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Journal articles on the topic 'Scalpellini'

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1

Bocard, Hélène. "Les scalpellini et le bas-relief du Palais de la Porte Dorée." Hommes & migrations, no. 1341 (April 1, 2023): 136–47. http://dx.doi.org/10.4000/hommesmigrations.15426.

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2

Ruiz Garnelo, Isabel. "«Lavors de scarpello» para la cabecera de la iglesia de Nostra Dona de Montserrat de Roma (1518-1522)." Espacio Tiempo y Forma. Serie VII, Historia del Arte, no. 12 (October 28, 2024): 245–74. http://dx.doi.org/10.5944/etfvii.12.2024.38022.

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El presente estudio explica la cabecera de la iglesia de la cofradía de Nostra Dona de Montserrat de Roma (1518-1522), proyectada por Antonio da Sangallo el Joven. A partir del análisis de los disegni de Antonio Cordini y de la planta actual, de pruebas documentales extraídas del Llibre de la fàbrica y de la observación de los restos materiales, se actualiza y amplía el conocimiento sobre la planta y sobre los trabajos realizados en travertino por los maestros scalpellini Bindo y Melchiore. Se reconstruye su localización, su cronología, su precio y sus características, y se proporcionan alguna
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3

Kugele, Michael, and Andrew B. Yule. "Active relocation in lepadomorph barnacles." Journal of the Marine Biological Association of the United Kingdom 80, no. 1 (2000): 103–11. http://dx.doi.org/10.1017/s0025315499001617.

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Comparative morphology of the cement delivery apparatus of three lepadomorph barnacles indicates that the lepadid Lepas anatifera is unable to relocate voluntarily, whereas the two scalpellids Pollicipes pollicipes and Capitulum mitella can. Mean relocation speeds of up to 50 μm d−1 were measured for both scalpellids, which are probably underestimates of maximal rates given the absence of a directed stimulus. In the laboratory neither gravity nor unidirectional flow proved effective stimuli in directing scalpellid relocation. The two scalpellid species use quite different mechanisms to effect
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4

SHALAEVA, KATE, and GEOFF BOXSHALL. "Recognition of Mesoscalpellum Hoek, 1907 sensu Newman & Ross, 1971 (Cirripedia: Scalpellidae: Scalpellinae) as a valid genus: a novel approach using ontogenetic patterns in the classification of scalpellid barnacles." Zootaxa 5501, no. 2 (2024): 237–64. http://dx.doi.org/10.11646/zootaxa.5501.2.2.

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Our ability to reconstruct the evolutionary history of deep-water scalpellid barnacles (Crustacea: Cirripedia: Scalpellidae) and to understand their geographical distributions and ecology, is limited by the lack of a robust classification system. Analysis of the ontogeny of scalpellids highlights the significant morphological changes that occur during development from the smallest, recently settled juveniles up to full-grown specimens. Externally, these ontogenetic alterations can include changes in size, shape, and in the capitulum/peduncle ratio, as well as changes in the shape of plates res
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5

Bandyopadhyay, Arghya, Priya Yadav, Keka Sarkar, and Sayan Bhattacharyya. "The destructive spontaneous ingression of tunable silica nanosheets through cancer cell membranes." Chemical Science 10, no. 24 (2019): 6184–92. http://dx.doi.org/10.1039/c9sc00076c.

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6

Buhl-Mortensen, Lene, and Jens T. Høeg. "Reproductive strategy of two deep-sea scalpellid barnacles (Crustacea: Cirripedia: Thoracica) associated with decapods and pycnogonids and the first description of a penis in scalpellid dwarf males." Organisms Diversity & Evolution 13, no. 4 (2013): 545–57. https://doi.org/10.1007/s13127-013-0137-3.

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Buhl-Mortensen, Lene, Høeg, Jens T. (2013): Reproductive strategy of two deep-sea scalpellid barnacles (Crustacea: Cirripedia: Thoracica) associated with decapods and pycnogonids and the first description of a penis in scalpellid dwarf males. Organisms Diversity & Evolution (New York, N.Y.) 13 (4): 545-557, DOI: 10.1007/s13127-013-0137-3, URL: http://dx.doi.org/10.1007/s13127-013-0137-3
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7

Bakken, Torkild, and Toril Loennechen Moen. "New records of scalpellids: Are scalpellids (Cirripedia: Scalpellidae) in the Nordic Seas confined to specific oceanographical regimes?" Fauna norvegica 24 (September 27, 2024): 1–6. http://dx.doi.org/10.5324/fn.v24i0.5942.

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Records of cirriped species in the family Scalpellidae from the Nordic Seas are scarce. New records of the four species Amigdoscalpellum hispidum (G. O. Sars, 1890), Ornatoscalpellum stroemi (M. Sars, 1859) Tarasovium cornutum (G.O. Sars, 1879) and Weltnerium nymphocola (Hoek, 1883) from the eastern part of the Norwegian Sea are reported. The record of W. nymphocola is the first from the Norwegian coastline, found on the shelf slope, and the rarely found T. cornutum was found in a depth representing the lower depth range for this species. Based on new data from the Norwegian Sea and from the l
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8

Shalaeva, Kate, and Geoff Boxshall. "An illustrated catalogue of the scalpellid barnacles (Crustacea: Cirripedia: Scalpellidae) collected during the HMS "Challenger" expedition and deposited in the Natural History Museum, London." Zootaxa 3804, no. 1 (2014): 1–63. https://doi.org/10.11646/zootaxa.3804.1.1.

