[4] Shahbazi H., Siebel W. M., Pourmoafee Ghorbani M., Sepahi A. A., Shang C. K., Vousoughi Abedini M., "Geochemistry and U–Pb zircon geochronology of the Alvand plutonic complex in Sanandaj–Sirjan Zone (Iran): New evidence for Jurassic magmatism", Journal of Asian Earth Sciences (2010) 668–683.
[5] Khalaji A., Esmaeily D., Valizadeh M., Rahimpour-Bonab H., "Petrology and geochemistry of the granitoid
complex of Boroujerd, Sanandaj-Sirjan Zone", Western Iran. Journal of Asian Earth Sciences 29 (2007) 859–877..
[7] Ramezani J., Tucker R. D., "The Saghand region, central Iran: U-Pb geochronology, petrogenesis and implications for Gondwana tectonics", American Journal of Science 303 (2003) 622–665.
]8[ نژادی ن.، "پترولوژی تودههای گابرویی جنوب بردسکن (شمال غرب بلوک لوت)"، پایاننامه کارشناسی ارشد (1394)، دانشگاه بینالمللی امام خمینی، قزوین.
[9] Hawthorne F. C., Oberti R., Harlow G. E., Maresch W. V., Martin R. F., Schumacher J., C., Welch, M. D., "Nomenclature of the amphibole super group", American Mineralogist 97 (2012) 2031-2048.
[10] Leak B. E., "On aluminous and edenitic hornblendes", Mineralogical Magazine 38 (1971) 389-407.
[11] Morimoto N., "Nomenclature of pyroxene", American mineralogist 73 (1988) 1123-1133.
[12] Deer W. A., Howie R. A., Zussman J., "An introduction to rock forming minerals", London (1992) 528.
[13] Otten M. T., "The origin of brown hornblende in the Artfjallet gabbro and dolerites", Contributions to mineralogy and petrology 86 (1984) 189-99.
[14] Hammarstrom J. M., Zen E., "Aluminum in hornblende: An empirical igneous geobarometer", American Mineralogist 71 (1986) 1297-1313.
[15] Hollister L. S., Grissom G. e., Peters E. K., Stowell H. H., Sisson V. R., "Confirmation of the empirical correlation of Al in hornblende with pressure of solidification of calc-alkaline plutons" American Mineralogist 72 (1987) 231-239.
[16] Johnson M. C., Rtherfurd M. J., "Experimental calibration of the aluminum- in- hornblende geobarometer with application to Long Valley caldera (California) volcanic rocks", Geology 17 (1989) 837-841.
[17] Schmidt M. W., "Amphibole composition in tonalite as a function of pressure: an experimental calibration of the Al- in hornblende barometer", Contributions to Mineralogy and Petrology 110 (1992) 304-310.
[18] Cox K. G., Bell J. D., Pankhurst R. J., "The Interpretation of Igneous Rocks", George Allen and Unwin (1979), London 450.
[19] Pearce J. A., "A users guide to basalt discrimination diagrams. In:Wyman, D. A. (eds) Trace Element Geochemistry of Volcanic Rocks: Applications for Massive Sulphide Exploration", Geological Association of Canada 12 (1996) 79-113.
[20] Irvine T. N., Baragar W. R. A., "A guide to the chemical classification of the common volcanic rocks", Canadian Journal of Earth Science 8 (1971) 523–548.
[21] Pearce T. H., Groman B. E., Birkett T. C., "The TiO2 - K2O - P2O5 diagram: a method of discriminating between oceanic and non-oceanic basalts", Earth and Planetary Science Letters 24 (1975) 419-426.
[22] Cabanis B., Lacolle M., "Le diagramme La/10- Y/15- Nb/8: un outil pour la discremination des series volcaniques et la mise en evidence des processus de melange et ou de contamination crustale", C. R. Acad. Sci. II, 309 (1989) 2023- 2029.
[23] Pearce J. A., Gale G. H., "Identification of ore- deposition environment from trace element geochemistry of associated igneous host rocks", Special Publications, Geological Society, London 7 (1977) 14-24.
[24] Pearce J. A., "Trace elements characteristic of lavas from destructive plate boundaries", Andesites (Thorpe R. S., ed.), Wiley, New York, (1982) 525–528.
[25] Wood D. A., "The application of a Th-Hf-Ta diagram to problems of tectonomagmatic classification and to establishing the nature of crustal contamination of basaltic lavas of the British Tertiary volcanic province", Earth and Planetary Science Letters 50 (1980) 11-30.
[26] Pearce J. A., "Role of the sub-continental lithosphere in magma genesis at active continental margins" in Hawkesworth C. J., Norry M. J., eds., Continental basalts and mantle xenoliths: Nantwich, UK, Shiva (1983) 230–249.
[27] Meschede M., "A method of discriminating between different types of mid-ocean ridge basalts and continental tholeiites with the Nb-Zr-Y diagram", Chemical Geology 56 (1986) 207–218.
[28] Vermeesch, P., "Tectonic discrimination diagrams revisited", Geochemistry, Geophysics and Geosystem 7 (2006) 1-55.
[29] Hollocher K., Robinson P., Walsh E., Roberts D., "Geochemistry of amphibolite-facies volcanics and gabbros of the Stören Nappe in extensions west and southwest of Trondheim, Western Gneiss Region, Norway: a key to correlations and paleotectonic settings", American Journal of Science 312 (2012) 357-416.
