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Fig. 7 in Integrative taxonomy supports two new species of Macrobiotus (Tardigrada: Eutardigrada: Macrobiotidae) allowing further discussion on the genus phylogeny
Fig. 7. Macrobiotus ovovittatus sp. nov., PCM images of the eggs (ISEA PAS) under ×1000 magnification. A, C, E. Egg surface with focus on egg processes and terminal discs. B, D, F. Egg surface, focus on the surface between processes. G–H. Midsections of egg processes. The filled indented arrowheads indicate thickenings around the process bases and filled flat arrowheads indicate faintly visible pores. Scale bars in μm.
Fig. 10 in Integrative taxonomy supports two new species of Macrobiotus (Tardigrada: Eutardigrada: Macrobiotidae) allowing further discussion on the genus phylogeny
Fig. 10. Macrobiotus mileri sp. nov., SEM images of body granulation and cuticular pores (paratype, ISEA PAS, forma aporata). A. Body granulation in the dorsal head region. B. Body granulation in the dorsal central body region. C. Body granulation in the dorsal caudal body region. D. General view of body granulation in the lateral caudal body region. E–F. Singular pores in the body cuticle. Scale bars in μm.
Fig. 6 in Integrative taxonomy supports two new species of Macrobiotus (Tardigrada: Eutardigrada: Macrobiotidae) allowing further discussion on the genus phylogeny
Fig. 6. Macrobiotus ovovittatus sp. nov., mouth opening and the oral cavity armature of a single paratype (ISEA PAS) seen under SEM from different angles. A. Dorsal view. B. Ventral view. The filled flat arrowheads indicate the first band of teeth, the empty flat arrowheads indicate the second band of teeth, and the filled indented arrowheads indicate the third band of teeth. Scale bars in μm.
Fig. 5 in Integrative taxonomy supports two new species of Macrobiotus (Tardigrada: Eutardigrada: Macrobiotidae) allowing further discussion on the genus phylogeny
Fig. 5. Macrobiotus ovovittatus sp. nov., PCM images of the buccal apparatus, A–D. Holotype (GL.001.01, ISEA PAS). E. Paratype (ISEA PAS). A. An entire buccal apparatus. B–C. The oral cavity armature, dorsal and ventral teeth, respectively. D–E. Placoid morphology, dorsal and ventral placoids respectively. The filled flat arrowheads indicate the first band of teeth, the empty flat arrowheads indicate the second band of teeth, the filled indented arrowheads indicate the third band of teeth, and the empty indented arrowheads indicate central and subterminal constrictions in the first and second macroplacoid, respectively. Scale bars in μm.
Fig. 3 in Integrative taxonomy supports two new species of Macrobiotus (Tardigrada: Eutardigrada: Macrobiotidae) allowing further discussion on the genus phylogeny
Fig. 3. Macrobiotus ovovittatus sp. nov., PCM (A, C, E) and SEM (B, D, F) images of dense granulation patches on legs of paratypes (ISEA PAS). A–B. Granulation on the external surface of leg III. C–D. Granulation on the internal surface of leg III and II, respectively. E–F. Granulation on the hind legs. The empty flat arrowheads indicate a single continuous cuticular bar above the claws, the filled flat arrowheads indicate a pulvinus-shaped cuticular bulge, and the filled indented arrowheads indicate shadowed extensions extending from the lunulae. Scale bars in μm.
Fig. 9 in Integrative taxonomy supports two new species of Macrobiotus (Tardigrada: Eutardigrada: Macrobiotidae) allowing further discussion on the genus phylogeny
Fig. 9. Macrobiotus mileri sp. nov., PCM images of habitus and body granulation. A. Dorso-ventral projection (holotype, IL.001.11, ISEA PAS, forma aporata). B. Granulation in the dorsal cuticle (paratype, ISEA PAS, forma aporata). C. Granulation in the dorsal body cuticle (paratype, ISEA PAS, forma porata). Scale bars in μm.
Figure 4 in Integrative taxonomy supports two new species of Macrobiotus (Tardigrada: Eutardigrada: Macrobiotidae) allowing further discussion on the genus phylogeny
Figure 4. Macrobiotus ovovittatus sp. nov., images of claws. A–C. PCM, holotype (GL.001.01, ISEA PAS). D–F. SEM, paratype (ISEA PAS). A. Claws II with smooth lunulae. B. Claws IV with dentate lunulae. C. Dentate lunulae. D–E. Claws II and III with smooth lunulae, respectively. F. Claws IV with dentate lunulae. The empty flat arrowheads indicate a single continuous cuticular bar above the claws, the filled indented arrowheads indicate shadowed extensions extending from the lunulae (under PCM) or the places where they should be expected (SEM), the filled flat arrowheads indicate paired muscles attachments, and the empty indented arrowheads indicate the horseshoe structure connecting the anterior and the posterior claw. Scale bars in μm.
