Heid T, Ka ¨a ¨b A (2012) Repeat optical satellite images reveal widespread and long term decrease in
land-terminating glacier speeds. Cryosphere 6(2):467–478
H€ ock V, Pestal G (1994) Geological map of Austria 1:50.000, GK sheet 153 “Grossglockner”.
Geological Survey of Austria, Vienna
Huss M (2013) Density assumptions for converting geodetic glacier volume change to mass
change. Cryosphere 7(3):877–887
Inoue J (1977) Mass budget of the Khumbu Glacier. Seppyo 39:15–19
Ka ¨a ¨b A (2005) Remote sensing of mountain glaciers and permafrost creep, vol 48, Schriftenreihe
Physische Geographie. Geographisches Institut der Universita ¨t Zu ¨rich, Switzerland
Karimi N, Farokhnia A, Karimi L, Eftekhari M, Ghalkhani H (2012) Combining optical and
thermal remote sensing data for mapping debris-covered glaciers (Alamkouh Glaciers, Iran).
Cold Reg Sci Technol 71:73–83
Kaufmann V (2013) http://www.geoimaging.tugraz.at/viktor.kaufmann/Pasterze_2003-20062009_2m.gif. Accessed 14 Dec 2013
Kaufmann V, Ladsta ¨dter R (2003) Quantitative analysis of rock glacier creep by means of digital
photogrammetry using multi-temporal aerial photographs: two case studies in the Austrian
Alps. In: Permafrost. Proceedings of the 8th international conference on permafrost, Zurich,
vol 1. A.A. Balkema Publishers, pp 525–530
Kaufmann V, Pl€ osch R (2000) Mapping and visualization of the retreat of two cirque glaciers in
the Austrian Hohe Tauern National Park. In: International archives of photogrammetry and
remote sensing, vol XXXIII, Part B4, Amsterdam, pp 446–453
Kaufmann V, Kellerer-Pirklbauer A, Kenyi LW (2008) Gletscherbewegungsmessung mittels
Satellitengestu ¨tzter Radar-Interferometrie: Die Pasterze (Glocknergruppe, Hohe Tauern,
Ka ¨rnten). Z Gletscherk Glazialgeol 42(1):85–104
Kellerer-Pirklbauer A (2008) The supraglacial debris system at the Pasterze Glacier, Austria:
spatial distribution, characteristics and transport of debris. Z Gemorphol, Supplementar Issue
52(1):3–25
Kellerer-Pirklbauer A (2009) The use of GPS and DGPS for glacier monitoring at the tongue of
Pasterze Glacier between 2003 and 2008. In: Proceedings of the 4th symposium of the Hohe
Tauern National Park for research in protected areas, Kaprun, Austria, Sept 2009, pp 163–167
Kellerer-Pirklbauer A, Lieb GK, Avian M, Gspurning J (2008) The response of partially debriscovered valley glaciers to climate change: the example of the Pasterze Glacier (Austria) in the
period 1964 to 2006. Geogr Ann Ser A Phys Geogr 90(A/4):269–285
Kellerer-Pirklbauer A, Lieb GK, Avian M, Carrivick J (2012) Climate change and rock fall events
in high mountain areas: numerous and extensive rock falls in 2007 at Mittlerer Burgstall,
central Austria. Geogr Ann Ser A Phys Geogr 94(1):59–78
Lambrecht A, Kuhn M (2007) Glacier changes in the Austrian Alps during the last three decades,
derived from the new Austrian glacier inventory. Ann Glaciol 46(1):177–184
Lieb GK (2007) Southeastern and Central Austria Field Guide of the HMRSC-IX (2006) postsymposium excursion. In: Proceedings of the 9th international symposium on high mountain
remote sensing cartography, Graz, 2006. Grazer Schriften der Geographie und Raumforschung
43:257–292
Mattson LE, Gardner JS, Young GJ (1993) Ablation on debris covered glaciers: an example from
the Rakhiot Glacier, Panjab, Himalaya. IAHS Publ 218:289–269
Oerlemans J (2001) Glaciers and climate change. Swets & Zeitlinger BV, Lisse
Østrem G (1959) Ice melting under a thin layer of moraine and the existence of ice cores in
moraine ridges. Geogr Ann 41A:228–230
Paschinger H (1969) Die Pasterze in den Jahren 1924 bis 1968. Wiss Alpenvereinshefte
21:267–290
Patzelt G (1985) Glacier advances in the Alps 1965 to 1980. Z Gletscherk Glazialgeol
21(1–2):403–407
Paul F, Huggel C, Ka ¨a ¨b A (2004) Combining satellite multispectral image data and a digital
elevation model for mapping debris-covered glaciers. Remote Sens Environ 89:510–518
9 Glaciological Studies at Pasterze Glacier (Austria) Based on Aerial Photographs
197
land-terminating glacier speeds. Cryosphere 6(2):467–478
H€ ock V, Pestal G (1994) Geological map of Austria 1:50.000, GK sheet 153 “Grossglockner”.
