• Non ci sono risultati.

3. Abel, O. (1906). Die Milchmolaren der Sirenen. Neues Jahrbuch Mineralogischen Geologischen Paleontologischen Abhandlungen 1906(2): 50-60.

N/A
N/A
Protected

Academic year: 2021

Condividi "3. Abel, O. (1906). Die Milchmolaren der Sirenen. Neues Jahrbuch Mineralogischen Geologischen Paleontologischen Abhandlungen 1906(2): 50-60. "

Copied!
42
0
0

Testo completo

(1)

REFERENCES

1. Abel, O. (1904). Die Sirenen der mediterranen Tertiärbildungen Österreichs.

Abhandlungen der Geologischen Reichsanstalt Wien. 19(2): 223 pp.

2. Abel, O. (1905). Über Halitherium bellunense, eine Übergangsform zur Gattung Metaxytherium. Jahrbuch der K.K. Geologischen Reichsanstalt Wien 9: 393-398.

3. Abel, O. (1906). Die Milchmolaren der Sirenen. Neues Jahrbuch Mineralogischen Geologischen Paleontologischen Abhandlungen 1906(2): 50-60.

4. Abel, O. (1907). Über die Bedeutung der neuen Fossilfunde im Alttertiär Ägyptens für die Geschichte der Säugethiere Verhandlungen der Zoologisch- Botanischen Gesellschaft Wien. 57: 78-82.

5. Abel. O. (1913). Die eocänen Sirenen der Mittelmeerregion. Erster Teil: Der Schädel von Eotherium aegyptiacum. Paleontographica 59: 289-360.

6. Abel. O. (1919). Die Stämme der Wirbelthiere. Berlin & Leipzig, W. De Gruyter

& Co.: 914 pp.

7. Adam, P. J. & Berta, A. (2002). Evolution of prey capture strategies and diet in the Pinnipedimorpha (Mammalia, Carnivora). Oryctos 4: 83-107.

8. Adams, A. L. (1866). On the discorvery of remains of Halitherium in the Miocene deposits of Malta. Quarternary Journal Geological Society of London 22: 595- 596.

9. Adams, A. L. (1870). Notes of a naturalist in the Nile Valley and Malta, a narrative of exploration and research in connection with the natural history, geology, and archaeology of the lower Nile and Maltese Islands. Edinburgh, Edmonston & Douglas: 295 pp.

10. Adams, A. L. (1879). On remains of Mastodon and other Vertebrata of the

Miocene beds of the Maltese Islands. Quarternary Journal Geological Society of

London 35: 517-531.

(2)

11. Alfaro, P., Soria, J.M. & Ruiz Bustos, A. (1995). Precisiones biostratigráficas y paleoecológicas en el Neógeno de la Cuenca del Bajo Segura (Cordillera Bética Oriental). Estudios Geologicos 51: 57– 63.

12. Ambrose, S. H., & Norr, L. (1993). Experimental evidence for the carbon isotope ratios of whole diet and dietary protein to those of bone collagen and carbonate. In Lambert, J. B. & Grupe G. (Eds.), Prehistoric Human Bone: Archaeology at the Molecular Level. Springer-Verlag, New York: 1–37.

13. Ameghino, F. (1883). Sobre una coleccion de mamíferos fósiles del piso mesopotámico de la formación patagónica, recogidos en las barrancas del Paraná por el profesor Pedro Scalabrini. Boletim Academia Nacional de Ciencias Córdoba 5(1): 101-116.

14. Amorosi, A., Scarponi, D. & Ricci Lucchi, F. (2002). Palaeonvironmental changes in the Pliocene Intre-Apennine Basin, near Bologna (Northern Italy).

Géobios, Mémoire spécial 24: 7-18.

15. Andersen, S. H. & Nielsen, E. (1983). Exchange of water between the harbor porpoise, Phocoena phocoena, and the environment. Experientia 39: 52–53.

16. Andrews, C. W. (1902). Preliminary note on some recently discovered extinct vertebrates from Egypt (Part III). Geological Magazine (Decade IV), 9(7): 291- 295.

17. Andrews, C. W. (1906). A descriptive catalogue of the Tertiary Vertebrata of the Fayûm, Egypt. Based on the collection of the Egyptian government in the Geological Mueseum, Cairo, and on the collection in the British Museum (Natural History), London. London, Trustees of the British Museum: 324 pp.

18. Aranda-Manteca, F. J., Domning, D. P., & Barnes, L. G. (1994). A new middle Miocene sirenian of the genus Metaxytherium from Baja California and California: Relationship and paleobiogeographic implications. In Berta, A. &

Deméré, T. A. (Eds) Contributions in marine mammal paleontology honoring Frank C.Whitmora Jr. Procediing of the San Diego Society of Natural History 29:

191-204.

(3)

19. Bagnato, M., Cotroneo, L. & Damarco, P. (2000). I Sirenidi fossili della Provincia di Vibo Valentia. Bollettino del Gruppo Paleontologico Tropeano 7: 4-10.

20. Bajpai, S. & Domning, D. P. (1997). A new Dugongine Sirenian from early Miocene of India. Journal of Vertebrate Paleontology 17(1): 219-228.

21. Bajpai, S., Thewissen, J. G. M., Kapur, V. V., Tiwari, B. N. & Sahni, A. (2006).

Eocene and Oligocene sirenians (Mammalia) from Kachchh, India. Journal of Vertebrate Paleontology 26(2): 400-410.

22. Ballesio, R. (1972). Étude stratigraphique du Pliocène rhodanien. Documents Laboratoire de Géologie de l’Université de Lyon 53: 1-333.

23. Barbera, C. & Tavernier, A. (1990). Paleoecologia della successione miocenica di Vibo Valentia. In Robba E. (eds). Atti del Quarto Simposio di Ecologia e Paleontologia delle Comununità Bentoniche, Sorrento novembre 1-5, 1988.

Museo Regionale di Scienze Naturali Torino: 233-245.

24. Barbera, C., Bossio, A., Mazzei, R., Monteforti, B. & Salvatorini, G. (1993). Un flash sul ciclio miocenico del Salento. Società Paleontologica Italian XII convegno, Terra d’Otranto 28 settembre – 2 ottobre, 1993. Guida alle escursioni:

79-84.

25. Barbieri, R. & Ori, G. G. (2000). Neogene palaeoenvironmental evolution in the Atlantic side of the Rifian Corridor (Morocco). Palaeogeography, Palaeoclimatology, Palaeoecology 163: 1–31.

26. Barrière, J. & Michaux, J. (1970). La formation détritique villafranchienne de la Mosson (Montpellier) et son paléosol. Bulletin de l’Association Française et Quaternaire 2-3: 93-103.

27. Bartrina, M. T., Cabrera, L., Jurado, M. J., Guimerà, J. & Roca, E. (1992).

Evolution of the central Catalan Margin of the Valencia trough (western Mediterranean). In Banda, E. & Santanach, P. (Eds.), Geology and Geophysics of the Valencia Triugh, western Mediterranean. Tectonophysics 203: 219-247.

28. Berggren W.A., Kent, D. V., Swisher.C.C.III, & Aubry M.P. (1995). A revised

Cenozoic geochronology and chronostratigraphy. Geochronology Time Scales

(4)

29. Bianucci, G. & Landini, W. (2003). Metaxytherium medium (Mammalia: Sirenia) from upper Miocene sediments of the arenaria di Ponsano Formation (Tuscany, Italy). Nota breve. Rivista Italiana di Paleontologia e Stratigrafia 109(3): 567-573.

30. Bianucci, G., Carone, G., Domning, D. P., Landini, W., Rook, L. & Sorbi, S. (in press). Peri-Messinian dwarfing in Mediterranean Metaxytherium (Mammalia:

Sirenia): evidence of habitat degradation related to the Messinian Salinity Crisis.

Abstract for Euro-African Biotic Evolution in the Neogene - Research Conference and Workshop; Athens 23-24 Novembre 2006.

31. Bianucci, G., Landini, W., & Varola, A. (2003). New records of Metaxytherium (Mammalia: Sirenia) from the late Miocene of Cisterna quarry (Apulia, southern Italy). Bollettino della Società Paleontologica Italiana 42(1-2): 59-63.

32. Bianucci, G., Mazza, P., Merola, D., Sarti, G., & Cascella, A. (2001). The Early Pliocene Assemblage of Val di Pugna (Tuscany, Italy) in the light of calcareous plankton biostratigraphical data and paleoecological observations. Rivista Italiana di Paleontologia e Stratigrafia 107(3): 425-438.

33. Bianucci, G., Sorbi, S., Suárez, M. E. & Landini, W. (2006). The southernmost sirenian record in the eastern Pacific Ocean, from the Late Miocene of Chile.

Comptes Rendus Palevol 5: 945-952.

34. Bicchi, E., Ferrero, E. & Gonera, M. (2003). Palaeoclimatic interpretation based on Middle Miocene planktonic Foraminifera: the Silesia Basin (Paratethys) and Monferrato (Tethys) records, Palaeogeography, Palaeoclimatology, Palaeoecology 196: 265–303.

35. Bishop, W. W., Miller, J. A. & Fitch, F. J. (1969). New potassium-argon age determination relevant to the Miocene fossil mammal sequence in East Africa.

Americal Journal of Science 267: 669-699.

36. Bizzotto, B. (1983). Prototherium intermedium n. sp. (Sirenia) dell'Eocene superiore di Possagno e proposta di revisione sistematica del taxon Eotheroides Palmer, 1899. Memorie di Scienze Geologiche Università di Padova. 36: 95-116.

