[1] Berberian M., King G.C.P., "Towards a paleogeography and tectonic evolution of Iran", Canadian Journal of Earth Sciences 18 (1981) 210–265.
[2] Alavi M., "Tectonic of the Zagros orogenic belt of Iran: new data and interpretation", Tectonophysics 229 (1994) 211-238.
[3] Beiranvandpour A., Hashim M., "Identifying areas of high economic-potential copper mineralization using ASTER data in the Urumieh-Dokhtar volcanic belt, Iran", Advances in Space Research 49 (2012) 753–769.
[4] Nayebi N., Esmaili D., Ghorbani M., Vesali Y., "Petrology, geochemistry and tectonic setting of Kohe Gor Gor subvolcanic intrusions in the NW of Zarshouran gold deposit (NE Takab, West Azerbaijan) (in persian)", Petrology 7 (2016) 117-134.
[5] Waterman G.C., Hamilton R.L., "The Sar Cheshmeh porphyry copper deposit", Economic Geology 70 (1975) 568-576.
[6] Shahabpour J., "Aspects of alteration and mineralization at the Sar Cheshmeh copper molybdenum deposit, Kerman, Iran", Ph.D. thesis, University of Leeds, England (1982) 342 p.
[7] Hezarkhani A., "Petrology of the Intrusive rocks within the Sungun Porphyry Copper Deposit, Azerbaijan, Iran", Journal of Asian Earth Sciences 27 (2006) 326–340.
[8] Aftabi A., Atapour H., "Comments on “Arc magmatism and subduction history beneath the Zagros Mountains, Iran: A new report of adakites and geodynamic consequences” by J. Omrani, P. Agard, H. Whitechurch, M. Bennoit, G. Prouteau, L. Jolivet", Lithos 113 (2009) 844-846.
[9] Agard P., Omrani J., Jolivet L., Whitechurch H., Vrielynck B., Spakman W., Monie P., Meyer B., Wortel R., "Zagros orogeny: a subduction-dominated process", Geological Magazine 148 (2011) 692-725.
[10] Verdel C., Wernicke B.P., Hassanzadeh J., Guest B., "A Paleogene extensional arc flare up in Iran", Tectonics 30 (2011) 1-20.
[11] Karimpour M.H., Stern C.R., Farmer L., Saadat S., Malekezadeh Shafaroudi A., "Review of age, Rb-Sr geochemistry, and petrogenesis of Jurassic to Quaternary igneous rocks in Lut Block, Eastern Iran", Geopersia 1 (2011) 19-36.
[12] Aghazadeh M., Hou Z., Badrzadeh Z., Zhou L., "Temporal–spatial distribution and tectonic setting of porphyry copper deposits in Iran: constraints from zircon U-Pb and molybdenite Re-Os geochronology", Ore Geology Reviews 70 (2015) 385-406.
[13] Le Bas M.J., "The role of aluminium in igneous clinopyroxenes with relation to their parentage", American Journal of Science 260 (1962) 267-288.
[14] Leterrier J., Maury R.C., Thonon P., Girard D., Marchal M., "Clinopyroxene composition as a method of identification of the magmatic affinities of Paleo-volcano series", Earth and Planetary Science Letters 59 (1982) 139-154.
[15] Berger J., Femenias O., Mercier J.C.C., Demaiffe D., "Ocean-floor hydrothermal metamorphism in the Limousin ophiolites (western French Massif Central): evidence of a rare preserved variscan oceanic marker", Journal of Metamorphic Geology 23 (2005) 795-812.
[16] Dioh E., Béziat D., Grégoire M., Debat P., "Origin of rare earth element variations in clinopyroxene from plutonic and associated volcanic rocks from the Foulde basin, Northern Kedougou inlier, Senegal, West Africa", European Journal of Mineralogy 21 (2009) 1029-1043.
[17] Putirka K., Johnson M., Kinzler R., Walker D., "Thermobarometry of mafic igneous rocks based on clinopyroxene-liquid equilibria, 0-30 kbar", Contributions to Mineralogy and Petrology 123 (1996) 92-108.
[18] Nimis P., Ulmer P., "Clinopyroxene geobarometry of magmatic rocks. 1. An expanded structural geobarometer for anhydrous and hydrous, basic and ultrabasic system", Contributions to Mineralogy and Petrology 133 (1998) 122-135.
[19] Nimis P., Taylor W.R., "Single clinopyroxene thermobarometry for garnet peridotites. Part I. Calibration and testing of a Cr-in-Cpx barometer and an enstatite-in-Cpx thermometer", Contributions to Mineralogy and Petrology 139 (2000) 541-554.
[20] Putirka K., Mikaelian H., Ryerson F., Shaw H., "New clinopyroxene-liquid thermobarometers for mafic, evolved, and volatilebearing lava compositions, with applications to lavas from Tibet and the Snake River Plain, Idaho", American Mineralogist 88 (2003) 1542-1554.
