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FIGURE 12 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 12. Antarctoscyphus admirabilis Peña Cantero, Svoboda & Vervoort, 1999: A, branch internode with hydrotheca. Symplectoscyphus aggregatus (Jäderholm, 1917): B, fragment of branch with hydrothecal arrangement and shape. Symplectoscyphus anae Peña Cantero, Svoboda & Vervoort, 2002: C, internode with hydrotheca. Symplectoscyphus densus sp. nov.: D–E, fragment of branch with hydrothecal arrangement and shape; Symplectoscyphus exochus Blanco, 1982: F, internode with hydrotheca. Symplectoscyphus liouvillei (Billard, 1914): G, internode with hydrotheca. Symplectoscyphus vanhoeffeni Totton, 1930: H, internode with hydrotheca. Symplectoscyphus weddelli Peña Cantero, Svoboda & Vervoort, 2002: I, internode with hydrotheca. Symplectoscyphus sp.1: J, internode with hydrotheca. Symplectoscyphus sp.2: K, internode with hydrotheca. (A from Stn 17; B from Stn 112; C from Stn 126; D from Stn 7 (holotype); E from Stn 97 (paratype); F from Stn 67; G from Stn 150; H from Stn 130; I, from Stn 53; J from Stn 7; K from Stn 25). Scale bar: 250 µm.
FIGURE 14 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 14. Holotype of Symplectoscyphus densus sp. nov.: A, fragment of the stem with arrangement and shape of hydrothecae; B, idem, also with branch origin; C–D, hydrothecae; E, detail of hydrothecal aperture. Paratype of Symplectoscyphus densus sp. nov.; F, fragment of branch with arrangement and shape of hydrothecae; G–H, hydrothecae. (A–E from Stn 7; F–H from Stn 97). Scale bar: 200 µm (A–B, F), 100 µm (C–D, G–H), 50 µm (E).
FIGURE 1 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 1. Area of study (red circle indicating the Ross Sea, red square the area studied during the BioRoss 2004 survey, numbers referring to previous studies).
FIGURE 10. Staurotheca compressa Briggs, 1938 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 10. Staurotheca compressa Briggs, 1938: A, hydrotheca. Staurotheca densa Peña Cantero & Vervoort, 2003: B, hydrotheca. Staurotheca dichotoma Allman, 1888: C, hydrotheca. Staurotheca gracilis sp. nov.: D, basal part of a branch with hydrothecal arrangement; E–G, hydrothecae. Staurotheca nonscripta Peña Cantero, Svoboda & Vervoort, 1997: I, hydrotheca. (A, from Stn 178; B from Stn 67; C, from Stn 140; D–E, G–H from the holotype; F from the paratype; I from Stn 148). Scale bar: 250 µm (A–C, E–H), 500 µm (D).
FIGURE 2 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 2. Bimeria corynopsis Vanhöffen, 1910: A, polyp with swollen tentacle ends; B, nematocysts (microbasic euryteles and desmonemes). Rhizorhagium antarcticum (Hickson & Gravely, 1907): C, discharged microbasic eurytele. Hydractinia sp.: D, polyp. (A, D from Stn 139; B from Stn 140; C from Stn 130). Scale bar: 200 µm (A, D), 10 µm (B–C).
FIGURE 11 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 11. Staurotheca pachyclada (Jäderholm, 1904): A–B, hydrothecae. Staurotheca polarsterni Peña Cantero, Svoboda & Vervoort, 1997: C–E, hydrothecae. Staurotheca sp.: F–I hydrothecae. (A from Stn 124; B from Stn 17; C–E from Stn 19; F–H from Stn 53; I from Stn 67). Scale bar: 250 µm.
FIGURE 7 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 7. Cnidome of Tubularia longstaffi Hickson & Gravely, 1907: A, larger stenoteles (arrow); B, smaller stenotele (arrow); C, haploneme (arrow); D, haploneme (arrow). (All images from Stn 150). Scale bar: 10 µm.
FIGURE 6 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 6. Tubularia longstaffi Hickson & Gravely, 1907: A, fragment of hydrocaulus; B, distal part of hydrocaulus and polyp; C, polyp and gonophores (lateral view); D, polyp and gonophores (upper view). (All images from Stn 105). Scale bar: B: 5 mm; A, C, D: 1 mm.
FIGURES 26–31 in A new genus of leaf beetle (Coleoptera: Chrysomelidae: Eumolpinae) from Three Kings Islands, New Zealand
FIGURES 26–31. Tyrannomolpus rex, morphological details; 26: ovipositor; 27: gonocoxites; 28: spermatheca; 29: aedeagus ventral; 30: aedeagus lateral; 31: main body of penis ventral.
FIGURES 13–25 in A new genus of leaf beetle (Coleoptera: Chrysomelidae: Eumolpinae) from Three Kings Islands, New Zealand
FIGURES 13–25. Tyrannomolpus rex, morphological details; 13: metendosternite; 14: mesonotum and scutellary shield dorsal; 15: elytral disc; 16: elytral apex; 17: hind wing right; 18: pygidium (tergum VII); 19: abdomen; 20: abdominal apex; 21: tarsal claws; 22: left hind leg; 23: right protibia; 24: protarsus male; 25: protarsus female.
