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FIGURE 9–10 in Review of the genus Eurypteryx C. Felder & R. Felder, 1874 from China, with a first description of the male E. dianae (Lepidoptera: Sphingidae)
FIGURE 9–10. Habitats of Eurypteryx species from China. 9. E. bhaga, altitude 950 m, Mengla County, S. Yunnan. 10. E. dianae, altitude 845 m, Maolan, SE. Guizhou.
FIGURE 5 in Review of the genus Eurypteryx C. Felder & R. Felder, 1874 from China, with a first description of the male E. dianae (Lepidoptera: Sphingidae)
FIGURE 5. Habitus of Eurypteryx geoffreyi Cadiou & Kitching, 1990 in dorsal (a, c) and ventral (b, d) view. a–b. male, holotype (Thailand); c–d. female (Thailand). © Kitching (2020).
FIGURES 35–43. Coenosia species, male sternite 5 in The genus Coenosia Meigen in Iran, with a key to species and description of a new species (Diptera: Muscidae)
FIGURES 35–43. Coenosia species, male sternite 5. and hypopygium, posterior and lateral views. 35–37. C. nigridigita; 38–40. C. testacea; 41–43. C. tigrina.
FIGURES 22. Indian Isometopinae alive. A–C. Alcecoris globosus Carvalho 1951. A. Nymph female. B. Female. C. Male. D in The Isometopinae (Hemiptera: Heteroptera: Miridae) of India and Sri Lanka: A Review of the Subfamily, with Descriptions of Six New Species
FIGURES 22. Indian Isometopinae alive. A–C. Alcecoris globosus Carvalho 1951. A. Nymph female. B. Female. C. Male. D. Alcecoris periscopus McAtee & Malloch, 1924, female.
FIGURE 1 in Rediscovering the poorly-known Neotropical katydid Hyperomerus crassipes Redtenbacher, 1891 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini) description of male reveals the synonymic status of Uchuca Giglio-Tos, 1898
FIGURE 1. The phalli of Hyperomerus amacayaca (Montealegre-Z & Morris, 2003) comb. nov. (A‒F) and Hyperomerus ferreirai (Piza Jr., 1976) comb. nov. (G‒L). A, G) Posterior view; B, H) Anterior view; C, I) Lateral view; D, J) Posterior view of dorsal lobe in detail; E, K) Anterior view of dorsal lobe in detail; F, L) Anterior view of ventral lobe in detail. Abbreviations: TS) Titillator's sclerites; ti) Titillatory processes; VS) Sclerite of the ventral fold of dorsal lobe; dl) Dorsal lobe; vl) Ventral lobe; mp.dl) Membranous processes of dorsal lobe; AP) Anterophallic apodemes; ejv) Ejaculatory vesicles. Arrow) Sclerotized area surrounding scllerits TS and processes ti.
FIGURE 3 in Rediscovering the poorly-known Neotropical katydid Hyperomerus crassipes Redtenbacher, 1891 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini) description of male reveals the synonymic status of Uchuca Giglio-Tos, 1898
FIGURE 3. Male of Hyperomerus crassipes Redtenbacher (1891). A) Lateral view; B) Dorsal view; C) Front; D) Ventral view of the thorax, Arrow) Prosternum; E) Dorsal view of tegmina; F) Lateral view of genitalia; G) Posterior view of genitalia, cerci and tenth tergite in detail, Arrow) spiniform basal appendage of cerci; H) Ventral view of genitalia, subgenital plate in detail; I) Lateral view of the inner side of left cercus, black arrow) basal appendage, red arrow) paraproct; J) Dorsal view of left cercus, black arrow) basal appendage, red arrow) paraproct; K) Ventral view of cercus of left cercus, black arrow) basal appendage, red arrow) paraproct; L) Left stridulatory file; M) Right stridulatory file; N) Left stridulatory apparatus in detail; O) Right stridulatory apparatus in detail.
FIGURE 2 in Rediscovering the poorly-known Neotropical katydid Hyperomerus crassipes Redtenbacher, 1891 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini) description of male reveals the synonymic status of Uchuca Giglio-Tos, 1898
FIGURE 2. The phallus of Hyperomerus crassipes Redtenbacher (1891). A) Posterior view; B) Anterior view; C) Lateral view; D) Posterior view of dorsal lobe in detail; E) Anterior view of dorsal lobe in detail; F) Anterior view of ventral lobe in detail. Abbreviations: TS) Titillator's sclerites; ti) Titillatory processes; VS) Sclerite of the ventral fold of dorsal lobe; dl) Dorsal lobe; vl) Ventral lobe; mp.dl) Membranous processes of dorsal lobe; AP) Anterophallic apodemes; ejv) Ejaculatory vesicles. Arrow) Sclerotized area surrounding scllerits TS and processes ti.
