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Fig. 22. Distribution maps. A in Synopsis of Lasioglossum (Dialictus) Robertson, 1902 (Hymenoptera, Apoidea, Halictidae) in Japan, the Korean Peninsula and Taiwan
Fig. 22. Distribution maps. A. Lasioglossum (Dialictus) ellipticeps (Blüthgen, 1923) in the Korean Peninsula. B–C. Lasioglossum (Dialictus) miyabei Murao et al., 2006 (B in the Korean Peninsula, C in Japan).
Fig. 7. a–c in Diversity and distribution of Ludwigia (Onagraceae) in Paraíba State, Northeastern Brazil
Fig. 7. a–c. Ludwigia leptocarpa (Nutt.) H.Hara. a. Habit. b. Flowering branch. c. Detail of indumentum. – d–h. L. octovalvis (Jacq.) P.H.Raven. d. Population. e. Habit. f–g. Flower. h. Fruits. Photos: A.M. Rocha.
Fig. 6. a–k in Diversity and distribution of Ludwigia (Onagraceae) in Paraíba State, Northeastern Brazil
Fig. 6. a–k. Ludwigia hyssopifolia (G.Don) Exell, A.M. Rocha 16. a. Habit. b. Flower. c. Sepal. d. Petal. e. Plain nectariferous disk. f. Epipetalous stamen. g. Episepalous stamen. h. Fruit. i. Transversal cut of the upper section of the fruit. j. Transversal cut of the lower section of the fruit. k. Seed. – l–u. L. leptocarpa (Nutt.) H.Hara, A.M. Rocha 06. l. Habit. m. Bracteoles. n. Flower. o. Sepal. p. Petal. q. Convex nectariferous disk. r. Fruit. s. Transversal cut of the fruit. t. Section of the horseshoe-shape endocarp. u. Seed. Illustrations by R.M.A. de Carvalho.
Fig. 8. a–g in Diversity and distribution of Ludwigia (Onagraceae) in Paraíba State, Northeastern Brazil
Fig. 8. a–g. Ludwigia octovalvis (Jacq.) P.H.Raven, A.M. Rocha 08. a. Habit. b. Flower. c. Sepal. d. Petal. e. Fruit. f. Transversal cut of the fruit. g. Seed. – h–n. L. nervosa (Poir.) H.Hara, L.P. Félix et al. 3023. h. Habit. i. Flower. j. Sepal. k. Petal. l. Stamen. m. Hypanthium with high nectariferous disk. n. Fruit. Illustrations by R.M.A. de Carvalho.
Fig. 4. a–c in Diversity and distribution of Ludwigia (Onagraceae) in Paraíba State, Northeastern Brazil
Fig. 4. a–c. Ludwigia erecta (L.) H.Hara. a. Habit showing pneumatophore roots (arrow). b. Flower. c. Fruits. – d–e. L. helminthorrhiza (Mart.) H.Hara. d. Habit showing spongy pneumatophore roots (arrow). e. Flower. – f–h. L. hyssopifolia (G.Don) Exell. f. Habit. g. Branch with flowers and fruits. h. Flower. Photos: a, c–f = A.M. Rocha, b = F.C.P. Costa, g–h =H.C. Araújo.
Fig. 3. a–j in Diversity and distribution of Ludwigia (Onagraceae) in Paraíba State, Northeastern Brazil
Fig. 3. a–j. Ludwigia erecta (L.) H.Hara, A.M. Rocha 26. a. Habit. b. Flower. c. Sepal. d. Petal. e. Gynoecium. f. Detail of stigma. g. Bracteoles. h. Fruit. i. Transversal cut of the fruit. j. Seed. – k–r. L. helminthorrhiza (Mart.) H.Hara, A.M. Rocha and E.M. Rodrigues 27. k. Habit. l. Flower. m. Sepal. n. Detail of stigma. o. Fruit. p. Transversal cut of the fruit. q. Section of the endocarp. r. Seed. Illustrations by R.M.A. de Carvalho.
Fig. 5 in Diversity and distribution of Ludwigia (Onagraceae) in Paraíba State, Northeastern Brazil
Fig. 5. Map showing the geographic distribution of Ludwigia L. species in the Paraíba State, Brazil. a. Ludwigia erecta (L.) H.Hara (), L. helminthorrhiza (Mart.) H.Hara (), L. hyssopifolia (G.Don) Exell (). b. L. leptocarpa (Nutt.) H.Hara (), L. nervosa (Poir.) H.Hara (), L. octovalvis (Jacq.) P.H.Raven (). Maps by E. de Morais Rodrigues.
Fig. 2 in Diversity and distribution of Ludwigia (Onagraceae) in Paraíba State, Northeastern Brazil
Fig. 2. Environments where species of Ludwigia L. were detected in the studied area, Paraíba State, Brazil. a. Açude Boqueirão, Boqueirão. b. Fazenda ABA, Passagem. c–d. Cachoeira do Pinga, Lagoa Seca. e–f. Afloramento granítico, Puxinanã. g. Monteito. h. Santa Luzia. i. Serra do Jatobá, Serra Branca. j. Parque Estadual Pedra da Boca, Araruna. Photos: a–h = A.M. Rocha, i–j = F.K.S. Monteiro.
Fig 6. Distribution maps. A in Kryptonesticus deelemanae gen. et sp. nov. (Araneae, Nesticidae), with notes on the Mediterranean cave species
Fig 6. Distribution maps. A. Map of Biokovo Mt with distribution of Kryptonesticus deelemanae gen. et sp. nov. B. Map with distributions of K. deelemanae gen. et sp. nov., K. fagei (Kratochvíl, 1933) and K. arenstorffi (Kulczyński, 1914). Marked is the town of Trebinje, near the type locality for K. arenstorffi, and also the towns of Mostar and Jablanica, between which is Čudna jama, a dubious record for K. arenstorffi. Also marked is Cetinjska pećina, the southernmost locality for K. arenstorffi.
