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Fig. 9. Pseudeucinetus spp. A. P in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 9. Pseudeucinetus spp. A. P. papuanus sp. nov., holotype (BPBM). B. P. uenoi Spangler, 1995 (EUMJ). C. P. javanicus Yoshitomi & Putra, 2010, paratype (EUMJ). D. P. solomonicus Yoshitomi & Putra, 2010, paratype (EUMJ). E. P. zygops Heller, 1921 (EUMJ). Scale bars: 1.0 mm.
Fig. 12 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 12. Mexico ogasawaraensis sp. nov., male (A–G) and female (H–J) genitalia (paratypes, EUMJ). A, H. Sternite VII. B. Sternite VIII. C. Sternite IX. D. Aedeagus, ventral view. E. Aedeagus in dorsal view. F. Aedeagus in right lateral view. G. Aedeagus, left lateral view. I. Urosternite. J. Ovipositor.
Fig. 8 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 8. Acontosceles zetteli Pütz, 2008, male genitalia (BPBM). A. Sternite VII. B. Sternite VIII. C. Sternite IX. D. Aedeagus, dorsal view. E. Aedeagus, ventral view. F. Aedeagus, left lateral view.
Fig. 7 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 7. Acontosceles siwalikensis Pütz, 2008, male (A–F) and female (G–I) genitalia (NME). A, G. Sternite VII. B. Sternite VIII. C. Sternite IX. D. Aedeagus, dorsal view. E. Aedeagus, ventral view. F. Aedeagus, left lateral view. H. Urosternite. I. Ovipositor.
Fig. 4 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 4. Habitats (A–C) and living adults (D–F) of Asian Thaumastodinae Champion, 1924. A. Dondong River, Pengkol, Yogyakarta special Region, Java, Indonesia (type locality of Acontosceles javanicus Yoshitomi & Putra, 2011 (F) and Pseudeucinetus javanicus Yoshitomi & Putra, 2010 (D)). B. Nusa Dua, Bali, Indonesia (type locality of Mexico baliensis sp. nov.). C. Hirashima, Ogasawara, Japan (type locality of Mexico ogasawaraensis sp. nov.). D. Type locality of Pseudeucinetus javanicus Yoshitomi & Putra, 2010. E. Mexico masamii (Satô, 1994) in Shikinejima, Izu Islands. F. Type locality of Acontosceles javanicus Yoshitomi & Putra, 2011.
Fig. 3 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 3. Metacoxal plates (A–B), hind tibiae (C–D) and male protarsus (E). A, C. Acontosceles chujoi Yoshitomi & Satô, 2005. B, D. Mexico taiwanus (Satô, 1994). E. Pseudeucinetus zygops Heller, 1921.
Fig. 5. Acontosceles spp. A. A in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 5. Acontosceles spp. A. A. borneensis sp. nov., holotype (BPBM). B. A. yorioi Satô, 1966 (EUMJ). C. A. hydroporoides Champion, 1924 (NME). D. A. chujoi Yoshitomi & Satô, 2005 (EUMJ). E. A. siwalikensis Pütz, 2008 (NME). F. A. zetteli Pütz, 2008 (BPBM). Scale bars: 1.0 mm.
Fig. 6 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 6. Acontosceles borneensis sp. nov., male (A–E) and female (F–H) genitalia (holotype and paratype, BPBM). A, F. Sternite VII. B. Sternite VIII. C. Sternite IX. D. Aedeagus, left lateral view. E. Aedeagus, ventral view. G. Urosternite. H. Ovipositor.
Fig. 2 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 2. Head in frontal (A, C, E) and lateral (B, D, F) views. A, D. Acontosceles chujoi Yoshitomi & Satô, 2005. B, E. Mexico masamii (Satô, 1994). C, F. Pseudeucinetus zygops Heller, 1921.
Fig. 19 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 19. Pupa of Mexico masamii (Satô, 1994). A. Ventral aspect. B. Dorsal aspect. Scale bar: 1.0 mm.
Fig. 16 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 16. Mexico borneensis sp. nov., male (A–F) and female (G–I) genitalia (holotype and paratype, BPBM). A, G. Sternite VII. B. Sternite VIII. C. Sternite IX. D. Aedeagus, ventral view. E. Aedeagus in dorsal view. F. Aedeagus in right lateral view. H. Urosternite. I. Ovipositor.
Fig. 1 in Review of the Asian Thaumastodinae (Coleoptera, Byrrhoidea, Limnichidae), with a phylogeny of the genera
Fig. 1. Aedeagus, showing the terminology and the method of measurements. A. Mexico Spilman, 1972, left lateral view. B. Acontosceles Champion, 1924, left lateral view. C. Pseudeucinetus Heller, 1921, ventral view. Abbreviations: bap = basal piece; lal = lateral lobe; mel = median lobe; vep = ventral plate; BL = length of basal piece; LL = length of lateral lobe; ML = length of median lobe.
