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Abele, G., 1964: Die Fernpaßtalung und ihre morphologischen Probleme. Tübinger Geograph. Studien, 12, 1-123.

Abele, G., 1969: Vom Eis geformte Bergsturzlandschaften. Zs. f. Geomorph. N.F., 8, 119-147.

Abele, G., 1974: Bergstürze in den Alpen. Ihre Verbreitung, Morphologie und Folgeerscheinungen. Wiss. Alpenvereinshefte, 25, 230pp.

Abele, G., 1975: Fernpaß-Garmisch-Partenkirchen, 1.Teil: das Fernpassgebiet. Tirol, ein geograph. Exkursionsführer, Innsbrucker Geograph. Stud., 2, 145-57.

Abele, G., 1991: Der Fernpaßbergsturz - Eine differentielle Felsgleitung. Österr. Geograph. Ges., Zweigver. Innsbruck, Jhrber. 1989/1990, 22-32.

Abele, G.,1994: Large Rockslides: Their causes and movements on internal slide planes. Mountain Research a. Development, 14, 4, 315-320.

Abele, G., 1997a: Influence of glacier and climatic variation on rockslide activity in the Alps. In: Matthews, J.A., Brunsden, B., Frenzel, B., Gläser, B., Weiß, M.M. (Eds.), Rapid mass movement as a source of climatic evidence for the Holocene. Paläoklimaforschung, 19, Spec. Iss., ESF project "European palaeoclimate & man", 1-6.

Abele, G., 1997b: Rockslide movement supported by the mobilization of groundwater-saturated valley floor sediments. Zs. f. Geomorph. N. F. 41 ,1,, 1-20.

Aitken, M.J., 1998: Introduction to optical dating. Oxford University Press, New York, 267pp.

Ballantyne, C.K., 2002: A general model of paraglacial landscape response. The Holocene, 12, 371-376.

Borgatti, L., Soldati, M., Surian, N., 2001: Rapporti tra frane e variazioni climatiche: una bibliografia ragionata relativa al territorio europeo. Il Quaternario, 14, 2, 137– 166.

Borgatti, L., Soldati, M., 2002: The influence of Holocene climatic changes on landslide occurrence in Europe. In: Rybár, J., Stemberk, J., Wagner, P. (Eds.), Landslides. A.A. Balkema Publishers, 111 – 116.

Brideau, M.-A., Yan, M., Stead, D., 2009: The role of tectonic damage and brittle rock fracture in the development of large rock slope failures. Geomorphology, 103, 1, 30-49.

Bronk Ramsey, C., 2005: OxCal Version 3.10. – Computer software, online at: www.rlaha.ox.ac.uk/orau/oxcal.html.

Burga, C. A., Perret, R.,1998: Vegetation und Klima der Schweiz seit dem juengerem Eiszeitalter. Ott, Thun, Switzerland, 805pp.

Coussot, P., Meunier, M., 1996: Recognition, classification and mechanical description of debris flows. Earth-Science Reviews, 40, 3-4, 209-227.

Crosta, G.B, 2001: Failure and flow development of a complex slide: the 1993 Sesa landslide. Engineering Geology, 59, 1-2, 173-199.

Crosta, G.B., Agliardi, F., 2002: How to obtain alert velocity thresholds for large rockslides. Physics and Chemistry of the Earth, 27, 36, 1557-1565.

Crosta, G.B., Chen, H., Lee, C.F., 2004: Replay of the 1987 Val Pola Landslide, Italian Alps. Geomorphology, 60, 1-2, 127-146.

Crosta, G.B., Imposimato, S., Roddeman, D., 2008: Numerical modelling of entrainment/deposition in rock and debris-avalanches. Engineering Geology, in press.

Crosta, G.B., Clague, J.J., 2009: Dating, triggering, modelling, and hazard assessment of large landslides. Geomorphology, 103, 1, 1-4.

Debaene, G., 2003: Uranium-series dating of marly sediments: Application to Jaroszów Fossil lake (Sw Poland). Geochronometria, 22, 15-26.

