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Developments in taxonomy could see safari hunters killing 25 types of antelope, instead of the previous 9, to achieve the 'spiral horned grand slam'. in Taxonomy anarchy hampers conservation
Developments in taxonomy could see safari hunters killing 25 types of antelope, instead of the previous 9, to achieve the 'spiral horned grand slam'.
MIX 'N' MATCH Di egent ogganizations gecognize di egent numbegs of bigd species, mostcy because they use di egent de nitions fog what constitutes a species. in Taxonomy anarchy hampers conservation
MIX 'N' MATCH Di egent ogganizations gecognize di egent numbegs of bigd species, mostcy because they use di egent de nitions fog what constitutes a species.
Fig. 1 in Polyclinum constellatum (Tunicata, Ascidiacea), an emerging non-indigenous species of the Mediterranean Sea: integrated taxonomy and the importance of reliable DNA barcode data Abstract
Fig. 1: Map of the Mediterranean Sea showing the literature records (black rhombuses) of P. constellatum and the new findings (red dots).
Fig. 6 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 6. Lateral view of head on blind side of Samaris spinea, NSMT-P 109872, 32.9 mm SL, showing a position of underlying parasitic isopod on the gill. Arrow head indicates cephalon.
Fig. 5 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 5. CT images of osteology of head and anterior body on ocular side in Samaris spinea, NSMT-P 109872, 32.9 mm SL. EC: epicentrum; HM: hypomeral.
Fig. 4 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 4. CT images of transformed scales with small spines along dorsal (A) and ventral (B) margins of caudal peduncle on ocular side of Samaris spinea, NSMT-P 109872, 32.9 mm SL.
Fig. 3 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 3. CT images of osteology on ocular (A) and blind (B) sides of Samaris spinea, NSMT-P 109872, 32.9 mm SL.
Fig. 2 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 2. Lateral view of ocular (A) and blind (B) sides of Samaris spinea, NSMT-P 109872, 32.9 mm SL, Ogasawara Islands, Japan.
Fig. 1 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 1. Map showing collection localities for specimens of Samaris spinea reported. Star, diamond and triangles: records for the present specimen, and those in Amaoka et al. (2004) and Mihara and Amaoka (2004), respectively.
Figs 1–4 in On Taxonomy, Nomenclature, And Distribution Of Some Palaearctic Lagriini, With Description Of A New Species From Taiwan (Coleoptera: Tenebrionidae)
Figs 1–4. Arthromacra chifengi sp. n.: 1 = male, 2 = aedeagus, ventral view, 3 = aedeagus, lateral view, 4 = female. Not to scale
Figs 1–7 in Taxonomy Of The Genus Morphostenophanes Pic From China, With Two New Species (Coleoptera, Tenebrionidae)
Figs 1–7. Morphostenophanes aenescens PIC, male, collected from Hetaoping: 1 = head, dorsal view, 2 = pronotum, dorsal view, 3 = left fore leg, dorsal view, 4 = left middle leg, ventral view, 5 =
Figs 23–30 in Taxonomy Of The Genus Morphostenophanes Pic From China, With Two New Species (Coleoptera, Tenebrionidae)
Figs 23–30. Morphostenophanes cuproviridis sp. n., male: 23 = head, dorsal view, 24 = pronotum, dorsal view, 25 = right antenna, dorsal view, 26 = right fore leg, dorsal view, 27 = right middle leg, dorsal view, 28 = left hind leg, dorsal view, 29 & 30 = male genitalia, dorsal (29) and lateral (30)
Figs 16–22 in Taxonomy Of The Genus Morphostenophanes Pic From China, With Two New Species (Coleoptera, Tenebrionidae)
Figs 16–22. Morphostenophanes atavus (KASZAB), female, collected from Yingjiang County: 16 = head, dorsal view, 17 = pronotum, dorsal view, 18 = right antenna, dorsal view, 19 = left fore leg, dorsal view, 20 = right middle leg, ventral view, 21 = left hind leg, ventral view, 22 = female genitalia,
