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684 results for “Phylogenetic placement”
FIGURES 34–38. Meotipa sahyadri n in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURES 34–38. Meotipa sahyadri n. sp., live female 34 With egg sac, underleaf 35 feeding on caterpillar 36 typical 'Meotipa' resting position 37 melanized form 38 unknoWn deposition in translucent part of abdomen.
FIGURES 1–6. Meotipa sahyadri n in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURES 1–6. Meotipa sahyadri n. sp., female from India, holotype. 1 Carapace, dorsal vieW 2 Cephalothorax, frontal vieW 3 Chelicera base, dorsal vieW 4 Chelicera base, ventral vieW 5 Cephalothorax, ventral vieW 6 Cephalothorax, lateral vieW. Scale lines: 0.75 mm (Figs. 1–2); 0.5 mm (Figs. 5–6).
FIGURES 39–44. Meotipa picturata, female. 39 habitus dorsal vieW 40 habitus, lateral vieW 41 habitus, ventral vieW 42 epigynum, dorsal vieW 43 epigynum, ventral vieW 44 in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURES 39–44. Meotipa picturata, female. 39 habitus dorsal vieW 40 habitus, lateral vieW 41 habitus, ventral vieW 42 epigynum, dorsal vieW 43 epigynum, ventral vieW 44 copulatory openings at base of atrium. Scale lines: 1 mm (Figs. 39–41); 0.1 mm (Fig. 42).
FIGURE 46. A in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURE 46. A single most parsimonious tree under equal Weights of theridiid spiders based on morphological characters With numbers above branches indicating Bremer's support and beloW indicating bootstrap values.
FIGURES 29–33. Meotipa sahyadri n in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURES 29–33. Meotipa sahyadri n. sp., male, left palp 29 ventral vieW 30 retro-lateral 31 pro-lateral vieW 32 Mesal vieW 33 Dorsal vieW. Scale lines: 0.1 mm (Figs. 29–30).
FIGURES 24–28. Meotipa sahyadri n in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURES 24–28. Meotipa sahyadri n. sp., male 24 live on female Web 25 habitus, dorsal vieW 26 cephalothorax, anterior vieW 27 Habitus, ventral vieW 28 Habitus, lateral vieW. Scale lines: 0.5 mm (Figs. 25, 27–28); 0.2 mm (Fig. 26).
FIGURES 18–23. Meotipa sahyadri n in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURES 18–23. Meotipa sahyadri n. sp., epigynum 18 dorsal vieW 19 antero-ventral vieW tilted at 45 degrees 20 Ventral vieW 21 Posterior vieW 22 Epigynal projection 23 glands on spermathecal surface. Scale lines: 0.1 mm (Figs. 18–21).
FIGURES 12–17. Meotipa sahyadri n in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURES 12–17. Meotipa sahyadri n. sp., female 12 Live female, anterior vieW 13 Live female, lateral vieW (note the translucent part of abdomen) 14 Spinnerets 15 Anterior lateral spinnerets 16 Posterior median spinnerets 17 Posterior lateral spinnerets.
FIGURES 7–11. Meotipa sahyadri n in The spiny theridiid genus Meotipa Simon, 1895 in India, with description of a strange new species with translucent abdomen and a phylogenetic analysis about the genus placement (Araneae, Theridiidae)
FIGURES 7–11. Meotipa sahyadri n. sp., female 7 Flattened setae on Leg IV 8 Flattened setae at abdomen base 9 Flattened, Cylindrical setae, Slit sensillum (inset and arroW) on leg IV 10 trichobothrium on leg IV 11 Tarsal comb on tarsus IV, close-up (inset). Scale lines: 0.75 mm (Fig. 7–8).
FIGURE 1 in Phylogenetic placement of the European sand gobies in Gobionellidae and characterization of gobionellid lineages (Gobiiformes: Gobioidei)
FIGURE 1. Phylogeny of Gobiidae and Gobionellidae, rooted with the outgroup Oxyeleotris lineolata (Butidae). The sand goby Pomatoschistus minutus is in boldface. This topology resulted from both Bayesian and likelihood analysis; numbers at nodes are support values, listed as posterior probability/bootstrap value. Bootstrap values less than 50% are indicated by '-'. Nodes with both posterior probability and bootstrap values of less than 50% are collapsed.