Figures 48–62 in Phylogeny and taxonomy of the shore-fly tribe Scatellini (Diptera: Ephydridae: Ephydrinae)
Figures 48–62. Scatella fusca: (48) head, anterior; (49) head, lateral; (50) thorax, dorsal; (51) male mid leg, posterior; (52) epandrium and cerci posterior; (53) male internal terminalia, lateral. Scatella (Synhoplos) sturdeeanus: (54) head, lateral; (55) thorax, dorsal; (56) epandrium and cerci, posterior; (57) male terminalia, lateral. Scatella (Scatella) curtipennis: (58) head, anterior; 59, head, lateral; (60) thorax, dorsal; (61) epandrium and cerci, posterior; (62) male terminalia, lateral.
Figures 24–47 in Phylogeny and taxonomy of the shore-fly tribe Scatellini (Diptera: Ephydridae: Ephydrinae)
Figures 24–47. Abdominal sternites and terminalia: (24) Philotelma sp., female; (25) Philotelma sp., male; (26)Ephydra (Ephydra) riparia, female; (27) Scatella (Scatella) stagnalis, female; (28) Scatella (Scatella) tenuicosta, female; 29, Scatella (Scatella) tenuicosta, male; (30) Scatella (Scatella) paludum, male; (31) Lamproscatella sibilans, epandrium and cerci, posterior; (32) Haloscatella arichaeta, epandrium and cerci, posterior; (33)Haloscatella karekare, epandrium and cerci, posterior; (34)Hyadina sp., aedeagus lateral; (35) Parydra aquila, aedeagus lateral; (36) Thinoscatella lattini, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), lateral; (37) Diedrops steineri, aedeagus, lateral; (38) Lamproscatella sibilans, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), ventral; (39)Lamproscatella sibilans, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), lateral; (40) Haloscatella arichaeta epandrium and cerci, lateral; (41) Haloscatella arichaeta, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), lateral; (42) Haloscatella karekare, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), ventral; (43) Haloscatella karekare, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), lateral; (44) Paracoenia bisetulosa, ventral receptacle lateral; (45) Notiocoenia paniculate, ventral receptacle lateral; (46) Scatella (Scatella) stagnalis, ventral receptacle lateral; (47) Philotelma defectum, ventral receptacle lateral.
Figure 2 in Phylogeny and taxonomy of the shore-fly tribe Scatellini (Diptera: Ephydridae: Ephydrinae)
Figure 2. One of the five most parsimonious trees obtained from implied weighting parsimony searches, showing ingroup relationships (outgroup is shown in Fig. 1). Black circles indicate non-homoplasious transformations and blank circles indicate homoplasious transformations. Characters and its states are superimposed on the branches (character number is shown above the circle and the corresponding character state is shown below it). Relative Bremmer support values [red] are included below each branch.
Figure 1 in Phylogeny and taxonomy of the shore-fly tribe Scatellini (Diptera: Ephydridae: Ephydrinae)
Figure 1. One of the five most parsimonious trees obtained from implied weighting parsimony searches, showing outgroup relationships (Scatellini branch is shown in Fig. 2). Black circles indicate non-homoplasious transformations and blank circles indicate homoplasious transformations. Characters and its states are superimposed on the branches (character number is shown above the circle and the corresponding character state is shown below it). Relative Bremmer support values [red] are included below each branch.
Figure 4. Phylogeny constructed through Bayesian inference estimated from the 35H in Gene Flow Patterns of the Aedes aegypti (Diptera: Culicidae) Mosquito in Colombia: a Continental Comparison Suggests Multiple Invasion Routes and Gene Exchange
Figure 4. Phylogeny constructed through Bayesian inference estimated from the 35H found of the ND4 gene for the A. aegypti populations in the American continent. The blue horizontal bars above the branches reflect the 95% CI for the branch supports. The color bars (blue, green, and red) on the tree terminals indicate which haplotypes are exclusive for a specific population. The dotted lines on the right side of the tree and numbers I or II indicate to what clade each of the terminals belong. H1-Col (Colombia (Sucre and Quindio), Venezuela, Peru, M-NA, Brasil (MA-O, RBPV, SEBr, BE-L)), H4 (Venezuela, M-NA, Brasil (MA-O, RBPV, BEL)), H3 (Venezuela, M-NA, Brazil (RBPV, SEBr, BE-L)), H2-Col (Colombia (Sucre), Venezuela, Peru, M-NA, Brazil (RBPV, SEBr, BE-L)), H13 (M-NA, Brazil (SEBr)), H8 (Venezuela, Brazil (SEBr)).
Figs. 5–6 in Phylogeny and new species of the Neotropical bee genus Paroxystoglossa Moure (Hymenoptera, Apoidea)
Figs. 5–6. Habitus of Paroxystoglossa species: 5, P. mourella n.sp. 6, P. spiloptera, arrow: apical band of appressed setae. Scale bar: 1 mm.
Figs. 24–25. Metasomal S4 and S5 in Phylogeny and new species of the Neotropical bee genus Paroxystoglossa Moure (Hymenoptera, Apoidea)
Figs. 24–25. Metasomal S4 and S5, modifications indicated by arrows. 24, P. barbata. 25, P. brachycera. Scale bar: 1 mm.
Figs. 42–45. Genital capsules. 42, P. levigata n in Phylogeny and new species of the Neotropical bee genus Paroxystoglossa Moure (Hymenoptera, Apoidea)
Figs. 42–45. Genital capsules. 42, P. levigata n.sp., ventral view, 43, dorsal view. 43, P. mourella n.sp., ventral view. 44, dorsal view. Scale: 0.25 mm.
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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.