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Tellina

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Journal Article
Journal: Geology
Published: 01 September 2007
Geology (2007) 35 (9): 811–814.
...Matthew A. Kosnik; Quan Hua; Geraldine E. Jacobsen; Darrell S. Kaufman; Raphael A. Wüst Abstract Radiocarbon-calibrated amino acid racemization ages of 250 individually dated Tellina shells from two sediment cores are used to quantify molluscan time averaging with increasing burial depth...
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FIGURE 8—Biofilms coating shell surface of Tellina gouldii from location L34. A) Overview of shell with encrusting biofilms. B–C) Sponge spicules in biofilms, including monaxones (B) and sphaerasters (C). D) Diatoms, coccoliths, and fungal hyphae in a biofilm
Published: 01 September 2008
FIGURE 8 —Biofilms coating shell surface of Tellina gouldii from location L34. A) Overview of shell with encrusting biofilms. B–C) Sponge spicules in biofilms, including monaxones (B) and sphaerasters (C). D) Diatoms, coccoliths, and fungal hyphae in a biofilm
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FIGURE 8. Photographs of mollusk species from the Golfe d'Arguin (Mauritania): A) Donax burnupi, 15 mwd; B) Cuna gambiensis, 89 mwd, 18 mwd; C) Ervilia castanea, 103 mwd; D) Tellina compressa, 92 mwd; E) Tellina densestriata, 53 mwd; F) Tellina rubicincta, 53 mwd; G) Nassarius elatus, 92 mwd; H) Marginella cleryi, 71 mwd; I) Percicula cornea, 38 mwd; J) Persicula cingulata, 33 mwd. For bivalves, external and internal views of the same valve are shown (upper pictures), while internal view of the other valve shows a different specimen (lower picture). Scale for each species is shown on the figure.
Published: 01 July 2011
FIGURE 8. Photographs of mollusk species from the Golfe d'Arguin (Mauritania): A) Donax burnupi , 15 mwd; B) Cuna gambiensis , 89 mwd, 18 mwd; C) Ervilia castanea , 103 mwd; D) Tellina compressa , 92 mwd; E) Tellina densestriata , 53 mwd; F) Tellina rubicincta , 53 mwd; G) Nassarius elatus
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—Tellina candeana-Ervilia nitens Subassemblage related to per cent non-skeletal grains.
Published: 01 October 1964
Fig. 17. — Tellina candeana-Ervilia nitens Subassemblage related to per cent non-skeletal grains.
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—Tellina candeana-Ervilia nitens Subassemblage related to per cent grains.
Published: 01 October 1964
Fig. 18. — Tellina candeana-Ervilia nitens Subassemblage related to per cent grains.
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—Tellina candeana-Ervilia nitens Subassemblage related to median grain size.
Published: 01 October 1964
Fig. 19. — Tellina candeana-Ervilia nitens Subassemblage related to median grain size.
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—Tellina candeana-Ervilia nitens Subassemblage related to sorting.
Published: 01 October 1964
Fig. 20. — Tellina candeana-Ervilia nitens Subassemblage related to sorting.
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—Distribution of pelecypod, Tellina tampaensis, characteristic of very shallower portions of enclosed hypersaline environment, Laguna Madre.
Published: 01 September 1959
FIG. 27b. —Distribution of pelecypod, Tellina tampaensis , characteristic of very shallower portions of enclosed hypersaline environment, Laguna Madre.
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Figure 4. Summary of shell-dissolution experiments. The rate of shell loss (mg(2/3) / min) in 0.1 M HCl on the y-axis. A, Rate of shell loss by taxon. Turbo has the lowest rate of dissolution, and Tellina has the highest rate. B, Rate of shell dissolution versus the starting shell mass (mg) on the x-axis. None of dashed gray regression lines are statistically significant. Ethalia and Natica show no clear relation with starting mass. The apparent relations indicated for Turbo and Tellina are overwhelmed by within-taxon variability
Published: 01 November 2009
Figure 4. Summary of shell-dissolution experiments. The rate of shell loss (mg (2/3) / min) in 0.1 M HCl on the y-axis. A, Rate of shell loss by taxon. Turbo has the lowest rate of dissolution, and Tellina has the highest rate. B, Rate of shell dissolution versus the starting shell mass (mg
Journal Article
Journal: AAPG Bulletin
Published: 01 September 1970
AAPG Bulletin (1970) 54 (9): 1651–1676.
