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130 results for “Scyphozoa”

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zenodo28/100

Figure 2 from: Molinari CG, Maronna MM, Morandini AC (2020) New record of Nausithoe werneri (Scyphozoa, Coronatae, Nausithoidae) from the Brazilian coast and a new synonymy for Nausithoe maculata. ZooKeys 984: 1-21. https://doi.org/10.3897/zookeys.984.56380

Figure 2 Schematic view of a typical Nausithoe sp. adult medusa, illustrating the main characters. A aboral view B lateral view. dc diameter of coronal furrow dr diameter between rhopalia dt total diameter cg coronal grove gc gastric cirri m manubrium ml marginal lappets r rhopalium t tentacle e eyespot g gonad s statolith.

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figure 1 from: Molinari CG, Maronna MM, Morandini AC (2020) New record of Nausithoe werneri (Scyphozoa, Coronatae, Nausithoidae) from the Brazilian coast and a new synonymy for Nausithoe maculata. ZooKeys 984: 1-21. https://doi.org/10.3897/zookeys.984.56380

Figure 1 Nausithoe sp. from Brazil. A tissue balls originated from polyp AC02 ephyrae B emerged polyps from same tissue balls in A after 22 weeks, showing the polyp opening; note that the basal parts are fused C external view of part of polyp AC18, showing by transparency the internal whorls of cusps (wc) D oral disc of polyp AC01, showing the tentacle crown (tc) and the mouth opening (m) with the gastric longitudinal septa (gs) E polyp AC02 releasing ephyrae.

opencc-by-4.0Nov 2020View details →
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Figure 3 from: Molinari CG, Maronna MM, Morandini AC (2020) New record of Nausithoe werneri (Scyphozoa, Coronatae, Nausithoidae) from the Brazilian coast and a new synonymy for Nausithoe maculata. ZooKeys 984: 1-21. https://doi.org/10.3897/zookeys.984.56380

Figure 3 SEM of cross-sections of the tube of the polyp of Nausithoe sp. AC02 at different heights. A more-basal series, with 16 cusps and additional cusps over 4 larger perradial cusps B and C two more-distal series (C being the highest along the tube), each with 8 cusps.

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figure 4 from: Molinari CG, Maronna MM, Morandini AC (2020) New record of Nausithoe werneri (Scyphozoa, Coronatae, Nausithoidae) from the Brazilian coast and a new synonymy for Nausithoe maculata. ZooKeys 984: 1-21. https://doi.org/10.3897/zookeys.984.56380

Figure 4 Adult medusae from polyps of Nausithoe sp. AC10 (A–C) and AC20 (D–H) A beginning of gonad (g) development B two gonads with gametic cells still differentiating C general view of a medusa that we managed to maintain until the gonads emerged (note degree of irregularities in this specimen, due to the long period in cultivation) D aboral view of 3-month-old medusa, showing the radial muscle (rm), marginal lappets (ml), rhopalium (r), and tentacles (t) E detail of 6-month-old medusa, showing gastric filaments (gf), rhopalium with ocelli (e), and statocyst (s), and coronal groove (cg); note, no trace of gonad development F, G and H Oral view of medusae, showing lips (l) and projection of the manubrium, from less projected (F) to more projected (H).

opencc-by-4.0Nov 2020View details →
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Figure 5 from: Molinari CG, Maronna MM, Morandini AC (2020) New record of Nausithoe werneri (Scyphozoa, Coronatae, Nausithoidae) from the Brazilian coast and a new synonymy for Nausithoe maculata. ZooKeys 984: 1-21. https://doi.org/10.3897/zookeys.984.56380

Figure 5 Photomicrographs of the two nematocyst types found in Nausithoe sp. A three heterotrichous microbasic euryteles discharged B holotrichous isorhiza capsules of two different sizes (large, grey arrow; small, black arrow) C a small discharged holotrichous isorhiza.