[21] Putirka K.D., "Thermometers and Barometers for Volcanic Systems", Reviews in Mineralogy and Geochemistry 69 (2008) 61-120.
[22] Djokovic I., Cvetic S., Dimitrijevic M.D., "Geological map of Iran 1:100,000, sheet 6951-Dehaj", Geological Survey of Iran, Tehran (1973).
[23] Droop G.T.R., "A general equation for estimating Fe3+ concentrations in ferromagnesian silicates and oxides from microprobe analyses, using stoichiometric criteria", Mineralogical Magazine 51 (1987) 431-435.
[24] Alavi M., "Tectonic map of the Middle East, scale 1:5,000,000", Geological Survey of Iran (1991).
[25] Berberian M., "Active faulting and tectonics of Iran", In: H.K. Gupta, F.M. Delany (Editors), Zagros-Hindukosh-Himalaya.Geodynamic Evolution, Geodynamic Series 3, American Geophysical Union, Washigton DC (1981) 33-69.
[26] Whitney D.L., Evans B.W., "Abbreviations for names of rock-forming minerals", American Mineralogist 95 (2010) 185-187.
[27] Shabnian N., Davoodian Dehkordi A.R., Soheilian F., "Tectono-magmatic characteristics of Bagham pluton in southeastern Ardestan: Base on mineral chemistry of clinopyroxene and amphibole (in persian)", Iranian Journal of Crystallography and Mineralogy 21 (2013) 471-486.
[28] Sakhaii Z., Davoodian Dehkordi A.R., Shabniyan N., Paydari M., "Approach on the characteristics of basic magma rocks sarkoobeh (north Khomein) by clinopyroxene mineral chemistry (in persian)", Iranian Journal of Crystallography and Mineralogy 23 (2015) 533-544.
[29] Cundari A., Salviulo G., "Ti solubility in diopsidic pyroxene from a suite of New South Wales leucitites (Australia) ", Lithos 22 (1989) 191-198.
[30] Morimoto N., Fabrise J., Ferguson A., Ginzburg I.V., Ross M., Seifert F.A., Zussman J., Akoi K.I., Gottardi G., "Nomenclature of pyroxenes", Mineralogical Magazine 52 (1988) 535-550.
[31] Beccaluva L., Macciotta G., Piccardo G., Zeda O., "Clinopyroxene composition of ophiolite basalts as petrogenetic indicator", Chemical Geology 77 (1989) 165-182.
[32] D’Antonio M., Kristensen M.B., "data report: electron microprobe investigation of primary minerals of basalts from the west Philippine sea basin (Ocean Drilling program Leg 195, site 1201)", In: M. Shinohara, M.H. Salisbury, C. Richter (Editors), ODP Proceedings. Scientific Results 195 (2005) 1-24.
[33] Nosova A.A., Sazonova L.V., Narkisova V.V., Simakin S.G., "Minor elements in clinopyroxene from Paleozoic volcanics of the Tagil Island arc in the Central Urals", Geochemistry International 40 (2002) 219-232.
[34] Ahankoub M., Shabanian Borujeni N., Davoudian Dehkordi A.R., Makizadeh M.A., "Mineral chemistry of clino-pyroxenes in gabbroic rocks from Darreh-Bid salt dome, Chaharmahal and Bakhtiari (in persian)", Iranian Journal of Crystallography and Mineralogy 20 (2012) 153-168.
[35] Papike J.J., Cameron K.L., Baldwin K., "Amphiboles and pyroxenes: characterization of other than quadrilateral components and estimates of ferric iron from microprobe data", Geology Society of America 6 (1974) 1053-1054.
[36] Deer W.A., Howie R.A., Zussman J., "An Introduction to the Rock forming minerals". 2nd edition, Single chain silicates. Longman Group, London, UK. (1992).
[37] Nisbet E.G., Pearce J.A., "Clinopyroxene composition in mafic lavas from different tectonic settings", Contributions to Mineralogy and Petrology 63 (1977) 149-160.
[38] Golestani M., "Characteristics of tectono-magmatic alkali gabbros in northern Fathabad, Zarand (NW Kerman): based on the pyroxene mineral chemistry (in persian)", Iranian journal of crystallography and mineralogy 28 (2020) 311-328.
[39] Golestani M., "Investigation of petrology and petrogenesis of the Gaz Boland Neogene basalts, northwest of Shahr-e-Babak (in persian)", Journal of Economic Geology (2021) (in press).
[40] Grove T.L., Elkins-Tanton L.T., Parman S.W., Chatterjee N., Mȕntener O., Gaetani G.A., "Fractional crystallization and mantle-melting controls on calc-alkaline differentiation trends", Contributions to Mineralogy and Petrology 145 (2003) 515-533.
