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14,185 results for “phylogenies”
FIGURE 14 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 14. Gerarus bruesi, holotype specimen MNHNLPR. 51164 (counterpart): photograph of the mediocubital area (detail of common stem M + CuA, distal free part of CuA, and fusion of CuA and CuPa). (scale bar represents 3 mm).
FIGURE 7 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 7. Stenoneura fayoli, holotype specimen MNHNLPR. 51207 (print): photograph (under alcohol) (scale bar represents 1 cm).
FIGURE 17 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 17. Strict consensus tree of 48 minimal equally parsimonious trees obtained after cladistic analysis. Clades in grey are considered weakly supported by the analysis, after characters state consistency indices.
FIGURE 3 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 3. Blattinopsis sp., specimen MNHNLPR. 55236 (forewing; print): reconstruction and photograph (scale bar represents 1 cm).
FIGURE 12 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 12. Osnogerarus trecwithiensis, cast of the holotype specimen MS G 1080 (counterpart), Museum am Schölerberg (Osnabrück, Germany): photograph of the wing base (light from bottom of the picture, vein relief appears reversed in the photograph orientation). (scale bar represents 2 mm).
FIGURE 10 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 10. Narkeminidae sp. indet., specimen MNHNLPR. R 55237 ab (forewing; print and counterpart): reconstruction (print and counterpart) and photograph (counterpart; under alcohol). (scale bar represents 1 cm).
FIGURES 42 – 47. Aedeagi. 42 in Phylogeny of the tribe Erotini (Coleoptera, Lycidae), with descriptions of new taxa
FIGURES 42 – 47. Aedeagi. 42 — Helcophorus murzini sp. n., ventrally; 43 — laterally; 44 — dorsally; 45 — H. gobindanus sp. n., ventrally; 46 — laterally; 47 — dorsally. Scale: 0.5 mm.
FIGURES 8 – 10. Hind wing. 8 — Proteros sempiternus gen. n in Phylogeny of the tribe Erotini (Coleoptera, Lycidae), with descriptions of new taxa
FIGURES 8 – 10. Hind wing. 8 — Proteros sempiternus gen. n., sp. n.; 9 — Flagrax auberti (Bourgeois); 10 — Aferos sp.
FIGURES 11 – 13. Hind wing. 11 in Phylogeny of the tribe Erotini (Coleoptera, Lycidae), with descriptions of new taxa
FIGURES 11 – 13. Hind wing. 11 — Eros humeralis (Fabricius); 12 — Platycis minuta (Fabricius); 13 — Eropterus arculus Green.
FIGURE 3 in Molecular phylogeny, morphology and taxonomy of Moroccan Triops granarius (Lucas, 1864) (Crustacea: Notostraca), with the description of two new species
FIGURE 3. Phylogenetic relationships of A, Triops samples obtained in a combined analysis of three molecular markers (12 S, 16 S, 28 S) and B, western Moroccan Triops granarius samples as inferred from 12 S sequences (best scoring trees obtained in RAxML are shown). ML bootstrap support / Bayesian posterior probabilities are given for selected nodes. Provisional taxon labels of previously discovered lineages correspond to those used in Korn et al. (2013). Symbols correspond to those used in Fig. 1.
FIGURE 2 in Molecular phylogeny, morphology and taxonomy of Moroccan Triops granarius (Lucas, 1864) (Crustacea: Notostraca), with the description of two new species
FIGURE 2. Schematic drawing of A, a detail of the right lateral margin of the telson of a Triops granarius specimen in dorsal view, showing how the length of the largest furcal spine was measured (dotted line), and B, the endopodite of the second trunk limb in anterior view, demonstrating how the length of the endopodite was measured (dotted line). C, a detail of the row of digging spines positioned at the margin of the endopodite showing three examples of length measurements (dotted lines; note that in the present example the largest spine cannot be identified easily so that several rather large spines have to be measured in order to obtain a value for the length of the largest spine) and the position of subsidiary lines used for measurements of spine lengths (dashed lines). D, the distal part of the endopodite showing the distal claw and three of the digging spines. The point where the dashed line (drawn from the base of the distal claw) meets the dotted line (median line of the distal claw) was used as the starting point for length measurements of the endopodite (in the present study the base of the distal claw was defined as the point where the distalmost digging spine diverges from the endopodite). Grey bars (directed approx. in a right angle to measured lines) indicate where measured lines start and end. Abbreviations: C, distal claw; DS, digging spines; SP, largest furcal spine; SPL, length of largest furcal spine; TE, telson; F, furcal ramus.
FIGURE 1. A in Molecular phylogeny, morphology and taxonomy of Moroccan Triops granarius (Lucas, 1864) (Crustacea: Notostraca), with the description of two new species
FIGURE 1. A, map indicating the geographical position of the study area (marked in black). B, map showing the geographical distribution of studied populations of Triops granarius. Symbols used to mark study sites refer to phylogenetic lineages (see Table 1, Fig. 3; population no. 6 was determined morphologically by DFA in this study). Open square: ‘ Triops granarius 8 ’; filled asterisk: ‘ Triops granarius 10 ’.