Dravis, J. J., Yurewicz, D. A., 1985: Enhanced carbonate petrography using fluorescence microscopy. Journal of Sedimentary Research, 55, 6, 795-804.

Eberhardt, E., Willenberg, H., Loew, S., Maurer, H., 2001: Active rockslides in Switzerland - Understanding mechanisms and processes. In: Kühne, M., Einstein, H.H., Krauter, E., Klapperich, H., Pöttler, R., (Eds.), UEF International Conference on Landslides - Causes, Impacts and Countermeasures, Davos, Switzerland, Glückauf, Essen, 25-34.

Eisbacher, G.H., Clague, J.J., 1984: Destructive Mass Movements in High Mountains: Hazard and Management. Geological Survey of Canada, Paper 84 , 1– 16.

Erismann, H. T., Abele, G., 2001: Dynamics of Rockslides and Rockfalls. Springer, Berlin, Heidelberg, New York, 316pp.

Furrer, G., Burga, C., Gamper, M., Holzhauser, H., Maisch, M., 1987: Zur Gletscher-, Vegetations- und Klimageschichte der Schweiz seit der Späteiszeit. Geographica Helvetica, 42, 2, 61-91.

Geyh, M. A., 2001: Reflections on the 230Th/U dating of dirty material. Geochronometria, 20, 9-14.

Geyh, M. A., 2005: Handbuch der physikalischen und chemischen Altersbestimmung. Wiss. Buchges., Darmstadt, X, 211pp.

Gosse, J.C., Phillips, F.M., 2001: Terrestrial in situ cosmogenic nuclides: theory and applications. Quaternary Science Reviews, 40, 14, 1475-1560.

Harris, C., Vonder Muhll, D., Isaksen, K., Haeberli, W., Sollid, J. L., King, L., Holmlund, P., Dramis, F., Guglielmin, M., Palacios, D., 2003: Warming permafrost in European mountains. Global and Planetary Change, 39, 3-4, 215-225.

Heim, A., 1882: Der Bergsturz von Elm. Zeitschrift Deutschen Geologie Gesellschaft, 34, 74-115.

Heim, A., 1932: Bergsturz und Menschenleben. Fretz & Wasmuth, Zürich, 218pp.

Hewitt, K., 2006: Disturbance regime landscapes: mountain drainage systems interrupted by large rockslides. Progress in Physical Geography, 30, 3, 365–393.

Hsü, K.J., 1975: Catastrophic debris streams (sturzstroms) generated by rock falls. Geological Society of America Bulletin, 86, 129-140.

Hutchinson, J.N., 1988: General report: morphological and geotechnical parameters of landslides in relation to geology and hydrology. In: Bonnard, C., editor, Landslides: Proceedings, 5th International symposium on Landslides, 11–15 July, Lausanne, Switzerland, 3–35.

Ivy-Ochs, S., Heuberger, H., Kubik, P.W., Kerschner, H., Bonani, G., Frank, M., Schlüchter, C., 1998: The age of the Koefels event - relative, 14C and cosmogenic isotope dating of an early Holocene landslide in the Central alps (Tyrol, Austria), Zeitschrift f. Gletscherkunde u. Glazialgeologie, 34, 57-70.

Ivy-Ochs, S., Synal, H.-A., Roth, C., Schaller, M., 2004: Initial results from isotope dilution for Cl and 36Cl measurements at the PSI/ETH Zurich AMS facility. Nuclear Instruments Methods Phys. Res. B, 223–224, 623–627.

Ivy-Ochs, S., Husen, D. v., Synal, H.-A., 2005: Exposure dating large landslides in the Alps: Almtal. 10th Int. Conf. on Accelerator Mass Spectrometry (Sept., 2005), Poster session II, Berkeley, CA.

Kilburn, C.R.J., 2004: Dynamic constraints on longrunout landslides. In: Abdrakhmatov, K., Evans, S.G., Hermanns, R., Scarascia-Mugnozza, G., Strom, A.L., (Eds.) Security of natural and artificial rockslide dams: extended abstracts volume, NATO Advanced Research Workshop, (June, 2004), Bishkek, Kyrgyzstan, , NATO-OTAN, 106, 11.

