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FIGURE 1 in Phylogenetic relationships within the Frankliniella genus-group based on morphology, with a revision of Iridothrips (Thysanoptera, Thripidae)
FIGURE 1. Phylogenetic relationships of genera of Frankliniella genus-group. Tree generated from morphological phylogenetic analysis, unambiguous apomorphies mapped on branches, black circles indicate nonhomoplastic changes; bremer support values and bootstrap mapped near the nodes below and above branches respectively.
FIGURES 2–12 in Phylogenetic relationships within the Frankliniella genus-group based on morphology, with a revision of Iridothrips (Thysanoptera, Thripidae)
FIGURES 2–12. Character states of Frankliniella genus-group. 2–7 head: (2) Fr. insularis; (3) Fr. schultzei; (4) Y. yangtzei; (5) I. mariae; (6) Ps. araucariae; (7) I. lobulatus. 8–12 head and pronotum: (8) Fr. zizaniophila; (9) Fr. williamsi; (10) S. calcaratus; (11) T. physapus; (12) P. achaetus. [see Appendix 1 for character state codes]
text-fig. 59. Consensus cladogram of theropod relationships, showing relationships between several theropod taxa common to all recent cladistic analyses. Possible phylogenetic positions of several important problematic taxa are also indicated. in The interrelationships and evolution of basal theropod dinosaurs
text-fig. 59. Consensus cladogram of theropod relationships, showing relationships between several theropod taxa common to all recent cladistic analyses. Possible phylogenetic positions of several important problematic taxa are also indicated.
FIGURE 5 in The phylogenetic relationships of the two-winged South American Leptophlebiidae genera revisited with first description of the male imago of Bessierus Thomas & Orth (Insecta: Ephemeroptera)
FIGURE 5. Tree obtained in the cladistics analysis showing unambiguous synapomorphies. Character number are above square, state number, below. Node numbers are in bold located below respective branches. Jackknife values in squares above branches, Symmetric resampling values within ovals, below branches. Only supports above 50% are shown.
FIGURE 2. Bessierus doloris, male imago. A in The phylogenetic relationships of the two-winged South American Leptophlebiidae genera revisited with first description of the male imago of Bessierus Thomas & Orth (Insecta: Ephemeroptera)
FIGURE 2. Bessierus doloris, male imago. A, fore wing; B, tarsal claws; C, genitalia, ventral view; D, genitalia, ventral view, forceps socket, detail.
FIGURE 4. Environment where Bessierus doloris adults were collected. A in The phylogenetic relationships of the two-winged South American Leptophlebiidae genera revisited with first description of the male imago of Bessierus Thomas & Orth (Insecta: Ephemeroptera)
FIGURE 4. Environment where Bessierus doloris adults were collected. A, Crique Maman Lézard; B, Crique Gregoire.
FIGURE 1 in The phylogenetic relationships of the two-winged South American Leptophlebiidae genera revisited with first description of the male imago of Bessierus Thomas & Orth (Insecta: Ephemeroptera)
FIGURE 1. Map of distribution showing collecting sites in French Guiana and present distribution of Bessierus doloris. Round- ed sites were plotted according the indications of Thomas et al., 2000.
FIGURE 3. Bessierus doloris, male imago. A in The phylogenetic relationships of the two-winged South American Leptophlebiidae genera revisited with first description of the male imago of Bessierus Thomas & Orth (Insecta: Ephemeroptera)
FIGURE 3. Bessierus doloris, male imago. A, head, d.v.; B, head, l.v.; C, habitus, d.v.; D, habitus, l.v. d.v.= dorsal view; l.v.=lateral view.
FIGURE4 in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines: Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE4. Phylogenetic tree of Serpinema cayennensis n. sp. and four species of Camallanus based on Bayesian Inference analysis of partial 18S rDNA sequences.
FIGURE2. Serpinema cayennensis n in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines: Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE2. Serpinema cayennensis n. sp. from Rhinoclemmys punctularia Daudin from French Guiana, photomicrographs. A—anterior end of body, male, lateral view; B—anterior end of body, female, lateral view; C—buccal capsule, male, lateral view; D—buccal capsule, female, lateral view; E—dorsal trident, female, dorsal view; F—part of female genital system near vulva, lateral view; G—posterior end of body, female, lateral view; H—posterior end of body, male, lateral view; I—male spicules, lateral view.
FIGURE1. Serpinema cayennensis n in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines: Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE1. Serpinema cayennensis n. sp. from Rhinoclemmys punctularia Daudin from French Guiana, line-drawings. A—anterior end of body, male, lateral view; B—anterior end of body, female, lateral view; C—buccal capsule, male, lateral view; D—buccal capsule, female, lateral view; E –anterior end of body, male, apical view; F—dorsal trident, female, dorsal view; G—part of female genital system near to vulva, lateral view; H—posterior end of body, male lateral view; cl—cloaca; I—posterior end of body, male, ventral view; J—male spicules, lateral view; K—mucrons at posterior end of female scale 20µm; L—posterior end of body, female, lateral view
FIGURE3 in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines: Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE3. Phylogenetic tree of two species of Serpinema and seven species of Camallanus based on Bayesian Inference analysis of partial 28S rDNA sequences.
