E
[1136] Earland, A. 1900. A list of the fossil Radiolaria from Barbados, figured in Ehrenberg's "Fortsetzung der mikrogeologischen Studien", with equivalent names used by Haeckel. Journal of the Quekett Microscopical Club, Ser 2 7(46): 285-294.
[1137] Edgcomb, V. P., Kysela, D. T., Teske, A., Vera Gomez, A. & Sogin, M. L. 2002. Benthic eukaryotic diversity in the Guaymas Basin hydrothermal vent environment. PNAS 99(11): 7658-7662.
[1138] Edwards, A. M. 1900. The Radiolaria. American Monthly Microscopical Journal 21(8): 211-217.
[1139] Ehiro, M., Nogi, D., Mori, K., Kawashima, G., Suzuki, Noritoshi & Yoshihara, K. 2001. Discovery of scleractinian corals from the limestone conglomerate in the Kuzumaki-Kamaishi Belt, Northern Kitakami Massif, northeast Japan and its significance. Journal of the Geological Society of Japan 107(8): 531-534.
[1140] Ehrenberg, C. G. 1839. Über die Bilding der Kreidefelsen und des Kreidemergels durch unsichtibare Organismen. Abhandlungen Königlichen Akademie der Wissenschaften zu Berlin 1838(): 59-147.
[1141] Ehrenberg, C. G. 1840. Über die auffallend rasche Entwicklung dieser Kenntnisse. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1840(): 197-218.
[1142] Ehrenberg, C. G. 1841. Über noch jetst zahlreich lebenide Thierarten der Kreidebilung und Organismus der Polythalamien. Abhandlungen Königlichen Akademie der Wissenschaften zu Berlin 1839(): 81-174.
[1143] Ehrenberg, C. G. 1842. Über einen plastischen Kreidmergel von Agina aus mikroskopischen Organismen und uber die Moglichkeit, durch mikroskopische Untersuchung des Materials den Ursprung gewisser alter achthriechischer Kunstdenkmaler aus gebrannter Erde (Terracotten) mit bische. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1842(): 263-268.
[1144] Ehrenberg, C. G. 1843. Über den Gehalt an unsichtbar kleinen Lebens aus einigen von Hrn. Prof. Koch aus Constantinopel eingesandten Proben der Meeres-Ablagerungen im Marmara-Meer und im Bosporus. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1843(): 253-257.
[1145] Ehrenberg, C. G. 1843. Verbreitung und Einfluss des mikroskopischen Lebens in Sud- und Nord-Amerika. Abhandlungen Königlichen Akademie der Wissenschaften zu Berlin 1843(): 291-445.
[1146] Ehrenberg, C. G. 1844a. Über 2 neue Lager von Gebirgsmassen aus Infusorien als Meeres-Absatz in Nord-Amerika und eine Vergleichung derselben mit den organischen Kreide-Gebilden in Europa und Afrika. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1844(): 57-97.
[1147] Ehrenberg, C. G. 1844b. Einige vorläufige Resultate seiner Untersuchungen der ihm von der Südpolreise des Capitain Ross, so wie von den Herren Schanyer und Darwin zugekommenen Materialien über das Verhalten des kleinsten Lebens in den Oceanen und den Grossten bisher zugängliche. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1844(): 182-207.
[1148] Ehrenberg, C. G. 1844c. Über die kleinsten Lebebsformen im Quellenlande des Euphrats und Araxes, so wie über eine an neuen Formen sehr reiche marine Tripelbildung von den Bermuda-Inseln. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1844(): 253-275.
[1149] Ehrenberg, C. G. 1845. Neue Untersuchungen über das kleinste Leben als geologisches Moment. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1845(): 53-88.
[1150] Ehrenberg, C. G. 1846. Über eine halibiolithische, von Herrn R. Schomburgk entdeckte, vorherrschend aus mikroskopischen Polycystinen gebildete, Gebirgsmasse von Barbados. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1847(): 382-385.
[1151] Ehrenberg, C. G. 1847. Über die mikroskopischen kieselschaligen Polycystinen als mächtige Gebirgsmasse von Barbados und über das Verhältniss der aus mehr als 300 neuen Arten bestehenden ganz eigenthümlichen Formengruppe jener Felsmasse zu den jetzt lebenden Tieren und zur Kreidebildung. Eine neue Anregung zur Erforschung des Erdlebens. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1847(): 40-61.
[1152] Ehrenberg, C. G. 1854a. Über das organischen leben des Meeresgrundes in bis 10800 und 12000 Fuss Tiefe. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1854(): 54-75.
[1153] Ehrenberg, C. G. 1854b. Die systematische Charakteristik der neuen mikroskopischen Organismen des tiefen atlantischen Oceans. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1854(): 236-250.
[1154] Ehrenberg, C. G. 1854c. Mikrogeologie. Voss, Leipzig, 374 pp.
[1155] Ehrenberg, C. G. 1854d. Weitere Ermittelungen uber das Leben in grossen Tiefen des Oceans. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1854(): 305-328.
[1156] Ehrenberg, C. G. 1855a. Über die weitere Entwicklung der kenntniss des Grunsandes als gruner Polythalamien-Steinkerne, über braunrothe und corallrothe Steinkerne der Polythalamien-Kreide in Nord-Amerika, und über den Neeresgrund aus 12900 Fuss Tiefe. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1855(): 172-178.
[1157] Ehrenberg, C. G. 1855b. Über ein europäisches marines Polygastern-Lager und über verlarvte Polythalamien in den marinen Polygastern Tripeln von Virginien und Simbirsk. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1855(): 291-305.
[1158] Ehrenberg, C. G. 1855c. III. Nahere Bestimmung der Mischung des frischen Auswurfs des Schkamm-Vulkans von Poorwadadi auf Java. Bericht über die zur Bekanntmachung geeigneten Verhandlungen der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1855(): 561-576.
[1159] Ehrenberg, C. G. 1856. Über 2 neue südamerikanische Gebirgsmassen aus mikroskopischen Organismen, eine aus Meeresorganismen in Chile und eine als mit gefritteten Süfswasserorganismen gemischten vulkanischen essbaren Tuff aus Honduras in Centro-Amerika. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1856(): 425-431.
[1160] Ehrenberg, C. G. 1857. Über die organischen Lebensformen in unerwartet grossen Tiefen des Mittelmeeres. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1857(): 538-570.