37. Bizzotto, B. (2005). La struttura cranica di Prototherium intermedium

(Mammalia: Sirenia) dell'Eocene superiore veneto. Nuovi contributi alla sua

(5)

anatomia e sistematica. Lavori - Società Veneziana di Scienze Naturali 30: 107- 125.

38. Blainville, H. M. D. de (1844). Ostéographie ou description iconographique comparée du squelette et du système dentaire des mammifères récent et fossiles pour servir de base à la zoologie et à la géologie. In Bertrand, A. (Ed.), Des lamantins (Buffon), (Manatus, Scopoli), ou gravigrades aquatiques: 140 pp.

39. Blanc-Vernet, L. (1984). Les foraminifères de l’herbier à Posidonia oceanica en Mèditerranée: Analyse des assemblages, aspect régionaux, application aux microfaunes fossiles. In Boudoresque, C. F., Jeudy de Grissac A. & Olivier, J.

(Eds.), International workshop Posidonia oceanica Beds, GIS Posidonie Publishers 1: 3-14.

40. Boaz, N. T., El-Arnauti, A., Agustí, J., Bernor, R. L., Pavlakis, P. & Rook, L.

(2004). Temporal, lithostratigraphic, and biochronologic setting of As Sahabi Formation, north-central Libya. Sedimentary basins of Libya, Third symposium, Geology of East Libya. Abstracts: 21.

41. Borgia, C., Varola, A., & Ruggiero, L. (1981). Rinvenimento di un sirenide nel Miocene della provinicia di Lecce. Thalassia Salentina 11: 1-9.

42. Bosellini, A., Masetti, D. & Sarti, M. (1981). A Jurassic Tongue of the Ocean infilled with oolitic sands: the Belluno Trough, Venetian Alps, Italy. Marine Geology 44: 59-95.

43. Bossio, A., Costantini, A., Lazzarotto, A., Liotta, D., Mazzanti, R., Mazzei, R. et al. (1993). Rassegna delle conoscenze sulla stratigrafia del neoautoctono toscano.

Memorie della Società Geologica Italiana 49: 17-98.

44. Boutton, T. W. (1991). Stable carbon isotope ratios of natural materials. II Atmosperic, terrestrial, marine, and freshwater environments. In Coleman D. C. &

Fry, B. (Eds.), Carbon isotope techniques. Academic Press, San Diego: 173-195.

45. Brasier, M. (1975). An outline history of seagrass communities. Palaeontology 18:

681-702.

46. Brault, N., Bourquin, S., Guillocheau, F., Dabard, M.-P., Bonnet, S., Courville, P.,

(6)

paleotopographic evolution of Brittany (France) from a sequence stratigraphic analysis: relative influence of tectonics and climate. Sedimentary Geology 163:

175–210.

47. Bronn, H. G. (1848). Handbuch der Geschichte der Natur. Naturgeschichte der drei Reiche 15(1): 775 pp.

48. Bruno, G. D. (1839). Illustrazione di un nuovo cetaceo fossile. Memorie dell’Accademia di Scienze Torino 1(2): 143-160.

49. Cahuzac, B. & Poignant, A. (1996). Foraminifères benthiques et Microproblematica du Serravallien d’Aquitaine. Géologie de la France 3: 35-55.

50. Cahuzac, B. & Poignant, A. (1997). Essai de biozonation de l'Oligo-Miocene dans les bassins europeens a l'aide des grands foraminiferes neritiques. Bulletin de la Société Géologique de France 168(2): 155-169.

51. Cahuzac, B. & Poignant, A. (2004). Les foraminifères du Burdigalien moyen à supérieur de la région sud-aquitaine (golfe de Saubrigues, SW France). Revue de micropaléontologie 47: 153–192.

52. Campana, D. del (1924). Un nuovo resto di sirenoide del Miocene superiore della provincia di Catanzaro. Rivista Italiana di Paleontologia 30: 53-55.

53. Cañigueral, J. (1952). Un notable sirénido en Mallorca. Iberica 16(2): 287-390.

54. Canocchi, D. (1987). On a skull of a sirenian from the Early Pliocene of Siena, Tuscany. Rivista Italiana di Paleontologia e Stratigrafia 92(4): 497-513.

55. Capellini, G. (1872). Sul Felsinoterio, sirenoide halicoreforme dei depositi littorali pliocenici dell'antico Bacino del Mediterraneo e del Mar Nero. Memorie dell’Accademia di Scienze Istituto di Bologna (3)1: 605-646.

56. Capellini, G. (1886a). Cetacei e Sirenii fossili scoperti in Sardegna. Rendiconto Reale Accademia dei Lincei (4)2: 79-81.

57. Capellini, G. (1886b). Sopra i resti di un sirenio fossile (Metaxytherium lovisati

CAP) raccolti a Monte Fiocca presso Sassari in Sardegna. Memorie della Reale

Accademia di Scienze dell’Istituto di Bologna (4)7: 38-53.

(7)

58. Capozzi, R. & Picotti, V. (2003). Pliocene sequence stratigraphy, climatic trends and sapropel formation in the Northern Apennines (Italy). Palaeogeography, Palaeoclimatology, Palaeoecology, 190: 349-371.

59. Caracuel, J. E., Soria, J. M. & Yébenes A. (2004). Early Pliocene transgressive coastal lags (Bajo Segura Basin, Spain):a marker of the flooding after the Messinian salinity crisis. Short communication. Sedimentary Geology 169: 121 128.

60. Carboni, M. G. & Kotsakis, T. (1983). Nuovi resti di Sirenide (Mammalia) nel Miocene della Sardegna settentrionale. Bollettino della Società Sarda di Scienze Naturali 22: 129-138.

61. Carnevale, G., Caputo, D. & Landini, W. (2006a). Late Miocene fish otoliths from the Colombacci Formation (Northern Apennines, Italy): Implications for the Messinian ‘Lago mare’ event. Geological Journal 41(5): 537-555.

62. Carnevale, G., Landini, W. & Sarti, G. (2006b). Mare versus Lago-mare: marine fishes and the Mediterranean environment at the end of the Messinian Salinity Crisis. Journal of the Geological Society, London, 163: 75–80.

63. Carnevale, G., Longinelli, A., Caputo, D., Barbieri, M. & Landini, W. (2008). Did the Mediterranean marine reflooding precede the Mio–Pliocene boundary?

Paleontological and geochemical evidence from upper Messinian sequences of Tuscany, Italy. Palaeogeography, Palaeoclimatology, Palaeoecology 257: 81-105.

64. Carone, G. & Domning, D. P. (2007). Metaxytherium serresii (Mammalia:

Sirenia): new pre-Pliocene record, and implications for Mediterranean paleoecology before and after the Messinian Salinity Crisis. Bollettino della Società Paleontologica Italiana 46(1): 55-92.

65. Carus, J. V. (1868). Handbuch der Zoologie. Ister Band. Wirbelthiere Mollusken und Molluscoiden. Leipzig, Wilhelm Engelmann: 894 pp.

66. Case, T. J. (1978). A general explanation for insular body size trends in terrestrial

vertebrates. Ecology 59: 1-18.

(8)

67. Cason, C., Grandesso, P., Massari, F. & Stefani, C. (1981). Depositi deltizi nella molassa cattivano-burdigaliana del Bellunese (Alpi meridionali). Memorie di Scienze Geologiche 34: 325-354.

68. Catullo, T. A. (1813). Memorie sull’arenaria grigia del Bellunese. Giornale della letteratura italiana 35: 22.

69. Cavallo, O. & Gaudant, J. (1987). Observations complementaires sur l'Ichthyofaune des Marnes Messiniennes de Cherasco (Piemont); implications geodynamiques. Bollettino della Societa Paleontologica Italiana 26(1-2): 177-197.

70. Cerling, T. E. & Harris, J. M. (1999). Carbon isotope fractionation between diet and bioapatite in ungulate mammals and implications for ecological and paleoecological studies. Oecologia 120: 347-363.

71. Christol, J. de (1832). Mémoire sur le moyen hippopotame fossile de Cuvier, replacé au genre des dgongs. Annales de Sciences Industriels de Midi de la France (Société de Statistique de Marseille) 2: 161-176, 241-253.

72. Christol, J. de (1840). Recherches sur divers ossements fossiles attribués par Cuvier à deux phoques, au lamantin, et à deux espèces d’hippopotames, et rapportés au Metaxytherium, nouveau genre de cétacé de la famille des dugongs.

L’Institut annuaires 8(1)352: 322-323.

73. Christol, J. de (1841). Recherches sue divers ossemens fossiles attribués par Cuvier à deux phoques, au lamantin, et à deux espèces d’hippopotame, et rapportés au Métaxythérium, nouveau genre de cétacé, de la famille des dugongs.

Annales des Sciences Naturels (Zoologie) (2)15: 307-336.

74. Cita, M. B. (1973). Pliocene biostratigraphy and chronostratigraphy. Initial Reports DSDP 13(2): 1343-1379.

75. Cita, M. B. (1975). Planktonic foraminiferal biozonation of the Mediterranean Pliocene deep sea record. A revision. Rivista Italiana di Paleontologia e Stratigrafia 81: 527-544.

76. Cita, M. B. & Corselli, C. (1990). Messinian paleogeography and erosional

surfaces in Italy; an overview. Palaeogeography, Palaeoclimatology,

Palaeoecology 77(1): 67-82.

(9)

77. Clementz, M. T., Goswami, A., Gingerich, P. D. & Koch, P. L. (2006). Isotopic records from early whales and sea cows: contrasting patterns of ecological transition. Journal of Vertebrate Paleontology 26(2): 355–370.

78. Colom, G. & Bauza, J. (1949). Sobre la extension del Metaxitherium cuvieri Christol, en las Vindobonienses de Mallorca. Boletín de la Real Sociedad Española de Historia Natural 47(1-2): 91-92.

