[1] Heinrich E.W., “Studies in the mica group”, Science 244 (1946) 836–848.
[2] Foster M. D., “Interpretation of the composition of trioctahedral micas”, Geol. Surv. Prof. Paper. 354-B (1960) 49.
[3] Neilson M.J., Haynes S.J., “Biotites in calc-alkaline intrusive rocks”, Mineralogical Magazine 39 (301–304) (1973) 251–253.
[4] Nachit H., Razafimahefa N., Stussi J.M., Carron J.P., “Composition chimique des biotites et typologie magmatique des granitoids”, Comtes Rendus Hebdomadaires de l’ Academie des Sciences 301 (11) (1985) 813–818.
[5] Abdel-Rahman A.M., “Nature of biotites from alkaline, calc-alkaline, and peraluminous magmas”, Journal of Petrology 35 (2) (1994) 525–541.
[6] Rieder M., Cavazzini G., Yakonov Y.D., Frank-Kanetskii V.A., Gottardi G., Guggenheim S., Koval P.V., M. uller, G., Neiva A.M.R., Radoslovich E.W., Robert J.L., Sassi F.P., Takeda H., Weiss Z., Wones D.R., “Nomenclature of the micas”, Canadian Mineralogist 36 (3) (1998) 905–912.
[7] Yavuz F., ”LIMICA: a program for estimating Li from electron-microprobe Mica analyses and classifying trioctahedral micas in terms of composition and octahedral site occupancy”, Computers & Geosciences 27 (2) (2001) 215–227.
[8] Yavuz F., O. ztas-, T., “BIOTERM-a program for evaluating and plotting microprobe analyses of biotite from barren and mineralized magmatic suites”, Computers & Geosciences 23 (8), (1997) 897–907.
[9] Malekzadeh A., Karimpour M.H., Mazaheri S.A., “Geology, alteration, mineralization and geochemistry of MA-II region, Maherabad porphyry copper-gold prospect area, South Khorasan province”, Iranian Journal of Crystallography and Mineralogy inpress (2010).
[10] Malekzadeh A., Karimpour M.H., Stern C.R., “Petrology of ore-related intrusive rocks in Maherabad porphyry Cu-Au prospect area, East of Iran”, Geological Society of America (GSA) 2009.
[11] Karimpour M.H., Stern C.R., Farmer G.L., “Geology and petrology of two distinct types of granitoids, Eastern Najmabad, Ghonabad, Iran”, Geological Society of America (GSA) 2009.
[12] Karimpour M.H., Stern C.R., Farmer G.L., “U-Pb-Th (zircon) Geochronology, Rb-Sr & Sm-Nd Isotopic Composition and Petrogenesis of Dehnow Kuhsangi Paleo-Tethys Diorite-Granodiorite, Mashhad, Iran”, Asian Journal of Earth Sciences inpress 2010.
[13] Karimpour M.H., Stern C.R., Farmer G.L., “Rb–Sr and Sm–Nd isotopic compositions, U-Pb Age and Petrogenesis of Khajehmourad Paleo-Tethys Leuco-granite, Mashhad, Iran”, Scientific Quarterly Journal Geosciences inpress 2010.
[14] Karimpour M.H., Farmer L.G., Stern C.R., “Geochronology, Radiogenic Isotope Geochemistry, and Petrogenesis of Sangbast Paleo-Tethys Monzogranite, Mashhad, Iran”, Iranian Journal of Crystallography and Mineralogy inpress.
[15] Shand S.J., “Eruptive rocks”, T. Murby, London, (1947) 488.
[16] Ishihara S., “The magnetite-series and ilmenite-series granitic rocks”, Mining Geology 27 (1977) 293–305.
[17] Ishihara S., “The granitoid series and mineralization”, Economic Geology, 75th anniversary volume, (1977) 458–484.
[18] Tindle A.G., Webb P.C., “Formula Unit Calculations - with optional calculated Li2O. 2. Li2O and H2O calculations”, European Journal of Mineralogy, vol. 2 (1990) 595-610.
[19] Deer W. A., Howie A., Sussman J., “An interdiction to rock- forming minerals”.17th. Longman Ltd, 528p (1986).
[20] Abdel Rahman A.M., “Pan-African volcanism”, petrology and geochemistry of the Dokhan Volcanic suite in the northern Nubian Shield. Geol. Mag. 133 (1996) 17–31.
[21] Abuquerque C.A., “Geochemistry of biotites from granitic rocks, northern Portugal”, Geochim. cosmochim. Acta 37 (1973) 1779 1802.
[22] Buddington A.F., Lindsley D.H., “Iron-titanium oxide minerals and synthetic equivalents”, J. Petrology 5 (1964) 310-357.
[23] Haslam H.W., “The crystallization of intermediate and acid magmas at Ben Nevis, Scotland”, J. Petrology 9 (1968) 84-104.
[24] Czamanske G.K., Wones D.R., “Oxidation during magmatic differentiation, Finnmarka Complex, Oslo Ara Norway--ll. Mafic silicates”, J. Petrology 14 (1973) 349-380.
[25] Cawthorn R.G., “Some chemical controls on igneous amphibole compositions”, Geochim. cosmochim. Acta 40 (1976) 1319-1328.
[26] Wones D.R., Eugster H.P., “Stability of biotite: experiment, theory and application”, Am. Miner. 50 (1965) 1228-1273.
[27] Helz R.T., “Phase relation of basalts in their melting range at pH~ = 5 kb as a function of oxygen fugacity—1 Mafic phases”, J. Petrology 14 (1973) 429-502.