[1161] Ehrenberg, C. G. 1859. Kurze Chracteristik der 9 neuen Genera und der 105 neuen Species des ägäischen Meeres und Tiefgrundes des Mittel-Meeres. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1858(): 10-40.
[1162] Ehrenberg, C. G. 1860a. Über die organischen und unorganischen Mischungsverhältnisse des Meeresgrundes in 19800 Fuss Tiefe nach Lieut. Brookes Messung. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1860(): 765-774.
[1163] Ehrenberg, C. G. 1860b. Über den Tiefgrund des stillen Oceans swischen Californien und den Sandwich-Inseln aus bis 15600' Tiefe nach Lieut. Brooke. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1860(): 819-833.
[1164] Ehrenberg, C. G. 1861a. Beitrag zur Übersicht der Elemente des tiefen Meeresgrunde im Mexikanischen Golfstrome bei Florida. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1861(): 222-240.
[1165] Ehrenberg, C. G. 1861b. Über die Tiefgrund-Verhältnisse des Oceans am Eingange der Davisstrasse und bei Island. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1861(): 275-315.
[1166] Ehrenberg, C. G. 1861c. Über das mikroskopische Leben auf der Insel St. Paul im Süd-Ocean. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1861(): 1085-1102.
[1167] Ehrenberg, C. G. 1872a. Mikrogeologische Studien als Zusammenfassung seiner Beobachtungen des kleinsten Lebens der Meeres-Tiefgründe aller Zonen und dessen geologischen Einfluss. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1872(): 265-322.
[1168] Ehrenberg, C. G. 1872b. Mikrogeologische Studien über das kleinste Leben der Meeres-Tiefgründe aller Zonen und dessen geologischen Einfluss. Abhandlungen Königlichen Akademie der Wissenschaften zu Berlin 1872(): 131-399.
[1169] Ehrenberg, C. G. 1873. Grössere Felsproben des Polycystinen-Mergels von Barbados mit weiteren Erläuterungen. Monatsberichte der Königlich Preußischen Akademie der Wissenschaften zu Berlin 1873(): 213-262.
[1170] Ehrenberg, C. G. 1876. Fortsetzung der Mikrogeologischen Studien als Gesammt Übersicht der mikroskopischen Paläontologie gleichartig analysierter Gebiegsarten der Erde, mit specieller Rücksicht aus den Polycystinen Mergel von Barbados. Physikalische Abhandlungen der Königlichen Akademie der Wissenschaften zu Berlin 1875(): 1-226.
[1171] Eicher, D. L. 1960. Stratigraphy and micropaleontology of the Thermopdis Shale. Peabody Museum of Natural History, Yale University, Bulletin 15(): 1-212.
[1172] Einor, O. L. 1955. Bashkirskii yarus v Gornoi Bashkirii. Доклады Академии Наук СССР 104(1): 130-133.
[1173] Eisenack, A. 1971. Die Mikrofauna der Ostseekalke (Ordovizium). 3. Graptolithen, Melanoskleriten, Spongien, Radiolarien, Problematika nebst 2 Nachtragen uber Foraminiferen und Phytoplankton. Neues Jahrbuch für Geologie und Paläeontologie, Monatschaft 137(3): 337-357.
[1174] El Kadiri, K. 1992. Description de nouvelles especes de radiolaires jurassique de la Dorsale calcaire externe (Rif, Maroc). Revista Española de Paleontologia Num. Extra(): 37-48.
[1175] El Kadiri, K., Linares, A. & Oloriz, F. 1992. La Dorsale Calcaire rifaine (Maroc septentrional): Evolution stratigraphique et geodynamique durant le Jurassiue-Cretace. Notes et memoires du Service geologique du Maroc 366(): 217-265.
[1176] Elbert, J. 1902. Das untere Angoumien in den Osningbergketten des Teutoburger Waldes. Decheniana (Nat Rheinlande Westfalens) 58(): 77-167.
[1177] Eliseeva, V. K., Lipman, R. Kh & Svyatogorova, N. N. 1976. New evidence on the stratigraphy of the Central Sikhote-Alin [Новые данные по стратиграфии центрального Сихотэ-Алиня]. Geology and Geophysics 1976(11): 30-43.
[1178] Elliott, G. F. 1959. Mesozoic Radiolaria of the Middle East and their stratigraphical distribution. Geological Magazine 96(6): 482-488.
[1179] Ellis, G. 1993. Late-Early Albian Radiolaria of the Windalia Radiolarite (type section), Carnarvon Basin, Western Australia. Eclogae Geologicae Helvetiae 86(3): 943-995.
[1180] Empson-Morin, K. M. 1981. Campanian Radiolaria from DSDP Site 313, Mid-Pacific Mountains. Micropaleontology 27(3): 1-13.
[1181] Empson-Morin, K. M. 1982. Reexamination of the Late Cretaceous radiolarian genus Amphipyndax Foreman. Journal of Paleontology 56(): 507-519.
[1182] Empson-Morin, K. M. 1984. Depth and latitude distribution of Radiolaria in Campanian (Late Cretaceous) tropical and subtropical oceans. Micropaleontology 30(1): 87-115.
[1183] Enriques, P. 1919. Richerche sui Radiolarî coloniali. R. Comitato Talassografico Italiano 71(): 1-177.
[1184] Enriques, P. 1921. Ricerche sui Radiolari Coloniali (pt.2). Memoria. R. Comitato Talassografico Italiano 71(): 1-55.
[1185] Enriques, P. 1931. Formazione e sviluppo dello scheletro siliceo nei radiolari. Boll Sci Italiano Biol Sperimentale 6(4): 350-356.
[1186] Enriques, P. 1932. Saggio di una classificazione dei Radiolari. Arch Zool Torino 16(): 978-994.
[1187] Epstein, S. & López-Garía, P. 2008. "Missing" protist: a molecular prospective. Biodivers. Conserv. 17(): 261-276.
[1188] Eraoka, Y., Ikeda, Y. & Kashima, N. 1986. Geology of the Uwajima district. With geological sheet map at 1:50,000. Geological Survey of Japan. Quadrangle Series, Scale 1:50,000, Kochi (13), No. 77 (): 1-91.