Fig. 4 in Taxonomy and distribution of African chiggers (Acariformes, Trombiculidae)
Fig. 4. Specialized setae of legs I, II and III of an example of Ericotrombidium sp. Double circles represent the bases of unspecialized tactile setae; single circles correspond to the unspecialized setae situated on the opposite side of the leg. Abbreviations: ga = genualae I (solenidia σ); mga = microgenuala I; ta = tibialae I (solenidia φ); mta = microtibiala I; S1 = tarsala I (solenidion ω); f1 = microtarsala I (famulus ε); pST = parasubterminala; ST = subterminala (eupathidium ζ); PTʹ = pretarsala I (eupathidium ζ); gm = genuala II; tm = tibialae II; f2 = famulus II; S2 = tarsala II; PTʺ = pretarsala II; gp = genuala III; tp = tibiala III.
The age distribution of global soil carbon inferred from radiocarbon measurements
<p>We use 789 radiocarbon (∆<sup>14</sup>C) profiles, along with other geospatial information, to create globally-gridded datasets of mineral soil ∆<sup>14</sup>C and mean age. The spatial resolution is 0.5 degree by 0.5 degree and the vertical resolution is at each 1 cm increment to a soil depth of 1 meter.</p>
Figs 50–53. Distribution maps. — 50. Belbina nympha. 51. B. pionneaui. 52. B. recurva. 53. B in Revision of the Malagasy lanternfly genus Belbina Stål, 1863, with two new species (Hemiptera: Fulgoromorpha: Fulgoridae)
Figs 50–53. Distribution maps. — 50. Belbina nympha. 51. B. pionneaui. 52. B. recurva. 53. B. servillei.
Figs 46–49. Distribution maps. — 46. Belbina bergrothi, B. bloetei and B. madagascariensis. 47. B in Revision of the Malagasy lanternfly genus Belbina Stål, 1863, with two new species (Hemiptera: Fulgoromorpha: Fulgoridae)
Figs 46–49. Distribution maps. — 46. Belbina bergrothi, B. bloetei and B. madagascariensis. 47. B. bourgoini sp. nov., B. falleni and B. foliacea. 48. B. laetitiae sp. nov. 49. B. lambertoni.
Fig. 1 in Global checklist of species of Grania (Clitellata: Enchytraeidae) with remarks on their geographic distribution
Fig. 1. Specimen of Grania chilensis Prantoni, De Wit & Erséus, 2016. Photograph by Pierre De Wit.
Fig. 2 in Global checklist of species of Grania (Clitellata: Enchytraeidae) with remarks on their geographic distribution
Fig. 2. World map showing the description localities, and the three evolutionary lineages (color-marked) of Grania spp. genetically analyzed by Prantoni et al. (2016: clades A, B and C). Green numbers = Atlantic species (clade A); red numbers = South Pacific and Atlantic species (clade B); blue numbers = Australian and Asian species (clade C); black numbers = species presently without molecular data, i.e., not yet allocated to any particular lineage.
Fig. 20. Distribution maps. A in The British species of Enicospilus (Hymenoptera: Ichneumonidae: Ophioninae)
Fig. 20. Distribution maps. A. Enicospilus inflexus (Ratzeburg, 1844). B. E. undulatus (Gravenhorst, 1829).
Fig. 19. Distribution maps. A in The British species of Enicospilus (Hymenoptera: Ichneumonidae: Ophioninae)
Fig. 19. Distribution maps. A. Enicospilus merdarius (Gravenhorst, 1829). B. E. repentinus (Holmgren, 1860).
Fig. 18. Distribution maps. A in The British species of Enicospilus (Hymenoptera: Ichneumonidae: Ophioninae)
Fig. 18. Distribution maps. A. Enicospilus adustus (Haller, 1885). B. E. cerebrator Aubert, 1966. C. E. combustus (Gravenhorst, 1829). D. E. myricae sp. nov. E. E. ramidulus (Linnaeus, 1758).
Fig. 11 in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 11. Adeonellopsis pentapora Canu & Bassler, 1929. A. Left, colony in Döderlein Collection (MZS 2-1); right, colony collected by NSMT (NSMT-TeS22). B. Colony on hydroid stalk, from Sagami Bay (NSMT-TeS20). C. Distal end of branch showing young autozooids with multiporous, denticulate spiramen (NSMT-Te761). D. Young autozooids with umbonate processes on frontal shield (NSMT- Te764). E. Mature autozooids with small suboral and other frontal avicularia (NSMT-Te761). F. Old autozooids, showing deeply immersed spiramen and orifices (NSMT-Te762). A–B = optical photographs; C–F = SEM images. Scale bars: A = 3 mm; B = 2 mm; C–D, F = 200 μm; E = 250 μm.
Fig. 8 in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 8. Adeonellopsis japonica (Ortmann, 1890). A. Distal end of branch just starting to bifurcate, showing young autozooids and gonozooids (NSMT-BryR277). B. Enlargement of young gonozooids, showing peripheral rim with rows of granulation perpendicular to margin, and large multiporous spiramen (NSMT-BryR277). C. Autozooids in middle of branch, showing immersed spiramen (NSMT- Bry R 193). D. Basal part of branch, showing autozooids, and some kenozooids with closed orifice (NSMT-BryR36). E. Young gonozooids, showing distinct marginal pores and multiporous spiramen (NSMT-Te758). F. Distal end of branch, showing autozooid formation (NSMT-Te758). SEM images. Scale bars: A, C = 1 mm, B, D–E = 300 μm; F = 500 μm.
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.