opencc-by-4.0Nov 2020View details →
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Figure 7 from: Molinari CG, Maronna MM, Morandini AC (2020) New record of Nausithoe werneri (Scyphozoa, Coronatae, Nausithoidae) from the Brazilian coast and a new synonymy for Nausithoe maculata. ZooKeys 984: 1-21. https://doi.org/10.3897/zookeys.984.56380

Figure 7 Nausithoe werneri male medusae from Mediterranean's polyp culture (A–C 5 months old D 3 months old) A aboral view of an adult medusa with mature gonads (g), contracted lappets, and extended tentacles (t) B detail of gastrovascular cavity, focusing on the gastric cirri (gc) C lateral view, focusing on the lips (l) and the extension of the manubrium D beginning of gonad (g) development (aboral view).

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figures 11-13 from: Stampar SN, Gamero-Mora E, Maronna MM, Fritscher JM, Oliveira BSP, Sampaio CLS, Morandini AC (2020) The puzzling occurrence of the upside-down jellyfish Cassiopea (Cnidaria: Scyphozoa) along the Brazilian coast: a result of several invasion events? Zoologia 37: 1-10. https://doi.org/10.3897/zoologia.37.e50834

Figures 11-13 Specimens of Cassiopea andromeda from Cabo Frio, Rio de Janeiro, Brazil: (11) general view of the area with dozens of specimens, largest one ~25 cm; (12) oral view of a preserved specimen in formalin; (13) details of oral appendages of a formalin fixed specimen. Scale bars: 12, 13 = 1 cm.

opencc-by-4.0Dec 2020View details →
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Figure 10 from: Stampar SN, Gamero-Mora E, Maronna MM, Fritscher JM, Oliveira BSP, Sampaio CLS, Morandini AC (2020) The puzzling occurrence of the upside-down jellyfish Cassiopea (Cnidaria: Scyphozoa) along the Brazilian coast: a result of several invasion events? Zoologia 37: 1-10. https://doi.org/10.3897/zoologia.37.e50834

Figure 10 Molecular reconstruction inferred under Maximum Likelihood (score: -lnL 3124) based on COI with Morandini et al. (2017) dataset and newly sequenced specimens (see Table 1 for details on the sequences used in the analysis). Numbers in nodes represent SH-aLRT support (%)/parametric aLRT support/aBayes support/standard bootstrap support (%); * less than 70/0.70.

opencc-by-4.0Dec 2020View details →
zenodo28/100

Figure 9 from: Stampar SN, Gamero-Mora E, Maronna MM, Fritscher JM, Oliveira BSP, Sampaio CLS, Morandini AC (2020) The puzzling occurrence of the upside-down jellyfish Cassiopea (Cnidaria: Scyphozoa) along the Brazilian coast: a result of several invasion events? Zoologia 37: 1-10. https://doi.org/10.3897/zoologia.37.e50834

Figure 9 South America map indicating populations of Cassiopea from Cabo Frio, Rio de Janeiro and Maceió, Alagoas. In detail map of the area of occurrence of Cassiopea andromeda in Alagoas (Meirim River).

opencc-by-4.0Dec 2020View details →
zenodo28/100

Figures 1-8 from: Stampar SN, Gamero-Mora E, Maronna MM, Fritscher JM, Oliveira BSP, Sampaio CLS, Morandini AC (2020) The puzzling occurrence of the upside-down jellyfish Cassiopea (Cnidaria: Scyphozoa) along the Brazilian coast: a result of several invasion events? Zoologia 37: 1-10. https://doi.org/10.3897/zoologia.37.e50834

Figures 1-8 Specimens of Cassiopea from Meirim River estuary: (1) general view of the touristic area with dozens of specimens; (2, 3) details of some large specimens, around 17 cm; (4, 5) details of formalin preserved large specimens; (6–8) details of oral arms, marginal lappets and a rhopaliar niche, respectively. Scale bars: 4–7 = 1 cm, 8 = 1000 µm.