[1189] Erba, E., Channell, J. E. T., Claps, M., Jones, C., Larson, R., Opdyke, B., Premoli Silva, I., Riva, A., Salvini, G. & Torricelli, S. 1999. Integrated stratigraphy of the Cismon Apticore (southern Alps, Italy): A "reference section" for the Barremian-Aptian interval at low latitudes. Journal of Foraminiferal Research 29(4): 371-391.
[1190] Erbacher, J. 1994. Entwicklung und Palaoozeanographie mittelkretazischer Radiolarien der westlichen Tethys (Italien) und des Nordatlantiks. Tubinger mikro-palaontologische Mitteilungen 12(): 1-119.
[1191] Erbacher, J. & Thurow, J. 1997. Influence of oceanic anoxic events on the evolution of mid-Cretaceous Radiolaria in the North Atlantic and western Tethys. Marine Micropaleontology 30(1-3): 139-158.
[1192] Erbacher, J., Thurow, J. & Littke, R. 1996. Evolution patterns of Radiolaria and organic matter variations: a new approach to identify sea-level changes in mid-Cretaceous pelagic environments. Geology 24(6): 499-502.
[1193] Erbacher, J. & Thurow, J. 1998. Mid-Cretaceous radiolarian zonation for the North Atlantic: an example of oceanographically controlled evolutionary processes in the marine biosphere?. Geological Society, London, Special Publications 131(): 72-82.
[1194] Erbacher, J. 1998. Mid-Cretaceous radiolarians from the eastern equatorial Atlantic and their paleoceanography. Pp. 363-373. in Mascle, J., Lohmann, G. P. & Moullade, E. (ed) Proceedings of the Ocean Drilling Program, Scientific Results, 159. College Station, TX.
[1195] Erez, J., Takahashi, K. & Honjo, S. 1982. In situ dissolution of Radiolaria in the central North Pacific Ocean. Earth and Planetary Science Letters 59(): 245-254.
[1196] Ermolov, P. V., Polyansky, N. V., Dobretsov, N. L., Klenina, L. N., Khomyakov, V. D., Kuzebnyi, V. S., Revyakin, P. S. & Bortsov, V. D. 1981. Ophiolites of the Char zone. Pp. 103?172. in (ed) Ophiolites (Itmurundy-Kazyk and Char zone). Kazakhskaya SSR, Nauka, Alma-Ata.
[1197] Eskinazi-Sant'ana, E. M. & Björnberg, T. K. S. 2006. Seasonal dynamics of microzooplankton in the São Sebastião Channel (SP, Brazil). Brazilian Journal of Biology (=Revista Brasileira de Biologia) 66(1B): 221-231.
[1198] Etheridge, R. Jr & Dun, W. S. 1902. Catalogue of the Cretaceous fossils of Australia. Memoirs of the Geological Survey of New South Wales. Palaeontology 11(): 51-84.
[1199] Eto, T. 1986. Stratigraphy of the Hayama Group in the Miura Peninsula, Japan. Science Reports of the Yokohama National University, Section II (33): 67-105.
[1200] Eto, T. 1986. Stratigraphy of the Miura and Kazusa Groups in the Miura Peninsula, Japan. Science Reports of the Yokohama National University, Section II (33): 107-132.
[1201] Eto, T., Oda, M., Hasegawa, S., Honda, N. & Funayama, M. 1987. Geologic age and paleoenvironment based upon microfossils of the Cenozoic sequence in the middle and northern parts of the Miura Peninsula. Science Reports of the Yokohama National University, Section II (34): 41-57.
[1202] Eto, T., Yazaki, K., Urabe, A. & Isobe, I. 1998. Geology of the Yokosuka district. With geological sheet map at 1:50,000. Geological Survey of Japan. Quadrangle Series, Scale 1:50,000, Tokyo (8) no. 84(): 1-128.
[1203] Ezaki, Y. & Kuwahara, K. 1996. Upper Permian siliceous claystone in a pelagic facies in the Panthalassa Ocean. Annali dei Musei civici di Rovereto, Supplement 11(): 119-130.
[1204] Ezaki, Y. & Kuwahara, K. 1997. Fluctuations in pelagic environments near the Permian-Triassic boundary in the Mino-Tamba Terrane, southwest Japan. Pp. 134-141. in Dickins, J. M. (ed) Late Palaeozoic and Early Mesozoic Circum-Pacific Events and Their Global Correlation. Cambridge University Press, London.
[1205] Ezaki, Y. & Yao, A. 2000. Permian-Triassic succession in Japan: key to deciphering Permian/Triassic events. Pp. 127-139. in Yin, H., Dickins, J. M., Shi, G. R. & Tong, J. (ed) Persian-Triassic Evolution of Tethys and Western Circum-Pacific. Elsevier.
F
[1206] Fang, A.-m, Li, J.-l, Hou, Q.-l, Li, H.-s & Hao, J. 2000. The assemblages of the radiolaria fossils found in "Yisak Group" of west Kunlun of Xinjiang, and discussion on its age. Scientia Geologica Sinica 35(2): 212-218.
[1207] Fang, A.-m, Li, J.-l, Hou, Q.-l, Zhou, H., Wan, Z.-h & Li, H.-s 1998. The first discovery of radiolaria fossils in Yixikegou flysch section of Kuda, west Kunlun, China. Scientia Geologica Sinica 33(3): 354.
[1208] Fang, N.-q, Feng, Q.-l, Liu, B.-p & Zhang, C.-h 1996. The beginning and closure of Paleotethys revealed by sedimentary records in Changning-Menglian Belt, Western Yunnan. Pp. 66-72. in Fang, N.-Q. (ed) Devonian to Triassic Tethys in Western Yunnan, China. China University of Geosciences Press.
[1209] Fang, N.-q, Feng, Q.-l, Zhang, C.-h & Jia, J.-h 1996. Arrangement of stratigraphic units and reconstruction of Tectono-Paleogeographic pattern in the Sipaishan and Nanpihe areas, western Yunnan. Pp. 30-42. in Fang, N.-q (ed) Devonian to Triassic Tethys in Western Yunnan, China. China University of Geosciences Press.
[1210] Fang, Zhang & Feng, Qing-Lai 2005. Late Paleozoic Radiolarians from the Nongba Section, in Gengma, South-Western Yunnan [?西南耿馬弄巴剖面的?古生代放射蟲動物群]. Acta Micropalaeontologica Sinica 22(4): 346-356.