79. Comaschi Caria, I. (1957). Nuovi resti di Sirenii nel Miocene della Sardegna.

Bollettino della Società Geologica Italiana 76: 1-16.

80. Cope, E. D. (1883). On a new extinct genus of Sirenia from South Carolina.

Proceedings of the Academy of Natural Sciences of Philadelphia 35(1): 52-54.

81. Costa, V., Doglioni, C., Grandesso. P., Masetti, D., Pellegrini, G. B. & Tracanella, E. (1992). Carta geologica d’Italia (1:50000) Foglio 063 Belluno Note illustrative.

Servizio geologico d’Italia. Istituto Poligrafico e Zecca dello Stato Roma: 74 pp.

82. Cottreau, J. (1928). Le Metaxytherium cuvieri du Golfe de la Loire. Annales de Paléontologie 17: 1-20.

83. Couvering, J. A. H. van & Miller I. A. (1969). Miocene stratigraphy and age determinations; Rusinga Island, Kenya. Nature 221: 628-632

84. Cuvier, G. (1809). Sur l’ostéologie du lamantin, sur la place que le lamantin et le dugong doivent occuper dans le méthode naturelle, et sur les os fossiles de lamantins et de phoques. Annales du Museum d’Histoire Naturelle (Paris) 13:

273-312.

85. Cuvier, G. (1821-1824). Recherches sur les ossemens fossiles, où l’on rétablit les caractères du plusieurs animaux dont les révolutions du globe détruit les espèces...

Nouvelle édition, entièrement refondue, et considérablement augmentée... Paris &

Amsterdam, G. Dufour & Ed. D’Ocagne 5 vols in 7.

86. Czyżewska, T. & Radwański, A. (1991). Middle Miocene (Badenian) delphinid and phocoenid remains from Fore-Carpathian Depression in southern Poland.

Acta Geologica Polonica 41(3-4): 183-191.

(10)

87. Damiani, A.V., Gandin, A. & Pannuzi, L. (1980). Il Bacino dell’Ombrone-Orcia nel quadro dell’evoluzione paleogeografica e tettonica della Toscana meridionale Memorie della Società Geologica Italiana 21: 273-279.

88. Damuth, J. (1993). Cope’s rule, the island rule and the scaling of mammalian population density. Nature 365: 748-750.

89. Delfortrie, E. (1872). Etude sur les restes fossiles de siréniens du genre Halitherium dans le bassin de la Garonne. Actes de la Société Linnéenne de Bordeaux 28(3): 1-46.

90. Delfortrie, E. (1880). Découverte d'un squelette entire de Rytiodus dans le falun Aquitanien. Actes de la Société Linnéenne de Bordeaux 34:131-144.

91. Depéret, C. (1895). Über die Fauna von miocänen Wirbelthieren aus der ersten Mediterranstufe von Eggenburg. Sitzungsberichte der Akademie der Wissenschaften in Wien. Mathematisch-naturwissenschaftliche Klasse 104(1):

395-416.

92. Depéret, C. & Roman, F. (1920). Felsinotherium serresi des sables Pliocènes de Montpellier et les rameaux phylétiques des Siréniens fossiles de l'Ancien Monde.

Archive du Musée d’Histoire Naturelle de Lyon 12: 1-56.

93. Desmarest, A. G. (1822). Mammalogie ou description des espèces de mammifères. Seconde partie, contenant les ordres des rongeurs, des édéntés, des pachydermes, des ruminans et des cétacés. Encyclopédie Methodique 182: 277- 556.

94. Dienes, P. (1980). The isotopic composition of reduced organic carbon. In Fritz, P. & Fontes, J. C (Eds.), Handbook of environmental isotope geochemistry. 1 The terrestrial environment. Elsevier, Amsterdam: 329-406.

95. Dollo, L. (1889). Première note sur les siréniens de Boom (résumé). Bulletin de la Société Belge de Géologie, Paléontologie et Hydrologie. Procès-Verbaux 3: 415- 421.

96. Domning, D. P. (1978). Sirenia evolution in the North Pacific Ocean. University

of California Publications in Geological Sciences 118: 1-176.

(11)

97. Domning, D. P. (1981). Sea cows and sea grasses. Paleobiology 7(4): 417-420.

98. Domning, D. P. (1982a). Evolution of Manatees: a speculative history. Journal of Paleontology 56(3): 599-619.

99. Domning, D. P. (1982b). Fossil Sirenia from the Sahabi Formation. Garyounis Scientific Bulletin 4: 29-32.

100. Domning, D. P. (1988). Fossil Sirenia of the West Atlantic and Caribbean region I. Metaxytherium floridanum Hay, 1922. Journal of Vertebrate Paleontology 8(4):

395-426

101. Domning, D. P. (1989a). Fossil Sirenia of the West Atlantic and Caribbean region. II. Dioplotherium manigaulti Cope, 1883. Journal of Vertebrate Paleontology 9(4): 415-428.

102. Domning, D. P. (1989b). Fossil Sirenia of the West Atlantic and Caribbean region. III. Xenosiren yucateca, gen. et sp. nov. Journal of Vertebrate Paleontology 9(4): 429-437.

103. Domning, D. P. (1990). Fossil Sirenia of the West Atlantic and Caribbean region.

IV. Corystosiren varguezi, gen. et sp. nov. Journal of Vertebrate Paleontology 10(3): 361-371.

104. Domning, D. P. (1991). A new genus for Halitherium olseni Reinhart, 1976 (Mammalia: Sirenia). Journal of Vertebrate Paleontology 11(3): 398.

105. Domning, D. P. (1994). A phylogenetic analysis of the Sirenia. In Berta, A. &

Deméré, T. A. (Eds) Contributions in marine mammal paleontology honoring Frank C. Whitmore, Jr. Proceedings of the San Diego Society of Natural History 29: 177-189.

106. Domning, D. P. (1996). Bibliography and index of the Sirenia and Desmostylia.

Smithsonian Contributions to Paleobiology 80: 1-611.

107. Domning, D. P. (1997). Fossil Sirenia of the West Atlantic and Caribbean region.

VI. Crenatosiren olseni (Reinhart, 1976). Journal of Vertebrate Paleontology

17(2): 397-412.

(12)

108. Domning, D. P. (2000). The Readaptation of Eocene Sirenians to Life in Water.

Historical Biology 14: 115-119.

109. Domning, D. P. (2001a). Sirenians, seagrasses, and Cenozoic ecological change in the Caribbean. Palaeogeography, Palaeoclimatology, Palaeoecology 1: 27-50.

110. Domning, D. P. (2001b). The earliest known fully quadrupedal sirenian. Nature 413: 625-627.

111. Domning, D. P. (2002a). Sirenian Evolution. In Perrin, W.F., Würsig, B. &

Thewissen, J. G. M. (Eds.), Encyclopedia of Marine Mammals. San Diego, Academic Press. 1083-1086.

112. Domning, D. P. (2002b). The Terrestrial Posture of Desmostylians. Smithsonian contributions to paleobiology. Cenozoic Mammals of Land and Sea: tributes to the Career of Clayton E.Ray 93: 99-111.

113. Domning, D. P. (2005). Fossil Sirenia of the West Atlantic and Caribbean region.

VII. Pleistocene Trichechus manatus Linnaeus, 1758. Journal of Vertebrate Paleontology 25(3): 685-701.

114. Domning, D. P. & Beatty, B. L. (2007). Use of Tusks in Feeding by Dugongid Sirenians: Observations and Tests of Hypotheses. The Anatomicasl Record 290:

523-538.

115. Domning, D. P. & Furusawa, H. (1994). Summary of taxa and distribution of Sirenia in the North Pacific Ocean. The Island Arc 3(4): 506-512.

116. Domning, D. P. & Gingerich, P. D. (1994). Protosiren smithae, new species (Mammalia: Sirenia), from the Late Middle Eocene of Wadi Hitan, Egypt.

Contributions from the Museum of Paleontology of University of Michigan 29(3):

69-87.

117. Domning, D. P. & Pervesler, P. (2001). The osteology and relationships of Metaxytherium krahuletzi Depéret, 1895 (Mammalia: Sirenia). Abhandlungen der Senckenbergischen Naturforschenden Gesellschaft 553: 1-89.

118. Domning, D. P. & Thomas, H. (1987). Metaxytherium serresii (Mammalia:

Sirenia) from the Early Pliocene of Libya and France: a reevaluation of its

(13)

morphology, phyletic position, and biostratigraphic and paleoecological significance. In Boaz, N., El-Arnauti, A., Gaziry, A. W., Heinzelin, J. de, & Boaz, D. D. (Eds.), Neogene Paleontology and Geology of Sahabi: 205-232.

119. Domning, D. P., Gingerich, P. D., Simons, E. L., & Ankel-Simons, F. A. (1994).

A new Early Oligocene Dugongid (Mammalia: Sirenia) from Fayum Province, Egypt. Contributions from the Museum of Paleontology of the Universitiy of Michigan 29(4): 89-108.

120. Domning, D. P., Ray, C. E. & McKenna, M. C. (1986).Two new Oligocene desmostylians and a discussion of tethytherian systematics. Smithsonian Contribution to Paleobiology 59: 1-56.

121. Doppert, J. W. Chr., Laga, P. G. H. & Meuter, F. J. de (1979). Correlation of the biostratigraphy of marine neogene deposits, based on benthonic foraminifera, established in Belgium and the Netherlands. Mededelingen Rijks Geologische Dienst 31(1): 1-8.

122. Ehleringer, J. R. R., Sage, R. F., Flanagan, L. B. & Pearcy, R. W. (1991). Climate change and the evolution of C

4

photosynthesis. Trends in Ecology and Evolution 6: 95-99.

