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1,183 results for “Skeleton”
Figure 16 from: van Soest R, Beglinger E, De Voogd N (2010) Skeletons in confusion: a review of astrophorid sponges with (dicho–)calthrops as structural megascleres (Porifera, Demospongiae, Astrophorida). ZooKeys 68: 1-88. https://doi.org/10.3897/zookeys.68.729
Figure 16 - Dercitus (Halinastra) berau sp. n., holotype RMNH 4256, A Habit after preservation B calthrops C various sanidasters D various aster-like compressed sanidasters.
Figure 15 from: van Soest R, Beglinger E, De Voogd N (2010) Skeletons in confusion: a review of astrophorid sponges with (dicho–)calthrops as structural megascleres (Porifera, Demospongiae, Astrophorida). ZooKeys 68: 1-88. https://doi.org/10.3897/zookeys.68.729
Figure 15 - Dercitus (Halinastra) berau sp. n., holotype RMNH 4256, from Indonesia, Kalimantan, A photographed in situ B photographed just after collection (photos N.J. De Voogd).
Figure 14 from: van Soest R, Beglinger E, De Voogd N (2010) Skeletons in confusion: a review of astrophorid sponges with (dicho–)calthrops as structural megascleres (Porifera, Demospongiae, Astrophorida). ZooKeys 68: 1-88. https://doi.org/10.3897/zookeys.68.729
Figure 14 - Dercitus (Halinastra) exostoticus, holotype ZMB 287, from Eritrea, Dahlak Archipelago, A habit B various calthrops C various sanidasters D various aster-like compressed sanidasters.
Figure 12 from: van Soest R, Beglinger E, De Voogd N (2010) Skeletons in confusion: a review of astrophorid sponges with (dicho–)calthrops as structural megascleres (Porifera, Demospongiae, Astrophorida). ZooKeys 68: 1-88. https://doi.org/10.3897/zookeys.68.729
Figure 12 - Dercitus (Stoeba) fijiensis sp. n., holotype from ZMUC, A calthrops B dichocalthrops, with type characteristic of the species at the right C sanidasters.
Figure 10 from: van Soest R, Beglinger E, De Voogd N (2010) Skeletons in confusion: a review of astrophorid sponges with (dicho–)calthrops as structural megascleres (Porifera, Demospongiae, Astrophorida). ZooKeys 68: 1-88. https://doi.org/10.3897/zookeys.68.729
Figure 10 - Dercitus (Stoeba) verdensis sp. n., holotype ZMA Por. 07521b, from Cape Verde Islands, A habit consolidating calcareous substratum B dichocalthrops C sanidasters.
Figure 13 from: van Soest R, Beglinger E, De Voogd N (2010) Skeletons in confusion: a review of astrophorid sponges with (dicho–)calthrops as structural megascleres (Porifera, Demospongiae, Astrophorida). ZooKeys 68: 1-88. https://doi.org/10.3897/zookeys.68.729
Figure 13 - Dercitus (Stoeba) bahamensis sp. n., A schizoholotype ZMA Por. 07782 and holotype HBOI 23–VIII–85–1–49 (photo J. Reed, scale bar 1 cm), from Bahamas, New Providence Island B calthrops C dichocalthrops D overview of spicules E various sanidasters.
Figure 11 from: van Soest R, Beglinger E, De Voogd N (2010) Skeletons in confusion: a review of astrophorid sponges with (dicho–)calthrops as structural megascleres (Porifera, Demospongiae, Astrophorida). ZooKeys 68: 1-88. https://doi.org/10.3897/zookeys.68.729
Figure 11 - Dercitus (Stoeba) extensus, slides from type BMNH 1907.2.1.5a, Gulf of Mannaar, Sri Lanka, A overview of peripheral skeleton (scale bar 100 µm) B dichocalthrops (scale bar 50 µm) C calthrops (scale bar 50 µm) D surface view of sanidasters (scale bar 50 µm).
Figure 2 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 2 - In situ colony of Nanipora kamurai with expanded polyps at Ama Beach, Zamami Island, Okinawa, Japan, 16 July 2012. A growing edge of the colony B middle portion of the colony. Scale bar: approximately 5 mm.
Figure 3 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 3 - Scanning electro-microscope (SEM) image for skeleton of Nanipora kamurai colony. Scale bar: 0.5 mm.
Figure 9 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 9 - A–C Different surface calcium carbonate coverage of three calyces (A>B>C) D Skeleton of younger and marginal part of the colony, partly lacks surface cover. Scale bar: 0.2 mm (A), 0.5 mm (B).
Figure 12 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 12 - Maximum likelihood tree for mtMutS sequences. Values at branches represent ML and NJ bootstrap probabilities, respectively (>50%). Bold lines represent branches with very high support in Bayesian analyses (>0.95). Sequences without accession numbers were newly obtained in this study.
Figure 1 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 1 - Living colony of Nanipora kamurai attached to the bottoms (=downward facing side) of calcium-carbonate stone at Ama Beach, Zamami Island, Okinawa, Japan, 16 July 2012. Scale bar: approximately 5 mm.
Figure 8 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 8 - Surface calcium carbonate of the darker portions. Beneath, large holes (up to 200 μm) are shown. Scale bar: 0.02 mm.
Figure 11 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 11 - 3D CT image of soft tissue. Solenial tubes forming network are shown. Scale bar: 0.5 mm.
Figure 5 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 5 - Surface of the calyx. Reticulate pattern made by numerous tiny pores. Scale bar: 0.04 mm.
Figure 7 from: Miyazaki Y, Reimer JD (2015) A new genus and species of octocoral with aragonite calcium-carbonate skeleton (Octocorallia, Helioporacea) from Okinawa, Japan. ZooKeys 511: 1-23. https://doi.org/10.3897/zookeys.511.9432
Figure 7 - Calyx of Nanipora kamurai seen from above. Cavities extend in a longitudinal direction down through the calyx are shown. Scale bar: 0.2 mm.
Figure 1 in Ontogeny of the skeleton of Moenkhausia pittieri (Ostariophysi: Characiformes) with discussion on functional demands and ossification patterns in the Characidae
Figure 1. Moenkhausia pittieri live specimen, not preserved. Photograph by Oliver Lucanus.
Fig. 1 in Bond reactivity indices approach analysis of the [2+2] cycloaddition of jatrophane skeleton diterpenoids from Euphorbia gaditana Coss to tetracyclic gaditanone
Fig. 1. Structures of compounds 1–6.
Fig. 8 in Bond reactivity indices approach analysis of the [2+2] cycloaddition of jatrophane skeleton diterpenoids from Euphorbia gaditana Coss to tetracyclic gaditanone
Fig. 8. Possible resonance structures of unpaired electrons in the triplet state of 6.
Fig. 7 in Bond reactivity indices approach analysis of the [2+2] cycloaddition of jatrophane skeleton diterpenoids from Euphorbia gaditana Coss to tetracyclic gaditanone
Fig. 7. Proposed biosynthetic routes.
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