Geological Survey of Austria, Vienna
Huss M (2013) Density assumptions for converting geodetic glacier volume change to mass
change. Cryosphere 7(3):877–887
Inoue J (1977) Mass budget of the Khumbu Glacier. Seppyo 39:15–19
Ka ¨a ¨b A (2005) Remote sensing of mountain glaciers and permafrost creep, vol 48, Schriftenreihe
Physische Geographie. Geographisches Institut der Universita ¨t Zu ¨rich, Switzerland
Karimi N, Farokhnia A, Karimi L, Eftekhari M, Ghalkhani H (2012) Combining optical and
thermal remote sensing data for mapping debris-covered glaciers (Alamkouh Glaciers, Iran).
Cold Reg Sci Technol 71:73–83
Kaufmann V (2013) http://www.geoimaging.tugraz.at/viktor.kaufmann/Pasterze_2003-20062009_2m.gif. Accessed 14 Dec 2013
Kaufmann V, Ladsta ¨dter R (2003) Quantitative analysis of rock glacier creep by means of digital
photogrammetry using multi-temporal aerial photographs: two case studies in the Austrian
Alps. In: Permafrost. Proceedings of the 8th international conference on permafrost, Zurich,
vol 1. A.A. Balkema Publishers, pp 525–530
Kaufmann V, Pl€ osch R (2000) Mapping and visualization of the retreat of two cirque glaciers in
the Austrian Hohe Tauern National Park. In: International archives of photogrammetry and
remote sensing, vol XXXIII, Part B4, Amsterdam, pp 446–453
Kaufmann V, Kellerer-Pirklbauer A, Kenyi LW (2008) Gletscherbewegungsmessung mittels
Satellitengestu ¨tzter Radar-Interferometrie: Die Pasterze (Glocknergruppe, Hohe Tauern,
Ka ¨rnten). Z Gletscherk Glazialgeol 42(1):85–104
Kellerer-Pirklbauer A (2008) The supraglacial debris system at the Pasterze Glacier, Austria:
spatial distribution, characteristics and transport of debris. Z Gemorphol, Supplementar Issue
52(1):3–25
Kellerer-Pirklbauer A (2009) The use of GPS and DGPS for glacier monitoring at the tongue of
Pasterze Glacier between 2003 and 2008. In: Proceedings of the 4th symposium of the Hohe
Tauern National Park for research in protected areas, Kaprun, Austria, Sept 2009, pp 163–167
Kellerer-Pirklbauer A, Lieb GK, Avian M, Gspurning J (2008) The response of partially debriscovered valley glaciers to climate change: the example of the Pasterze Glacier (Austria) in the
period 1964 to 2006. Geogr Ann Ser A Phys Geogr 90(A/4):269–285
Kellerer-Pirklbauer A, Lieb GK, Avian M, Carrivick J (2012) Climate change and rock fall events
in high mountain areas: numerous and extensive rock falls in 2007 at Mittlerer Burgstall,
central Austria. Geogr Ann Ser A Phys Geogr 94(1):59–78
Lambrecht A, Kuhn M (2007) Glacier changes in the Austrian Alps during the last three decades,
derived from the new Austrian glacier inventory. Ann Glaciol 46(1):177–184
Lieb GK (2007) Southeastern and Central Austria Field Guide of the HMRSC-IX (2006) postsymposium excursion. In: Proceedings of the 9th international symposium on high mountain
remote sensing cartography, Graz, 2006. Grazer Schriften der Geographie und Raumforschung
43:257–292
Mattson LE, Gardner JS, Young GJ (1993) Ablation on debris covered glaciers: an example from
the Rakhiot Glacier, Panjab, Himalaya. IAHS Publ 218:289–269
Oerlemans J (2001) Glaciers and climate change. Swets & Zeitlinger BV, Lisse
Østrem G (1959) Ice melting under a thin layer of moraine and the existence of ice cores in
moraine ridges. Geogr Ann 41A:228–230
Paschinger H (1969) Die Pasterze in den Jahren 1924 bis 1968. Wiss Alpenvereinshefte
21:267–290
Patzelt G (1985) Glacier advances in the Alps 1965 to 1980. Z Gletscherk Glazialgeol
21(1–2):403–407
Paul F, Huggel C, Ka ¨a ¨b A (2004) Combining satellite multispectral image data and a digital
elevation model for mapping debris-covered glaciers. Remote Sens Environ 89:510–518
9 Glaciological Studies at Pasterze Glacier (Austria) Based on Aerial Photographs
197