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Shalaeva, Kate, Boxshall, Geoff (2014): An illustrated catalogue of the scalpellid barnacles (Crustacea: Cirripedia: Scalpellidae) collected during the HMS "Challenger" expedition and deposited in the Natural History Museum, London. Zootaxa 3804 (1): 1-63, DOI: 10.11646/zootaxa.3804.1.1
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9

Yusa, Yoichi, Natsumi Yasuda, Tomoko Yamamoto, et al. "Direct Growth Measurements of Two Deep-sea Scalpellid Barnacles, Scalpellum stearnsii and Graviscalpellum pedunculatum." Zoological Studies 57, no. 29 (2018): 1–8. https://doi.org/10.6620/ZS.2018.57-29.

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Yusa, Yoichi, Yasuda, Natsumi, Yamamoto, Tomoko, Watanabe, Hiromi Kayama, Higashiji, Takuo, Kaneko, Atsushi, Nishida, Kazuki, HØeg, Jens T. (2018): Direct Growth Measurements of Two Deep-sea Scalpellid Barnacles, Scalpellum stearnsii and Graviscalpellum pedunculatum. Zoological Studies 57 (29): 1-8, DOI: 10.6620/ZS.2018.57-29
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10

Pica, Daniela, Stephen D. Cairns, Stefania Puce, and William A. Newman. "Southern hemisphere deep-water stylasterid corals including a new species, Errina labrosa sp. n. (Cnidaria, Hydrozoa, Stylasteridae), with notes on some symbiotic scalpellids (Cirripedia, Thoracica, Scalpellidae)." ZooKeys 472 (January 19, 2015): 1–25. https://doi.org/10.3897/zookeys.472.8547.

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A number of stylasterid corals are known to act as host species and create refuges for a variety of mobile and sessile organisms, which enhances their habitat complexity. These include annelids, anthozoans, cirripeds, copepods, cyanobacteria, echinoderms, gastropods, hydroids and sponges. Here we report the first evidence of a diverse association between stylasterids and scalpellid pedunculate barnacles and describe a new stylasterid species, Errina labrosa, from the Tristan da Cunha Archipelago. Overall, five stylasterid species are found to host eight scalpellid barnacles from several biogeo
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11

Dreyer, N., Y. Yusa, A. Gale, R. R. Melzer, S. Yamato, and J. T. Høeg. "In the footsteps of Darwin: dwarf male attachment sites in scalpellid barnacles (Crustacea: Cirripedia: Thoracica) - implications for phylogeny and the evolution of sexual systems." Zoological Journal of the Linnean Society 184 (May 4, 2018): 999–1023. https://doi.org/10.1093/zoolinnean/zly018.

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Dreyer, N, Yusa, Y, Gale, A, Melzer, R R, Yamato, S, Høeg, J T (2018): In the footsteps of Darwin: dwarf male attachment sites in scalpellid barnacles (Crustacea: Cirripedia: Thoracica) - implications for phylogeny and the evolution of sexual systems. Zoological Journal of the Linnean Society 184: 999-1023, DOI: 10.1093/zoolinnean/zly018, URL: https://academic.oup.com/zoolinnean/advance-article/doi/10.1093/zoolinnean/zly018/4993064
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12

Buhl-Mortensen, Lene, and Jens T. Høeg. "Reproductive strategy of two deep-sea scalpellid barnacles (Crustacea: Cirripedia: Thoracica) associated with decapods and pycnogonids and the first description of a penis in scalpellid dwarf males." Organisms Diversity & Evolution 13, no. 4 (2013): 545–57. http://dx.doi.org/10.1007/s13127-013-0137-3.

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13

Campbell, Lyle D., and Victor A. Zullo. "Scalpellum multangulatum (H. C. Lea, 1843) (Cirripedia, Scalpellidae), senior synonym of S. gibbum Pilsbry, 1907." Journal of Paleontology 62, no. 3 (1988): 479–81. http://dx.doi.org/10.1017/s002233600005931x.

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H. C. Lea (1843, 1846), in papers on molluscs from the Tertiary of Virginia, described and illustrated the scutum and carina of a scalpellid barnacle, which he mistakenly identified as two new species of molluscs. The scutum was described as Avicula multangulata (after 1843 as A. multangula) and the carina as Patella acinaces. Conrad (1863), Meek (1864), d'Orbigny (1852), and Heilprin (1884) listed these species in their enumerations of the Tertiary molluscan fauna. Meyer (1888, p. 138) was the first to recognize the cirriped nature of these fossils. He correctly identified the plates as scutu
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14

Kim, Se-Joo, Hyun Mi Kang, Laure Corbari, and Benny K. K. Chan. "First report on the complete mitochondrial genome of the deep-water scalpellid barnacle Arcoscalpellum epeeum (Cirripedia, Thoracica, Scalpellidae)." Mitochondrial DNA Part B 3, no. 2 (2018): 1288–89. http://dx.doi.org/10.1080/23802359.2018.1532844.

