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445 results for “Neotropical diversity”
FIGURES 99–106. Holopothrips hambletoni and H. hilaris. 99–101 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 99–106. Holopothrips hambletoni and H. hilaris. 99–101. Holopothrips hambletoni paratype: (99) head and pronotum; (100) mesonotum, metanotum and pelta; (101) pore plates on abdominal sternites VI–VIII; 102–106. Holopothrips hilaris paratype: (102) head and pronotum; (103) mesonotum and metanotum; (104) prosternum showing basantra (white arrows); (105) pelta; (106) spermatheca (white arrow).
FIGURES 22–25 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 22–25. Holopothrips ananasi paratypes. (22) head, pronotum, mesonotum and anterior half of metanotum; (23) pelta; (24) spermatheca; (25) pore plates on abdominal sternites VII–VIII.
FIGURES 95–98 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 95–98. Holopothrips graziae sp. nov. holotype and paratype. (95) body; (96) head and pronotum; (97) pore plates on abdominal sternites VII–VIII; (98) abdominal segments VIII–X, showing spermatheca.
FIGURES 198–203 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 198–203. Holopothrips nigrum sp. nov. holotype and paratypes. (198) body; (199) head and pronotum; (200) mesonotum and metanotum; (201) pelta; (202) spermatheca; (203) pore plate on abdominal sternite VIII.
FIGURES 234–240 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 234–240. Holopothrips reticulatus sp. nov. holotype and paratypes. (234) body; (235) head and pronotum; (236) detail of head, showing minute tubercles on sculpture (white arrows); (237) mesonotum and metanotum; (238) pore plates on abdominal sternites VI–VIII; (239) spermatheca, dislocated (white arrow); (240) pelta.
FIGURES 151–158 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 151–158. Holopothrips longihamus sp. nov. holotype and paratypes. (151) body; (152) head and pronotum; (153) antenna and fore tarsus, showing the enlarged hamus (black arrow); (154) mesonotum; (155) pelta, showing the multiple campaniform sensilla (black arrows); (156) spermatheca; (157) male sternite VIII, showing weak spots, which may be the pore plates (white arrows); (158) metanotum.
FIGURES 159–167 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 159–167. Holopothrips longisetus sp. nov. holotype and paratypes. (159) body; (160) head and pronotum, with long pronotal setae, including am; (161) fore tarsus, showing robust hamus (black arrow); (162) detail of pronotum, showing shorter am setae (white arrows); (163) mesonotum; (164) pelta; (165) spermatheca; (166) male abdominal sternite VIII, showing absence of pore plate; (167) metanotum.
FIGURES 10–15 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 10–15. Leaf-galls induced by Holopothrips (white arrows). (10) galls on Myrtaceae (by H. flavisetis); (11) galls on Acca sellowiana (by H. infestans); 12–13. galls on Ƒochysia cf. obovata (by H. kaminskii) (Photos: Lucas A. Kaminski): (12) general view; (13) opened gall; (14) galls on Miconia sp. (by H. brevicapitatum); (15) galls on Tabebuia heterophylla (by H. tabebuia) (Photo: Irma Cabrera).
FIGURES 1–9 in Holopothrips diversity-a Neotropical genus of gall-inducing insects (Thysanoptera, Phlaeothripidae)
FIGURES 1–9. Leaf-galls induced by Holopothrips (white arrows). (1) galls on Siphoneugena reitzii (by H. curiosus); (2) galls on Myrciaria floribunda (by H. spermathecus) (Photo: André Santana); (3) gall on Myrcia guianensis (by H. molzi); (4) gall on Myrcia retorta (by H. striatus); (5) gall on Myrcia sp. (by H. cardosoi) (Photo: João C. Cardoso); (6) gall on Myrcia splendens (by H. conducans); (7) gall on Myrcia splendens (by H. longisetus); (8) gall on Myrcia selloi (by H. acrioris); (9) galls on Neomitranthes obscura (by H. varicolor) (Photo: Sheila Carvalho-Fernandes).
Fig. 4 in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 4 Map showing all the known localities for Yphthimoides gabriela, Yphthimoides bella, and Yphthimoides iserhardi
Fig. 10 Phylogenetic relationships among 14 in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 10 Phylogenetic relationships among 14 species of Yphthimoides based on DNA sequences of CoxI and obtained by a maximum likelihood analysis. Numbers below branches are bootstrap support
Fig. 3 Yphthimoides gabriela, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 3 Yphthimoides gabriela, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 9 in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 9 Frequency distribution of pairwise individual genetic distances within (gray) and between (black) the seven species of Yphthimoides
Fig. 8 Yphthimoides iserhardi, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 8 Yphthimoides iserhardi, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 2 in Biogeography, cryptic diversity, and queen dimorphism evolution of the Neotropical ant genus Ectatomma Smith, 1958 (Formicidae, Ectatomminae)
Fig. 2 Ultrametric tree of Ectatomma ants obtained from BEAST Bayesian relaxed molecular clock analysis of two mitochondrial genes and one nuclear gene. Ninety-five per cent highest posterior density divergence time estimates are presented as bars. Numbers on the scale at the foot of the figure represent millions of years. Corresponding geological epochs and their subdivisions are represented with differential
Fig. 3 in Biogeography, cryptic diversity, and queen dimorphism evolution of the Neotropical ant genus Ectatomma Smith, 1958 (Formicidae, Ectatomminae)
Fig. 3 Ancestral area reconstruction results from RASP Bayesian analyses of Ectatomma ants based on biogeographic regions of Morrone (2006). Pie chart colours correspond to the posterior probability frequencies for each node. Letters in parenthesis correspond
Fig. 1 in Biogeography, cryptic diversity, and queen dimorphism evolution of the Neotropical ant genus Ectatomma Smith, 1958 (Formicidae, Ectatomminae)
Fig. 1 Ectatomma ant species Bayesian phylogram obtained by Mr. Bayes analyses of two mitochondrial and one nuclear gene sequences. Node support is shown by two numbers, the first one corresponding to Bayesian posterior probabilities and the second one to bootstrap support
Fig. 2 Yphthimoides gabriela. a Male wing venation. b Female wing venation. c Male palpus. d Male foreleg. e Male midleg. f in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 2 Yphthimoides gabriela. a Male wing venation. b Female wing venation. c Male palpus. d Male foreleg. e Male midleg. f Female foreleg
Fig. 6 Yphthimoides bella, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 6 Yphthimoides bella, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 9 in Skeleton in the closet: hidden diversity in patterns of cranial and postcranial ontogeny in Neotropical direct-developing frogs (Anura: Brachycephaloidea)
Fig. 9 Schematic representation of auto- and zeugopodium development in Haddadus binotatus. a Forelimb. b Hind limb. The adult configuration is shown at the left, and drawings at the right show the sequential ossification (black segments) of elements. Abbreviations: fi, fibulare; mc, metacarpalia; mt, metatarsalia; p, phalanges; ph, prehallux; pp, prepollex; r, radius; ra, radiale; ti, tibiale; u, ulna; ul, ulnare; Y, element Y; 1–5, distal carpalia and tarsalia; I–V, fingers and toes
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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.