FIGURE 2 in Phylogenetic placement of the European sand gobies in Gobionellidae and characterization of gobionellid lineages (Gobiiformes: Gobioidei)
FIGURE 2. Cleared and stained suspensoria for representatives of Gobiidae and Gobionellidae. A = anguloarticular; D = dentary; E = ectopterygoid; H = hyomandibula; IO = interopercle; M = metapterygoid; MA = maxilla; O = opercle; P = palatine; PM = premaxilla; PO = preopercle; Q = quadrate; S = symplectic; SO = subopercle. Black arrows indicate dorsal extent of ectopterygoid; white arrows indicate ventral extent of palatine. A) Gobiidae: Microgobius gulosus UMMZ 158862; B) Mugilogobius lineage: Pomatoschistus minutus LACM 38466-2; C) Mugilogobius lineage: Chlamydogobius ranunculus LACM 44624-1; D) Stenogobius lineage: Gnatholepis anjerensis LACM 55960-4; E) Northern Pacific lineage: Gillichthys mirabilis LACM 42690-3; F) Periophthalmus lineage: Periopthalmus sp. LACM 38331-1. Scale bars = 1mm. Note that palatine in (B) is deflected slightly dorsally away from the ectopterygoid, in order to clearly show the extents of the bones. Normally, those bones are closely apposed to one another.
Figs. 13–19 in Larval Description, Adult Feeding Behavior, and Phylogenetic Placement of Megalopinus (Coleoptera: Staphylinidae)
Figs. 13–19. Adult mouthparts of Megalopinus. 13) Right mandible, ventral view; 14) left mandible, ventral view; 15) labrum, dorsal view; 16) clypeus, dorsal view; 17) right maxilla, ventral view; 18) labium, dorsal view; 19) schematic of rotary mill, left lateral view with direction of bolus rotation as indicated by the arrow. la ¼ labium, lab ¼ labrum, ma ¼ mandible, max ¼ maxilla. Scale bars ¼ 0.01 mm.
Figs. 5–11 in Larval Description, Adult Feeding Behavior, and Phylogenetic Placement of Megalopinus (Coleoptera: Staphylinidae)
Figs. 5–11. Larval thoracic and abdominal features of Megalopinus. 5) Pronotum, dorsal view; 6) mesonotum, dorsal view; 7) Tergite 1, dorsal view; 8) ventrite 1, ventral view; 9) right proleg, anterior view; 10) Abdominal segment IX, dorsal view; 11) abdominal segment X, ventral view. Scale bars ¼ 0.01 mm.
Figs. 1–4 in Larval Description, Adult Feeding Behavior, and Phylogenetic Placement of Megalopinus (Coleoptera: Staphylinidae)
Figs. 1–4. Larval head of Megalopinus. 1) Head, dorsal view (specimen slightly compressed; 2) maxilla and labium, ventral right view; 3) right antenna, ventral view; 4) left mandible, ventral view. Scale bars ¼ 0.01 mm.
Figure 9 in A new bat species of the genus Myotis with comments on the phylogenetic placement of M. keaysi and M. pilosatibialis
Figure 9. Dorsal and ventral views of the skins of the holotype of M. armiensis sp. n. (MSB 262089), M. pilosatibialis str.(TCWC 24101, paratype), and M. keaysistr. (MSB 70381). Scale bar = 10 mm.
Figure 8 in A new bat species of the genus Myotis with comments on the phylogenetic placement of M. keaysi and M. pilosatibialis
Figure 8. Dorsal (A) and ventral view (B) of the cranium,dorsal view of the mandible (C), and lateral view of the cranium (D) and mandible of the holotype of M. armiensis sp. n. (MSB 262089). Scale bar = 5 mm. Photograph taken by John Korbin (Sandia National Laboratory-New Mexico, USA).
Figure 7 in A new bat species of the genus Myotis with comments on the phylogenetic placement of M. keaysi and M. pilosatibialis
Figure 7. Adult female of Myotis armiensis sp. n. (QCAZ 17245) captured at Cabañas del Aliso, Cosanga, Napo Province, Ecuador. Photographed by Carlos Carrión Bonilla.
Figure 10 in A new bat species of the genus Myotis with comments on the phylogenetic placement of M. keaysi and M. pilosatibialis
Figure 10. Map of part of Central and South America showing localities examined for M. armiensis, with triangle (type locality) and distribution in Costa Rica, Panamá, and Ecuador with circles. See Appendix I for localities of examined in Panamá and Ecuador.
Fig. 9 in A new tarantula (Mygalomorphae: Theraphosidae) genus endemic from Peru with a novel genitalic morphology among theraphosinae and its phylogenetic placement
Fig. 9. Chinchaysuyu spinosa sp. nov., paratype female. (A) Labium and maxillae, ventral view. (B) Left maxillae, ventral view. (C) Detail of spiniform setae on maxillae, ventral view. (D) Spermatheca, dorsal view. Scale bars: 1 mm.
Fig. 6 in A new tarantula (Mygalomorphae: Theraphosidae) genus endemic from Peru with a novel genitalic morphology among theraphosinae and its phylogenetic placement
Fig. 6. Chinchaysuyu spinosa sp. nov., palp of holotype male. (A) Retrolateral view. (B) Ventral view (C) Prolateral view. (D) Detail of cymbium, retrolateral view (red square indicates the long spiniform setae area). (E) Detail of cymbium, ventral view (black arrow indicates the long spiniform setae). Cy = cymbium, Ti = tibia. Scale bars: 1 mm. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
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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
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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
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