Brown, I.D. (2002): The chemical bond in inorganic chemistry. The bond valence model. Oxford University Press, Oxford, 278 p.
Brown, I.D. & Altermatt, D. (1985): Bond-valence parameters obtained from a systematic analysis of the inorganic crystal structure database. Acta Cryst., B41, 244-247.
Chen, G. & Okrusch, M. (1992): The high pressure blueschist facies metamorphism on Samos, Greece: a study of metapelites by the Schreinemakers-method. Ber. Dtsch. Mineral. Ges., Beih. z. Eur. J. Mineral, 4, 1, 53.
Decker, D.L. (1971): High-pressure equation of state for NaCl, KCl, and CsCl. J. Appl. Phys., 42, 3239-3244.
Duffy, T.S. & Wang, Y. (1998): Pressure-volume-temperature equations of state. Rev. Mineral., 37, 425-457.
Feenstra, A. (1997): Zincohögbohmite and gahnite in a diasporebearing metabauxite from eastern Samos (Greece): mineral chemistry, element partitioning and reaction relations. Schweiz. Mineral Petrogr. Mitt., 11, 73-93.
Feenstra, A. & Maksimović, Z. (1985): Geochemistry of diaspore and corundum-bearing metabauxites from Naxos, Greece. Part II: The existence of premetamorphic trace element patterns in amphibolite facies metabauxite lenses and their use as geochemical top and bottom indicators. in "Metamorphism of Bauxites on Naxos, Greece", A. Feenstra. Geologica Ultraiectina, 39, 175-206.
Feenstra, A., Ockenga, E., Rhede, D., Wiedenbeck, M. (2003): Lirich zincostaurolite and its decompression related breakdown products in a diaspore-bearing metabauxite from East Samos (Greece): An EMP and SIMS study. Am. Mineral. 88, 789-805. (Pubitemid 36755717)
Gatehouse, B.M., Grey, I.E., Kelly, P.R. (1979): The crystal structure of davidite. Am. Mineral., 64, 1010-1017.
Grevel, K.-D., Nowlan, E.U., Fasshauer, D.W., Burchard, M. (2000): In situ X-ray investigation of lawsonite and zoisite at high pressures and temperatures. Am. Mineral., 85, 206-216. (Pubitemid 30166500)
Grey, I.E., Lloyd, D.J., White, J.S. Jr. (1976): The structure of crichtonite and its relationship to senaite. Am. Mineral., 61, 1203-1212.
Haggerty, S.E., Smyth, J.R., Erlank, A.J. Rickard, R.S., Danchin, R.V. (1983): Lindsleyite (Ba) and Mathiasite (K): two new chromium-titanates in the crichtonite series from the upper mantle. Am. Mineral., 68, 494-505.
Janots, E., Negro, F., Brunet, F., Goffé, B., Engi, M., Bouybaouène, M.L. (2006): Evolution of REE mineralogy in HP-LT metapelites of the Sebtide complex, Rif, Morocco: Monazite stability and geochronology. Lithos, 87, 214-234.
Krivovichev, S.V. & Burns, P.C. (2000): Crystal chemistry of basic lead carbonates. I. Crystal structure of synthetic shannonite, Pb 2O(CO3). Mineral. Mag., 64, 1063-1068.
Maksimović, Z. & De Weisse, G. (1979): Geochemical study in an overturned bauxite deposit in Les Codouls (S. France). Travaux ICSOBA, 15, 109-120.
Ockenga, E. (2000): Petrologie und Geochemie von Metabauxiten der Zentral- und Ost-Ägäis (Griechenland). Dissertation, Würzburg, 221 p.
Ockenga, E., Yalçin, Ü., Medenbach, O., Schreyer, W. (1998): Zincohögbomite, a new mineral from eastern Aegean metabauxites. Eur. J. Mineral., 10, 1361-1366. (Pubitemid 29096560)
Orlandi, P., Pasero, M., Duchi, G., Olmi, F. (1997): Dessauite, (Sr,Pb)(Y,U)(Ti,Fe3+)20O38, a new mineral of the crichtonite group from Buca della Vena mine, Tuscany, Italy. Am. Mineral., 82, 807-811.
Orlandi, P., Pasero, M., Rotiroti, N., Olmi, F., Demartin, F., Moelo, Y. (2004): Gramaccioliite-(Y), a new mineral of the crichtonite group from Stura Valley, Piedmont, Italy. Eur. J. Mineral., 16, 171-175. (Pubitemid 38342275)
Peun, T., Zinn, P. Lauterjung, J., Hinze, E. (1995): In-situ X-ray diffraction experiments with MAX-80 using synchrotron radiation. Bochumer geol. geotechn. Arb., 44, 139-144.
Pouchou, L. J. Pichoir, F. (1984): New model quantitative x-ray microanalysis, 1. Application to the analysis of homogeneous samples. Rech. Aerosp., 3, 13-38. (Pubitemid 15435051)
Ring, U. & Layer, P.W. (2003): High-pressure metamorphism in the Aegean, eastern Mediterranean: Underplating and exhumation from the Late Cretaceous until the Miocene to Recent above the retreating Hellenic subduction zone. Tectonics, 22, 1022-1045.
Schmitt, R.A., Smith, R.H., Olehy, D.A. (1964): Rare-earth, yttrium and scandium abundances in meteoritic and terrestrial matter II. Geochim. Cosmochim Acta, 28, 67-86.
Shannon, R.D. (1976): Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides. Acta Cryst., A32, 751-767.
Wang, L., Essene, E.J., Zhang, Y. (1999): Mineral inclusions in pyrope from Garnet Ridge, Arizona, USA: implication for processes in the upper mantle. Contrib. Mineral. Petrol., 135, 164-178. (Pubitemid 29427485)
Wang, X. Liebau, F. (1996): Studies on bond and atomic valences. I. Correlation between bond valence and bond angles in Sbm chalcogen compounds: the influence of lone-electron pairs. Acta Cryst., B52, 7-15. (Pubitemid 126417463)
Will, T., Okrusch, M., Schmädicke, E., Chen, G. (1998): Phase relations in the greenschist-blueschist-amphibolite-eclogite facies in the system Na2O-CaO-FeO-MgO-Al2O3-SiO 2-H2O (NCFMASH), with application to metamorphic rocks from Samos, Greece. Contrib. Mineral. Petrol., 132, 85-102.
Wilson, A.J.C. (1992): International Tables for X-ray Crystallography, Vol. C, Kluwer Academic Press, London, 883 p.
Wülser, P.-A., Meisser, N., Brugger, J., Schenk, K., Ansermet, S., Bonin, M., Bussy, F. (2005): Cleusonite, (Pb,Sr)(U4+,U 6+)(Fe2+,Zn)2(Ti,Fe2+,Fe 3+)18(O,OH)38, a new mineral species of the crichtonite group from the western Swiss Alps. Eur. J. Mineral., 17, 933-942.