FIGURE5 in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines: Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE5. Phylogenetic tree of two species of Serpinema cayennensis n. sp. and four species of Camallanus based on Bayesian Inference analysis of partial cytochrome oxidase subunit I (COI) sequences.
FIGURE1. Serpinema cayennensis n in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE1. Serpinema cayennensis n. sp. from Rhinoclemmys punctularia Daudin from French Guiana, line-drawings. A—anterior end of body, male, lateral view; B—anterior end of body, female, lateral view; C—buccal capsule, male, lateral view; D—buccal capsule, female, lateral view; E –anterior end of body, male, apical view; F—dorsal trident, female, dorsal view; G—part of female genital system near to vulva, lateral view; H—posterior end of body, male lateral view; cl—cloaca; I—posterior end of body, male, ventral view; J—male spicules, lateral view; K—mucrons at posterior end of female scale 20µm; L—posterior end of body, female, lateral view
FIGURE2. Serpinema cayennensis n in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE2. Serpinema cayennensis n. sp. from Rhinoclemmys punctularia Daudin from French Guiana, photomicrographs. A—anterior end of body, male, lateral view; B—anterior end of body, female, lateral view; C—buccal capsule, male, lateral view; D—buccal capsule, female, lateral view; E—dorsal trident, female, dorsal view; F—part of female genital system near vulva, lateral view; G—posterior end of body, female, lateral view; H—posterior end of body, male, lateral view; I—male spicules, lateral view.
FIGURE 36 in Phylogenetic position of the fish genera Lobotes, Datnioides and Hapalogenys, with a reappraisal of acanthuriform composition and relationships based on adult and larval morphology
FIGURE 36. Superficial bones of upper pectoral girdle showing course of lateral line in: A) Datnioides microlepis, ACG CS632, 30 mm SL; B) Equulites elongatus (Leiognathidae), AMS I.20829-018, 74 mm SL; C) Gazza minuta (Leiognathidae), AMS I.21841-016, 105 mm SL; D) Antigonia rhomboidea, AMS I.15526-006, 45 mm SL; E) Capros aper, BMNH 2016.4.47.169- 172, 51 mm SL. Laterosensory canals are shown in pink or red (where canals pass through supracleithrum in A–C); ventral arm of posttemporal truncated in A,B and D. Abbreviations: EX, extrascapula; PT, posttemporal; SCL, supracleithrum; TLL, trunk lateral line. Scale bars = 2 mm. Illustrations by A.C. Gill.
FIGURE 35 in Phylogenetic position of the fish genera Lobotes, Datnioides and Hapalogenys, with a reappraisal of acanthuriform composition and relationships based on adult and larval morphology
FIGURE 35. Anterior portion of dorsal fin and associated axial skeleton of A) Datnioides microlepis ACG CS632, 35 mm SL; B) Heniochus diphruetes (Chaetodontidae), ACG CS476, 47 mm SL; C) Equulites elongatus (Leiognathidae), AMS I.20829- 018, 74 mm SL; D) Capros aper, USNM 320065, 60 mm SL (pectoral girdle removed); E) Acanthurus olivaceus (Acanthuridae), ACG CS130, 39 mm SL. Abbreviations: DPT1, first dorsal pterygiophore; R1, first rib; SN, supraneurals; SOC, supraoccipital. White arrows indicate first neural spine; black arrows indicate vacant interneural spaces; scale bars = 5 mm. Photos by A.C. Gill.
FIGURE 31 in Phylogenetic position of the fish genera Lobotes, Datnioides and Hapalogenys, with a reappraisal of acanthuriform composition and relationships based on adult and larval morphology
FIGURE 31. Caudal skeleton of Hapalogenys darwiniensis, paratype, CSIRO H.4069-12, 75.5 mm SL. Methods of presentation follow Figure 29. Illustration by A.C. Gill.
FIGURE 46 in Phylogenetic position of the fish genera Lobotes, Datnioides and Hapalogenys, with a reappraisal of acanthuriform composition and relationships based on adult and larval morphology
FIGURE 46. Larva of Leiognathus equulus, 7.2 mm SL, AMS I.43616-037, from Taiwan (reared), after Soars & Leis (2010: fig. 1b). Scale bar is 1 mm. Illustration by J.M. Leis, N. Soars and S.B. Leis.
FIGURE 26 in Phylogenetic position of the fish genera Lobotes, Datnioides and Hapalogenys, with a reappraisal of acanthuriform composition and relationships based on adult and larval morphology
FIGURE 26. Dorsal gill arches of A) Antigonia rhomboidea, AMS I.15526-006, 45 mm SL; B) Capros aper, USNM 320065, 60 mm SL; C) Platax orbicularis (Ephippidae), ACG CS497, 27 mm SL; D) Scatophagus argus (Scatophagidae), ACG CS7, 40 mm SL. Gill rakers not shown. Abbreviations and methods of presentation follow Figures 20 and 24. Illustrations by A.C. Gill.
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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)
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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.