Andersen, D.J., Lindsley, D.H., and Davidson, P.M., 1993, QUILF: A PAS- CAL program to assess equilibria among Fe-Mg-Ti oxides, pyroxenes, olivine, and quartz: Computers in Geosciences, v. 19, p. 1333-1350.
Ashwal, L.D., 1993, Anorthosites: Heidelberg, Springer, 422 p.
Baginski, B., Duchesne, J.-C, Vander Auwera, J., Martin, H., and Wiszniewska, J., 2001, Petrology and geochemistry of rapakivi-type granites from the crystalline basement of the NE Poland: Geological Quarterly, v. 45, p. 33-52.
Barnichon, J.-D., Havenith, H., Hoffer, B., Charlier, R., Jongmans, D., and Duchesne, J.C., 1999, The deformation of the Egersund Ogna massif, South Norway: Finite element modelling of diapirism: Tectonophysics, v. 303, p. 109-130.
Bateman, A.M., 1951, The formation of late magmatic oxide ores: ECONOMIC
GEOLOGY, V. 46, p. 404-426.
Bogdanova, S.V., Page, L.M., Skridlaite, G., and Taran, L.N., 2001, Protero- zoic tectonothermal history in the western part of the East European cra- ton: 40Ar/39Ar geochronological constraints: Tectonophysics, v. 339, p. 39-66.
Bogdanova, S.V, Bingen, B., Gorbatschev, R., Kheraskova, T.N., Kozlov, V.I., Puchkov, V.N., and Volozh, Y.A., 2008, The East European craton (Baltica) before and during the assembly of Rodinia: Precambrian Research, v. 160, p. 23-45.
Bolle, O., Demaiffe, D., and Duchesne, J.C., 2003, Petrogenesis of jotunitic and acidic members of an AMC suite (Rogaland anorthosite province, SW Norway): A Sr and Nd isotopic assessment: Precambrian Research, v. 124, p. 185-214.
Bologne, G., and Duchesne, J.C., 1991, Analyse des roches silicatees par spectrometrie de fluorescence X: précision et exactitude: Geological Sur- vey of Belgium, Professional Paper, v. 249, p. 1-11.
Cawthorn, R.G., and Molyneux, T.G., 1986, Vanadiferous magnetite deposits of the Bushveld Complex, in Anhaeusser, C. R., and Maske, S., eds., Min- eral Deposits of Southern Africa: Geological Society of South Africa, p. 1251-1266.
Charlier, B., Duchesne, J.-C., and Vander Auwera, J., 2006, Magma chamber processes in the Tellnes ilmenite deposit (Rogaland Anorthosite Province, SW Norway) and the formation of Fe-Ti ores in massif-type anorthosites: Chemical Geology, v. 234, p. 264-290.
Charlier, B., Skår, 0., Korneliussen, A., Duchesne, J.-C, and Vander Auwera, J., 2007, Ilmenite composition in the Tellnes Fe-Ti deposit, SW Norway: Fractional crystallization, postcumulus evolution and ilmenite-zircon rela- tion: Contributions to Mineralogy and Petrology, v. 154, p. 119-134.
Charlier, B., Sakoma, E., Sauvé M., Stanaway, K., Vander Auwera, J., and Duchesne, J.-C, 2008, The Grader layered intrusion (Havre-Saint-Pierre Anorthosite, Quebec) and genesis of nelsonite and other Fe-Ti-P ores: Lithos, v. 101, p. 359-378.
Ciesla, E., and Wybraniec, S., 1998, Geophysical studies of the Suwalki anorthosite massif, in Ryka, W., and Podemski, M., eds., Geology of the Suwalki anorthosite massif (northeastern Poland): Warsaw, Poland, Prace Panstwowego Instytutu Geologicznego, p. 27-38.
Claesson, S., Bogdanova, S.V, Bibikova, E.V, and Gorbatschev, R., 2001, Iso- topic evidence for Palaeoproterozoic accretion in the basement of the East European craton: Tectonophysics, v. 339, p. 1-18.
Delano, J.W., 1980, Chemistry and liquidus phase relations of Apollo 15 red glass Implications for the deep lunar interior: Lunar and Planetary Science Conference 11th, Houston, Texas, New York, Pergamon Press, Proceed- ings, v. 1, p. 251-288.
Dorr, W., Belka, Z., Marheine, D., Schastok, J., Valverde-Vaquero, P., and Wiszniewska, J., 2002, U-Pb and Ar-Ar geochronology of anorogenic gran- ite magmatism of the Mazury complex, NE Poland: Precambrian Research, v. 119, p. 101-120.
Duchesne, J.C., 1972, Iron-titanium oxide minerals in the Bjerkrem-Sogndal Massif, South-western Norway: Journal of Petrology, v. 13, p. 57-81.
-1996, Liquid ilmenite or liquidus ilmenite: A comment on the nature of ilmenite vein deposits, in Demaiffe, D., ed., Petrology and geochemistry of magmatic suites of rocks in the continental and oceanic crusts. A volume dedicated to Professor Jean Michot: Université Libre de Bruxelles, Royal Museum for Central Africa (Tervuren), p. 73-82.