123. Ehrenberg, K. (1927). Zur Frage der biologischen Deutung der (Camarocrinus) Wurzeln (Lobolithen) von Scyphocrinus: Paläontologische Zeitschrift 8: 199-220.

124. El-Arnauti, A. & El Sogher, A. (2004). Sedimentary Basins of Libya, Third symposium, Geology of East Libya, Fieldtrip, November 24-25, 2004. Short Notes and Guidebook on the Geology of Qasr as Sahabi Area. Earth Science Society of Libya: 95 pp.

125. El-Hawat, A. S. (1980). Carbonate-terrigenous cyclic sedimentation and paleogeography of the marada Formation (Middle Miocene), Sirt Basin. In Salem, M. J. & Busrewill, M. T. (Eds.), The Geology of Libya 2: 427-448.

126. Ennouchi, E. (1954). Un sirénien, Felsinotherium cf. serresi à Dar bel Hamri.

Servece Geologique du Maroc, Notes et Mémoires 121(notes 9): 77-82.

(14)

127. Erftemeijer P. L. A., Djunarlin A., & Moka W. (1993). Stomach content analysis of a dugong (Dugong dugon) from South Sulawesi, Indonesia. Australian Journal of Marine and Freshwater Research 44: 229-233.

128. Estevens, M. (2000). Miocene marine mammals from Portugal, Paleogeographical and paleoecological significance. Ciências da Terra 14: 323-334.

129. Estevens, M. (2003a). Mamíferos marinhos do Miocénico da península de Setúbal. Ciências da Terra esp- 5: 60-63.

130. Estevens, M. (2003b). Mamíferos marinhos do Miocénico de Lisboa. Ciências da Terra esp-5: 64-67.

131. Eva, A. N. (1980). Pre-Miocene seagrass communities in the Caribbean.

Palaeontology 23: 231-236.

132. Falco, G. de, Molinaroli, E., Baroli, M. & Bellacicco, S. (2003). Grain size and compositional trends of sediments from Posidonia oceanica meadows to beach shore, Sardinia, western Mediterranean. Estuarine Coastal and Shelf Science. 58:

299 – 309.

133. Farquhar, G. D., Ehleringer, J. R. R. & Hubrick, K. T. (1989). Carbon isotope discrimination and photosynthesis. Annual Review of Plant Physiology and Plant Molecular Biology 40: 503-537.

134. Ferrero, E. & Pavia, G. (1996). La successione marina pre-villafranchiana. In:

Carraro F. (Ed.), Revisione del Villafranchiano nell’area tipo di Villafranca d’Asti. Il Quaternario 9(1): 36-38.

135. Ferretti, M. P., Rook, L. & Torre, D. (2003). Stegotetrabelodon (Proboscidea, Elephantidae) from the Late Miocene of southern Italy. Journal of Vertebrate Paleontology 23(3): 659-666.

136. Fischer, M. & Tassy, P. (1993). The interrelation between Proboscidea, Sirenia,

Hyracoidea, Mesasaxonia: the morphological evidence. In Szalay, F. S., Novacek,

M. J. & Mckenna, M. C. (Eds), Mammal Phylogeny, 2: Placentals. G. Fisher,

New York: 217-234.

(15)

137. Fitzinger, L. J. (1842). Bericht über die in dem Sandlagern von Linz aufgefundenen fossilen Reste eines urweltlichen Säugers, (Halitherium Christolii). Bericht Museum Franco-Carolinum Linz 6: 61-72.

138. Flot, L. (1886). Description de l'Halitherium fossile Gervais. Bollettino della Società Geologica Francese 14(3): 483-518.

139. Flot, M. (1887). Note sur le Prohalicore Dubaleni. Bulletin de la Société Geologique de France 15(3): 134-138.

140. Flower, B. & Kennett, J. P. (1994). The middle Miocene climatic transition; East Antarctic ice sheet development, deep ocean circulation and global carbon cycling. Palaeogeography, Palaeoclimatology, Palaeoecology 108(3-4): 537-555.

141. Flower, W. H. (1874). Description of the skull of a species of Halitherium (H.

canhami) from the Red Crag of Suffolk. Quarternary Journal Geological Society of London 30: 1-7.

142. Fondi, R. & Pacini, P. (1971). Nuovi resti di Sirenide dal Pliocene antico della provincia di Siena. Palaeontographia Italica 67(= n. s.37): 37-53.

143. Ford, S. M. (1980). Callitrichids as phyletic dwarfs, and the place of the Callitrichidae in Platyrrhini. Primates 21: 31-43.

144. Fornos, J. J., Forteza, V., Jaume, C. & Martinez-Taberner, A. (1992). Present-day Halimeda carbonate sediments in temperate Mediterranean embayments: Fornells, Balearic Islands. Sedimentary Geology 75: 283-293.

145. Fortuin, A. R., Kelling, J. M. D. & Roep, T. B. (1995). The enigmatic Messinian- Pliocene section of Cuevas del Almanzora (Vera Basin, SE Spain) revisited erosional features and strontium isotope ages. Sedimentary Geology 97: 177-201.

146. Foster, J. B. (1964). The evolution of mammals in islands. Nature 202: 234-235.

147. Fourtanier, E., Gaudant, J., & Cavallo, O. (1991). La diatomite de Castignito

(Piémont): une nouvelle preuve de l'existence d'oscillations modérées du niveau

marin pendant le Messinien évaporitique. Bollettino della Società Paleontologica

Italiana 30: 79-95.

(16)

148. Freudenthal, M. (1970). Fossiele zeekoeien in het Eoceen van Taulanne.

Experimenteel Geologisch Onderwijs 1969/1970: 64-65.

149. Fricke, H. C. & O’Neil, J. R. (1996). Inter- and intra-tooth variation in the oxygen isotope composiition of mammalian tooth enamel phosphate: implications for paleoclimatological and paleobiological research. Palaeogeography, Palaeoclimatology, Palaeoecology 126: 91–99.

150. Fritel, P. H. (1909). Sur l’attribution au genre Posidonia de quelques Caulinites de l’Eocène du bassin de Paris. Bulletin de la Société Géologique de France 9: 380- 385.

151. Fritel, P. H. (1913). Sur les Zostères du Calcaire grossier et sur l’assimilation au genre Cymodoceites Bureau des prétendued algues du même gisement. Bulletin de la Société Géologique de France 13: 354-358.

152. Froede, C. R. jr. (2002). Rhizolith evidence in support of a late Holocene sea-level highstand at least 0.5 m higher than present at Key Biscayne, Florida. Geology 30:

203-206.

153. Gammudi, A. M. (1996). The ostracod fauna of the Miocene Marada Formation exposed in the eastern Sirt Basin, Libya. In Salem, M. J., Mouzughi, A. J. &

Hammuda, O. S. (Eds.), The Geology of Sirt Basin 1: 391-418.

154. Gandin, A. & Sandrelli, F. (1992). Caratteristiche sedimentologiche dei corpi sabbiosi intercalati nelle argille plioceniche del bacino di Siena. Giornale di Geologia 54(1) serie III: 55-65.

155. Garcés, M., Krijgsman, W. & Agusti, J. (2001). Chronostratigraphic framework and evolution of the Fortuna Basin (eastern Betics) since the late Miocene. Basin Research, 13(2): 199-216.

156. Gardère, P. (2005). La Formation des Sables Fauves; dynamique sedimentaire au Miocene moyen et evolution morpho-structurale de l'Aquitaine (SW France) durant le Neogene. Eclogae Geologicae Helvetiae 98(2): 201-217.

157. Garnett, S. T., Price, I. R. & Scott, F. J. (1985). The diet of the green turtle,

Chelonia mydas (L.), in Torres Strait. Australian Wildlife Journal 12: 103-112.

(17)

158. Gatt, M. (2006). Il-Ġeoloġija u l-Paleontologiġija tal-Gżejjer Maltin.

Pubblikazzjonijiet Indipendenza. I 264 pp. II 270 pp.

159. Gaudant, J. (1980). Sur la présence d'Alosa crassa Sauvage (Poissons téléostéeens, Clupeidae) dans les gypses messiniens de Crète occidentale.

Proceedings of the koninkijke Nederlandse Akademie van Wetenschappen (B)83:

263-268.

160. Gaudant, J. (2002). La crise messinienne et ses effets sur l'ichthyofaune neogene de la Mediterranee; le temoignage des squelettes en connexion de poissons teleosteens. Geodiversitas 24(3): 691-710.

161. Gaudant, J., Saint Martin, J.-P., Bessedik, M., Mansour, B., Moissette, P., &

Rouchy, J. M. (1997). Découverte d'une frayère de poissons téléostéens dans des diatomites messiniennes du Djebel Murdjadjo (environ d'Oran, Algérie). Journal of African Earth Sciences 24: 511-529.

162. Geraads, D. (1989). Vertébrés fossiles du Miocène supérieur du Djebel Krechem el Artsouma (Tunisie centrale). Comparisons biostratigraphiques. geobios 22(6):

777-801.

163. Geronimo, I. di (1984). Livelli a Posidonia nel Pleistocene inferiore della Sicilia.

In Boudoresque, C. F., Jeudy de Grissac, A. & Olivier, J. (Eds.), International Workshop Posidonia oceanica Beds. GIS Posidonie Publishers 1: 15-21.

164. Gervais, F. L. P. (1847). Observations sur les mammifères fossiles du midi de la France, II partie. Annales de Sciences Naturelles (Zoologie) (3)8: 203-224.

165. Gervais, F. L. P. (1849-50). Sur la répartition des mammifères fossiles entre les différents étages tertiaires qui concourent à la former le sol de la France.

Mémoires Section Sciences, Académie Sciences et Lettres Montpellier 1(1): 203- 219 (1849); 1(2): 399-413 (1850).