FIGURE 4 in Rediscovering the poorly-known Neotropical katydid Hyperomerus crassipes Redtenbacher, 1891 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini) description of male reveals the synonymic status of Uchuca Giglio-Tos, 1898
FIGURE 4. Female of Hyperomerus crassipes Redtenbacher (1891). A) Lateral view; B) Dorsal view; C) Lateral view of genitalia, ovipositor in detail; D) Posterior view of genitalia, tenth tergite in detail; E) Ventral view of genitalia, subgenital plate in detail; F) Lateral view of the holotype and labels, deposited in Naturhistorisches Museum (NMW).
FIGURE 14. Neonesidea manningi Maddocks. A–F, holotype male 896M in Taxonomic applications of the esophageal flapper valve in the Genus Neonesidea (Bairdioidea, Podocopida, Ostracoda), including descriptions of new and poorly known species from the Caribbean and Gulf of Mexico
FIGURE 14. Neonesidea manningi Maddocks. A–F, holotype male 896M; G–J, specimen 902F; K, specimen 956M; L, unnumbered male specimen; M, specimen 957M. A, A2 claw; B, lateral view of compressed head capsule, with EV and chitinous struts; C, both hemipenes; D–E, RV and LV exteriors in TL; F, AMS of RV; G–H, RV and LV exteriors in TL; I, lateral view of compressed anterior body, with head capsule, labrum, EV, and two food balls; J, genital lobe; K, dorsal view of carapace in RL; L, left lateral view of entire animal in TL; M, plate. Scale bar = 50 µm.
FIGURES 4–5 in Fanniidae (Diptera): new species, new records and first description of the male of Fannia latifrontalis Hennig
FIGURES 4–5. Fannia bohemica sp. nov. Male genitalia in posterior and lateral views, specimen from Czech Republic.
FIGURES 2–3. Fannia latifrontalis Hennig, 1955 in Fanniidae (Diptera): new species, new records and first description of the male of Fannia latifrontalis Hennig
FIGURES 2–3. Fannia latifrontalis Hennig, 1955. Male genitalia in posterior and lateral views, specimen from Slovakia.
Data from: Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear 1986.
In Shear's 1986 cladistic analysis of the Ischyropsalidoidea, he described the new genus Acuclavella including four new species from the Pacific Northwest states of Washington and Idaho. Several of these species descriptions were based on very limited sample sizes. Our recent field work has increased by more than an order of magnitude both the number of specimens and known localities for Acuclavella. We use this new material to interpret species limits in Acuclavella using morphometric analyses and DNA sequence data from four gene regions. We sequence for the first time the protein-coding homolog of the WNT2 gene for phylogenetic reconstruction in Opiliones. Our multi-locus phylogeny corroborates a sister relationship between Acuclavella and Ceratolasma, as hypothesized using morphology by Shear (1986). Within Acuclavella, morphometric clusters and reciprocal allelic monophyly allows recognition of three additional species: Acuclavella leonardi sp. n., A. sheari sp. n., and A. makah sp. n. This work also describes the previously unknown male of Acuclavella quattuor, from specimens collected at the type locality. Our research identifies a number of novel morphologies for Acuclavella, including females with four pairs of spines, individuals with three pairs of spines on scute areas I-III, and a population with two pairs of spines disjunct from A. quattuor, which was diagnosed with this spination character. We were unable to assign these populations to existing species, and conservatively do not yet recognize them as new. Intrageneric morphometrics and phylogenetic inference in Acuclavella were often concordant. However, we demonstrate that species delimitation signal would not be detected if only a single line of evidence were utilized.
FIGURES 15. Male genitalia and tergite 2. 1 in Notes on the functional morphology of terminalia from Prorates ballmeri Nagatomi and Liu (Diptera: Scenopinidae: Proratinae) collected while in copula, with a description of the previously unknown female
FIGURES 15. Male genitalia and tergite 2. 1, Lateral view of the male aedeagal apparatus showing only the left distiphallus tip, dorsal bridge and gonocoxal apodeme removed; 2, Dorsal view of gonocoxite and aedeagal apparatus; 3, Ventral view of gonocoxite; 4, Dorsal view of tergite 9, cerci, and hypoproct; 5, Dorsal view of tergite 2 with patch of modified setae. Cordlike phallus and dorsal bridge shown in gray to help clarify structures. Measure bar a is for all genitalia, measure bar b is for tergite 2 only. bp, basiphallus; cp, cordlike phallus; db, dorsal bridge; dp, distiphallus; eap, ejaculatory apodeme; ga, gonocoxal apodeme; gdp, gonocoxal dorsal process; gs, gonostylus; hp, hanging bell phallus.