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15

Young, Paulo S. "REDESCRIPTION OF SCALPELLOPSIS STRIATOCILIATA Broch, 1922, WITH A DISCUSSION ON ITS PHYLOGENETIC POSITION AND THE PEDUNCULAR PLATE PATTERN IN SCALPELLIDS." Journal of Crustacean Biology 21, no. 2 (2001): 456–68. http://dx.doi.org/10.1651/0278-0372(2001)021[0456:rossbw]2.0.co;2.

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16

Young, Paulo S. "Redescription of Scalpellopsis Striatociliata Broch, 1922, with a Discussion on Its Phylogenetic Position and the Peduncular Plate Pattern in Scalpellids." Journal of Crustacean Biology 21, no. 2 (2001): 456–68. http://dx.doi.org/10.1163/20021975-99990147.

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17

Gale, Andy, Günter Schweigert, Helmut Keupp, and Martin Röper. "Thoracican cirripedes (Crustacea) from the Kimmeridgian of Brunn and Nusplingen (southern Germany), and their bearing on the origin of calanticid and scalpellid barnacles." Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen 293, no. 1 (2019): 1–17. http://dx.doi.org/10.1127/njgpa/2019/0822.

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18

Pica, Daniela, Stephen D. Cairns, Stefania Puce, and William A. Newman. "Southern hemisphere deep-water stylasterid corals including a new species, Errina labrosa sp. n. (Cnidaria, Hydrozoa, Stylasteridae), with notes on some symbiotic scalpellids (Cirripedia, Thoracica, Scalpellidae)." ZooKeys 472 (January 19, 2015): 1–25. http://dx.doi.org/10.3897/zookeys.472.8547.

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19

SHALAEVA, KATE. "An illustrated catalogue of the scalpellid barnacles (Crustacea: Cirripedia: Scalpellidae) collected during the HMS “Challenger” expedition and deposited in the Natural History Museum, London." Zootaxa 3804, no. 1 (2014): 1. http://dx.doi.org/10.11646/zootaxa.3804.1.1.

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20

Gale, Andrew Scott. "New thoracican cirripedes (Crustacea) from the Cretaceous of Europe and North Africa." Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen 295, no. 3 (2020): 243–82. http://dx.doi.org/10.1127/njgpa/2020/0886.

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Thoracican cirripedes from the Cretaceous (Albian– Maastrichtian) of Europe (UK, France, Germany) and North Africa (Morocco, Tunisia) are described taxonomicallyand significantly aug - ment the diversity previously known from these regions. The new taxa include: a new zeugmatole - padid, Subsecolepas gen. nov. (type species: S. holtwilsoni sp. nov.), three new cretiscalpellid genera, Witherscalpellum gen. nov., Jagtscalpellum gen. nov. and Striascalpellum gen. nov., including the new species J. africanum, J. spinosum, S. bromleyi , S. barringtonensis and S. elegans and a new scalpellid of the
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21

Buhl-Mortensen, Lene, and Jens T. Høeg. "Reproduction and larval development in three scalpellid barnacles, Scalpellum scalpellum (Linnaeus 1767), Ornatoscalpellum stroemii (M. Sars 1859) and Arcoscalpellum michelottianum (Seguenza 1876), Crustacea: Cirripedia: Thoracica): implications for reproduction and dispersal in the deep sea." Marine Biology 149, no. 4 (2006): 829–44. http://dx.doi.org/10.1007/s00227-006-0263-y.

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22

Hosie, Andrew M. "Phylogenetic assessment of a new species of Amigdoscalpellum Zevina, 1978 (Cirripedia: Scalpellidae) associated with caryophyllid cup corals from New Zealand, with a key to the genus." Journal of Crustacean Biology 45, no. 1 (2025). https://doi.org/10.1093/jcbiol/ruaf010.

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Abstract A new species of deep-sea scalpellid barnacle from northern New Zealand, Amigdoscalpellum calicicolum sp. nov., is described with the aid of micro-computed tomography and analysed phylogenetically. This species is associated with solitary cup corals of the scleractinian coral genus Caryophyllia Dana, 1846, in which they are partially embedded in or overgrown by the coenosteum. Individual specimens were oriented towards the centre of the host polyp and, once removed from the host, left clear scars where the host had grown around them. The newly described species presents a unique combi
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23

Dreyer, N., Y. Yusa, A. Gale, R. R. Melzer, S. Yamato, and J. T. Høeg. "In the footsteps of Darwin: dwarf male attachment sites in scalpellid barnacles (Crustacea: Cirripedia: Thoracica) – implications for phylogeny and the evolution of sexual systems." Zoological Journal of the Linnean Society, May 4, 2018. http://dx.doi.org/10.1093/zoolinnean/zly018.

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