... the communities are Tellina, Mulinia-Syndosmya, Retusa; Syndosmya-Aligena ; and Macoma balthica . Only the last named community is sharply delineated. The association of the estuary mouth grades into the shallow open-ocean community of the area, the Tellina-Spisula community. Several physical parameters...
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Figure 11. Shell size and half-life. Age-frequency distributions overlain with best-fit exponential distributions using shells recovered from deeper than 25 cm in core 2. The left column contains shells smaller than the median, whereas the right column contains shells larger than the median except in the case of Tellina for which small and large shells were specifically sampled. Plot format identical to Figure 8. In all cases the small shells have a shorter half-life than the large shells, but this difference is significant only for Tellina and Turbo opercula
Published: 01 November 2009
in the case of Tellina for which small and large shells were specifically sampled. Plot format identical to Figure 8 . In all cases the small shells have a shorter half-life than the large shells, but this difference is significant only for Tellina and Turbo opercula
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Figure 18. Stratigraphic range of marine fossils and successive marine faunas, near Eugene. 1-Macrocallista andersoni, 2-Marcia bunkeri, 3-Pitar californiana, 4-Polinices nuciformis, 5-Solena columbiana, 6-Spisula rushi, 7-Tellina cowlitzensis, 8-Thracia karquinezensis, 9-Turritella uvasana, 10-Yoldia olympiana, 11-Kewia sp., 12-Conus armentrouti, 13-Raninoides washburnei, 14-Molopophorus bretzi, 15-Salenia schencki, 16-Ophiocrossota baconi, 17-Panopea abrupta, 18-Modiolus eugenensis, 19-Acrilla becki, 20-Martesia turnerae, 21-Yoldia tenuissima, 22-Priscofusus sp, 23-Yoldia oregona, 24-Ficus modesta, 25-Spisula pittsburgensis, 26-Aturia angustata, 27-Sinum obliquum, 28-Mya kusiroensis, 29-Callianassa sp, 30-Crenella sp., 31-Plagiolophus weaveri, 32-Teredo sp., 33-Anadara sp., 34-Tellina sp., 35-Exilia lincolnensis, 36-Pandora laevis, 37-Tellina pittsburgensis, 38-Megokkos macrospinus, 39-Raninoides eugenensis, 40-Raninoides fulgidus, 41-Acteon parvum, 42-Callianassa oregonensis, 43-Pitar sp., 44-Cylichnina turneri, 45-Palehomola gorrelli, 46-Zanthopsis vulgaris, 47-Graptocarcinus sp., 48-Raninoides asper, 49-Sanguinolaria townsendensis, 50-Martesia sp., 51-Natica sp., 52-Macoma vancouverensis, 53-Lucinoma acutilineata, 54-Macrocallista pittsburgensis, 55-Crepidula ungana, 56-Olequahia schenki, 57-Tellina lincolnensis, 58-Solen sicarius, 59-Nemocardium formosum, 60-Balanus sp., 61-Bruclarkia vokesi, 62-Scaphander stewarti, 63-Molopophorus dalli, 64-Pitar clarki, 65-Pseudocardium sp., 66-Epitonium condoni, 67-Molopophorus fishi, 68-Neverita thomsonae, 69-Dentalium lanensis, 70-Acila nehalemensis, 71-Perse lincolnensis, 72-Calyptraea diegoana, 73-Solena eugenensis, 74-Portlandia chehalisensis, 75-Parvicardium eugenense, 76-Nuculana washingtonensis, 77-Tellina aduncasana, 78-Thracia condoni, 79-Gemmula bentsoni, 80-Semele willamettensis, 81-Macrocallista sp., 82-Diplodonta parilis, 83-Spisula eugenensis, 84-Tellina eugenia, 85-Polinices washingtonensis, 86-Acrilla dickersoni, 87-Pitar dalli, 88-Bruclarkia columbianum, 89-Macoma iniquinata, 90-Calappa lanensis, 91-Persephona bigranulata, 92-Zanthopsis hendersonianus, 93-Acila shumardi, 94-Terebratalia transversa, 95-Molopophorus gabbi, 96-Serpulites sp., 97-Acmaea dickersoni, 98-Acmaea mitria, 99-Chlamys cowlitzensis, 100-Chlamys grunskyi, 101-Chlamys washburnei, 102-Eohemithyris alexi, 103-Idmonea sp., 104-Membranipora sp., 105-Mytilus snohomishensis, 106-Ostrea sp., 107-Terebratulina tejonensis, 108-Terria sp. (data from Rathbun, 1926; Vokes et al., 1951; Hickman, 1969, 1980; Shroba, 1992; Schweitzer and Feldman, 2000; Burns and Mooi, 2003).
