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577 results for “Lucanidae”
Figure 3 in Two new species of microdispid mites (Acari: Heterostigmata: Pygmephoroidea) associated with Lucanus ibericus (Coleoptera: Lucanidae)
Figure 3 Premicrodispus gorganiensis sp. nov., female. A – leg III, B – leg IV.
Figure 2 Premicrodispus gorganiensissp. nov., female. A – leg I, B – leg II in Two new species of microdispid mites (Acari: Heterostigmata: Pygmephoroidea) associated with Lucanus ibericus (Coleoptera: Lucanidae)
Figure 2 Premicrodispus gorganiensissp. nov., female. A – leg I, B – leg II.
Figure 6 in Two new species of microdispid mites (Acari: Heterostigmata: Pygmephoroidea) associated with Lucanus ibericus (Coleoptera: Lucanidae)
Figure 6 Neomicrodispus lucani sp. nov., female. A – leg III, B – leg IV.
Figure 5 in Two new species of microdispid mites (Acari: Heterostigmata: Pygmephoroidea) associated with Lucanus ibericus (Coleoptera: Lucanidae)
Figure 5 Neomicrodispus lucani sp. nov., female. A – leg I, B – leg II.
Genomic tools for comparative conservation genetics among three recently diverged stag beetles (Lucanus, Lucanidae)
<p>We are witnessing a rapid decline in global biodiversity. International protocols and local conservation laws have been installed to counter such an unprecedented rate of decline. However, quantitatively evaluating how much biodiversity has been lost due to climatic and anthropogenic effects and how much biodiversity has been restored due to conservation efforts remain challenging. We applied a comparative conservation genomic approach to statistically and quantitatively address these questions using three geographical taxa from a stag beetle species complex. We found that the three sky-island taxa formed three independently evolving units without detectable post-divergence gene flow; furthermore, the three taxa, which have been divergent from each other since the mid-Pleistocene, have experienced episodes of demographic decline in the past. More importantly, even though idiosyncratic anthropogenic exploitations have been hypothesized to impact the recent demographic history (< 100 years) differently, we found a shared pattern of continuous decline in effective population size among the three geographical taxa. We argue that future empirical studies should include more taxa, in addition to the focal species, that may or may not be affected by the focal historical events to avoid making biased conservation plans.</p>
Genomic tools for comparative conservation genetics among three recently diverged stag beetles (Lucanus, Lucanidae)
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Figure A4 in Taxonomic contribution on the Andean species of Aegognathus (Coleoptera: Lucanidae) with two new species from Colombia and Peru
Figure A4. Male genitalia. (a) Aegognathus waterhousei ventral view. (b) Aegognathus dulima n.sp. ventral view. (c) A. waterhousei lateral view. (d) A. dulima n.sp. lateral view. Scale bar 1 mm.
Figure A3 in Taxonomic contribution on the Andean species of Aegognathus (Coleoptera: Lucanidae) with two new species from Colombia and Peru
Figure A3. Detail of abdominal ventrite V. (a) Aegognathus waterhousei. (b) Aegognathus arnaudi n.sp. Scale bar 5 mm.
Figure A2. Aegognathus arnaudi n in Taxonomic contribution on the Andean species of Aegognathus (Coleoptera: Lucanidae) with two new species from Colombia and Peru
Figure A2. Aegognathus arnaudi n.sp. dorsal view. (a) Holotype male. (b) Paratype medium size male. (c) Paratype minor male. (d) Paratype female. Scale bar 5 mm.
FIGURES 25‒29 in Revision of the Australian species of Figulus MacLeay, 1819 (Coleoptera: Lucanidae)
FIGURES 25‒29. Figulus sulcicollis Hope in Westwood. 25, dorsal view of adult (scale bar: 5 mm); 26, mentum; 27, male genitalia, dorsal view (scale bar: 0.5 mm); 28, male genitalia, lateral view; 29, apex of flagellum (scale bar: 200 µm).
FIGURES 16‒19. Figulus regularis Westwood. 16 in Revision of the Australian species of Figulus MacLeay, 1819 (Coleoptera: Lucanidae)
FIGURES 16‒19. Figulus regularis Westwood. 16, dorsal view of adult (scale bar: 5 mm); 17, mentum; 18, male genitalia, dorsal view (scale bar: 0.5 mm); 19, male genitalia, lateral view.