Figure 4 in Taxonomy of the shieldtail snake genus Teretrurus Beddome, 1886 (Serpentes: Uropeltidae) with a revised key and remarks on the geographic gaps in the Western Ghats, Peninsular India
Figure 4. Teretrurus hewstoni: live colouration; (a) head lateral view; (b) entire dorsal view; (c) entire lateral view, (d) entire ventral view. Photos: Avrajjal Ghosh.
Figure 1 in Taxonomy of the shieldtail snake genus Teretrurus Beddome, 1886 (Serpentes: Uropeltidae) with a revised key and remarks on the geographic gaps in the Western Ghats, Peninsular India
Figure 1. Map of southern India showing the distribution of Teretrurus species, in the Western Ghats.
Figure 6 in Taxonomy of the shieldtail snake genus Teretrurus Beddome, 1886 (Serpentes: Uropeltidae) with a revised key and remarks on the geographic gaps in the Western Ghats, Peninsular India
Figure 6. Teretrurus rhodogaster: live colouration; (a) entire dorsolateral view; insets – underside of head and tail; (b) ventral view of hind body and tail. Photos: S. R. Ganesh.
Figure 3 in Taxonomy of the shieldtail snake genus Teretrurus Beddome, 1886 (Serpentes: Uropeltidae) with a revised key and remarks on the geographic gaps in the Western Ghats, Peninsular India
Figure 3. Holotype of Plecturus scabricauda ZSI 6996 coll. from Anamallays: (a) entire view, (b) jar label, (c) head right view, (d) head left view, (e) head ventral view, (f) tail ventral view. Photos: N.S. Achyuthan.
Figure 6 in Taxonomy of the shieldtail snake genus Teretrurus Beddome, 1886 (Serpentes: Uropeltidae) with a revised key and remarks on the geographic gaps in the Western Ghats, Peninsular India
Figure 6. Teretrurus travancoricus: live colouration; (a) entire dorsal view; (b) entire ventral view. Photos: B.H.C.K. Murthy & K.A. Subramanian.
Figure 2 in Taxonomy of the shieldtail snake genus Teretrurus Beddome, 1886 (Serpentes: Uropeltidae) with a revised key and remarks on the geographic gaps in the Western Ghats, Peninsular India
Figure 2. Preserved specimens of Teretrurus species: (a) T. travancoricus ZSI/WGRC/2135-6, (b) T. hewstoni ZSI/WGRC/3124, (c) T. sanguineus CSPT/S-10, (d) T. rhodogaster CSPT/S-14. Photos: S. R. Ganesh.
Figure 1. Collection localities, 1 in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 1. Collection localities, 1-Bokhali, 2-Sagar Island, 3-Junput, 4-Jalda (Tajpur), 5-Digha, 6-Udaypur & Talsari, 7-Chandipur, 8-Paradip, 9-Chandrabhaga, 10-Puri, 11-Chilka New Mouth, 12-Gopalpur, 13-Vishakhapatnam, 14-Kakinada, 15-Pulicat lake, 16-Chennai, 17-Rameswaram, 18-Tuticorin.
Figure 5. a-b in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 5. a-b,Mosambicarca erythraneonensis (Jonas in Philippi, 1851), a-exterior of left valve, b- interior of left valve, c-d, Tegillarca granosa (Linnaeus, 1758); c- exterior of right valve, d- internal view of right valve; e-f, T. nodifera (Martens, 1860); e-exterior of left valve, f- interior of left valve; g-h, T. rhombea (Born, 1778); g-exterior of left valve, h-interior of left valve.
Figure 4. a-g,A in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 4. a-g,A. troscheli (Dunker, 1882); a-b, interior right & left valve, c- exterior right valve, d- umbo, e- anterior, f- posterior & g- ventral view of shell.
Figure 2. a-b in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 2. a-b,Anadara antiquata (Linnaeus, 1758); a- exterior of right valve, b- interior of right valve; c-e, A. consociata (E.A. Smith, 1885), c- exterior of left valve, d- interior of left valve & e- dorsal view of umbo; f-g, A.eherenbergi (Dunker, 1868), f- exterior of left valve, g- interior of left valve.
Figure 3. a-b,A in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 3. a-b,A. ferriginea (Reeve, 1844), a- exterior of left valve, b- exterior of right valve; c-e, A. inaequivalvis (Bruguière, 1789); c-exterior of left valve, d- exterior of left valve & left valve overlapping the right valve along postero-ventral region, e- umbo; f-g, A. pilula (Reeve, 1843); f- exterior of right valve, g- interior of right valve.
F I G U R E 7 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 7 Gouania hofrichteri sp. nov., PMR VP4595, holotype, male, 30.35+3.67 mm, Souda Beach, Plakias, Crete, Greece. Lateral view of specimen preserved in 4% formaldehyde (top). Lateral, dorsal and ventral view, alive (below). Photographs by M. Wagner and M. Kovacˇic
F I G U R E 9 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 9 Gouania willdenowi (Risso 1810), PMR VP4574, neotype, male, 46.11+6.56 mm, Cagnes-sur-mer, Nice, France. Lateral view of specimen preserved in 4% formaldehyde (top). Lateral, dorsal and ventral view, alive (below). Photographs by M. Wagner and M. Kovacˇic
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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.