[1211] Farinacci, A. & Barbieri, M. 1999. Radiolarian chert episode on the marginal ramp of the Anamas platform, a consequence of Jurassic rifting tectonics: the Zindan Gorge section, Western Taurus. Palaeopelagos Special Publication (2): 1-28.
[1212] Faupl, P. & Beran, A. 1983. Diagenetische Veranderungen an Radiolarien- und Schwammspicula-fuhrenden Gesteinen der Strubbergschichten (Jura, Nordliche Kalkalpen, Osterreich). Neues Jahrbuch für Geologie und Paläeontologie, Monatschaft 1983(3): 129-140.
[1213] Faure, M. & Ishida, K. 1990. The Mid-Upper Jurassic olistostrome of the west Philippines:a distinctive key-marker for the North Palawan block. Journal of Southeast Asian Earth Sciences 4(1): 61-67.
[1214] Faure, M., Iwasaki, M., Ichikawa, K. & Yao, A. 1991. The significance of Upper Jurassic radiolarians in high pressure metamorphic rocks of SW Japan. Journal of Southeast Asian Earth Sciences 6(2): 131-136.
[1215] Faustino, D. V., Yumul, G. P. Jr, De Jesus, J. V., Dimalanta, C. B., Aitchison, J. C., Zhou, M.-F., Tamayo, R. A. Jr & De Leon, M. M. 2003. Geology of southeast Bohol, central Philippines: Accretion and sedimentation in a marginal basin. Australian Journal of Earth Sciences 50(): 571-583.
[1216] Feary, D. A. & Hill, P. H. 1978. Mesozoic Radiolaria from cherts in the Rakumaria Peninsula, New Zealand. New Zealand Journal of Geology and Geophysics 21(3): 363-373.
[1217] Feary, D. A. & Pessagno, E. A. Jr 1980. An Early Jurassic age for chert within the Early Cretaceous Oponae Melange (Torlesse Supergroup), Raukumara Peninsula. New Zealand Journal of Geology and Geophysics 23(): 623-628.
[1218] Febvre, C., Febvre, J. & Michaels, A. 2000. Acantharia Haeckel, 1881. Pp. 783-803. in Lee, J. J., Leedale, G. F. & Bradbury, P. (ed) An Illustrated Guide to the Protozoa (2nd edition). Organisms Traditionally Referred to As Protozoa, or Newly Discovered Groups. Society of Protozoologists, Kansas.
[1219] Febvre, J. 1971. Le myoneme d'Acantaire: Essai d'interprétation ultrastructurale et cinétique. Protistologica 7(): 379-381.
[1220] Febvre, J. 1972. Le cortex ectoplasmique des acanthaires I. Les systemes mailles. Protistologica 8(): 169-178.
[1221] Febvre, J. 1973. Le cortex des Acanthaires II. Ultrastructure des zones de jonction entre les pieces corticales. Protistologica 9(): 87-94.
[1222] Febvre, J. 1974. Relations morphologiques entre les constituants de l'enveloppe, les myonemes, le squelette et le plasmalemme chez les Arthracantha Schew (Acantharia). Protistologica 10(): 141-158.
[1223] Febvre, J. 1977. La division nucléaire chez les Acanthaires 1. Étude ultrastructurale de la mitose, comparaion avec la caryocinèse d'autres organismes. Journal of Ultrastructure Research 60(): 279-295.
[1224] Febvre, J. 1981. The myoneme of the Acantharia (Protozoa): A new model of cellular motility. BioSystems 14(): 327-336.
[1225] Febvre, J. & Febvre-Chevalier, C. 1979. Ultrastructural study of Zooxanthellae of three species of Acantharia (protozoa; Actinopoda), with details of their taxonomic position in the Prymnesiales (Prymnesiophycene, Hibberd, 1976). Journal of the Marine Biological Association of the United Kingdom, N.S. 59(): 215-226.
[1226] Febvre, J. & Febvre-Chevalier, C. 1982. Motility processes in Acantharia (Protozoa). I. Cinematographic and cytologicial study of the myonemes. Evidence for a helix-coiled mechanisms of the constituent filaments. Biology of the Cell 44(): 283-304.
[1227] Febvre, J. & Febvre-Chevalier, C. 1989. Motility processes in Acantharia. II. A Ca2+ dependent system of contractile 2-4 nm filaments isolated from demembranated myonemes. Biology of the Cell 67(): 243-249.
[1228] Febvre, J. & Febvre-Chevalier, C. 1989. Motility processes in Acantharia (Protozoa). III. Calcium regulation of the contraction-relaxation cycles of in vivo myonemes. Biology of the Cell 67(): 251-261.
[1229] Febvre, J., Febvre-Chevalier, C. & Sato, H. 1990. A study in polarizing microscopy of a contractilie system of nanofilaments: the myoneme of acantharians. Biology of the Cell 69(): 41-51.
[1230] Febvre-Chevalier, C. & Lécher, O. 1971. Etude ultrastructurale des lamelles annele'es intracytoplasmiques, chez les Foraminifères et Radiolairès Phaeodaries. Comptes rendus hebdomadaires des séances de l'Académie des sciences. Ser. D, Sciences naturelles 272(): 1264-1267.
[1231] Feng, Q. 1992. Permian and Triassic radiolarian biostratigraphy in south and southwest China. Earth Science, Journal of China University of Geosciences 3(1): 51-62.
[1232] Feng, Q., He, W., Gu, S., Meng, Y., Jin, Y. & Zhang, F. 2007. Radiolarian evolution during the latest Permian in South China. Global and Planetary Change 55(): 177-192.
[1233] Feng, Q., He, W., Zhang, S. & Gu, S. 2006. Taxonomy of Order Latentifistularia (Radiolaria) from the latest Permian in Southern Guangxi, China. Journal of Paleontology 80(5): 826-848.
[1234] Feng, Q., Helmcke, D., Chonglakmani, C., Ingavat-Helmcke, R. & Liu, B. 2004. Early Carboniferous radiolarians from North-West Thailand: Palaleogeographical implications. Palaeontology 47(2): 377-393.
[1235] Feng, Q. & Liu, B. 1993. A new Early Devonian radiolarian genus from western Yunnan. Science in China. Series B, Chemistry, Life Sciences & Earth Sciences 36(2): 242-248.
