: Geophysical, Astronomical and Archaeological Aspect), 1990, pp. 645-655.
Lanmann, Günter et al., “Climatically induced lake level changes at Lake Van, Turkey during the Pleistocene/ Holocene transition”, Global Biogeochemical Cycles, Vol. 10, No. 4, 1996b, pp. 797-808.
Lanmann, Günter et al., “Dating late glacial abrupt climate in the 14.570 yr long continuous varve record of Lake Van, Turkey”, Plaeogeography Palaeoclimatology Palaeoecology, Vol. 122, No. 1-4, 1996a, pp. 107-118.
Leroy, S., Kakroodi, A., Kroonenberg, S., Lahijani, H., Alimohammadian, H., Nigarov, A., 2013b, Holocene vegetation history and sea level changes in the SE corner of the Caspian Sea: relevance to SW Asia climate, Quaternary Science Reviews 70: 28-47.
Leroy, S., Tudryn, A., chalie, F., Lopez-Merion, L., Gasse, F., 2013a, from Allerod to mid-Holocene: palynological evidence from the south basin of Caspian Sea, Quaternary Science Reviews 78: 77-97.
Matthews, R. & Nashli, H.F. (2013) The Neolithisation of Iran. Oxbow Books
Matthews, R.J., Matthews, W. & Richardson, A. (2013) Radiocarbon dating of Sheikh‐e Abad and Jani. In: Matthews, R., Matthews, W. & Mohammadifar, Y. (Eds.) The Earliest Neolithic of Iran: 2008 Excavations at Sheikh‐e Abad and Jani. CZAP Reports 1. Oxford: Oxbow. pp. 61–65.
Mayewski, P.A., Rohling, E.E., Curt Stager, J., Karlén, W., Maasch, K.A., Meeker, L.D. et al. (2004) Holocene climate variability. Quaternary research, 62, 243–255.
Megard, R.O. (1967) Late‐Quaternary Cladocera of Lake Zeribar Western Iran. Ecology, 48, 179–189.
Miehe, George et al., “Mountain Forest islands & Holocene environmental changes in central Asia: a case study from the southern Gobi- Altay, Mongolia”, Palaeogeography Palaeoclimatology Palaeoecology, Vol. 250, 2007, pp. 150-66.
Molloy, B. (2022) Was There a 3.2 ka Crisis in Europe? A Critical Comparison of Climatic, Environmental, and Archaeological Evidence for Radical Change during the Bronze Age–Iron Age Transition. Journal of Archaeological Research, 1–64. https://doi. org/10.1007/s10814-022-09176-6
Moore, A. M. T., Hillman, G. C, 1992, The Pleistocene to Holocene transition and human economy in southwest Asia: the impact of the Younger Dryas, American Antiquity 75/3: 482-494.
Najafi, M.S., Khoshakhllagh, F., Zamanzadeh, S.M., Shirazi, M.H., Samadi, M. & Hajikhani, S. (2014) Characteristics of TSP loads during the Middle East springtime dust storm (MESDS) in Western Iran. Arabian Journal of Geosciences, 7, 5367–5381.
Niknami, Kamal- aldin, Methodological Aspects of Iranian Archaeology: Past and Present, BAR International Series, No. 852, Oxford, 2000.
Roberts, Neil, “Did prehistoric landscape management retard the post-glacial spread of woodland in Southwest Asia?”, Antiquity, Vol. 76, No. 294, 2002, pp. 1002-10.
Rostami, Homa, Ghasem Azizi, Saeid Bazgir, Hojjat Darabi, Mehran Maqsoudi, and Roger Matthews, 2019, “Paleoenvironmental and Paleoclimatic Reconstruction of the Central Zagros,” Iranian Quaternary Journal, Vol. 5, No. 4, pp. 423–447. (in Persian)
Safaei-Rad, R., 2013, “Palynological Evidence for Holocene Climatic Changes in the Central Zagros (Case Study: Hashilan Wetland),” M.A. Thesis in Climatology, Faculty of Geography, University of Tehran. Supervisor: Ghasem Azizi. (in Persian)
Safaei-Rad, R., G. Azizi, H. Mohammadi, and H. Alizadeh Lahijani, 2014, “Reconstruction of Holocene and Late Pleistocene Climatic Changes in the Central Zagros Using Palynological Evidence from the Hashilan Basin,” Geography and Environmental Hazards, Vol. 3, No. 11, pp. 1–19. (in Persian)
Safaierad, R., Azizi, G. & Maghsoudi, M. (2018) The role of changes in the large‐scale atmospheric systems in the evolution of the late Pleistocene and Holocene climate of the Zagros Mountains. Quaternery Journal of Iran, 4, 253–271.
Safaierad, R., Mohtadi, M., Zolitschka, B., Yokoyama, Y., Vogt, C. & Schefuß, E. (2020) Elevated dust depositions in West Asia linked to ocean–atmosphere shifts during North Atlantic cold events. Proceedings of the National Academy of Sciences, 117, 18272–18277.
Safaierad, R., Zolitschka, B., Djamali, M., Dupont, L., Vogt, C. & Matthews, R. 2023. Pollen, grain size, loss‐on‐ignition, elemental and mineralogical composition, magnetic susceptibility and radiocarbon measurements in Hashilan Wetland sediment core. PANGAEA.
Safarrad, T., H. A. Faraji Sabokbar, G. Azizi, and R. A. Mobasspour, 2013, “Spatial Analysis of Rainfall Variability in the Central Zagros Using Geostatistical Methods (1995–2004),” Geography and Development, Vol. 11, No. 31, pp. 149–164. (in Persian)
Shaikh Baikloo Islam, B. (2021) Southwest Asia during the Iron Age from the perspective of climatic events. Journal of Iran's Pre Islamic Archaeological Essays, 5, 63–76.