-1999, Fe-Ti deposits in Rogaland anorthosites (South Norway): Geochemical characteristics and problems of interpretation: Mineralium De- posita, v. 34, p. 182-198.
Duchesne, J.C., and Bologne, G., 2009, XRF major and trace element deter- mination in Fe-Ti oxide minerals. Geologica Belgica, v. 12, p. 205-212.
Duchesne, J.C., Liégeois, J.P., Vander Auwera, J., and Longhi, J., 1999, The crustal tongue melting model and the origin of massive anorthosites: Terra Nova, v. 11, p. 100-105.
Duchesne, J.C., Shumlyanskyy, L., and Charlier, B., 2006, The Fedorivka lay- ered intrusion (Korosten Pluton, Ukraine): An example of highly differen- tiated ferrobasaltic evolution: Lithos, v. 89, p. 353-376.
Emslie, R.F., 1980, Geology and petrology of the Harp Lake Complex, cen- tral Labrador: an example of Elsonian magmatism: Geological Survey of Canada Bulletin, v. 293, p. 1-136.
Force, E.R., 1991, Geology of titanium-mineral deposits, U.S. Geological Survey Special Paper, 259, 112 p.
Fram, M., and Longhi, J., 1992, Phase equilibria of dikes associated with Pro- terozoic anorthosite complexes: American Mineralogist, v. 77, p. 605-616.
Frost, B.R., and Lindsley, D.H., 1992, Equilibria among Fe-Ti oxides, pyrox- enes, olivine, and quartz: Part II. Application: American Mineralogist, v. 77, p. 1004-1020.
Frost, B.R., Lindsley, D.H., and Andersen, D.J., 1988, Fe-Ti oxide-silicate equilibria: Assemblages with fayalitic olivine: American Mineralogist, v. 73, p. 727-740.
Ghiorso, M.S., and Sack, R.O., 1995, Chemical mass transfer in magmatic processes IV A revised and internally consistent thermodynamic model for the interpolation and extrapolation of liquid-solid equilibria in magmatic systems at elevated temperatures and pressures: Contributions to Mineral- ogy and Petrology, v. 119, p. 197-212.
Irvine, T.N., 1982, Terminology for layered intrusions: Journal of Petrology,v. 23, p. 127-162.
Juskowiak, O., 1998, Occurrence, structure and mineral diversity of rocks from the Suwalki anorthosite massif, in Ryka, W., and Podemski, M., eds., Geology of the Suwalki anorthosite massif (northeastern Poland): Warsaw, Poland, Prace Panstwowego Instytutu Geologicznego, p. 53-80.
Kolker, A., 1982, Mineralogy and geochemistry of Fe-Ti oxide and apatite (nelsonite) deposits and evaluation of the liquid immiscibility hypothesis: ECONOMIC GEOLOGY, V. 77, p. 1146-1148.
Lafrance, B., John, B.E., and Scoates, J.S., 1996, Syn-emplacement recrystal- lization and deformation microstructures in the Poe Mountain anorthosite, Wyoming: Contributions to Mineralogy and Petrology, v. 122, p. 431-440.
Lister, G.F., 1966, The composition and origin of selected iron-titanium de- posits: ECONOMIC GEOLOGY, v. 61, p. 275-310.
Longhi, J., 2005, A mantle or mafic crustal source for Proterozoic anorthosites?: Lithos, v. 83, p. 183-198.
Longhi, J., Vander Auwera, J., Fram, M., and Monthieth, J.N., 1993, Pressure effects, kinetics and rheology of anorthositic and related magmas: Ameri- can Mineralogist, v. 78, p. 1016-1030.
Longhi, J., Vander Auwera, J., Fram, M.S., and Duchesne, J.C., 1999, Some phase equilibrium constraints on the origin of Proterozoic (massif) anorthosites and related rocks: Journal of Petrology, v. 40, p. 339-362.
Morgan, J.W., Stein, H.J., Hannah, J.L., Markey, R.J., and Wiszniewska, J., 2000, Re-Os study of Fe-Ti-V oxide and Fe-Cu-Ni sulfide deposits, Suwalki anorthosite massif, northeast Poland: Mineralium Deposita, v. 35, p. 39-401.
Namur, O., Hatert, F, Grandjean, F, Long, G. J" Krins, N., Fransolet, A. M., Vander Auwera, J., and Charlier, B., 2009, Ti substitution mechanisms in phlogopites from the Suwalki massif-type anorthosite, NE Poland: Euro- pean Journal of Mineralogy, v. 21, in press.
Pang, K.-N., Li, C, Zhou, M.-F., and Ripley, E., 2008a, Abundant Fe-Ti oxide inclusions in olivine from the Panzhihua and Hongge layered intru- sions, SW China: Evidence for early saturation of Fe-Ti oxides in fer- robasaltic magma: Contributions to Mineralogy and Petrology, v. 156, p. 307-321.