[1236] Feng, Q. & Liu, B. 1993. Permian radiolarian on southwest Yunnan. Earth Science, Journal of China University of Geosciences 18(5): 553-564.
[1237] Feng, Q. & Liu, B. 1993. Radiolaria from Late Permian and Early-Middle Triassic in southwest Yunnan. Earth Science, Journal of China University of Geosciences 18(5): 540-552.
[1238] Feng, Q., Liu, B., Ye, M. & Yang, W. 1996. Age and tectonic setting of the Nanduan Formation and the Laba Group in southwestern Yunnan. Journal of Stratigraphy 20(3): 183-189.
[1239] Feng, Q. & Liu, B. 1992. Late Paleozoic Radiolaria in the some regions of southwestern Yunnan and their stratigraphic significance. Pp. 119-124. in Liu, B. & et al. (ed) Sedimentary Geology of Paleocontinental Margin. China University of Geosciences Press, Wuhan.
[1240] Feng, Q. & Liu, B.-p 1992. A new genus of Early Devonian Radiolaria from west Yunnan. Chinese Science Bulletin 5(): 495-554.
[1241] Feng, Q., Mei, Y. & Zhang, Z. 1996. Triassic radiolarian fauna from southwest China. Scientia Geologica Sinica 5(3): 381-394.
[1242] Feng, Q., Meng, Y., He, W. & Gu, S. 2007. A new genus of Entactiniidae (Radiolaria) from the Upper Permian of South China. Eclogae Geologicae Helvetiae 99(supplement 1): 67-78.
[1243] Feng, Q., Yang, F., Zhang, Z., Zhang, N., Gao, Y. & Wang, Z. 2000. Radiolarian evolution during the Permian and Triassic transition in South and Southwest China. Pp. 309-326. in Yin, H., Dickins, J. M., Shi, G. R. & Tong, J. (ed) Permian-Triassic Evolution of Tethys and Western Circum-Pacific. Elsevier Science B.V., Tokyo.
[1244] Feng, Q., Zhang, Z. & Ye, M. 2001. Middle Triassic radiolarian fauna from southwest Yunnan, China. Micropaleontology 47(3): 173-204.
[1245] Feng, Qinglai, Chonglakmani, Chongpan, Helmcke, D. & Ingavat-Helmcke, R. 2004. Long-lived paleotethyan pelagic remnant inside Shan-Thai block: evidence from radiolarian biostratigraphy. Science in China 47(12): 1113-1119.
[1246] Feng, Qinglai & Gu, Songzhu 2002. Uppermost Changxingian (Permian) radiolarian fauna from southern Guizhou, Southwestern China. Journal of Paleontology 76(5): 797-809.
[1247] Feng, Qinglai, Gu, Songzhu, He, Weihong & Jin, Yuxi 2007. Latest Permian Entactinaria (Radiolaria) from southern Guangxi, China. Journal of Micropalaeontology 26(): 19-37.
[1248] Feng, Qinglai, Gu, Songzhu, Jian, Mingli & Jin, Yuxi 2004. Two new genera of Radiolaria from the uppermost Permian of South China. Revue de Micropaléontologie 47(): 135-143.
[1249] Feng, Qinglai, He, Wihong, Gu, Songzhu, Jin, Yuxi & Meng, Youyan 2006. Latest Permian Spumellaria and Entactinaria (Radiolaria) from South China. Revue de Micropaleontology 49(1): 21-43.
[1250] Feng, Qinglai, Malila, Kitsana, Wonganan, Nutthawut, Chonglakmani, Chongpan, Helmcke, Dietrich, Ingavat-Helmcke, Rucha & Caridroit, Martial 2005. Permian and Triassic Radiolaria from northwest Thailand: paleogeographic implications. Revue de Micropaléontologie 48(): 237-255.
[1251] Feng, Qinglai, Shen, Shangyue, Liu, Benpei, Helmck, D., Qian, Xianggui & Zhang, Weiming 2002. Permian radiolarians, chert and basalt from the Daxinshan Formation in Lancangjiang belt of southwestern Yunnan, China. Science in China 45(1): 63-71.
[1252] Feng, Q.-l 1992. A preliminary study on the radiolarian palaeoecology. Geological Science and Technology Information 11(2): 41-46.
[1253] Feng, Q.-l, Du, Y.-s, Yin, H.-f, Sheng, J.-h & Xu, J.-f 1996. Carboniferous radiolaria fauna firstly discovered in Mian-Lue ophiolitic melange belt of South Qinling Mountains. Science in China (Series D) 39(supplement): 87-92.
[1254] Feng, Q.-l, Fang, N.-g & Liu, B.-p 1996. Regional stratigraphy study of the Changning-Menglian and southern Lancangjian Belts. Pp. 23-29. in Fang, N.-q (ed) Devonian to Triassic Tethys in Western Yunnan, China. China University of Geosciences Press.
[1255] Feng, Q.-l, Fang, N.-q, Zhang, Z.-f & Huang, J.-h 1998. Uppermost Permian Radiolaria from southwestern China. Journal of China University of Geosciences 9(3): 238-245.
[1256] Feng, Q.-l, Liu, B.-p & Fang, N.-q 1997. An example on succession reconstruction of thrust slice type stratigraphy in Orogenic Belt. Scientia Geologica Sinica 32(3): 318-326.
[1257] Feng, Q.-l, Mei, Y. & Zhang, Z.-j 1997. Early Carboniferous radiolarians from western Yunnan. Acta Micropalaeontologica Sinica 14(1): 79-92.
[1258] Feng, Q.-l & Mei, Y. 1996. Permian radiolarian sedimentary assemblage and paleoecology in south and southwest China. Pp. 106-115. in Fang, N.-q (ed) Devonian to Triassic Tethys in Western Yunnan, China. China University of Geosciences Press.
[1259] Feng, Q.-l & Mei, Y. 1996. Radiolarian stratigraphy of Devonian through Middle Triassic in southwestern Yunnan. Pp. 15-22. in Fang, N.-q (ed) Devonian to Triassic Tethys in Western Yunnan, China. China University of Geosciences Press.
[1260] Feng, Y.-m, Zhang, Z.-h & Huo, Y.-g 1983. Tectonic evolution of the western part of northern Xinjiang. Contributions to the Project of Plate Tectonics of Northern China (1): 17-33.