Sharifi, A., Murphy, L.N., Pourmand, A., Clement, A.C., Canuel, E.A., Naderi Beni, A. et al. (2018) Early‐Holocene greening of the Afro‐Asian dust belt changed sources of mineral dust in West Asia. Earth and Planetary Science Letters, 481, 30–40.
Sharifi, A., Pourmand, A., Canuel, E.A., Ferer‐Tyler, E., Peterson, L.C., Aichner, B. et al. (2015) Abrupt climate variability since the last deglaciation based on a high‐resolution, multi‐proxy peat record from NW Iran: The hand that rocked the Cradle of Civilization? Quaternary Science Reviews, 123, 215–230.
Soleimani, M., Nadimi, A., Koltai, G., Dublyansky, Y., Carolin, S. & Spötl, C. (2022) Stalagmite evidence of Last Glacial Maximum to early Holocene climate variability in southwestern Iran. Journal of Quaternary Science, 38(3), 308‐318.
Stevens, L.R., Ito, E., Schwalb, A. & Wright, H.E. (2006) Timing of atmospheric precipitation in the Zagros Mountains inferred from a multi‐proxy record from Lake Mirabad, Iran. Quaternary research, 66, 494–500.
Stevens, L.R., Wright Jr., H.E. & Ito, E. (2001) Proposed changes in seasonality of climate during the Lateglacial and Holocene at Lake Zeribar, Iran. The Holocene, 11, 747–755.
Sutton, M., Anderson, E., 2010, Introduction to Cultural Ecology, second edition, Lanham: Altamira Press
Svensson, A., Andersen, K.K., Bigler, M., Clausen, H.B., Dahl‐Jensen, D., Davies, S.M. et al. (2008) A 60000-year Greenland stratigraphic ice core chronology. Climate of the Past, 4, 47–57.
Talebi, T., Ramezani, E., Djamali, M., Lahijani, H.A.K., Naqinezhad, A., Alizadeh, K. et al. (2016) The Late‐Holocene climate change, vegetation dynamics, lake‐level changes and anthropogenic impacts in the Lake Urmia region, NW Iran. Quaternary International, 408, 40–51.
Tarasov, Pavel et al., “Vegetation & climate dynamics during the Holocene and Emian interglacial derived from Lake Baikal pollen records”, Palaeogeography Palaeoclimatology Palaeoecology, Vol. 252, No. 3-4, 2007, pp. 440-457.
Thomas, E. R. et al., 2007, the 8.2 Ka Event from Greenland Ice Cores. Quaternary Science Reviews 26/1-2:70-81.
Van Zeist, Wilhelm & Wright Jr., Herbert E., “Preliminary pollen studies at Lake Zeribar, Zagros Mountains, SW Iran”, Science, New Series, Vol. 140, No. 3562, 1963, pp. 65-67.
Van Zeist, Wilhelm, “Reflections on prehistoric environments in the Near East”, the Domestication and Exploitation of Plant & Animals, in Peter J. Ucko & G. W. Dimbley (eds.), UCL, Institute of Archaeology, Aldine & Atherton, Inc., Chicago & New York, 1969, pp. 33-40.
Wasylikowa, K. (1967) Late quaternary plant macrofossils from Lake Zeribar, western Iran. Review of Palaeobotany and Palynology, 2, 313–318.
Wasylikowa, K., Witkowski, A., Walanus, A., Hutorowicz, A., Alexandrowicz, S.W. & Langer, J.J. (2006) Palaeolimnology of Lake Zeribar, Iran, and its climatic implications. Quaternary Research, 66, 477–493.
Wilkinson, I. P. et al., “The impact of late Holocene environmental change on Lacustrine Ostracoda in Armenia”, Plaeogeography Palaeoclimatology Palaeoecology, Vol. 225, No. 1-4, 2005, pp. 187-202.
Wright Jr., Herbert E. et al, “Modern pollen rain in western Iran, and its relation to plant geography and Quaternary vegetation history”, Journal of Ecology, Vol. 55, No. 2, 1967, pp. 415-443.
Wright, Garry A., “Origins of food production in SW Asia: a survey of ideas”, Current Anthropology, Vol. 12, No. 4-5, 1971, pp. 447-477.
Wright, H. E.,1993, Environmental determinism in Near Eastern prehistory, Current Anthropology 34: 458–469.
Wright, Jr, Herbert E, “Environmental determinism in Near Eastern prehistory”, Current Anthropology, Vol. 34, No. 4, 1993, pp. 458-469.
Zeder, M, 2024a, Out of the Shadows: Reestablishing the Eastern Fertile Crescent as a Center of Agricultural Origins: Part 1, Journal of Archaeological Research doi.org/10.1007/s10814-024-09198-2
Zeder, M., 2024b, Out of the Shadows: Reestablishing the Eastern Fertile Crescent as a Center of Agricultural Origins: Part 2, Journal of Archaeological Research doi.org/10.1007/s10814-024-09198-2
Zeidi, Mohsen, 2007, “Settlement Patterns and Population Fluctuations of Prehistoric to Islamic Cultures in the Valleys of the Kor River Basin, Northwestern Fars,” Journal of Archaeology and History, Vol. 5, pp. 21–31. (in Persian)
Zohary, M. (1973) Geobotanical foundations of the Middle East. Stuttgart: Fischer.
Zolfaghari, H. & Abedzadeh, H. (2005) Synoptic analysis of dust systems in the West of Iran. J Geogr Dev (Iran), 6, 173–188.