166. Gheerbrant, E., Sudre, J., Tassy, P., Amaghzaz, M., Bouya, B. & Iarochène, M.

(2005). Nouvelles données sur Phosphatherium escuilliei (Mammalia,

Proboscidea) de l’Éocène inférieur du Maroc, apports à la phylogénie des

Proboscidea et des ongulés lophodontes. Geodiversitas 27(2): 239-333.

(18)

167. Ghibaudo, G., Grandesso, P., Massari, F. & Uchman, A. (1996). Use of trace fossils in delineating sequence stratigraphic surfaces (Tertiary Venetian Basin, northeastern Italy). Palaeogeography, Palaeoclimatology, Palaeoecology 120:

261-279.

168. Giammarino, S. & Tedeschi, D. (1980). Le microfaune a foraminiferi del Pliocene di Borzoli (Genova) e il loro significato paleoambientale. Annali dell'Università di Ferrara (N.S.) Sez IX, Scienze Geologiche e Paleontologiche 6 suppl: 73-92.

169. Giammarino, S. & Tedeschi, D. (1983). Considerazioni geologico-stratigrafiche sul Pliocene di Albisola (Savona). Atti della Società Toscana di Scienze Naturali Memorie 90 (serie A): 211-216.

170. Gill, T. N. (1872). Arrangement of the families of mammals. Synoptical tables of characters of the sub-divisions of mammals, with a catalogue of the genera.

Smithsonian Miscellaneous Collections 11(1)(230): 1-98.

171. Gingerich, P. D. (1992). Marine mammals (Cetacea and Sirenia) from the Eocene of Gebel Mokattam and Fayum, Egypt: stratigraphy, age, and paleoenvironments.

Papers on Paleontology University of Michigan. 30: 1-84.

172. Gingerich, P. D., Arif, M. M., Bhatti, M., A., Raza, H. A. & Raza, S. M. (1995).

Protosiren and Babiacetus (Mammalia, Sirenia and Cetacea) from the middle Eocene Drazinda Formation, Sulaiman Range, Punjab (Pakistan). Contributions from the Museum of Paleontology. University of Michigan 29(12): 331-357.

173. Gingerich, P. D., Domning, D. P., Blane, C. E., & Uhen, M. D. (1994). Cranial morphology of Protosiren fraasi (Mammalia: Sirenia) from the middle Eocene of Egypt: a new study using computed tomography. Contributions from the Museum of Paleontology. University of Michigan 29(2): 41-67.

174. Ginsburg, L. (1980). Palaeogéographie et fige de la mer des faluns d'après les Mammiféres. Mémoires de la Société d’Etudes Scientifiques de l’Anjou 4: 69-77.

175. Ginsburg, L. & Janvier, P. (1971). Les mammifères marins des faluns miocènes

de la Touraine et de l’Anjou. Bulletin du Muséum National d’Histoire Naturelle

(Paris). (3)22 Sciences de la Terre 6: 161-195.

(19)

176. Ginsburg, L., Janvier, P., Mornand, J. & Pouit, D. (1979). Découverte d’un faune de mammifères terrestres d’âge vallésien dans le falun miocène de Doué-la- Fontaine (Maine-et-Loire). Compte-rendu sommaire des séances de la Société Géologique de France 1979(5-6): 223-227.

177. Gray, J. E. (1821). On the natural arrangement of vertebrose animals. London Medical Repository 15(88): 296-310.

178. Hajjaji, M., Bodergat, A. M., Moissette, P., Prieur, A., & Rio, M. (1998).

Signification écologique des associations d’ostracodes de la coupe de Kritika (Pliocène supérieur, Rhodes, Grèce). Revue de Micropaléontologie 41: 211–233.

179. Hallam, A. (1990). Biotic and abiotic factors in the evolution of early Mesozoic marine molluscs. In Ross, R. M. & Allmon, W. D. (Eds.), Causes of Evolution: A Paleontological perspective. Univerisy of Chicago press, Chicago USA: 249-269.

180. Ham, R. W. J. M. van der, Konijnenburg- van Cittert, J. H. A. van &

Indeherberge, L. (2007). Seagrass foliage from the Maastrichtian type area (Maastrichtian, Danian, NE Belgium, SE Netherlands). Review of Palaeobotany and Palynology 144: 301–321.

181. Harris, M. M., King, R J. & Ellis, J. (1980). The eelgrass Zostera capricorni in Illawarra Lake, New South Wales. Proceedings of the Linnean Society of New South Wales 104(1): 23–33.

182. Hartog, C. den (1970). Origin, evolution, and geographical distribution of the seagrasses. Verhandelingen-Koninklijke Nederlandse Akademie van Wetenshappen Afdeling Natuurkunde 59: 12–38.

183. Hartog, C. den & Kuo, J. (2006). Taxonomy and Biogeography of Seagrasses. In Larkum, A. W. D., Orth, R. J. & Duarte, C. M. (Eds.), Seagrasses: Biology, Ecology and Conservation: 1-23.

184. Haunold, T. G., Baal, C., & Piller, W. E. (1997). Benthic foraminiferal

associations in the Northern Bay of Safaga, Red Sea, Egypt. Marine

Micropaleontology. 29: 185–210.

(20)

185. Hay, O. P. (1922). Description of a new fossil sea cow from Florida, Metaxytherium floridanum. Proceedings of the United States National Museum 61(17)(2438): 1-4.

186. Heal, G. J. (1973). Contributions to the study of sirenian evolution. Ph.D.

dissertation. University of Bristol: 299 pp.

187. Hily, C., Katwijk, M. M. van & Hartog, C. den (2003). The seagrasses of Western Europe. In Green, E. P. & Short, F. T. (Eds.), World atlas of seagrasses: 38-47.

188. Hoffman, A. (1979). Indian Ocean affinities of a Badenian/Middle Miocene/seagrass-associated macrobenthic community of Poland. VII International Congress on Mediterranean Neogene. Athens, Annales Géologiques des Pays Helléniques, Hors Series 2: 537–541.

189. Holl, F. (1829). Handbuch der Petrefaktenkunde... Erstes Bändchen. Dresden, P.

G. Hilscher’sche Buchhandlung (Allgemeine Taschenbibliothek der Naturwissenschaften, 9. Theil): 115 pp.

190. Hooijer, D. A. (1952). Fact and finction in hippopotamology (sampling the history of scientific error). Osiris 10: 109-116.

191. Hooijer, D. A. (1977). A sirenian skeleton from the Miocene of Eibergen, Province of Gelderland, The Netherlands: Metaxytherium cf. medium (Desmarest). Scripta Geologica 41: 1-25.

192. Hooyberghs H. J. F. (1996). The stratigraphical position of the Edegem Sands Member (Berchem Formation, Miocene) in its type area at Wilrijk (N Belgium) based on planktonic foraminifera. Geologie en Mijnbouw 33-42.

193. Hopwood, A. T. (1927). Sirens in fancy and in fact. Natural History Magazine.

London 1(1): 17-21.

194. Hsü, K.J., Ryan, W.B.F. & Cita, M.B. (1973). Late Miocene desiccation of the Mediterranean. Nature 242: 240–244.

195. Illiger, C. (1811). Prodromus systematis mammalium et avium additis terminis

zoographicus utrisque classis, eorumque versione Germanica. Berlin, sumptibus

C. Salfeld: 302 pp.

(21)

196. Inuzuka, N., Domning, D. P., & Ray, C. E. (1995). Summary of taxa and morphological adaptations of the Desmostylia. The Island Arc 3(4): 522-537.

197. Issel, A. (1910). Alcuni mammiferi fossili del genovesato e del savonese. Reale Accademia dei Lincei 37: 91-224.

198. Issel, A. (1912). Un omero di Felsinotherium. Atti Accademia dei Lincei, Memorie Classe di Scienze Fisiche Matematiche e Naturali 9(5): 119-125.

199. Janssen, T. & Bremer, K. (2004). The age of major monocot groups inferred from 800+rbcL sequences. Botanical Journal of Linnean Society 146: 385–398.

200. Jolivet, L., Augier, R., Robin, C., Suc, J.-P. & Rouchy J. M. (2006). Lithospheric- scale geodynamic context of the Messinian salinity crisis. Sedimentary Geology 188–189: 9–33.

201. Kaltenmark, J. (1942). Contribution à l'étude des siréniens actuels et fossiles.

Mammalia 2(6): 101-113.

202. Kaup, J. J. (1838). Über Zähnen von Halytherium und Pugmedon aus Flonheim.

Neues Jahrbuch für Mineralogie, Geognosie, Geologie und Petrefaktenkunde 1838: 318-320.

203. Kaup, J. J. (1840). Notizen über die fossilen sogenannten Grasfressenden Wale.

Neues Jahrbuch für Mineralogie, Geognosie, Geologie und Petrefaktenkunde 1840: 673-676.

204. Kaup, J. J. (1855). Beitraege zur naeheren Kenntniss der urweltlichen Saeugethiere ... Zweites Heft. Darmstadt, C.W. Leske: 1-23.

205. Kellogg, R. (1966). Fossil marine mammals from the Miocene Calvert Formation of Maryland and Virginia. United States National Museum Bulletin 247: 65-98.

206. Kelt, D. A. & Brown J. H. (1998). Diversification of body sizes: patterns and processes in the assembly of terrestrial mammal faunas. In McKinney, M. L. &

Drake, J. A. (Eds.), Biodiversity Dynamics, Turnover of Populations, Taxa and

Communities. Columbia UP, New York, USA: 109-132.

(22)

implications based on calcareous nannofossil stratigraphy and calcareous dinoflagellate cysts: Berliner geowissenschaftliche Abhandlungen, Gundolf-Ernst- Festschrift E16: 533–557.