Published: 01 July 2004
Figure 18. Stratigraphic range of marine fossils and successive marine faunas, near Eugene. 1- Macrocallista andersoni , 2- Marcia bunkeri , 3- Pitar californiana , 4- Polinices nuciformis , 5- Solena columbiana , 6- Spisula rushi , 7- Tellina cowlitzensis , 8- Thracia karquinezensis , 9
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Figure 9. Age-frequency distributions overlain with best-fit exponential distributions from core 2. Only shells recovered from deeper than 25 cm are included. Plot format identical to Figure 8. A, Ethalia. B, Natica. C, Tellina. D, Turbo opercula
Published: 01 November 2009
Figure 9. Age-frequency distributions overlain with best-fit exponential distributions from core 2. Only shells recovered from deeper than 25 cm are included. Plot format identical to Figure 8 . A, Ethalia . B, Natica . C, Tellina . D, Turbo opercula
Journal Article
Journal: PALAIOS
Published: 01 July 2011
PALAIOS (2011) 26 (7): 447–460.
...FIGURE 8. Photographs of mollusk species from the Golfe d'Arguin (Mauritania): A) Donax burnupi , 15 mwd; B) Cuna gambiensis , 89 mwd, 18 mwd; C) Ervilia castanea , 103 mwd; D) Tellina compressa , 92 mwd; E) Tellina densestriata , 53 mwd; F) Tellina rubicincta , 53 mwd; G) Nassarius elatus...
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Journal Article
Journal: Paleobiology
Published: 01 November 2009
Paleobiology (2009) 35 (4): 565–586.
...Figure 4. Summary of shell-dissolution experiments. The rate of shell loss (mg (2/3) / min) in 0.1 M HCl on the y-axis. A, Rate of shell loss by taxon. Turbo has the lowest rate of dissolution, and Tellina has the highest rate. B, Rate of shell dissolution versus the starting shell mass (mg...
FIGURES | View All (11)
Journal Article
Journal: Geology
Published: 01 March 2008
Geology (2008) 36 (3): 199–202.
...) and laterally extensive, covering a >1 km 2 area. The shell assemblage from the deposit contained a mean of 59% for articulated bivalves of allochthonous offshore and subtidal species (e.g., Tellina palatam ) as well as a mean of 20% for lagoonal species, indicating large-scale erosion and transport...
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FIGURE 4—Boring traces. A) Traces of the boring sponge Cliona (Entobia isp.) on a shell of Tellina gouldii from sample station L7. B) Boring traces of predating gastropods of the family Muricidae (Oichnus simplex, cylindrical). C) Boring traces of predating gastropods of the family Naticidae (Oichnus paraboloides, conical)
Published: 01 September 2008
FIGURE 4 —Boring traces. A) Traces of the boring sponge Cliona ( Entobia isp.) on a shell of Tellina gouldii from sample station L7. B) Boring traces of predating gastropods of the family Muricidae ( Oichnus simplex , cylindrical). C) Boring traces of predating gastropods of the family
Journal Article
Journal: GSA Bulletin
Published: 01 June 1970
GSA Bulletin (1970) 81 (6): 1789–1806.
... characteristically tropical marine species of Turritella, Ficopsis and Tellina. The structural history of the area includes deformation and erosion of the Lower Cretaceous metavolcanic and granitic rocks followed by persistent relative stability. The overlying younger strata exhibit only low inclinations, in part...
Journal Article
Published: 01 January 1968
Journal of Paleontology (1968) 42 (1): 94–95.
...Rodney M. Feldmann Abstract Concentric color banding was observed on both valves of a single specimen of Tellina scitula Meek and Hayden from the Fox Hills Formation of Maestrichtian age from Sioux County, North Dakota. A specimen of Dosiniopsis deweyi showed a faint indication of a color pattern...
Journal Article
Journal: AAPG Bulletin
Published: 01 October 1964
AAPG Bulletin (1964) 48 (10): 1680–1704.
...Fig. 17. — Tellina candeana-Ervilia nitens Subassemblage related to per cent non-skeletal grains. ...
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