FIGURES 35. Caenotus tanyrhynchus spec. nov., male genitalia. 3 in Description of a new species of Caenotus Cole (Diptera: Scenopinidae) from Baja California Sur, Mexico, with a review of the genus
FIGURES 35. Caenotus tanyrhynchus spec. nov., male genitalia. 3, Dorsal view of male epandrium, setae not illustrated on left side for clarity; 4, Dorsal view of gonocoxite and aedeagal apparatus, setae on dorsal gonostylus not illustrated for clarity; 5, Lateral view of gonocoxite and aedeagal apparatus. aa, aedeagal apodeme; c, cercus; ga, gonocoxal apodeme; gs, gonostylus; h, hypoproct; ps, parameral sheath.
FIGURES 8–15. 8, Myrsidea kathleenae male genital sac sclerite. 9, M. warwicki female metanotal margin and dorsoventral abdomen. 10–14, Male genital sac sclerite. 10, M. plumosi. 11, M. adamsae. 12, M. ochracei. 13, M. borbonici. 14, M. johnsoni. 15, M in The genus Myrsidea Waterston (Phthiraptera: Menoponidae) from bulbuls (Passeriformes: Pycnonotidae), with descriptions of 16 new species
FIGURES 8–15. 8, Myrsidea kathleenae male genital sac sclerite. 9, M. warwicki female metanotal margin and dorsoventral abdomen. 10–14, Male genital sac sclerite. 10, M. plumosi. 11, M. adamsae. 12, M. ochracei. 13, M. borbonici. 14, M. johnsoni. 15, M. palmai male metanotal margin and dorsoventral abdomen.
FIGURES 1–7. 1–5, Myrsidea pycnonoti. 1, Dorsoventral male. 2, Ventral male terminalia. 3 in The genus Myrsidea Waterston (Phthiraptera: Menoponidae) from bulbuls (Passeriformes: Pycnonotidae), with descriptions of 16 new species
FIGURES 1–7. 1–5, Myrsidea pycnonoti. 1, Dorsoventral male. 2, Ventral male terminalia. 3, Female metanotal margin and dorsoventral abdomen. 4, Male genitalia. 5, Male genital sac sclerite. 6, M. phillipsi male genital sac sclerite. 7, M. gieferi male ventral terminalia.
FIGURES 1216. – Fig. 1213 in Descriptions of the spermathecae and male genitalia of the species of Crocidium Loew described by Hesse (Diptera, Bombyliidae, Crocidiinae)
FIGURES 1216. – Fig. 1213: Crocidium namaquense Hesse, 1963: 12. Male genitalia; 13. Spermathecae; fig. 14 – Spermathecae of Crocidium nitidilabre Hesse, 1938; fig. 15 – Spermathecae of Crocidium phaenochilum Hesse; fig. 16 – Spermathecae of Crocidium phaeopterale Hesse, 1938
FIGURES 711. – Fig 7 in Descriptions of the spermathecae and male genitalia of the species of Crocidium Loew described by Hesse (Diptera, Bombyliidae, Crocidiinae)
FIGURES 711. – Fig 7: Spermathecae of Crocidium karooanum Hesse, 1938; figs 89 – Crocidium lactipenne Hesse, 1963: 7. Male genitalia; 8. Spermathecae; figs 1011 – Crocidium microstictum Hesse, 1963: 9. Male genitalia; 10. Spermathecae.
FIGURES 13 – 12 Crocidium costilabre Hesse, 1963 in Descriptions of the spermathecae and male genitalia of the species of Crocidium Loew described by Hesse (Diptera, Bombyliidae, Crocidiinae)
FIGURES 13 – 12 Crocidium costilabre Hesse, 1963: 1. Male genitalia; 2. Spermathecae; Fig. 3 – Spermathecae of Crocidium chrysonotum Hesse, 1938
FIGURES 34 in Contribution to the knowledge of Parantiteuchus (Heteroptera, Pentatomidae, Discocephalinae): description of the male of P. hemitholus Ruckes, 1962
FIGURES 34, male genitalia. Pygophore: dorsal and ventral view respectively. (dr dorsal rim; lpdr lateral process of dorsal rim; paparamere; plap posterolateral angle process; pr proctiger; vrlp ventral rim lateral process).
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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.