208. Kikuchi, T. & Pérès, J. M. (1977). Consumer ecology of seagrass beds. In: C. P.

McRoy & Helfferich C. (Eds) Seagrass Ecosystems, a Scientific perspective. New York, Marcel Dekker: 147-193.

209. Kilmer, F. H. (1965). A Miocene dugongid from Baja California, Mexico.

Bulletin of the California Academy of Sciences 64(2): 57-74.

210. Koch, P. L. (1998). Isotopic reconstruction of past continental environments.

Annual Review of Earth and Planetary Science 26: 573–613.

211. Koch, P. L., Fogel, M. L. & Tuross, N. (1994). Tracing the diets of fossil animals using stable isotopes. In Lajtha, K. & Michener, R. H. (Eds.), Stable Isotopes in Ecology and Environmental Science. Blackwell, Oxford, U.K: 63–92.

212. Kohn, M. J. (1996). Predicting animal δ18O: accounting for diet and physiological adaptation. Geochimica et Cosmochimica Acta 60: 4811–4829.

213. Kohn, M. J. & Cerling, T. E. (2002). Stable isotope compositions of biological apatite. In Kohn, M. J., Rakovan, J. & Hughes, J. M. (Eds.), Phosphates:

Geochemical, Geobiological, and Materials Importance. Mineralogical Society of America and Geochemical Society, Washington, DC: 455–488.

214. Kordos, L. (1977). A new Upper Miocene sirenian (Paralitherium tarkanyense n.

g. n. sp.) from Felsőtárkányból, NE Hungary. Magyar Állami Földtani Intézet Évi Jelentése, 1975: 349-367.

215. Kordos, L. (1979). Major finds of scattered fossils in the Palaeovertebrate Collection of the Hungarian Geological Institute (Communication No. 4). Magyar Állami Földtani Intézet Évi Jelentése, 1976: 313-326.

216. Kordos, L. (1981). Some complements to the knowledge of a Middle Eocene

sirenian, Sirenavus hungaricus. Fragmenta Mineralogica et Paleontologica 10: 75-

78.

(23)

217. Korn, D. (1995). Paedomorphosis of ammonoids as a result of sealevel fluctuations in the Late Devonian Wocklumeria Stufe. Lethaia 28(2): 155-165.

218. Kretzoi, M. (1941). Sirenavus hungaricus n. g., n. sp., ein neuer Prorastomide aus dem Mittleozän (Lutetium) von Felsőgalla in Ungarn. Annales historico-naturales Musei Nationalis Hungarici. Pars mineralogica, geologica et palaeontologica. 34:

146-156.

219. Kretzoi, M.(1951). Új sziréna-tipus a Magyar Miocénből. Földtani Köezlöony 81:

438-441.

220. Krijgsman, W., Garces, M., Langereis, C. G., Daams, R., Dam, J. van, Meulen, A.

J. van der, Augusti, J. & Cabrera, L.(1996). A new chronology for the middle to late Miocene continental record in Spain. Earth Planetary Sciences Letters 142:

367–380.

221. Krijgsman,W., Hilgen, F. J., Raffi, I., Sierro, F. J. & Wilson, D. S. (1999).

Chronology, causes and progression of the Messinian salinity crisis. Nature 400:

652–655.

222. Kuo, J. & McComb, A. J. (1989). Seagrass taxonomy, structure and development.

In Larkum, A. W. D., McComb, A. J. & Shepherd, S. A. (Eds.), Biology of Seagreasses. Amsterdam: Elsevier Science Publishers B. V.: 6-73.

223. Lacour, D. & Néraudeau, D. (2000). Evolution de la diversite des Brissopsis (Echinoida, Spatangoida) en Mediterranee depuis la 'crise messinienne';

application paleoecologique aux B. lyrifera intragypses de Sorbas (SE Espagne).

Geodiversitas 22(4): 509-523.

224. Lacour, D., Lauriat-Rage, A., Saint Martin, J.-P., Videt, B., Néraudeau, D., Goubert, E. et al. (2002). Les associations de bivalves (Mollusca, Bivalvia) du Messinien du bassin de Sorbas (SE Espagne). In Néraudeau, D. & Goubert, E.

(Eds.), L'événement messinien: approches paléobiologiques et paléoécologiques.

Geodiversitas 24(3): 641-657.

225. Langer, M. R. (1993). Epiphytic foraminifera. Marine Micropaleontology 20:

235–265.

(24)

226. Lanyon, J. M., Limpus C. J. & Marsh H. (1989). Dugong and turtles: grazers in the seagrass system. In Larkum, A. W. D., McComb, A. J. & Shepherd, S. A.

(Eds.), Biology of Seagrasses. A Treatise on the Biology of Seagrasses with Special Reference to the Australian Region. Aquatic Plant Studies 2. Elsevier:

610-634.

227. Larkum, A. W. D. & Hartog, C. den (1989). Evolution and biogeography of seagrasses. In Larkum, A. W. D., McComb, A. J. & Shepherd, S. A. (Eds.), Biology of Seagrasses. A Treatise on the Biology of Seagrasses with Special Reference to the Australian Region. Aquatic Plant Studies 2. Elsevier: 112–156.

228. Lartet, M. (1866). Note sur deux nouveaux Siréniens fossiles des terrains tertiaires de bassin de la Garonne. Bulletin de la Société Geologique de France 23: 673- 686.

229. Laurent, L. & Laurent, J.(1926). Etude sur une plante fossile des dépôts du Tertiaire marin du sud des Célèbes, Cymodocea micheloti (Wat.) nob. Jaarboek van het Mijnwezen in Nederlandsch-Indië 54: 167–190.

230. Laurillard, C. L. (1846). Metaxytherium. Dictionnaire de l’Université d'Histoire Naturelle 8: 171-172.

231. Lawley, R. (1877). Resti di Felsinotherium forestii Cap. trovati presso Volterra.

Atti della Società Toscana di Scienze Naturali 3: 341-342.

232. Lécuyer, C., Grandjean, P., Paris, F., Robardet, M. & Robineau, D. (1996).

Deciphering "temperature" and "salinity" from biogenic phosphates: the δ

18

0 of coexisting fishes and mammals of the Middle Miocene sea of western France.

Palaeogeography, Palaeoclimatology, Palaeoecology 126: 61-74.

233. Lepsius, G. R. (1882). Halitherium schinzi die fossile Sirene des Mainzer Beckens. Eine verleichend-anatomische Studie. Abhandlungen Mittelrheinischen Geologishe Ver. (Darmstadt) 1: 1-200.

234. Link, H. F. (1795). Beyträge zur Naturgeschichte. Rostok & Leipzig, K. C. Stiller

1(2): 1-126.

(25)

235. Linnaeus, C. (1758). Systema naturae per regna tria naturae, secundum classes, ordines, genera, species, cum characteribus, differentiis, synonymis, locis. Tomus I. Editio decima, reformata. Laurentii Salvii, Stockholm: 6-823.

236. Lipkin, Y., Beer, S. & Zakai, D. (2003). The seagrasses of the eastern Mediterranean and the Red Sea. In Green, E. P. & Short, F. T. (Eds.) World atlas of seagrasses: 65-73.

237. Louwye S., Coninck J. de, & Verniers J. (2000). Shallow marine Lower and Middle Miocene deposits at the southern border of the North Sea Basin (northern Belgium): dinoflagellate cysts, biostratigraphy and depositional history.

Geological Magazine 137: 381-394.

238. Lovisato, D. (1902). Le specie fossilissinora trovate nel calcare compatto di Bonaria e di S. Bartolomeo. Cagliari: 21 pp.

239. Lukasik, J. J., James, N. P., Mcgowran, B. & Bone, Y. (2000). An epeiric ramp:

Low-energy, cool-water carbonate facies in a Tertiary inland sea, Murray Basin, South Australia. Sedimentology 47: 851–881.

240. Lumbert, S. H., Hartog, C. den, Phillips, R. C. & Olsen, F. S. (1984). The occurrence of fossil seagrasses in the Avon Park Formation (late Middle Eocene), Levy County, Florida (U.S.A.). Aquatic Botany 20: 121–129.

241. MacFadden, B. J. & Cerling, T. E. (1996). Mammalian herbivore communities, ancient feeding ecology, and carbon isotopes: a 10 million-years sequence from Neogene of Florida. Journal of Vertebrate Paleontology 16: 103-115.

242. MacFadden, B. J., Higgins, P., Clementz, M. T. & Jones, D. S. (2004). Diets, habitat preferences, and niche differentiation of Cenozoic sirenians from Florida:

evidence from stable isotopes. Paleobiology 30: 297–324.

243. Marcopoulou-Diacantoni, A. & Logos, E. (2004). The occurrence of the Metaxytherium cuvieri Christol in the Late Miocene sediments of Sitia, Crete.

Bulletin of the Geological Society of Greece 36: 764-782.

244. Marsh, H. (1980). Age determination of the dugong (Dugong dugon (Müller)) in

northern Australia and its biological implications. Reports of the International

(26)

245. Marsh, H., Channels, P. W., Heinsohn, G. E. & Morrissey J. (1982). Analysis of stomach contents of dugongs from Queensland. Australian Wildlife Research 9:

55-67.

246. Martini, E. & Müller C. (1973). Nannoplankton-Gemeinschaften im Miozän und Pliozän des Nordseebeckens. Neues Jahrbuch Geologie und Paläontologie 9: 555- 564.

247. Mastera, L. (1985). Geological map of Libya. 1:250.000. Explanatory booklet.

Sheer: Marada. NH34-9 Industrial Research Centre. Tripoli: 121 pp.