opencc-by-4.0Dec 2020View details →
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FIGURE 7 in Redescription of Chrysaora lactea Eschscholtz, 1829 (Cnidaria, Scyphozoa) from the Brazilian coast, with designation of a neotype

FIGURE 7. Side view of a polyp of Chrysaora lactea. Height approximately 2 mm.

opennotspecifiedDec 2006View details →
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FIGURE 6 in Redescription of Chrysaora lactea Eschscholtz, 1829 (Cnidaria, Scyphozoa) from the Brazilian coast, with designation of a neotype

FIGURE 6. Exumbrellar view of some colour patterns observed in Chrysaora lactea. Scale = 10 cm.

opennotspecifiedDec 2006View details →
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FIGURE 3 in Two new jellyfishes (Cnidaria: Scyphozoa) from tropical Australian waters

FIGURE 3. Netrostoma nuda, sp. nov. A, Paratype specimen MTQ G55271. B, Holotype, in life.

opennotspecifiedDec 2008View details →
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FIGURE 4 in Characterizations of juvenile stages of some semaeostome Scyphozoa (Cnidaria), with recognition of a new family (Phacellophoridae)

FIGURE 4. Phacellophora camtschatica: stalk with funnel-shaped periderm tube.

opennotspecifiedDec 2011View details →
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FIGURE 2 in Characterizations of juvenile stages of some semaeostome Scyphozoa (Cnidaria), with recognition of a new family (Phacellophoridae)

FIGURE 2. Sketch of the end phase of a strobila of Cyanea capillata.

opennotspecifiedDec 2011View details →
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FIGURE 2 in A new subfamily of ulmarid scyphomedusae, the Santjordiinae, with a description of Santjordia pagesi gen. et sp. nov. (Cnidaria: Scyphozoa: Discomedusae: Semaeostomeae: Ulmaridae) from the Sumisu Caldera, Ogasawara Islands, Japan

FIGURE 2. Schematic diagram of Santjordia pagesi gen. et sp. nov. with morphological terminology.

opennotspecifiedNov 2023View details →
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Fig. 2 in Population dynamics and predatory impact of the alien jellyfish Aurelia solida (Cnidaria, Scyphozoa) in the Bizerte Lagoon (southwestern Mediterranean Sea) Abstract

Fig. 2: Seasonal variation of (A) abiotic factors (temperature and salinity), (B) zooplankton abundance and chlorophyll biomass, and (C) zooplankton composition in Bizerte Lagoon between November 2012 and August 2014.

opencc-by-4.0Mar 2020View details →
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Figure 2 in The first record of the deep-sea jellyfish Stygiomedusa gigantea (Scyphozoa: Semaeostomeae) from the tropical Southwestern Atlantic found on social media

Figure 2. Global distribution of documented records of Stygiomedusa gigantea in the literature. Sources: 1) Benfield and Graham (2010); 2) Parker et al. (2011, 2015); 3) Tarling et al. (2012); 4) Gasca and Loman-Ramos (2014); 5) Schiariti et al. (2018); 6) Schnabel et al. (2021); 7) Moore et al. (2023); 8) present study.

opencc-by-4.0Jun 2024View details →
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FIG. 2 in Biological associations between barnacles and jelly®sh with emphasis on the ectoparasitism of Alepas paci®ca (Lepadomorpha) on Diplulmaris malayensis (Scyphozoa)

FIG. 2. Alepas paciWca. SEM microphotograph of the inner side of the peduncular base.

opennotspecifiedNov 2000View details →
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Figure 1 from: Martellos S, Ukosich L, Avian M (2016) JellyWeb: an interactive information system on Scyphozoa, Cubozoa and Staurozoa. ZooKeys 554: 1-25. https://doi.org/10.3897/zookeys.554.6745

Figure 1 - Multi-entry interface. The multi-entry interface allows to combine the states of several morphologic and anatomic characters, together with taxonomic information, to query the database.

opencc-by-4.0Jan 2016View details →

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