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Fig. 3 in Taxonomy of some Galeommatoidea (Mollusca, Bivalvia) associated with deep-sea echinoids: A reassessment of the bivalve genera Axinodon Verrill & Bush, 1898 and Kelliola Dall, 1899 with descriptions of new genera Syssitomya gen. nov. and Ptilomyax gen. nov.
Fig. 3. Kelliola symmetros (Jeffreys, 1876) from Biscay. A-C. Photo micrographs a external of left valve, internals of both valves. D-E. SEM of hinges of right and left valves. F-H. SEM of internal of both valves and external of left valve. I. SEM of prodissoconch. J. SEM of anterior area showing weak radial sculpture. K. SEM of margin showing transverse grooves.
Fig. 1 in Taxonomy of some Galeommatoidea (Mollusca, Bivalvia) associated with deep-sea echinoids: A reassessment of the bivalve genera Axinodon Verrill & Bush, 1898 and Kelliola Dall, 1899 with descriptions of new genera Syssitomya gen. nov. and Ptilomyax gen. nov.
Fig. 1. Holotype of Axinodon symmetros Verrill & Bush, 1898, USNM 35175. A-B. SEM of hinges of right and left valves. C-D. SEM of internal of right and left valves. E. Photo micrograph of internal of right valve. F-G. SEM of external of right and left valves. H. SEM of prodissoconch.
Fig. 2 in Taxonomy of some Galeommatoidea (Mollusca, Bivalvia) associated with deep-sea echinoids: A reassessment of the bivalve genera Axinodon Verrill & Bush, 1898 and Kelliola Dall, 1899 with descriptions of new genera Syssitomya gen. nov. and Ptilomyax gen. nov.
Fig. 2. Holotype of Kellia symmetros Jeffreys, 1876, USNM 170626. A-B. SEM of hinges of right and left valves. C-D. SEM of internal of right and left valves. E-F SEM of external of right and left valves. G-H. photo micrographs of internal and external of right valve.
Figure 13 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 13. Seasonal abundance of cecidogenous (Palaeomystella fernandesi, dashed line) and kleptoparasite (Locharcha opportuna, solid line) larvae in galls (total = 164 and 169 individuals, respectively) induced on Tibouchina sellowiana plants at CPCN Pró-Mata, from April 2012 through June 2013. Arabic numbers from 1 to 14 represent 30-day sampling intervals. Upper horizontal bars indicate host plant phenological phases: red, flowering; green, fruiting; blue, dormancy; black, forming new shoots.
Figure 7 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 7. Locharcha opportuna pupa, in dorsal (A), ventral (B) and lateral (C) views, respectively. Scale bar = 1 mm.
Pathogenic Leptospira isolated from rodents in New Orleans, Louisiana USA, and associated site information
<p>Land use change can elevate disease risk by creating conditions beneficial to species that carry zoonotic pathogens. Observations of concordant global trends in pathogen prevalence and disease incidence have engendered concerns that urbanization could increase transmission risk of some pathogens. Yet host-pathogen relationships underlying transmission risk have not been well characterized within cities, even where contact between humans and species capable of transmitting pathogens of concern occur. We addressed this deficit by testing the hypothesis that areas in cities experiencing greater population loss and infrastructure decline (i.e., counter-urbanization) can support a greater diversity of host species and a larger and more diverse pool of pathogens. We did so by characterizing pathogenic <em>Leptospira</em> infection relative to rodent host richness and abundance across a mosaic of abandonment in post-Katrina New Orleans (Louisiana, USA). We found that <em>Leptospira</em> infection loads were highest in areas that harbored higher rodent species richness. Areas with greater host co-occurrence also harbored a greater number of hosts, including the most competent hosts, indicating that <em>Leptospira </em>infection is amplified by increases in overall and relative host abundance. Evidence of shared infection among rodent hosts indicates that cross-species transmission of <em>Leptospira </em>likely increases infection at sites with greater host syntopy. Additionally, evidence that rodent co-occurrence and abundance and <em>Leptospira</em> infection load parallel abandonment suggests that counter-urbanization can elevate zoonotic disease risk within cities, particularly in underserved communities that are burdened with disproportionate concentrations of derelict properties.</p>
Figures 2 in The species of Astymachus Howard (Hymenoptera: Encyrtidae)ı potentially important parasitoids of Aclerdidae (Hemiptera: Coccoidea) associated with grasses (Poaceae)ı with descriptions of three new species
Figures 2. Astymachus saccharum sp. nov.: (a) head (holotype); (b) antenna ♀ (holotype); (c) apex of fore wing venation (paratype); (d) fore wing (paratype). Astymachus felix Singh and Hayat: (e) apex of fore wing venation. Astymachus phainae Sugonjaev: (f) fore wing; (g) apex of fore wing venation. Astymachus lasallei sp. nov. (holotype) (h) antenna ♀; (i) head; (j) fore wing; (k) discal setae below marginal vein, enlarged (differential interference contrast); (l) apex of fore wing venation. Asymachus phragmitis Trjapitzin: (m) head; (n) antenna ♀. (Figures e-g courtesy of Mohammad Hayat).
Figures 3 in The species of Astymachus Howard (Hymenoptera: Encyrtidae)ı potentially important parasitoids of Aclerdidae (Hemiptera: Coccoidea) associated with grasses (Poaceae)ı with descriptions of three new species
Figures 3. Astymachus phragmitis Trjapitzin: (a) antenna ♂; (b) fore wing; (c) apex of fore wing venation. Astymachus japonicus Howard: (d) head; (e) antenna ♀; (f) antenna ♂; (g) apex of fore wing venation; (h) fore wing. Astymachus srilankae sp. nov. (holotype): (i) head; (j) antenna ♀; (k) antenna ♂; (l) fore wing; (m) apex of fore wing venation.