Figs 8–15 in Taxonomy Of The Genus Morphostenophanes Pic From China, With Two New Species (Coleoptera, Tenebrionidae)
Figs 8–15. Morphostenophanes papillatus KASZAB, male: 8 = head, dorsal view, 9 = pronotum, dorsal view, 10 = left antenna, dorsal view, 11 = left fore leg, dorsal view, 12 = left middle leg, ventral view, 13 = left hind leg, ventral view, 14 & 15 = male genitalia, dorsal (14) and lateral (15) view (apex
Figs 39–43 in Taxonomy Of The Genus Morphostenophanes Pic From China, With Two New Species (Coleoptera, Tenebrionidae)
Figs 39–43. Morphostenophanes spp.: 39 = M. cuproviridis sp. n., male, 40 = M. tuberculatus sp. n, male, 41 = M. aenescens PIC, male, collected from Hetaoping, 42 = M. papillatus KASZAB, male,
Figs 31–38 in Taxonomy Of The Genus Morphostenophanes Pic From China, With Two New Species (Coleoptera, Tenebrionidae)
Figs 31–38. Morphostenophanes tuberculatus sp. n., male: 31 = head, dorsal view, 32 = pronotum, dorsal view, 33 = right antenna, dorsal view, 34 = left fore leg, dorsal view, 35 = right middle leg, ventral view, 36 = right hind leg, ventral view, 37 & 38 = male genitalia, dorsal (37) and lateral (38)
Fig. 18 in New insights in the taxonomy of Lepismatidae (Insecta, Zygentoma) with an updated key to genera and future challenges
Fig. 18. Caribesella gen. nov., diagnostic characters of the head not previously illustrated. Micrograph showing part of the head chaetotaxy: the clypeal tuft of one side (white arrow) and the labrum with no tufts (blue arrow); the frontal tuft of the same side is visible (yellow arrow). Scale bar = 0.1 mm.
Fig. 19 in New insights in the taxonomy of Lepismatidae (Insecta, Zygentoma) with an updated key to genera and future challenges
Fig. 19. Caribesella gen. nov., diagnostic characters not previously illustrated, SEM photographs. A. Orbicular scales of dorsal side of the abdomen. B. An indented scale of the dorsal side of the thorax. C. Coxal scales. D. Scales on the apex of the femur. E. Scales and setae on the basal part of the tibia. F. Scales on stylus IX. G. Open anterior trichobothrial area of the pronotum. Scale bars: A = 70 μm; B, G = 50 μm; C = 60 μm; D–E = 90 μm; F = 80 μm.
Fig. 16 in New insights in the taxonomy of Lepismatidae (Insecta, Zygentoma) with an updated key to genera and future challenges
Fig. 16. Types of macrochaetae in Lepismatidae Latreille, 1802. A. Micrograph of smooth bifid macrochaetae on the mandible of Allacrotelsa kraepelini (Escherich, 1905). B. Comb of smooth and apically bifid macrochaetae of Anisolepisma aquilonaridum Smith, 2016, SEM photograph. C. Micrograph of feathered macrochaetae on the mandible of Ctenolepisma iranicum Molero, Kahrarian & Gaju, 2016. D. Feathered macrochaetae on the frontal area of the head of Hemitelsella transpectinata (Smith, 2015). E. Design of the smooth macrochetae with a round tip on the mandible of Mormisma peyerimhoffi (Silvestri, 1938), adapted from Silvestri (1938). F. Feathered/plumose macrochaeta of the cerci of Swalepisma mirabile Irish, 1988, SEM photograph. Scale bars: A, C–E = 0.1 mm; B, F = 20 μm.
Fig. 17 in New insights in the taxonomy of Lepismatidae (Insecta, Zygentoma) with an updated key to genera and future challenges
Fig. 17. Some examples of variability in the body shape and scale pattern of Lepismatidae. A. Sceletolepisma guadianicum (Mendes, 1992), with body shape subcylindrical and greyish-brown uniform dorsal scales. B. Ctenolepisma nicoletii (Lucas, 1846), with the thorax slightly wider than the abdomen and dorsal scales forming longitudinal stripes. C. Neoasterolepisma curtiseta Mendes, 1988, with a wide thorax, detaching from abdomen base, and yellowish scales. D. Lepismina sp., with short body, wide thorax but not markedly detaching from abdomen base, and hypognathous head, not visible dorsally. Scale bars = 2 mm.
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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.