248. Matthew, W.D. (1916). New sirenian from the Tertiary of Porto Rico, West Indies. Annales of New York Academy of Science 27: 23-29.

249. Mazzei, R. (1994). Età della Pietra Leccese nell’area di Cursi-Melpignano (a sud di Lecce, Puglia). Bollettino della Società Paleontologica Italiana 33(2): 243-248.

250. McCoy, E. & Heck, K. Jr. (1967). Biogeography of corals, seagrasses, and mangroves: an alternative to the center of origin concept. Systematic Zoology 25:

201-210.

251. McRoy, C. P. & Helfferich, C. (1980). Applied aspects of seagrasses. In Phillips, R. C & McRoy, C. P. (Eds.), Handbook of Seagrass Biology: An Ecosystem Perspective. New York, Garland STPM Press: 297-343.

252. Meulenkamp, J. E. & Sissingh, W. (2003). Tertiary palaeogeography and tectonostratigraphic evolution of the Northern and Southern Peri-Tethys platforms and the intermediate domains of the African–Eurasian convergent plate boundary zone. Palaeogeography Palaeoclimatology Palaeoecology 196: 209–228.

253. Meulenkamp, J.E., Sissingh, W., et al. (2000). Maps 17–23. Tertiary. In Dercourt, J., Gaetani, M., et al. (Eds.), Atlas Peri-Tethys, Palaeogeographical Maps.

CCGM/CGMW, Paris: 153–268.

254. Meuter, F.J. de & Laga P.G.H. (1976). Lithostratigraphy and Biostratigraphy based on benthonic foraminifera of the Neogene Deposits of Northern Belgium.

Brussel Bulletin Société belge Géologie 85(4): 133-152.

(27)

255. Meyer, H. von (1838). [Letter to H. G. Bronn, Sep. 18, 1838]. Neues Jahrbuch für Mineralogie, Geognosie, Geologie und Petrefaktenkunde 1838: 667-669.

256. Milchakova, N. A. (2003). The seagrasses of the Black, Azov, Caspian and Aral Seas. In Green, E. P. & Short, F. T. (Eds.) World atlas of seagrasses. Berkeley, California: University of California Press: 59-64.

257. Mitchell, J. (1973). Determination of relative age in the dugong Dugong dugon (Müller) from a study of skulls and teeth. Zoological Journal of the Lennaean Society 53: 1-23.

258. Moisette, P., Koskeridou, E., Cornée, J.-J., Guillocheau, F. & Lécuyer, C. (2007).

Spectacular preservation of seagrasses and seagrass-associated communities from the Pliocene of Rhodes, Greece. Palaios 22: 200-211.

259. Moncharmont Zei, M. & Moncharmont, U. (1987). Il Metaxytherium medium (Desmarest) 1822 (Sirenia, Mammalia) delle arenarie tortoniane (Miocene sup.) di S. Domenica di Ricadi (Catanzaro, Italia). Memorie di Scienze Geologiche Università di Padova 39: 285-341.

260. Montenat, C., Bizon, G., & Bizon, J. J. (1976). Continuité ou discontinuité de la sédimentation marine Mio-Pliocène en Méditerranée occidentale. L'exemple du Bassin de Vera (Espagne méridionale). Rev. IFP, 31: 613-663.

261. Montenat, C., Ott d’Estevou, P.& Coppier, G. (1990). Les bassins neógènes entre Alicante et Cartagena. Documents et Travaux del’IGAL 12–13: 313–368.

262. Montoya, P. (1997). Los yacimientos con Mamíferos Neógenos de la Comunidad Valenciana. Cidaris Revista Ilicitana de Paleontología y Mineralogía 11-12: 24- 47.

263. Muizon, C. de & Domning, D. P. (1985). The first records of fossil sirenians in the southeastern Pacific Ocean. Bulletin du Muséum National d’Histoire Naturelle (Paris). 7(4-C, 3): 189-213.

264. Muizon, C. de, Domning, D. P. & Ketten, D. R. (2002). Odobenocetops

peruvianus, the walrus-convergent delphinoid (Mammalia: Cetacea) from the

Early Pliocene of Peru. Smithsonian contributions to paleobiology. Cenozoic

(28)

265. Müller, P. L. S. (1776). Des Ritters Carl von Linné... vollständigen Natursystems Supplements- und Register-Band über alle sechs Theile oder Classen des Thierreichs. Mit einer ausführlichen Erklärung... G. N. Raspe, Nureberg: 21-22.

266. Negri, A., Pirini, C., Razzore, S., & Bonci, M. C. (1997). Micropaleontological record in the Pliocene of Genoa-Arenzano area. Bollettino della Società Paleontologica Italiana 36(1-2): 261-274.

267. Néraudeau, D., Videt, B., Courville, P., Goubert, E., & Rouchy, J. M. (2002).

Corrélation des niveaux fossilifères marins interstratifiés dans les gypses messiniens, entre la carrière de Los Yesos et la carrière de Molinos de Aguas (Bassin de Sorbas, SE Espagne). In Néraudeau, D. & Goubert, E. (Eds.), L'événement messinien: approches paléobiologiques et paléoécologiques.

Geodiversitas 24(3): 659-667.

268. Neviani, A. (1886a). Mammiferi marini che si rinvennero fossili nelle Calabrie.

Tipografia del Calabro, Catanzaro: 12 pp.

269. Neviani, A. (1886b). Sui giacimenti dei Cetacei fossili del Monteleonese, con indicazioni di altri rinvenuti nelle Calabrie. Bollettino della Società Geologica Italiana, Roma, 5(1): 61-73.

270. Neviani, A. (1887). Contribuzione alla paleontologia della provincia di Catanzaro.

Bollettino della Società Geologica Italiana, Roma, 6(1): 169-208.

271. Orszag-Sperber, F., Harwood, G., Kendall, A. & Purser, B.H. (1998). A review of the evaporites of the Red Sea-Gulf of Suez rift. In: Purser, B. H. & Bosence, D.

W. J. (Eds.), Sedimentation and Tectonics of Rift Basins: Red Sea-Gulf of Aden.

Chapman and Hall, London: 409-426.

272. Owen, R. (1855). On the fossil skull of a mammal (Prorastomus sirenoïdes, Owen) from the island of Jamaica. Quarterly Journal of the Geological Society of London 11: 541-543.

273. Owen, R. (1875). On fossil evidences of a sirenian mammal (Eotherium

aegyptiacum, Owen) from the Nummulitic Eocene of the Mokattam Cliffs, near

Cairo. Quarterly Journal of the Geological Society of London 31(1)(121): 100-

105.

(29)

274. Palmer, T. S. (1895). The earliest name for Steller’s sea cow and dugong. Science (2)2(40): 449-450.

275. Palmer, T. S. (1899). Review of Dr. E. L. Trouessart’s Catalogus Mammalium.

Science (2)10: 491-495.

276. Papazzoni, C.A. & Sirotti, A. (1999). Heterostegina papyracea Seguenza, 1880 from the upper Miocene of Cessaniti (Vibo Valentia, southern Italy). Bollettino della Società Paleontologica Italiana 38(1): 15-21.

277. Passey, B. H. & Cerling, T. E. (2002). Tooth enamel mineralization in ungulates:

implications for recovering a primary isotopic time-series. Geochimica et Cosmochimica Acta 66: 3225–3234.

278. Patacca, E., Sartori, R., & Scandone, P. (1990). Tyrrhenian basin and Appenninic arcs. Kinematic relation since late Tortonian Time. Memorie della Società Geologica Italiana 45: 425-451.

279. Pedley, H. M. (1978). A new lithostratigraphical and palaeoenvironmental interpretation for the coralline limestone formations (Miocene) of the Maltese Islands. Overseas Geology and Mineral Resources: 54 pp.

280. Pedley, H. M. (1981). Sedimentology and palaeoenvironment of the Southeast Sicilian Tertiary platform. Sedimentary Geology 28(4): 273-291.

281. Pelzeln, A. von (1883). Brasilische Säugethiere. Resultate von Johann Natterers Reisen in den Jahren 1817 bis 1835. Verhandlungen der kaiserlich-königlichen zoologisch-botanischen Gesellschaft in Wien 33 Beiheft: 89-93.

282. Perry, C. T. (1999). Biofilm-related calcification, sediment trapping and reconstructive micrite envelopes: a criterion for the recognition and ancient grass- bed environments? Sedimentology 46: 33-45.

283. Perry, C. T. & Beavington-Penney, S. J. (2005). Epiphytic calcium carbonate

production and facies development within sub-tropical seagrass beds, Inhaca

Island, Mozambique. Sedimentary Geology 174: 61–176.

(30)

284. Peters, K. F. (1867). Das Halitheriumskelet von Hainburg. Halitherium Cordieri, Christol sp. (Manatus Cuvieri ou fossilis, Blainv.; Hippopotamus medius Cuvieri var). Jahrbuch Geologischen Reichsanstalt Wien 17(2): 309-341.

285. Phillips, R.C. & McRoy C.P. (1980). Handbook of seagrass biology: an ecology system perspective. Garland STPM Press, New York: 353 pp.

286. Phillips, R. C. & Meñez, E. G. (1988). Seagrasses. Smithsonian Contributions to the Marine Sciences 34: 1-104.

287. Pia, J. von & Sickenberg, O. (1934). Katalog der in den österreichischen Sammlungen befindlichen Säugetierreste des Jungtertiärs Österreichs und der Randgebiete. Denkschriften Naturhistoric Museum Wien, Geologische- Paleontologische Reihe 4: 544 pp

288. Piaz, G. dal (1916). Gli Odontoceti del Miocene Bellunense. Introduzione generale. Parte I: Rassegna storica e studio stratigrafico. Parte II: Squalodon.