Kilburn, C.R.J., Pasuto, A., 2003: Major risk from rapid, large-volume landslides in Europe (EU Project RUNOUT). Geomorphology, 54, 3 –9.

Klotz, W., 1988: Fluorescence microscopical investigations on thin sections of the Lower Muschelkalk (Triassic) of Hessen (West Germany). Zentralbl. f. Geol. u. Paläont., 7/8, 897-904.

Korup, O., Clague, J.J., Hermanns, R.H. , Hewitt, K., Strom, A.L., Weidinger, J.T., 2007: Giant landslides, topography, and erosion. Earth and Planetary Science Letters, 261, 578-589.

Kramers, J.D., Ostermann, M., Sanders, D., Prager, C., 2006: Dating a rock slide by the 230Th/234U method: the Fern Pass, Austria, as an example. 4th Swiss Geoscience Meeting, (November, 2006) Bern.

Kubik, P.W., Ivy-Ochs, S., Masarik, J., Frank, M., Schlüchter, C., 1998: 10Be and 26Al production rates deduced from an instantaneous event within the dendro-calibration curve, the landslide of Köfels, Ötz Valley, Austria. Earth and Planetary Science Letters, 161, 1-4, 231-241.

Lang, A., Moya, J., Corominas, J., Schrott, L., Dikau, R., 1999: Classic and new dating methods for assessing the temporal occurrence of mass movements. Geomorphology, 30, 1-2, 33-52.

Lang, A., Rieser, U., Habermann, J., Wagner, G.A., 1998: Luminescence Dating of Sediments. Naturwissenschaften, 85, 515-523.

Lang, A., Zolitschka, B., 2001: Optical dating of annually laminated lake sediments - A test case from Holzmaar/Germany. Quaternary Science Reviews, 20, 5-9, 737-742.

Liu, B., Phillips, F.M., Fabryka-Martin, J.T., Fowler, M.M., Stone, W.D., 1994: Cosmogenic 36Cl accumulation in unstable landforms, 1: Effects of the thermal neutron distribution. Water Res. Res., 30, 3115-3125.

Mallick, R., 2000: Entwicklung der Mikrobeprobung zur Th/U-Datierung und Anwendung an quartären Travertinen aus dem Thüringer Becken. Unpubl. Ph. D. Thesis, Univ. of Heidelberg, 162pp.

Matthews, J.A., Brunsden, D., Frenzel, B., Gläser, B., Weiß, M.M., (Eds.), 1997: Rapid Mass Movement as a Source of Climatic Evidence for the Holocene. Paläoklimaforschung-Palaeoclimate Research, 19, G. Fischer, Stuttgart, 444pp.

Müller, L., 1964: The rock slide in the Vaiont valley. Rock Mech. Eng. Geol., 2, 3/4, 148–212.

Ostermann, M., 2006: Uranium/Thorium-age-dating of „impure“ carbonate cements of selected Quaternary depositional systems of western Austria: results, implications, and problems. Unpubl. Ph. D. Thesis, Univ. of Innsbruck, 172pp.

Ostermann, M., Sanders, D., Kramers, J., 2006a: 230Th/234U ages of calcite cements of the proglacial valley fills of Gamperdona and Bürs (Riss ice age, Vorarlberg, Austria): geological implications. Austrian Journal of Earth Sciences, 99, 31-41.

Ostermann, M., Sanders, D., Kramers, J., 2006b: Calcium-carbonate metasomatized wood and moss in Th-U age-dated spring tufas (Tyrol, Eastern Alps): significance for post-glacial re-forestation. Geophysical Research Abstracts, 8, 08475.

Ostermann, M., Sanders, D., Kramers, J., 2006c: Th-U age-dating of two spectacular proglacial valley fills of the Riss Glacial: the Bürs-Gamperdona conglomerates, Austria. Geophysical Research Abstracts, 8, 08321.

