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FIGURE 29 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 29. Other demosponge spicules and their hypothetical assignment; A, B—Bold triods of unidentified sponge; C, D—Triods of unidentified sponge; E—Acanthotriod of Stelletta splendens-type, family Ancorinidae (order Astrophorida); F, G—Acanthocalthrops of unidentified sponge; H—Spicule of unidentified sponge; I—Crambe-like spicule, family Crambeidae (order Poecilosclerida); J—Spicule of unidentified sponge; K—Spicule of unidentified sponge; L—Spherical spicules of unidentified sponge/s; M—Spicule of unidentified sponge; N–Q—Different types of spined spicules of unidentified sponge/s.
FIGURE 28 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 28. Recent plakinid spicules; A, B—Amphiclads of Placinolopha sarai (redrawn from Lévi & Lévi 1989); C—Lophocaltrop of Placinolopha bedoti (redrawn from Topsent 1897).
FIGURE 32 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 32. Monaxonic spicules; A–E—various types of oxea macroscleres; F–H—various types of style macroscleres.
FIGURE 30 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 30. Other demosponge spicules; A–I—Different types of strongyles of unidentified sponge; J–L—Bean-shaped spicules of unidentified sponge; M—Double club-shaped spicule of unidentified sponge; N–S—Different types of club-shaped spicules of unidentified sponges; T, U—Incomplete club-shaped spicules.
FIGURE 33 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 33. Lithistid Demospongiae spicules; A, B—Ectosomal phyllotiaenes of unknown lithistid sponge; C, D—Ectosomal dichotriaenes of unknown lithistid sponge; E–G—Ectosomal discotriaenes of Discodermia, family Theonellidae; H–J—Ectosomal phyllotriaenes of Theonella or Racodiscula, family Theonellidae; K—Fragment of dicranoclne desma, family Corallistidae; L, M—Different types of rhizoclones; N—Megaclone desma of Pleroma, family Pleromidae; O—Fragment of?dicranoclone desma, family Corallistidae; P–U—Different types of polytriaenes (ectosomal spicules) of lithistid sponges.
FIGURE 27 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 27. Spicules of sponges of the order Homosclerophorida; A–G—Amphiclads of Placinolopha cf. sarai Lévi & Lévi, 1989, family Plakinidae; H—Amphiclad, fragment; I–K—Lophocaltrops of Placinolopha cf. bedoti, family Plakinidae; L—Triod, probably of Placinolopha cf. bedoti, family Plakinidae.
FIGURE 26 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 26. Spicules of recent sponges; A—Spicules of Chondrilla nucula (from Rützler et al. 2007); B—Spicules of Chondrilla secunda (from Fromont et al. 2008); C, D—Amphiclads of Samus anonymus (from van Soest & Hooper 2002a).
FIGURE 25 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 25. Spicules of sponges of the order Spirophorida; A–H—Amphitriaenes of Samus anonymus, family Samidae.
FIGURE 24 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 24. Spicules of sponges of the order Chondrosida and unassigned spherical/astrose micorscleres; A—Chondrilla nucula, family Chondrillidae; B–L—Chondrilla secunda, family Chondrillidae; M–Q—Different types of other spherical microscleres; R–U—Different types of oxyspherasters.
FIGURE 23 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 23. Spicules of sponges of the order Poecilosclerida; A–C—Acanthorhabds of Crellastrina sp. (described as Yvesia), family Crellidae; D—Detail—spined spines of the acanthorhabd; E–L—Other types of acanthorhabds, probably of Crellastrina-like sponges, family Crellidae.
FIGURE 22 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 22. Spicules of recent peocilosclerid sponges; A—Punctated oxea of Histodermella australis (after van Soest 2002); B—Acanthorhasbds of Rhabdeurypon spinosum (after Hooper 2002b); C—Triod of Trikentrion flabelliforme (after Hooper 2002b); D—Acanthorhabds of Crellastrina alecto (from van Soest 2002b after Topsent 1904).