Pang, K.-N, Zhou, M.-F., Lindsley, D., Zhao, D. and Malpas, J., 2008b, Ori- gin of Fe-Ti oxide ores in mafic intrusions: Evidence from the Panzhihua intrusion, SW China: Journal of Petrology, v. 49, p. 295-313.
Parecki, A., 1998, Geological structure of the Krzemianka and Udryn de- posits, in Ryka, W, and Podemski, M., eds., Geology of the Suwalki anorthosite massif (northeastern Poland): Warsaw, Poland, Prace Panst- wowego Instytutu Geologicznego, p. 123-135.
Philpotts, A.R., 1967, Origin of certain iron-titanium oxide and apatite rocks:
ECONOMIC GEOLOGY, V. 62, p. 303-315.
Podemski, M., 1998, Discovery and exploration of the Suwalki anorthosite massif; a case study, in Ryka, W, and Podemski, M., eds., Geology of the Suwalki anorthosite massif (northeastern Poland): Warsaw, Poland, Prace Panstwowego Instytutu Geologicznego, p. 7-18.
Robinson, P., Kullerud, K., Tegner, C, Robins, B., and McEnroe, S. A., 2003, Could the Tellnes ilmenite deposit have been produced by in-situ magma mixing?: Norges Geologiske Unders0kelse Special Publication, v. 9, p. 107-108.
Ryka, W, and Podemski, M., 1998, Geology of the Suwalki anorthosite mas- sif (northeastern Poland): Warsaw, Poland, Prace Panstwowego Instytutu Geologicznego, 193 p.
Sauerzapf, U., Lattard, D., Burchard, M., and Engelmann, R., 2008, The ti- tanomagnetite-ilmenite equilibrium: New experimental data and thermo- oxybarometric application to the crystallization of basic to intermediate rocks: Journal of Petrology, v. 49, p. 1161-1185.
Schiellerup, H" Lambert, D.D., Prestvik, T, Robins, B., McBride, J.S., and Larsen, R.B., 2000, Re-Os isotopic evidence for a lower crustal origin of massif-type anorthosites: Nature, v. 405, p. 781-784.
Scoates, J.S., and Chamberlain, K.R., 1997, Orogenic to post-orogenic origin for the 1.76 Ga Horse Creek anorthosite complex, Wyoming, USA: Journal of Geology, v. 105, p. 331-343.
Skridlaite, G., Wiszniewska, J., and Duchesne, J.-C, 2003, Ferro-potassic A- type granites and related rocks in NE Poland and S Lithuania: west of the East European craton: Precambrian Research, v. 124, p. 305-326.
Skridlaite, G., Whitehouse, M., and Rimsa, A., 2007, Evidence for a pulse of 1.45 Ga anorthosite-mangerite-charnockite-granite (AMCG) plutonism in Lithuania: implications for the Mesoproterozoic evolution of the East Eu- ropean Craton: Terra Nova, v. 19, p. 294-301.
Speczik, S., Wiszniewska, J., and Diedel, R., 1988, Minerals, exsolution fea- tures and geochemistry of Fe-Ti ores of the Suwalki district (north-east Poland): Mineralium Deposita, v. 23, p. 200-210.
Spencer, K.J., and Lindsley, D.H., 1981, A solution model for coexisting iron- titanium oxides: American Mineralogist, v. 66, p. 1189-1201.
Tegner, C, Cawthom, R.G., and Kruger, F.J., 2006, Cyclicity in the Main and Upper zones of the Bushveld Complex, South Africa: Crystallization from a zoned magma sheet: Journal of Petrology, v. 47, p. 2257-2279.
Tophs, M.J., and Corgne, A., 2002, An experimental study of element parti- tioning between magnetite, clinopyroxene and iron-bearing silicate liquids with particular emphasis on vanadium: Contributions to Mineralogy and Petrology, v. 144, p. 22-37.
Vander Auwera, J., and Longhi, J., 1994, Experimental study of a jotunite (hypersthene monzodiorite): Constraints on the parent magma composi- tion and crystallization conditions (P, T, fO2) of the Bjerkreim-Sokndal lay- ered intrusion (Norway): Contributions to Mineralogy and Petrology, v. 118, p. 60-78.
Vander Auwera, J., Longhi, J., and Duchesne, J.C., 1998, A liquid line of de- scent of the jotunite (hypersthene monzodiorite) suite: Journal of Petrol- ogy, v. 39, p. 439-468.
Wiszniewska, J., Claesson, S., Stein, H.J., Vander Auwera, J., and Duchesne, J.C., 2002, The north-eastern Polish anorthosite massifs: petrological, geo- chemical and isotopic evidence for a crustal derivation: Terra Nova, v. 14, p. 1-10.
Zhou, M.-F., Robinson, P.T., Lesher, C.M., Keays, R.R., Zhang, C.-J., and Malpas, J., 2005, Geochemistry, petrogenesis and metallogenesis of the Panzhihua gabbroic layered intrusion and associated Fe-Ti-V oxide de- posits, Sichuan province, SW China: Journal of Petrology, v. 46, p. 2253-2280.