[1261] Ferrière, J., Bonneau, M., Caridroit, M., Bellier, J., Gorican, S. & Kollmann, H. 2001. Les nappes tertiaires du Païkon (zone du Vardar, Macédoine, Grèce): arguments stratigraphiques pour une nouvelle interprétation structurale. Comptes rendus de l'Academie des sciences. Serie II, Sciences de la terre et des planetes, earth & planetary sciences 332(): 695-702.
[1262] Filatova, N. I. & Vishnevskaya, V. S. 1997. Radiolarian stratigraphy and origin of the Mesozoic terranes of the continental framework of the northwestern Pacific (Russia). Tectonophysics 269(1-2): 131-150.
[1263] Filipescu, M. G. 1938. L'etude petrographique de quelques roches sedimentaires miocenes de l'Oltenie (Roumanie). Bulletin de la Section Scientifique de l'Academie Roumainei 20(4-5): 1-5.
[1264] Filipescu, M. G. 1943. Les depots a silicoflagellidees et a radiolaires du miocene de la region subcarpatique de Roumanie. Bulletin de la Section Scientifique de l'Academie Roumainei 26(4): 261-270.
[1265] Filippov, A. N. 2001. Юрско-раннеловой вулканогео-кремнистый комплекс р. Маномы (северный Сихотэ-Алинь): Фрагмент осадочного чехла палеоокеанической плиты (Jurassic -Early Cretaceous volocanic-chert complex of the Manoma river area, Norhtern Sikhote-Alin: a fragment of the paleooceanic plate sediment cover). Тихоокеанская геология 20(1): 25-38.
[1266] Filippov, A. N., Buriy, G. I. & Rudenko, V. S. 2001. Stratigraphic sequence of volcanogenic-sedimentary deposits from the Samarka terrane (Central Sikhote-Alin): a record of paleoceanic sedimentation (Стратиграфическая последовательность вулканогенно-осадочных образований Самаркинского террейна (центральный Сихотэ-Алинь): Летопись палеоокеанической седиментации). Тихоокеанская геология 20(3): 26-46.
[1267] Filippov, A. N. & Kemkin, I. V. 2003. Clastic rocks from Permian and Triassic cherty sequences in Sikhote Alin and Japan. Lithology and Mineral Resources 38(1): 36-47.
[1268] Filippov, A. N. & Kemkin, I. V. 2007. Кремнисто-глинистые отложения юрской аккреционной призмы хр. Хехцир, Снхотэ-Алинь: Стратиграфия и генезис [Cherty-clay deposits of the Khekhtsyr Ridge Jurassic accretionary prism, Sikhote-Alin: stratigraphy and genesis]. Тихоокеанская Геология (Tikhookeanskaja Geologija) 26(1): 51-69.
[1269] Filippov, A. N., Kemkin, I. V. & Panasenko, E. S. 2000. Раннеюрские гемипелагические отложения Самаркинского террейна (Центральный Сихотэ-Алинь): строение, состав и обстановки накопления (Early Jurassic hemipelagic deposits of the Samarka terrane (Central Sikhote-Alin): structure, composition and sedimentary environments). Тихоокеанская геология 19(4): 83-96.
[1270] Fillon, R. H. 1973. Radiolarian evidence of late Cenozoic oceanic paleotemperatures, Ross Sea, Antarctica. Palaeogeography, Palaeoclimatology, Palaeoecology 14(): 171-185.
[1271] Fillon, R. H. 1975. Late Cenozoic paleo-oceanography of the Ross Sea, Antarctica. Geological Society of America, Bulletin 86(): 839-845.
[1272] Finney, S. C., Berry, W. B. N., Cooper, J. D., Ripperdan, R. L., Sweet, W. C., Jacobson, S. R., Soufiane, A., Achab, A. & Noble, P. J. 1999. Late Ordovician mass extinction: a new perspective from stratigraphic sections in central Nevada. Geology 27(3): 215-218.
[1273] Fischer, R. 1969. Roter Ammonitenkalk und Radiolarit aus derm unteren Dogger der Kammerker (Nordtirol). Mitteilungen der Bayerischen Staatssammlung für Paläontologie und Historische Geologie 9(): 93-116.
[1274] Fischli, H. 1916. Beitrage zur Kenntnis der fossilen Radiolarien in der Riginagelfluh. Mitteilungen der Naturwissenschaften Gessellschaft in Winterthur 11(): 44-47.
[1275] Florentin, J. M. & Maurrasse, R. 1979. Cenozoic radiolarian paleobiography: implications concerning plate tectonics and climatic cycles. Palaeogeography, Palaeoclimatology, Palaeoecology 26(): 253-289.
[1276] Florez, E. A. 1983. Radiolaries de algunes formaciones del Cretacio Paleogeno Inferior de Cuba occidental. Ciencias de la Tierra y del Espacio 7(): 3-36.
[1277] Fokin, S. I. 2000. Professor W. T. Schewiakoff: Life and Science. Protist 151(): 181-189.
[1278] Fol, H. 1883. Sur le Sticholonche zanclea et un nouvel ordre de Rhizopodes. Memoires de l'Institut National Genevois 15(): 1-35.
[1279] Foley, L. A., Korsch, R. J. & Orr, T. O. H. 1986. Radiolaria of Middle Jurassic to Early Cretaceous ages from the Torlesse Complex, eastern Tararua Range, New Zealand. New Zealand Journal of Geology and Geophysics 29(): 481-490.
[1280] Foreman, H. P. 1959. A new occurrence of Devonian Radiolaria in calcareous concretions of Huron member of the Ohio shale. Journal of Paleontology 33(1): 76-80.
[1281] Foreman, H. P. 1963. Upper Devonian Radiolaria from the Huron Member of the Ohio shale. Micropaleontology 9(3): 267-304.
[1282] Foreman, H. P. 1966. Two Cretaceous radiolarian genera. Micropaleontology 12(3): 355-359.
[1283] Foreman, H. P. 1968. Upper Maestrichtian Radiolaria of California. Special papers in Palaeontology (3): 1-82.
[1284] Foreman, H. P. 1978. Cretaceous Radiolaria in the eastern South Atlantic, Deep Sea Drilling Project, Leg 40. Pp. 830-843. in (ed) Initial Reports of the Deep Sea Drilling Project, 40. U.S. Government Printing Office.