FIGURE 21 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 21. Spicules of sponges of the order Poecilosclerida; A, B—Punctated oxeas of Histodermella australis Dendy, 1924, family Coelosphaeridae; C, D—Acanthoxeas of Histodermella sp., family Coelosphaeridae; E–H—Different types of acantooxeas of the order Poecilosclerida; I—Isochelae microsclere of the order Poecilosclerida; J, K—Sigma microscleres of the order Poecilosclerida; L, M—Tylotes of the order Poecilosclerida; N—Cladotylote of Acarnus sp., family Acarnidae (not complete); O—Triod of Trikentrion flabelliforme, family Raspailiidae.
FIGURE 31 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 31. Other demosponge spicules and their hypothetical assignment; A—Strongyle-like spicule of unidentified sponge; B–F—Different types of fusiform spicules of unidentified sponge; G; H—Styles of unidentified sponge; I—Club-shaped spicule of unidentified sponge; J, K—Rhabdostyles of unidentified sponge; L—Comma spicule of unidentified sponge; M—Sculptured, acanthostrongyle-like spicule of unidentified sponge.
FIGURE 19 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 19. Spicules of sponges of the order Poecilosclerida; A–E—Anisodiscorhabds of Sigmosceptrella quadrilobata, family Podospongiidae; F–H—Exotyles of Mycale (Rhaphidotheca) cf. loricata, family Mycalidae; I–L—Exotyles of Mycale (Rhaphidotheca) sp., family Mycalidae; M, N—Dischelae of Coelodischela cf. massa, family Guitarridae; O—Pseudoastrose acanthotylote of Discorhabdella cf. incrustans, family Crambeidae; P—Discorhabd of Sigmosceptrella quadrilobata, family Podospongiidae; Q–T—Acanthostyles of the family Myxyllidae, order Poecilosclerida.
FIGURE 20 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 20. Spicules of recent sponges of the order Poecilosclerida; A—Anisodiscorhabds of Sigmosceptrella carlinae (redrawn from Boury-Esnault & van Beveren 1982); B—Anisodiscorhabds of Sigmosceptrella quadrilobata (redrawn from Kelly & Samaai 2002); C—Pseudoastrose acanthotylote of Discorhabdella incrustans (redrawn from van Soest 2002c); D, E—Exotyles of Mycale (Rhaphidotheca) loricata (redrawn from van Soest & Hajdu 2002, after Topsent 1896); F, G—Dischelae of Coelodischela diatomorpha (redrawn from Hajdu & Lerner 2002, after Vacelet et al. 1976).
FIGURE 10 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 10. Spicules of sponges of the order Hadromerida; A–C—Mucronate tylostyles of Cliona cf. mucronata, family Clionaidae; D–F—Tylostyles of the order Hadromerida; G, H—Tylostyles of Terpios sp., family Suberitidae; I, J, P, R—Anthasters of Diplastrella cf. megastellata, family Spirastrellidae; K–M—Spherostyles of Sphaerotylus sp. 1, family Polymastiidae; L–O—Spherostyles of Sphaerotylus sp. 2, family Polymastiidae; Q—Microsclere spiraster of family Spirastrellidae or Clionaidae; S–Y—Verticillate strongyles of Dotona pulchella Carter, 1880, family Clionaidae.
FIGURE 18 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 18. Spicules of sponges of the order Poecilosclerida; A–C—Sanidasters of Sceptrintus richardi, family Podospongiidae; D–I—Other Sceptrintus-like spicules.
FIGURE 12 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 12. Spicules of recent representants of the order Hadromerida; A—Subtylostyle of Cliona mucronata (redrawn from Calcinai 2005); B—subtylostyle of Cliona mucronata (redrawn from Vacelet & Vasseur 1971); C—Club-shaped spicules of Sphaerotylus vanhoeffeni (described as S. capitatus; redrawn from Hentschel 1914; size from 504 to 1080 µm).
FIGURE 6 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 6. Short-shafted mesodichotriaenes of recent pachastreallids (order Astrophorida); A—Brachiaster simplex (from Maldonado 2002); B—Triptolemma cladosum (from Maldonado 2002, redrawn from Sollas 1888).
FIGURE 13 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 13. Spicules of sponges of the order Hadromerida; A–D—Different types of selenasters of Placospongia sp., family Placospongiidae; E—Micraster of the Tethya cf. omanensis, family Tethyidae; F–H—Oxyasters of the Tethyastra oxyaster, family Tethyidae.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.