[41] Pichavant M., Macdonald R., "Crystallization of primitive basaltic magmas at crustal pressures and genesis of the calc-alkaline igneous suite: experimental evidence from St Vincent, Lesser Antilles arc", Contributions to Mineralogy and Petrology 154 (2007) 535-558.
[42] Sun C.M., Bertrand J., "Geochemistry of clinopyroxenes in plutonic and volcanic sequences from the Yanbian Proterozoic ophiolites (Sichuan Province, China): Petrogenetic and geotectonic implications", Schweizerische Mineralogische und Petrographische Mitteilungen 71 (1991) 243-259.
[43] Ao S.J., Xiao W.J., Han C.M., Mao Q.G., Zhang J.E., "Geochronology and geochemistry of early Permian mafic-ultramafic complexes in the Beishan area, Xinjiang, NW China: implications for late Paleozoic tectonic evolution of the southern Altaids", Gondwana Research 18 (2010) 466-478.
[44] Loucks R.R., "Discrimination of ophiolitic from nonophiolitic ultramafic-mafic allochthons in orogenic belts by the Al/Ti ratio in clinopyroxene", Geology 18 (1990) 346-349.
[45] Tavakoli N., Davoudian A.R., Shabanian N., Azizi H., Neubauer F., Asahara Y., Bernroider M., "Zircon U-Pb dating, mineralogy and geochemical characteristics of the gabbro and gabbro-diorite bodies, Boein–Miandasht, western Iran", International Geology Review 62 (2020) 1658-1676.
[46] Huot F., Hébert R., Varfalvy V., Beaudoin G., Wang C., Liu Z., Cotton J., Dostal J., "The Beimarang mélange (southern Tibet) brings additional constraints in assessing the origin, metamorphic evolution and obduction processes of the Yarlung Zangbo ophiolite", Journal of Asian Earth Sciences 21 (2002) 307-322.
[47] France L., Koepke J., Ildefonse B., Cichy S.B., Deschamps F., "Hydrous partial melting in the sheeted dike complex at fast spreading ridges: experimental and natural observations", Contributions to Mineralogy and Petrology 160-165 (2010) 683-704.
[48] Kilinc A., Carmichael I.S.E., Rivers M.L., Sack R.O., "The ferric-ferrous ratio of natural silicate liquids equilibrated in air", Contributions to Mineralogy and Petrology 83 (1983) 136-140.
[49] Botcharnikov R.E., Koepke J., Holtz F., McCammon C., Wilke M., "The effect of water activity on the oxidation and structural state of Fe in a ferro-basaltic melt", Geochimica et Cosmochimica Acta 69 (2005) 5071-5085.
[50] Schweitzer E.L., Papike J.J., Bence A.E., "Statisticala nalysiso f clinopyroxenefsro m deep-sebaa salts", American Mineralogist 64 (1979) 501-513.
[51] Cameron M., Papike J.J., "Structural and chemical variations in pyroxenes", American Mineralogist 66 (1981) 1-50.
[52] Mehvari R., Noghreyan M., Sharifi M., Mackizadeh M.A., Tabatabaei S.H., Torabi G., "Mineral chemistry of clinopyroxene: guidance on geo- thermobarometry and tectonomagmatic setting of Nabar volcanic rocks, South of Kashan (in persian)", Journal of Economic Geology 8 (2016-2017) 493-506.
[53] Salehinejad H., Ahmadipour H., Moeinzadeh H.A., Moradian A., "Using Mineral Chemistry for Determination of Crystallization Conditions and Tectonic Setting of Diabasic Intrusive Rocks from Deh-Zahir Area (west of Rafsanjan) (in persian)", Iranian Journal of Crystallography and Mineralogy 27 (2019) 809-820.
[54] Peyghambari S., "Tectonomagmatic characteristics of ophiolitic gabbroids from south Orzuieh (south of Baft, Kerman) ophiolite complex: insights from clinopyroxene chemistry (in persian)", Iranian journal of crystallography and mineralogy 26 (2018) 301-314.
[55] Soesoo A., "A multivariate statistical analysis of clinopyroxene composition: Empirical coordinates for the crystallisation PT-estimations", Geological Society of Sweden (Geologiska Föreningen) 119 (1997) 55-60.
[56] Helz R.T., "Phase Relations of Basalts in their Melting Range at PH2O = 5 kb as a Function of Oxygen Fugacity Part I. Mafic Phases", Journal of Ptrology 14 (1973) 249-302.
[57] Aoki K.I., Kushiro I., "Some clinopyroxenes from ultramafc inclusions in Dreiser Weiher, Eifel", Contributions to Mineralogy and Petrology 18 (1968) 326-337.
[58] Aoki K.I., Shiba I., "Pyroxenes from lherzolite inclusions of Itinom e-Gata, Japan", Lithos 6 (1973) 41-51.
[59] Sayari M., Sharifi M., "SCG: A Computer Application for Single Clinopyroxene Geothermobarometry", Italian Journal of Geosciences 133 (2014) 315-322.