[30] Verma S. P., Guevara M., Agrawal S., "Discriminating four tectonic settings: five new geochemical diagrams for basic and ultrabasic volcanic rocks based on log-ratio transformation of major-element data", Journal of Earth System Science 115(5) (2006) 485-528.
[31] Agrawal S., Guevara M., Verma S. P., "Tectonic discrimination of basic and ultrabasic volcanic rocks through log-transformed ratios of immobile trace elements", International Geology Review 50 (2008) 1057-1079.
[32] Nisbet E. G., Pearce J. A., "Clinopyroxene composition of mafic lavas from different tectonic settings", Contributions to Mineralogy and Petrology 63 (1977) 161-173.
[33] Beccaluva L., Macciotta G., Piccardo G. B., Zeda O., "Clinopyroxene composition of ophiolite basalts as petrogenetic indicator", Chemical Geology 77 (1989) 165-182.
[34] Coltori M., Bonadiman C., Faccini B., Gregoire M. Y., O’Reilly S., Powell W., "Amphiboles from suprasubduction and intraplate lithospheric mantle", Lithos 99 (2007) 68-84.
[35] Wilson M., "Igneous Petrogenesis: A Global Tectonic Approach" (1989) Unwin Hyman, London.
[36] Coban H., "Basalt magma genesis and fractionation in collision-and extension-related provinces: A comparison between eastern, central and western Anatolia", Earth-Science Reviews 80 (2007) 219-238.
[37] Regelous M., Hofman A .W., Abouchami W., Galer S. J. G., "Geochemistry of lavas from the Emperor Seamounts and the geochemical evolution of Hawaiian magmatism from 85 to 42 Ma", Journal of Petrology 44 (2003) 113-140.
[38] Sun S. S., McDonough W. F., "Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes, In: Saunders A. D., Norry M. J. (Eds.), Magmatism in Ocean Basins", Special Publications, Geological Society, London 42 (1989) 312-345.
[39] Berberian M., King G. C. P., "Toward a paleogeography and tectonic evolution of Iran" Canadian Journal of Earth Science 18 (1981) 210- 265.
[40] Besse J., Torcq F., Gallet Y., Ricou L. E., Krystyan L., Saidi A., "Late Permian to late Triassic paleomagnetic data from Iran: constraints on migration of the Iranian block through the Tethyan ocean and initial destruction of Pangea" Geophys. J. Int. 135 (1998) 77-92.
[41] Stampfli G. M., Borel G. D., "A plate tectonic model for the Paleozoic and Mesozoic constrained by dynamic plate boundaries and restored synthetic oceanic isochrons" Earth and Planetary Science Letters 196 (2002) 17–33.
[42] Golonka A. J., "Plate tectonic evolution of the southern margin of Eurasia in the Mesozoic and Cenozoic", Tectonophysics 381 (2004) 235-273.
[43] Bagheri, S. and Stampfli, G. M., "The Anarak, Jandaq and Posht-e-Badam metamorphic complex in Central Iran: New geological data, relationships and tectonic implications" Tectonophysics 451(2008) 123-155.
[44] Shafaii Moghadam H., Whitechurch H., Rahgoshay M., Monsef I., "Significance of Nain–Baft ophiolitic belt (Iran): short-lived, transitional Cretaceous back-arc oceanic basins over the Tethyan subduction zone" Comptes Rendus Geoscience 341 (2009) 1016–1028.
[45] Rossetti, F., Nasrabady M., Vignaroli G., Theye T., Gerdes A., Razavi S. M. H., Moin Vaziri H., "Early Cretaceous migmatitic mafic granulites from the Sabzevar range (NE Iran): implications for the closure of the Mesozoic peri-Tethyan oceans in Central Iran" Terra Nova 22 (2010) 26-34.
[46] Nasrabady M., Rossetti F., Theye T., Vignaroli G., "Metamorphic history and geodynamic significance of the Early Cretaceous Sabzevar granulites (Sabzevar structural zone, NE Iran)" Solid Earth 3 (2011) 477–526.
[47] Ghasemi A., Talbot C. J., "A new tectonic scenario for the Sanandaj-Sirjan zone, Iran" Journal of Asian Earth Science 26 (2006) 683-693.
[48] Arvin M., Pan Y., Dargahi S., Malekizadeh A., Babaei A., "Petrochemistry of the Siah-Kuh granitoid stock southwest of Kerman, Iran: Implications for initiation of Neotethys subduction" Journal of Asian Earth Science 27 (2007) 1-9.
[49] Omrani J., Agard P.,Whitechurch H., Benoit M., Prouteau G., Jolivet L., "Arc-magmatism and subduction history beneath the Zagros Mountains, Iran: A new report of adakites and geodynamic consequences" Lithos 106 (2008) 380-398.
[50] Fazlnia A., Schenk V., Van der Straaten F., Mirmohammadi M., "Petrology, geochemistry and geochronology of trondhjemites from the Qori complex, Neyriz, Iran" Lithos 112 (2009), 413-433.
[51] 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.
[52] Sengör A. M. C., Altmer D., Cin A., Ustaömer T., Hsü K. J., "Origin and assembly of the Tethy side orogenic collage at the expense of Gondwana Land" Geological Society of London Special Publication 37 (1988) 119–181.
[53] McCall G. J. H., "The geotectonic history o the Makran and adjacent area of Southern Iran" Journal of Asian Earth Science 15 (1997) 517-531.