Memorie dell’Istituto di Geologia dell’Università di Padova: 94 pp

289. Pilleri, G. (1987). The Sirenia of the Swiss Molasse. With a descriptive catalogue of the fossil Sirenia preserved in Swiss collections. Brain Anatomy Institute, Ostermundigen (Switzerland): 114 pp.

290. Pilleri, G. (1988a). The Pliocene Sirenia of the Po basin (Metaxytherium subapenninum (Bruno) 1839). In Pilleri, G. (Ed.), Contributions to the paleontology of some Tethyan Cetacea and Sirenia (Mammalia). Ostermundigen (Switzerland), Brain Anatomy Institute: 45-103.

291. Pilleri, G. (1988b). Mandibular pathology in a fossil Sirenid (Metaxytherium sp.) from Catalonia, Spain. In Pilleri, G. (Ed.), Contributions to the paleontology of some Tethyan Cetacea and Sirenia (Mammalia). Ostermundigen (Switzerland), Brain Anatomy Institute: 105-110.

292. Pilleri, G. (1988c). A skull of Metaxytherium serresii (Mammalia: Sirenia) from

the lower Pliocene of Montpellier. In Pilleri, G. (Ed.), Contributions to the

paleontology of some Tethyan Cetacea and Sirenia (Mammalia). Ostermundigen

(Switzerland), Brain Anatomy Institute: 111-123.

(31)

293. Pilleri, G. (1990). Endocranial cast of Metaxytherium (Mammalia: Sirenia) from the Miocene of Cerro Gordo, Almería, Spain. Treb.Mus.Geol.Barcelona 1: 35-42.

294. Pilleri, G. & Cigala Fulgosi F. (1989). Additional observation on the Lower Serravallian marine mammals fauna of Visiano ans Stirone Tiver (northern Apennines). In Pilleri, G. (Ed.), Contributions to the paleontology of some Tethyan Cetacea and Sirenia (Mammalia). Ostermundigen (Switzerland), Brain Anatomy Institute: 63-85.

295. Pilleri, G., Biosca, J., & Via, L. (1989). The Tertiary Sirenia of Catalonia. Brain Anatomy Institute, Ostermundigen (Bern) – Switzerland: 98 pp.

296. Plusquellec, Y. & Racheboeuf, P. R. (2000). Mammifères marins fossiles du Miocène de Bretagne. Penn ar Bed 175: 27-36.

297. Pomar, L. (2001). Ecological control of sedimentary accommodation: Evolution from a carbonate ramp to rimmed shelf, Upper Miocene, Balearic Islands.

Palaeogeography, Palaeoclimatology, Palaeoecology, 175: 249–272.

298. Pomar, L., Obrador, A. & Westphal, H. (2002). Sub-wavebase cross-bedded grainstones on a distally steepened carbonate ramp, Upper Miocene, Menorca, Spain. Sedimentology 49: 139–169.

299. Popov, S. V., Rögl, F., Rozanov, A. Y., Steininger, F. F.; Shcherba, I. G. &

Kovac, M. (2004). Lithological-paleogeographic maps of Paratethys 10 maps Late Eocene to Pliocene. Courier Forschungsinstitut Senckenberg 250: 1-46.

300. Popov, S. V., Shcherba, I. G., Ilyina, L. B., Nevesskaya, L. A., Paramonova, N.

P., Khondkarian, S. O. & Magyar, I. (2006). Late Miocene to Pliocene palaeogeography of the Paratethys and its relation to the Mediterranean.

Palaeogeography, Palaeoclimatology, Palaeoecology 238(1-4): 91-106.

301. Portis, A. (1885). Catalogo descrittivo dei Talassoterii rinvenuti nei terreni terziarii del Piemonte e della Liguria. Memoria della Reale Accademia delle Scienze di Torino 37(2): 112-116.

302. Pouyet, S., David, L.. Demarcq, G.,. Latreille, G.,. Carbonnel, G., Prieur, A.,

Philippe, M., Laurain, M., Pajaud, D., Cappetta, H., Barbillat, R., & Chevalier, J.-

(32)

Mollans-Malaucène (Sud-Est de la France): essai de synthèse paléoécologique et paléogéographique. Géologie de la France 1-2: 123-130.

303. Powell, J. A. Jr (1978). Evidence of carnivory in manatees (Trichechus manatus).

Journal of Mammalogy 59: 442.

304. Preen, A. R. (1995). Diet of dugongs: are they omnivores? Journal of Mammalogy 76: 163-171.

305. Procaccini, G., Buia, M. C., Gambi, M. C., Pergent, G., Pergent-Martini, C. &

Romero, J. (2003). The seagrasses of the western Mediterranean. In Green, E. P.

& Short, F. T. (Eds.), World atlas of seagrasses: 48-58.

306. Pyenson, N. D. & Lindberg, D. R. (2003). Phylogenetic analyses of body size in Neoceti: preliminary proxies for studying cetacean ecology in the fossil record.

Abstracts, 15th Biennial Conference on Biology of Marine Mammals, Greensboro, North Carolina, USA, 14-19 December. 2003: 133-134.

307. Radócz, G. (1972). A Zostera-bryozoa-Spirorbis biocoenosis from the Miocene of the Borsod Basin. Magyar Állami Földtani Intézet Évi Jelentése: 55–63.

308. Raia, P., Barbera, C. & Conte, M. (2003). The fast life of a dwarfed giant.

Evolutionary Ecology 17: 293-312.

309. Ramos, E., Cabrera, L., Hagemann, H. W., Pickel, W. & Zamarreño, I. (2001).

Paleaogene lacustrine record in Mallorca (NW Mediterranean, Spain):

depositional, palaeogeographic and palaeoclimatic implications for the ancient southeastern Iberian margin. Palaeogeography, Palaeoclimatology, Palaeoecology 175: 239-247.

310. Randazzo, A. F. & Saroop, H. C. (1976). Sedimentology and palaeocology of Middle and Upper Eocene carbonate shoreline sequences, Crystal River, Florida, U.S.A. Sedimentary Geology 15: 259-291.

311. Reinhart, R. H. (1951). A new genus of sea cow from the Miocene of Colombia.

Bulletin of Department of Geological Sciences, University of California 28(9):

203-213.

(33)

312. Reinhart, R. H. (1959). A review of the Sirenia and Desmostylia. University of California Publications in Geological Sciences 36(1): 1-146.

313. Reinhart, R. H. (1976). Fossil sirenians and desmostylids from Florida and elsewhere. Bulletin of the Florida State Museum, Biological Sciences 20: 187- 300.

314. Retzius, A. J. (1794). Anmärkningar vid genus Trichechi. Kungl. Svenska vetenskapsakademiens handlingar (Stockholm) (2)15: 286-300.

315. Ricci Lucchi, F., Colella, A. Ori, G. G., Ogliani, F. & Colalongo, M. L. (with the collaboration of Padovani, A., Pasini, G., Raffi. S. & Venturi, L.) (1981). Pliocene fan deltas of the Intra-Appenninic Basin, Bologna. In: Ricci Lucchi F. (Ed.), International Association of Sedimentologist, 2nd European Regional Meeting.

Excursion Guidebook: 79-138.

316. Rio, D., Raffi, I., & Villa, G. (1990). Plio-Pleistocene calcareous nannofossil distribution pattern in the Western Mediterranean. In Kastens, K. A., Mascle, J. et al. (Eds.), Proceedings ODP Scientific Results 107: 513-553.

317. Robinson, P. T. & Black, C. C. (1974). Vertebrate faunas from the Neogene of Tunisia. Annales of Geology Survive of Egypt 4: 319-332.

318. Roca, E. (2001). The Northwest-Mediterranean basin (Vallencia Trough, Gulf of Lions and Liguro-ProvencSal basins): structure and geodynamic evolution.

Mémoires du Muséum National d’Histoire Naturelle 186: 671-706.

319. Roe, L. J., Thewissen, J. G. M., Quade, J., O’Neil, J. R., Bajpai, S., Sahni, A. &

Hussain, S. T. (1998). Isotopic approaches to understanding the terrestrial-to- marine transition of the earliest cetaceans. In Thewissen, J. G. M. (Ed.), The Emergence of Whales. Plenum Press, New York, New York: 399–422.

320. Rögl, F. (1998). Palaeogeographic considerations for Mediterranean and Paratethys seaways. Annalen des Naturhistorischen Museums in Wien 99(A):

279–310.

321. Roth, V. L. (1990). Island dwarf elephants: a case study in body mass estimation

and ecological inference. In Damuth, J. & MacFadden, J. B. (Eds.), Body size in

Riferimenti

Documenti correlati

Concomitantly increased values of PCT and presepsin would thus appear suggestive of bacterial sepsis (especially Gram-negative bacterial sepsis) or mixed infection,

In the case of social networks, notably young people are given the possibility (and therefore the power) to co-construct, in informational terms, a meaningful “context of

3.2 L’ascesa della Cina: l’altra faccia della globalizzazione 57. 3.3 Squilibri planetari

The evaluation of the effect of thermal treatments on 45S5 powders is even more difficult, because not only crystallization and phase separation processes are likely to occur,

The main goal of our group would be to analyze the impact of deep space conditions on different aspects of multicellular organisms’ biology, including genome stability, behaviour

Certo, il tema dell’“astrattezza” rivo- luzionaria, come è stato persuasivamente mostrato – ad esempio da Fiorinda Li Vigni, che lo ha tematizzato in un libro di qualche anno fa

The paper proposes an original methodology to investigate human approaches to inventive design tasks: definition of the test (Sample group and control group, Inventive

pirateria, il terrorismo internazionale, ecc..). Il problema si presenta quando uno o più Stati possono affermare la loro giurisdizione su un crimine specifico in virtù