Figs 17–27. 17–22 in A new species of Cofana associated with grasses from India (Hemiptera: Cicadellidae: Cicadellinae)
Figs 17–27. 17–22 – Cofana trilobata sp. nov., female. 17 – habitus; 18 – face; 19 – pronotum and scutellum; 20 – seventh sternite, ventral view; 21–22 – second gonapophysis, lateral view. 23–27 – Cofana lineata (Distant, 1908). 23 – habitus, female; 24 – habitus, male; 25 – face, male; 26 – pronotum and scutellum, male; 27 – aedeagus, lateral view; 28 – seventh sternite, female, ventral view.
Figs 1–7 in A new species of Cofana associated with grasses from India (Hemiptera: Cicadellidae: Cicadellinae)
Figs 1–7. Cofana trilobata sp. nov., male. 1 – aedeagus, lateral view; 2 – aedeagus, caudal view; 3 – pygofer, lateral view; 4 – subgenital plate, ventral view; 5 – style; 6 – connective; 7– male abdominal apodemes.
Figs 8–16 in A new species of Cofana associated with grasses from India (Hemiptera: Cicadellidae: Cicadellinae)
Figs 8–16. Cofana trilobata sp. nov., male. 8 – habitus, dorsal view; 9 – face; 10 – pronotum and scutellum; 11 – style; 12 – subgenital plate, ventral view; 13 – aedeagus, caudal view; 14 – aedeagus, lateral view; 15 – pygofer, lateral view; 16 – connective, dorsal view.
Figs. 17–20 in Description of a new species of Anthocoris (Hemiptera: Heteroptera: Anthocoridae) from southern India, associated with striped mealybug on purple orchid tree
Figs. 17–20. Anthocoris muraleedharani Yamada, sp. nov. 17 – adult habitus; 18 – mature nymph feeding on solenopsis mealybug; 19 – young nymph feeding on solenopsis mealybug; 20 – eggs inserted into plant tissue (arrows show exposed operculum of egg).
Figs. 1–6 in Description of a new species of Anthocoris (Hemiptera: Heteroptera: Anthocoridae) from southern India, associated with striped mealybug on purple orchid tree
Figs. 1–6. Anthocoris muraleedharani Yamada, sp. nov., paratypes, male (1–2, 5–6) and female (3–4). 1 – head and pronotum, dorsal view; 2–3 – antennae; 4 – left fore wing, dorsal view; 5 – ostiolar peritreme and evaporatorium, left lateroventral view; 6 – abdominal sterna II–III, ventral view. Scale bars = 0.5 mm for 1–4, 6; 0.1 mm for 5.
Figs. 12–16 in Description of a new species of Anthocoris (Hemiptera: Heteroptera: Anthocoridae) from southern India, associated with striped mealybug on purple orchid tree
Figs. 12–16. Anthocoris muraleedharani Yamada, sp. nov. 12–13 – habitus of holotype, dorsal and lateral views; 14–15 – head and pronotum, male (14) and female (15), dorsal view; 16 – ostiolar peritreme and evaporatorium, female, left lateroventral view. Scale bars = 1.0 mm for 12–13; 0.5 mm for 14–15: 0.1 mm for 16.
Figure 4 in A new species and new record of Agistemus Summers (Acari: Stigmaeidae) associated withCapsicum annuum L. var.glabriusculum (Solanaceae) from Northeastern of Mexico
Figure 4 Agistemus piquinnusn. sp. (male); A – Dorsum, B – Dorsum (PH), C – Anogenital area, D – Anogenital area (DIC).
Figure 1 in A new species and new record of Agistemus Summers (Acari: Stigmaeidae) associated withCapsicum annuum L. var.glabriusculum (Solanaceae) from Northeastern of Mexico
Figure 1 Agistemus piquinnusn. sp. (female); A – Dorsum, B – Dorsum (PH), C – Anogenital area, D – Anogenital area (DIC).
Figure 13 Tarsus II, right leg. A, B, H. Lasioseius cassidini n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 13 Tarsus II, right leg. A, B, H. Lasioseius cassidini n. sp.: A – Adult female, dorsal view; B – Adult male, dorsal view; H — Detail of distal region, lateroventral view. C, D, G.Lasioseius serripes n. sp.: C – Adult female, dorsal view; D – Adult male, anterolateral view; G. Detail of distal region, ventral view. E, F.Lasioseius fuscina n. sp.: E – Adult male, dorsal view; F – Adult female, dorsal view. I —Lasioseius duobtusisetis n. sp., adult female, dorsal view. (Solid black color indicates dorsal setae on segment).
Figure 8 Lasioseius fuscina n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 8 Lasioseius fuscina n. sp., adult female: A – Idiosoma, dorsal view; B – Detail of denoted dorsal setae; C – Gnathotectum; D – Idiosoma, ventral view; E – Cheliceral digits, paraxial view; F – Subcapitulum; G – Detail of ventral setae of palptrochanter.
Figure 7 Lasioseius serripes n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 7 Lasioseius serripes n. sp.: A – Larva, idiosoma, dorsal view; B – Larva, idiosoma, ventral view; C – Protonymph, idiosoma, dorsal view; D – Protonymph, idiosoma, ventral view.
Figure 5 Lasioseius serripes n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 5 Lasioseius serripes n. sp., adult male: A – Idiosoma, dorsal view; B – Gnathotectum; C – Tritosternum; D – Subcapitulum and ventral setae of palptrochanter; E – Idiosoma, ventral view; F – Chelicera and spermatodactyl, ventrolateral view; G – Detail of fixed cheliceral digit, ventral view; H – Detail of spermatodactyl.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.