FIGURES 188 – 190 in Taxonomy and molecular phylogeny of the Platystictidae of Sri Lanka (Insecta: Odonata)
FIGURES 188 – 190. Coloration in life of Indosticta deccanensis — (188) teneral male; (189) male; (190) female [Photo: M. Bedjanič].
FIGURES 180 – 187 in Taxonomy and molecular phylogeny of the Platystictidae of Sri Lanka (Insecta: Odonata)
FIGURES 180 – 187. Indosticta deccanensis — (180) thorax and head, lateral view [male]; (181) prothorax, lateral view [male]; (182) anal appendages, dorsolateral view [male]; (183) anal appendages, lateral view [male]; (184) thorax and head, lateral view [female]; (185) prothorax, dorsolateral view [female]; (186) ovipositor, lateral view [female]; (187) wings [male]. [Material origin: male and female—Ponmudi, Kerala, India]
FIGURES 171 – 173 in Taxonomy and molecular phylogeny of the Platystictidae of Sri Lanka (Insecta: Odonata)
FIGURES 171 – 173. Coloration in life: Platysticta secreta sp. nov. — (171) female; Platysticta serendibica sp. nov. — (172) male; (173) female [photos: M. Bedjanič, fig. 171 photo: G. de Silva Wijeyeratne].
FIGURES 63 – 69 in Taxonomy and molecular phylogeny of the Platystictidae of Sri Lanka (Insecta: Odonata)
FIGURES 63 – 69. Ceylonosticta venusta sp. nov. — (63) thorax and head, lateral view [male, holotype]; (64) prothorax, lateral view [male, holotype]; (65) anal appendages, dorsal view [male, holotype]; (66) anal appendages, ventral view [male, holotype]; (67) thorax and head, lateral view [female, paratype]; (68) prothorax, lateral view [female, paratype]; (69) wings [male, holotype]. [Material origin: male holotype and female paratype—Rambodde, Nuwara Eliya District, Sri Lanka]
FIGURES 93 – 99 in Taxonomy and molecular phylogeny of the Platystictidae of Sri Lanka (Insecta: Odonata)
FIGURES 93 – 99. Ceylonosticta submontana — (93) thorax and head, lateral view [male]; (94) prothorax, lateral view [male]; (95) anal appendages, dorsolateral view [male]; (96) anal appendages, ventral view [male]; (97) thorax and head, lateral view [female]; (98) prothorax, lateral view [female], (99) ovipositor, lateral view [female]. [Material origin: male (excl. ventral view of anal appendages) and female—Urugalla, Kandy District, Sri Lanka; male (ventral view of anal appendages) — Wattegama, Kandy District, Sri Lanka]
FIGURES 124 – 131 in Taxonomy and molecular phylogeny of the Platystictidae of Sri Lanka (Insecta: Odonata)
FIGURES 124 – 131. Platysticta serendibica sp. nov. — (124) thorax and head, lateral view [male, holotype]; (125) prothorax, lateral view [male, holotype]; (126) anal appendages, dorsal view [male, holotype]; (127) anal appendages, lateral view [male, holotype]; (128) thorax and head, lateral view [female, paratype]; (129) prothorax, dorsolateral view [female, paratype]; (130) ovipositor, lateral view [female, paratype]; (131) wings [male, paratype]. [Material origin: male holotype and paratype— Kanneliya, Galle District, Sri Lanka; female paratype—Lankaberiya Estate, Ratnapura District, Sri Lanka]
FIGURES 100 – 103 in Taxonomy and molecular phylogeny of the Platystictidae of Sri Lanka (Insecta: Odonata)
FIGURES 100 – 103 [reproduced from Bedjanič, 2010]. Ceylonosticta bine — (100) head and prothorax, lateral view [male holotype]; (101) head and prothorax, lateral view [female paratype]; (102) prothorax, dorsal view [male holotype]; (103) anal appendages, lateral view [male holotype]. [Material origin: male holotype and female paratype—Opanayake, Ratnapura District, Sri Lanka]
FIGURES 57 – 62 in Taxonomy and molecular phylogeny of the Platystictidae of Sri Lanka (Insecta: Odonata)
FIGURES 57 – 62. Ceylonosticta nietneri — (57) thorax and head, lateral view [male]; (58) prothorax, lateral view [male]; (59) thorax and head, lateral view [female]; (60) prothorax, lateral view [female]; (61) anal appendages, dorsal view [male]; (62) anal appendages, ventral view [male]. [Material origin: male (thorax, prothorax) and female—Balangoda, Ratnapura District, Sri Lanka; male (appendages) — Kuruwita, Ratnapura District, Sri Lanka]
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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
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.