[1285] Foreman, H. P. 1978. Mesozoic Radiolaria in the Atlantic Ocean off the northwest Coast of Africa, Deep Sea Drilling Project, Leg 41. Pp. 739-761. in (ed) Initial Reports of the Deep Sea Drilling Project, 41. U.S. Government Printing Office.
[1286] Foreman, H. P. 1973b. Radiolaria from DSDP Leg 20. Pp. 249-305. in Haezen, B. C. & MacGregor, I. D. (ed) Initial Reports of the Deep Sea Drilling Project, 20. U.S. Government Printing Office.
[1287] Foreman, H. P. 1975. Radiolaria from the North Pacific, Deep Sea Drilling Project, Leg 32. Pp. 579-676. in Larson, R. L., Moberley, R. & et al. (ed) Initial Reports of the Deep Sea Drilling Project, 32. U.S. Government Printing Office.
[1288] Foreman, H. P. 1977. Mesozoic Radiolaria from the Atlantic basin and its borderland. Pp. 305-320. in Swain, F. M. (ed) Stratigraphic Micropaleontology of Atlantic Basin and Borderlands. Development in Palaeontology and Stratigraphy. Volume 6. Elsevier, Amsterdam.
[1289] Foreman, H. P. 1971. Cretaceous Radiolaria, Leg 7, DSDP. Pp. 1673-1693. in Winterer, E. L., Riedel, W. R. & et al. (ed) Initial Reports of the Deep Sea Drilling Project, 7. U.S. Government Printing Office.
[1290] Foreman, H. P. 1973a. Radiolaria of Leg 10 with systematics and ranges for the families Amphipyndacidae, Artostrobiidae, and Theoperidae. Pp. 407-474. in Worzel, J. L. & Bryant, W. (ed) Initial Reports of the Deep Sea Drilling Project, 10. U.S. Government Printing Office.
[1291] Fortey, R. A. & Holdsworth, B. K. 1971. The oldest known well-preserved Radiolaria. Bollettino della Societé Paleontologica Italiana 10(2): 35-41.
[1292] Fowler, G. H. 1898. Contributions to our knowledge of the plankton of the Faroe Channel. -no. VII. A. General data of the stations. B. The Protozoa. C. The Medusae. Proceedings of the General Meetings for Scientific Business of the Zoological Society of London 1898(): 1016-1032.
[1293] Fox, H. 1896. The radiolarian cherts of Cornwall. Transactions of the Royal Geological Society of Cornwall 12(1): 39-70.
[1294] Fox, H. 1899. Supplementary notes on the Cornish radiolarian cherts and Devonian fossils. Transactions of the Royal Geological Society of Cornwall 12(4): 276-282.
[1295] Fox, H. & Teall, J. J. H. 1893. On a radiolarian chert from Mullion Island. The Quarterly Journal of the Geological Society of London 49(): 211-220.
[1296] Frenguelli, J. 1940. Consideraciones sobre los Silicoflagelados fósiles. Rev Mus La Plata N.W. 2(): 77.
[1297] Frenguelli, J. 1941. Silicoflagelados y radiolarios dl trípoli del Valle de Til-Til (Chile). Instituto del Museo de la Universidad nacional de la Plata, Notas del Museo de La Plata. Palaeontologica 6 (28): 93-100.
[1298] Fric, A. 1893. Studien im Gebiete der bohmischen Kreideformation. Palaeontologsiche Untersuchungen der einzelnen Schichten. V. Priesener Schichten. Archiv der naturwissenschaftlichen Landesdurchforschung von Bohmen 9(1): 1-135.
[1299] Friend, J. K. & Riedel, W. R. 1967. Cenozoic orosphaerid radiolarians from tropical Pacific sediments. Micropaleontology 13(2): 217-232.
[1300] Frizzell, D. L. & Middour, E. S. 1951. Paleocene Radiolaria from southeastern Missouri. Bulletin, University of Missouri, School of Mines and Metallurgy, Technical Series (77): 1-41.
[1301] Fuhlbrügge, K. 1965. Das Einbetten von Radiolarien. Mikrokosmos 54(): 372-381.
[1302] Fuhlbrügge, K. 1965. Radiolarien. Mikrokosmos 54(): 203-208.
[1303] Fujihara, Takeshi 2009. Difference in radiolarian ages of Middle Jurassic manganese carbonate nodules and their host rocks in the Minoe Terrane: Implications for the origin of manganese carbonate micro-spherules. News of Osaka Micropaleontologists (NOM), Special Volume (14): 413-432.
[1304] Fujii, J., Hattori, I. & Nakajima, T. 1993. A study of radiolarian biostratigraphy and magnetostratigraphy of early Mesozoic red bedded chert, central Japan. News of Osaka Micropaleontologists, Special Volume (9): 71-89.
[1305] Fujimoto, H. 1933. Origin of the radiolarian cherts in the Kwanto Mountainland (Preliminary report). Hakubutsugaku-Zasshi 31(): 85-96.
[1306] Fujimoto, H. 1933. Stratigraphic studies on the radiolarian chert of the Kwanto montainland (Preliminary report). Journal of the Geographical Society of Tokyo 45(533): 325-332.
[1307] Fujimoto, H. 1933. Stratigraphic study on the radiolarian chert of the Kwanto mountainland. Journal of the Geological Society of Japan 40(): 411-415.
[1308] Fujimoto, H. 1937. Geological study in the western part of the Kanto Mountains. Journal of the Geological Society of Japan 44(525): 604-607.
[1309] Fujimoto, H. 1938. Radiolarian remains discovered in a crystalline schist of the Sambagawa System. Proceedings of the Imperial Academy, Tokyo 14(7): 252-254.
[1310] Fujimoto, H. 1939. Radiolarian fossils from the Sambagawa System and geologic ages of the Sambagawa and Mikabu systems. Pp. 95-99. in (ed) Geographical Review of Japan. Publisher unknown.
[1311] Fujimoto, H. 1939. Study of the radiolarian fossils. No.1 Chichibu System. Journal of the Geological Society of Japan 46(549): 337-340.
[1312] Fujita, H. 1989. Stratigraphy and geologic structure of the Pre-Neogene strata in the Central Ryukyu Islands. Journal of science of the Hiroshima University. Ser. C, Geology and Mineralogy 9(1): 237-284.