Ostermann, M., Sanders, D., Kramers, J., 2006d: Uranium/thorium age-dating of „impure“ carbonate cements of selected Quaternary depositional systems of western Austria: results and implications. Innsbruck University Press, Conference Series, Pangeo 2006, 233-234.

Ostermann, M., Sanders, D., Prager, C., Kramers, J., 2007: Aragonite and calcite cementation in 'boulder-controlled' meteoric environments on the Fern Pass rockslide (Austria): implications for radiometric age-dating of catastrophic mass movements. Facies, 53, 189-208.

Patzelt, G., 1980: Neue Ergebnisse der Spät- und Postglazialforschung in Tirol. Österr. Geogr. Ges. Jahresber., 76–77, 11–18.

Patzelt, G., Poscher, G., 1993: Der Tschirgant-Bergsturz. Arbeitstagung 1993 Geol. B.-A., Geologie des Oberinntaler Raumes - Schwerpunkt Bl. 144 Landeck, Exk. D: Bemerkenswerte Geologische und Quartärgeologische Punkte im Oberinntal und aus dem äußerem Ötztal, 206-213.

Patzelt, G., 1995: North Tyrolian Alps. - In: Schirmer, W., (ed), Glacier and debrisflow activity in the Alps – exc. guide. INQUA, Symp. d. Eurosiberean Holocene Subcommission, St. Virgil, 18–31.

Patzelt, G., 1999: Arbeitsbereich Naturraumforschung - Untersuchungen zur nacheiszeitlichen Talentwicklung, Bergstürze. In: Inst. f. Hochgebirgsforschung, 1999. Jahresbericht 1998, 9-10, Unpubl. annual report, Institut f. Hochgebirgsforschung, Univ. Innsbruck.

Prescott, J.R., Robertson. G.B., 1997: Sediment dating by luminescence: a review. Radiation Measurements, 27, 5/6, 893-922.

Phillips, F.M., Stone W.D., Fabryka-Martin, J.T., 2001: An improved approach to calculating lowenergy cosmic-ray neutron fluxes near the land/atmosphere interface. Chem. Geol., 175, 689-701.

Poschinger, A. v., 2002: Large rockslides in the Alps: A commentary on the contribution of G. Abele (1937-1994) and a review of some recent developments. In: Evans, S.G., DeGraff, J.V., (Eds.), Catastrophic Landslides: Effects, Occurrence, and Mechanisms. Rev. Eng. Geol. 15, 237-255.

Poschinger, A. v., Kippel, Th., 2009: Alluvial deposits liquefied by the Flims rock slide. Geomorphology, 103, 1, 50-56.

Prager, C., Krainer, K., Seidl, V., Chwatal, W., 2006: Spatial features of Holocene sturzstrom deposits inferred from subsurface investigations (Fernpass rockslide, Tyrol, Austria). Geo.Alp, 3, 147-166.

Prager, C., Zangerl. C., Brandner, R., Patzelt, G., 2007: Increased rockslide activity in the Middle Holocene ? New Evidences from the Tyrolean Alps (Austria). In: McInnes, R., Jakeways, J., Fairbank, H., Mathie, E., (Eds), Landslides and Climate Change, Challenges and Solutions, Taylor & Francis, 25-35.

Prager, C., Ivy-Ochs, S., Ostermann, M., Synal, H.-A., Patzelt, G., 2009: Geology and radiometric 14C-, 36Cl- and Th-/U-dating of the Fernpass rockslide (Tyrol, Austria). Geomorphology, 103, 1, 93-103.

Reuther, A., Reitner, J.M., Ivy-Ochs, S., Herbst, P., 2006: From kinematics to dating - the sturzstrom deposit of Feld (Matrei / Eastern Tyrol / Austria). Geophysical Research Abstracts, 8, 04947.

Roberts, R.G., 1997: Luminescence dating in archaeology: from origins to optical. Radiation Measurements, 27, 819–892.

Sanders, D., Ostermann, M., 2006: Depositional setting of the sedimentary rocks containing the „warm-interglacial“ fossil flora of the Höttinger Brekzie (Pleistocene, Northern Calcareous Alps, Austria): a reconstruction. Veröffentlichungen des Tiroler Landesmuseums Ferdinandeum, 86, 91-118.