FIGURES 8‒11. Figulus lilliputanus Westwood. 8 in Revision of the Australian species of Figulus MacLeay, 1819 (Coleoptera: Lucanidae)
FIGURES 8‒11. Figulus lilliputanus Westwood. 8, dorsal view of adult (scale bar: 5 mm); 9, mentum; 10, male genitalia, dorsal view (scale bar: 0.5 mm); 11, male genitalia, lateral view.
FIGURES 1‒5. Figulus boileaui Bomans. 1 in Revision of the Australian species of Figulus MacLeay, 1819 (Coleoptera: Lucanidae)
FIGURES 1‒5. Figulus boileaui Bomans. 1, dorsal view of adult (scale bar: 5 mm); 2, mentum; 3, male genitalia, dorsal view (scale bar: 0.5 mm); 4, male genitalia, lateral view; 5, apex of flagellum (scale bar: 100 µm).
FIGURES 20‒24. Figulus rossi Gahan. 20 in Revision of the Australian species of Figulus MacLeay, 1819 (Coleoptera: Lucanidae)
FIGURES 20‒24. Figulus rossi Gahan. 20, dorsal view of adult (scale bar: 5 mm); 21, mentum; 22, male genitalia, dorsal view (scale bar: 0.5 mm); 23, male genitalia lateral view; 24 apex of flagellum (scale bar: 200 µm).
FIGURE 9 in A new species of stag beetle from sand dunes in west Texas, and a synopsis of the genus Nicagus (Coleoptera: Lucanidae: Aesalinae: Nicagini)
FIGURE 9. Distribution of Nearctic species of Nicagus, indicated by triangles (N. occultus), or circles (N. obscurus). An open circle indicates a state record without specific locality data.
FIGURE 4 in A new species of stag beetle from sand dunes in west Texas, and a synopsis of the genus Nicagus (Coleoptera: Lucanidae: Aesalinae: Nicagini)
FIGURE 4. Protibial dentation (dorsal view) of male: a) N. occultus, b) N. obscurus, and c) N. japonicus.
FIGURES 5–8. 5 in A new species of stag beetle from sand dunes in west Texas, and a synopsis of the genus Nicagus (Coleoptera: Lucanidae: Aesalinae: Nicagini)
FIGURES 5–8. 5. Lateral view of male N. occultus, illustrating diagnostic characters: short, conical metatibia; weakly curved claws; and dorsally curved parameres. 6. Lateral view of elongate male metatibia of N. obscurus. 7. Apex of metatibiae of male N. occultus. 8. Male genitalia of N. occultus (dorsal view), showing rounded apex of median lobe.
FIGURES 20–31 in A new species of Metadorcinus Kriesche from Brazil with notes on the genus (Coleoptera: Scarabaeoidea: Lucanidae)
FIGURES 20–31. Metadorcinus spp., dorsal and lateral views: 20–21. M. ranki n. sp., male; 22–23. M. ranki n. sp., female; 24–25. M. ditomoides, male; 26–27. M. cruentus, male; 28–29: M. neotragus, male. 30-31: M. auritus, male.
FIGURES 6–11. Metadorcinus ranki n in A new species of Metadorcinus Kriesche from Brazil with notes on the genus (Coleoptera: Scarabaeoidea: Lucanidae)
FIGURES 6–11. Metadorcinus ranki n. sp.: 6–8. male genital capsule: dorsal, ventral, and lateral views respectively; 9– 10. female habitus: dorsal and lateral views respectively; 11. female genitalia: ventral view. All scale bars = 1 mm.
FIGURES 1–5. Metadorcinus ranki n in A new species of Metadorcinus Kriesche from Brazil with notes on the genus (Coleoptera: Scarabaeoidea: Lucanidae)
FIGURES 1–5. Metadorcinus ranki n. sp.: 1–2. male habitus: dorsal and lateral views respectively; 3–5. Aedeagus: dorsal, ventral, and lateral views respectively. All scale bars = 1 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)
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.