[1313] Fujita, Hiroshi 1983. Cretaceous radiolarians from the Motobu Peninsula, the Okinawa Island. The Earth Monthly 5(12): 733-738.
[1314] Fukudomi, T. 1990. Jurassic melange, Kanoashi Complex, in western Shimane Prefecture, southwest Japan. Journal of the Geological Society of Japan 96(8): 653-667.
[1315] Fukushima Museum 1994. Microfossil research data from the Neogene strata in the Aizu, Fukushima. Research Report of the Fukushima Museum (29): 1-83.
[1316] Funakawa, S. 1993. Late Miocene radiolarian fossils from eastern Hokkaido, Japan. News of Osaka Micropaleontologists, Special Volume (9): 293-311.
[1317] Funakawa, S. 1994. Plagiacanthidae (Radiolaria) from the Upper Miocene of eastern Hokkaido, Japan. Transactions and Proceedings of the Palaeontological Society of Japan, New Series (174): 458-483.
[1318] Funakawa, S. 1995. Intrageneric variation and temporal change in the internal skeletal structure of plagiacanthids (Radiolaria) from Hokkaido, Japan. Transactions and Proceedings of the Palaeontological Society of Japan, New Series (180): 208-225.
[1319] Funakawa, S. 1995. Lophophaeninae (Radiolaria) from the Upper Oligocene to Lower Miocene and intrageneric variation in their internal skeletal structures. Journal of Geosciences, Osaka City University 38(): 13-61.
[1320] Funakawa, S. & Nishi, H. 2005. Late middle Eocene to late Oligocene radiolarian biostratigraphy in the Southern Ocean (Maud Rise, ODP Leg 113, Site 689). Marine Micropaleontology 54(): 213-247.
[1321] Funakawa, S. & Nishi, Hiroshi 2008. Radiolarian faunal changes during the Eocene - Oligocene transition in the Southern Ocean (Maud Rise, ODP Leg 113, Site 689) and its significance in paleoceanographic change. Micropaleontology 54(1): 15-26.
[1322] Funakwa, S. 2000. Internal skeletal structures of the Cenozoic genera Gondwanaria, Lipmanella and Lithomelissa (Plagiacanthidae, Nassellaria) and their taxonomy. Micropaleontology 46(2): 97-121.
[1323] Funayama, M. 1988. Miocene radiolarian stratigraphy of the Suzu area, northeastern part of the Noto Peninsula, Japan. Contributions from the Institute of Geology and Paleontology, Tohoku University (91): 15-41.
[1324] Funnell, B. M., Haslett, S.K., Kennington, K., Swallow, J. E. & Kersley, C. L. 1996. Strangeness of the equatorial Ocean during the Olduvai magnetosubchron. Pp. 93-109. in Moguilevsky, A. & Whatley, R. (ed) Microfossils and Oceanic Environments. University of Wales, Aberystwyth-Press, Aberystwyth.
[1325] Furner, H. 1951. Die Tithon-Berriasbreccien von Hahnenmoospass, SW Adelboden (Berner Oberland). Ultrahelvetikum der Sattlezone. Eclogae Geologicae Helvetiae 43(2): 161-166.
[1326] Furukubo, M., Tonishi, K., Sashida, K. & Igo, Hy 1985. Biostratigraphy of the Middle Jurassic Radiolaria in the south zone of the Chichibu Terrain in the Kanto Mountains, central Japan. Annual Report of the Institute of Geoscience, the University of Tsukuba (11): 27-31.
[1327] Furutani, H. 1982. Skeletal constructions and phylogeny of Palaeoscenidiidae. News of Osaka Micropaleontologists, Special Volume (5): 11-16.
[1328] Furutani, H. 1983. Middle Paleozoic Palaeoscenidiidae (Radiolaria) from Mt. Yokokura, Shikoku, Japan. Part 1. Transactions and Proceedings of the Palaeontological Society of Japan, New Series (130): 96-116.
[1329] Furutani, H. 1986. The structure of the spicules and the systematics of the superfamilies Entactinoidea and Palaeoscenidioidea. News of Osaka Micropaleontologists, Special Volume (7): 109-115.
[1330] Furutani, H. 1990. Middle Paleozoic radiolarians from Fukuji Area, Gifu Prefecture, central Japan. Journal of Earth Sciences, Nagoya University 37(): 1-56.
[1331] Furutani, H. 1997. Transition of Late Devonian radiolarian assemblages in Mt. Yokokura, Kochi Japan: evolution of Palaeoscenidiidae and Ceratoikiscidae and its circumstances. News of Osaka Micropaleontologists, Special Volume (10): 15-26.
[1332] Furutani, H. 1998. Transition of the morphological diversity in the environmental process of the genus Tlecerina (Palaeoscenidiidae) observed at the Nakahata section in the Yokokurayama Group, Shikoku Japan. News of Osaka Micropaleontologists, Special Volume (11): 1-9.
[1333] Furutani, H. 2001. Morphological change of the family of Palaeoscenidiidae and Ceratoikiscidae at the boundary of the Stage 6 and 7 in the Nakahata section of the Nakahata Formation. News of Osaka Micropaleontologists, Special Volume (12): 1-11.
[1334] Furutani, H. 1981. Ordovician and Silurian of the Fukuji area, Gifu Prefecture, with special reference to the radiolarian fossil. Pp. 13-16. in Kano, H. (ed) Some Geological and Petrological Problems on the Lower Palaeozoic and Upper Proterozoic in the Japanese Islands and Its Adjacent Area. publisher unknown.
[1335] Furutani, H. 1996. Evolution of Palaeoscenidiidae and Ceratoikiscidae (Radiolaria) in Late Devonian (preliminary report). Pp. 71-84. in Noda, H. & Sashida, K. (ed) Professor Hisayoshi Igo, Commemorative Volume on Geology and Paleontology of Japan and Southeast Asia. Gakujyutsu Tosyo Insatu Co., Tokyo.
[1336] Futakami, M., Obata, I., Matsukawa, M., Taketani, Y., Ito, M., Saiki, K. & Nagata, H. 1998. Stratigraphy and Palaeontology of the Lower Cretaceous along the Pombetsu River in Hokkaido, Japan. Part 2 - Main Part of the Middle Yezo Group -. The Ishikari River Local Head Office Hokkaido Development Bureau, Hokkaido, 69 pp.
|