Sanders, D., Ostermann, M., Kramers, J., Unterwurzacher, M., 2006a: Wood, petrified by calcium-carbonate permineralization, in fossil spring tufas of the western Eastern Alps. Innsbruck University Press, Conference Series, Pangeo 2006, 293-294.

Sanders, D., Wischounig, L., Ostermann, M., 2006b: Here it hit, there it missed: Late Quaternary patterns of deposition and fluvial incision, Steinberg am Rofan (Northern Calcareous Alps). Innsbruck University Press, Conference Series, Pangeo 2006, 299-300.

Sanders, D., Prager, C., Ostermann, M., Kramers, J., Haas, U., 2007: Local cementation of carbonate-lithic rockslides: prerequisite to 234U/230Th proxy-dating the mass-wasting event (abstr.). Geo.Alp, 4, 32.

Sanders, D., Ostermann, M., Kramers, J.: Quaternary carbonate-rocky talus slope successions (Eastern Alps, Austria): sedimentary facies and facies architecture. Submitted to Facies (July 2007).

Sanders, D., Ostermann, M., Kramers, J.: Lithification of Quaternary carbonate-lithic talus slope successions (Northern Calcareous Alps, Austria): Patterns and ages of diagenesis. Submitted to Facies (July 2007).

Seijmonsbergen, A.C., Woning, M.P., Verhoef, P.N.W., de Graaff, L.W.S., 2005: The failure mechanism of a Late Glacial Sturzstrom in the Subalpine Molasse (Leckner Valley, Vorarlberg, Austria). Geomorphology, 66, 277–286.

Shaller, P. J., 1991: Analysis and implications of large Martian and terrestrial landslides. Ph.D. thesis, Caltech, 688pp.

Shaller, P. J., Smith-Shaller, A. 1996: Review of proposed mechanisms for Sturzstroms (long-runout landslides). In: Abott, P. L., Semour, D. C., (Eds.), Sturzstroms and detachment faults, Anbza-Boreego Desert State Park, California. South Coast Geol. Soc., 185–202.

Soldati, M., Corsini, A., Pasuto, A., 2004: Landslides and climate change in the Italian Dolomites since the Late glacial. Catena, 55, 2, 141-161.

Spötl, C., Vennemann, T. W., 2003: Continuous-flow IRMS analysis of carbonate minerals. Rapid Communications in Mass Spectrometry, 17, 1004-1006.

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Stone, J.O.H., Evans, J.M., Fifield, L.K., Allan, G.L., Cresswell, R.G., 1998: Cosmogenic chlorine-36 production in calcite by muons. Geochim. Cosmochim. Acta, 62, 433-454.

Wassmer, P., Schneider, J. L., Pollet, N., Schmitter-Voirin, C., 2004: Effects of the internal structure of a rock-avalanche dam on the drainage mechanism of its impoundment, Flims Sturzstrom and Ilanz paleo-lake, Swiss Alps. Geomorphology, 61, 3-17.

Weidinger, J.T., Korup, O., 2009: Frictionite as evidence for a large Late Quaternary rockslide near Kanchenjunga, Sikkim Himalayas, India — Implications for extreme events in mountain relief destruction. Geomoephology, 103, 1, 57-65.

Weidinger, J. T., 2004: Case histories of Pleistocene to Recent rock slide dams in the Himalayas (India, Nepal) and Qin Ling Mountains (China) dam. In: Abdrakhmatov, K., Evans, S. G., Hermanns, R., Scarascia-Mugnozza, G., Strom, A. L., (Eds.), Security of natural and artificial rockslide dams: extended abstracts volume, NATO Advanced Research Workshop, (June 2004), Bishkek, Kyrgyzstan, NATO-OTAN, 195-201.

Weidinger, J. T., 1998: Case history and hazard analysis of two lake-damming landslides in the Himalayas. Journal of Asian Earth Sciences, 16, 2-3, 323-331.

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