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Fig. 5 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 5. Lemurpediculus zimmermanni, stacked photoimages: A, male Holotype, USNMENT00981950, whole body. B, male, Holotype, USNMENT00981950, genitalia. C, female Allotype, USNMENT00981951, whole body.
Fig. 6. Lemurpediculus zimmermanni, A in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 6. Lemurpediculus zimmermanni, A: Ventral head of male Holotype, B: Thoracic sternal plate of Holotype male, C: Genitalia of male Holotype, D: Subgenital plate of female allotype. Abbreviations: ae, anterior endomere; aen, aedeagal endomere; ba, basal apodeme; p, paramere; pe, posterior endomere; ps, pseudopenis.
Fig. 8 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 8. Lemurpediculus gerpi, stacked photoimages: A, male Holotype, USNMENT00981952, whole body. B, male, Holotype, USNMENT00981952, genitalia.
Fig. 10 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 10. Lemurpediculus tsinamanpesotsae, stacked photoimages: A, male Holotype, USNMENT00981954, whole body. B, male, Holotype, USNMENT00981954, genitalia. C, female Allotype, USNMENT00981955, whole body.
Fig. 14 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 14. Morphology of female subgenital plates and associated setae for previously described species of Lemurpediculus, A: Lemurpediculus claytoni Durden et al., 2017. B: Lemurpediculus robbinsi Durden et al., 2017. C: Lemurpediculus verruculosus (Ward, 1951). D: Lemurpediculus petterorum Paulian, 1958. E: Lemurpediculus madagascariensis Durden et al. (2018).
Fig. 2 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 2. Maximum likelihood phylogenetic trees based on A) elongation factor 1α (EF1α), B) cytochrome C oxidase subunit I (COI) and C) internal transcribed spacer 1 (ITS1) sequences. Values next to the branches indicate ultrafast bootstrap support. Tree scale is in substitutions/site. Substitution models were TNe + G4 for EF1α, TPM2+F + I + G4 for COI, and F81 + F + I for ITS1. Abbreviations: F., Fahrenholzia; H., Haematopinus; L., Lemurpediculus.
Fig. 3 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 3. Maximum likelihood phylogenetic tree based on concatenated cytochrome C oxidase subunit I (COI), elongation factor 1α (EF1α) and internal transcribed spacer 1 (ITS1) sequences. Substitution models were TPM2u + F + I + G4 for COI, TIM2e for EF1α and F81 + F + I for ITS1. Values next to the branches indicate ultrafast bootstrap support. Tree scale is in substitutions/site. Abbreviations: L., Lemurpediculus.
Fig. 4 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 4. Lemurpediculus zimmermanni, male, scanning electron micrographs: A, dorsal whole body. B, ventral whole body. Abbreviations sgp, subgenital plate; sp, spiracle; tc, tibiotarsal claw; tsp, thoracic sternal plate; vs, ventral head spike.
Fig. 1 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 1. Sampling sites where cheirogaleids were trapped for collection of lice. Different colours/symbols correspond to the sampled host species/populations, with different shades of blue and green indicating different populations of M. murinus and M. gerpi, respectively. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 12 in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 12. Identifying morphological characters of male genitalia for previously described species of Lemurpediculus, A: Lemurpediculus petterorum Paulian, 1958. B: Lemurpediculus verruculosus (Ward, 1951). C: Lemurpediculus claytoni Durden et al., 2017. D: Lemurpediculus robbinsi Durden et al., 2017. E: Lemurpediculus madagascariensis Durden et al. (2018). Scale bar, 0.1 mm. Abbreviations: as, accessory sclerite; ba, basal apodeme; p, paramere; ndomere; ps, pseudopenis.
Fig. 11. Lemurpediculus tsinamanpesotsae, A in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 11. Lemurpediculus tsinamanpesotsae, A: Ventral head of male Holotype, B: Thoracic sternal plate of Holotype male, C: Genitalia of male Holotype, D: Subgenital plate of female Allotype. Abbreviations: ae, anterior endomere; aen, aedeagal endomere; ba, basal apodeme; p, paramere; pe, posterior endomere; ps, pseudopenis.
Fig. 9. Lemurpediculus gerpi, A in Molecular phylogenetics of the sucking louse genus Lemurpediculus (Insecta: Phthiraptera), ectoparasites of lemurs, with descriptions of three new species
Fig. 9. Lemurpediculus gerpi, A: Ventral head of male Holotype, B: Thoracic sternal plate of Holotype male, C: Genitalia of male Holotype. Abbreviations: ae, anterior endomere; aen, aedeagal endomere; ba, basal apodeme; p, paramere; pe, posterior endomere; ps, pseudopenis.
Fig. 10 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships
Fig. 10. Proximal tarsal bones of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. Right calcaneus in lateral view (A) and stereopair in anterior view (B). Right astragalus in anterodorsal view (C) and stereopair in posterior view (D).
Fig. 11 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships
Fig. 11. Partial right tarsus of Dissacus zanabazari sp. nov., holotype, MAE− BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. A1, anterior view, A2, explanatory drawing of the same; B1, medial view, B2, explanatory drawing of the same.
Fig. 9 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships
Fig. 9. Anterior views of right femur (A) and right tibia and fibula (B) of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene.
Fig. 8 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships
Fig. 8. Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. A. Lateral view of pelvis with lumbar and sacral vertebrae. B. Right femur in distal view.
Fig. 4 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships
Fig. 4. Mandible and lower dentition of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. A. Anterior view of the lower canines and incisors. Note the weakly trilobed morphology, most evident on i2. B. Stereopair of the left mandible in dorsal view. C. Medial view of the left mandible. D. Lingual view of the left p4 through m3.
Fig. 3. A. Right P4 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships
Fig. 3. A. Right P4 to M3 of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. B. Explanantory drawing of the same. Hatched areas in B indicate crushed and distorted enamel, and shading denotes missing enamel, with features reconstructed from left dentition.
Fig. 2. A in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships
Fig. 2. A. Stereopair of the right basicranium of Dissacus zanabazari sp. nov., holotype, MAE−BU− 97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. B. Explanatory drawing of the same.
Fig. 1 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships
Fig. 1. Skull of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene, in dorsal (A), lateral (B), and ventral (C) views. The antorbital and postorbital portions of the skull are completely separate and were positioned based on more complete mesonychid skulls.
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.