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7,472 results for “new family”
Mormotomyia hirsuta Austen, d. Hind leg. Greatly enlarged. in A Remarkable Semi-Apterous Fly (Diptera) found in a Cave in East Africa, and representing a new Family, Genus, and Species.
Mormotomyia hirsuta Austen, d. Hind leg. Greatly enlarged.
Mormotomyia hirsuta Austen, 8. Wing. Greatly enlarged. in A Remarkable Semi-Apterous Fly (Diptera) found in a Cave in East Africa, and representing a new Family, Genus, and Species.
Mormotomyia hirsuta Austen, 8. Wing. Greatly enlarged.
Text-figure 4. Mormotomyia hirsuta Austen, 8. Wing. Greatly enlarged. in A Remarkable Semi-Apterous Fly (Diptera) found in a Cave in East Africa, and representing a new Family, Genus, and Species.
Text-figure 4. Mormotomyia hirsuta Austen, 8. Wing. Greatly enlarged.
Momnotomyia hirsuta Austen, 3. Greatly enlarged. in A Remarkable Semi-Apterous Fly (Diptera) found in a Cave in East Africa, and representing a new Family, Genus, and Species.
Momnotomyia hirsuta Austen, 3. Greatly enlarged.
Fig. 16 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 16. Rostropycnodus gayeti gen. et sp. nov. Paratype CLC S-337.
Fig. 7 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 7. Monocerichthys scheuchzeri gen. et sp. nov. Holotype CLC S-413a (above) and b (below).
Fig. 3 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 3. Gladiopycnodus karami gen. et sp. nov. Reconstruction of the skull of holotype CLC S-393.
Fig. 1 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 1. Gladiopycnodus karami gen. et sp. nov. Holotype CLC S-393.
Fig. 12 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 12. Monocerichthys scheuchzeri gen. et sp. nov. The anal fin of holotype CLC S-413a.
Fig. 2 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 2. Gladiopycnodus karami gen. et sp. nov. Reconstruction of holotype CLC S-393.
Fig. 15 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 15. Rostropycnodus gayeti gen. et sp. nov. Holotype CLC S-608a (above) and 608b (below).
Fig. 11 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 11. Monocerichthys scheuchzeri gen. et sp. nov. The dorsal fin of holotype CLC S-413a.
Fig. 17 in Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera
Fig. 17. Rostropycnodus gayeti gen. et sp. nov. Paratype CLC S-595.
Data from: The multilocus multispecies coalescent: a flexible new model of gene family evolution
<p>Incomplete lineage sorting (ILS), the interaction between coalescence and speciation, can generate incongruence between gene trees and species trees, as can gene duplication (D), transfer (T) and loss (L). These processes are usually modelled independently, but in reality, ILS can affect gene copy number polymorphism, i.e., interfere with DTL. This has been previously recognised, but not treated in a satisfactory way, mainly because DTL events are naturally modelled forward-in-time, while ILS is naturally modelled backwards-in-time with the coalescent. Here we consider the joint action of ILS and DTL on the gene tree/species tree problem in all its complexity. In particular, we show that the interaction between ILS and duplications/transfers (without losses) can result in patterns usually interpreted as resulting from gene loss, and that the realised rate of D, T and L becomes non-homogeneous in time when ILS is taken into account. We introduce algorithmic solutions to these problems. Our new model, the <em>multilocus multispecies coalescent</em> (MLMSC), which also accounts for any level of linkage between loci, generalises the multispecies coalescent model and offers a versatile, powerful framework for proper simulation and inference of gene family evolution.</p>
Fig. 3 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand
Fig. 3. Shell morphology. Principal component analysis based on five shell measurements of Table 1.
FIGURES 1 – 2 in A new Afrotropical Ogovea (Opiliones, Cyphophthalmi) from Cameroon, with a discussion on the taxonomic characters in the family Ogoveidae
FIGURES 1 – 2. Holotype of Ogovea cameroonensis sp. n. 1. Dorsal view; 2. Ventral view.
Fig. 11 in Taxonomic status of the family Biokoviellidae Mršić, 1992 (Diplopoda, Chordeumatida): reconsideration, with a description of one new species
Fig. 11. Distribution of the subfamily Biokoviellinae stat. nov.
Figs 8–14 in New data on the chalcid wasps of the family Pteromalidae (Hymenoptera: Chalcidoidea) from South Korea
Figs 8–14. Miscogasteriella vladimiri Tselikh, Lee et Ku, 2023, male: 8 – body, lateral
Figs 1–7. Janssoniella kawabatai Tselikh, 2020 in New data on the chalcid wasps of the family Pteromalidae (Hymenoptera: Chalcidoidea) from South Korea
Figs 1–7. Janssoniella kawabatai Tselikh, 2020, male: 1 – body, lateral view; 2 –
Figure 8 in Description of a new species of Mesochaetopterus (Annelida, Polychaeta, Chaetopteridae), with redescription of Mesochaetopterus xerecus and an approach to the phylogeny of the family
Figure 8. Mesochaetopterus xerecus, scheme of a mature sperm.
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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.