FIGURES 3–12 in A new genus of leaf beetle (Coleoptera: Chrysomelidae: Eumolpinae) from Three Kings Islands, New Zealand
FIGURES 3–12. Tyrannomolpus rex, morphological details; 3: head, midcranial suture marked with white arrow; 4: head, left lateral; 5: labrum; 6: maxilla; 7: labium and labial palpi; 8: antenna; 9: pronotum dorsal; 10: prosternum; 11: mesoventrite, mesanepisternum, mesepimeron, metaventrite, metanepimeron; 12: prosternum, anterior view.
FIGURES 32–35 in A new genus of leaf beetle (Coleoptera: Chrysomelidae: Eumolpinae) from Three Kings Islands, New Zealand
FIGURES 32–35. New Zealand Eumolpinae; 32: Pilacolaspis sp., body length 5.1 mm; 33: Atrichatus aeneicollis Broun, body length 5.5. mm; 34: Peniticus suffusus Sharp, body length 4.6 mm; 35: Eucolaspis nr. brunnea (Fabricius), body length 4.1 mm.
FIGURE 4. a in Hidden conservation vulnerability within a cryptic species complex: taxonomic revision of the spotted skink (Oligosoma lineoocellatum; Reptilia: Scincidae) from New Zealand
FIGURE 4. a) O. elium holotype, RE003737 (photo: Jean-Claude Stahl), Motunau Island. b) Live specimen of O. elium, Motunau Island (photo: Marieke Lettink).
FIGURE 6. a–e in Hidden conservation vulnerability within a cryptic species complex: taxonomic revision of the spotted skink (Oligosoma lineoocellatum; Reptilia: Scincidae) from New Zealand
FIGURE 6. a–e. Notched boxplots comparing the morphological characteristics of the species in the Oligosoma lineoocellatum species group (O. elium, O. kokowai, O. lineoocellatum, O. prasinum). a) snout-vent length (SVL)/head width (HW), b) midbody scales, c) lower ciliaries, d) axilla-groin (AG)/snout-forelimb (SF), e) upper ciliaries. If there is no overlap between two medians, then the medians are significantly different at a 95% confidence interval.
FIGURE 3. a in Hidden conservation vulnerability within a cryptic species complex: taxonomic revision of the spotted skink (Oligosoma lineoocellatum; Reptilia: Scincidae) from New Zealand
FIGURE 3. a) O. kokowai holotype, RE000305, Brothers Island (photo: Jean-Claude Stahl). b) Live specimen of O. kokowai, Matiu/Somes Island.
FIGURE 5. a in Hidden conservation vulnerability within a cryptic species complex: taxonomic revision of the spotted skink (Oligosoma lineoocellatum; Reptilia: Scincidae) from New Zealand
FIGURE 5. a) O. prasinum holotype, Tekapo, Mt Hay (photo: Jean-Claude Stahl). b) Live specimen of O. prasinum, Edwards Stream (photo: Marieke Lettink).
FIGURE 2. a in Hidden conservation vulnerability within a cryptic species complex: taxonomic revision of the spotted skink (Oligosoma lineoocellatum; Reptilia: Scincidae) from New Zealand
FIGURE 2. a) O. lineoocellatum holotype (photo: Te Papa). b) Live specimen of O. lineoocellatum, Mt Cavendish, Port Hills, Christchurch (photo: Marieke Lettink).
FIGURE 1 in Hidden conservation vulnerability within a cryptic species complex: taxonomic revision of the spotted skink (Oligosoma lineoocellatum; Reptilia: Scincidae) from New Zealand
FIGURE 1. Map showing the localities for the Oligosoma lineoocellatum species complex specimens examined in this study. (O. lineoocellatum, solid black circles; O. elium, white circles; O. kokowai, white triangles; O. prasinum, white circle with central black dot).
FIGURE 34 in New species and phylogeny of landhoppers in the genus Waematau Duncan, 1994 (Crustacea: Amphipoda: Talitridae) from northern New Zealand
FIGURE 34. Bayesian phylogeny of Waematau from analyses of concatenated mitochondrial CO1 and 16S, and nuclear histone H3 DNA sequences. Phylogeny is rooted With Parorchestia tenuis. Support values (maximum likelihood bootstrap, maximum parsimony bootstrap and Bayesian posterior probability) are shoWn for internal nodes.
FIGURE 33. Waematau unuwhao Duncan, 1994 in New species and phylogeny of landhoppers in the genus Waematau Duncan, 1994 (Crustacea: Amphipoda: Talitridae) from northern New Zealand
FIGURE 33. Waematau unuwhao Duncan, 1994, female MNZ CR.023897 (pleopod 1), Kohuroa (A), Northland; female MNZ CR.022710 (pleopods 2–3), Kohuroa (A), Northland; male MNZ CR.023895 (uropods 1–3, telson), Kohuroa (A), Northland.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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