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Figure 2 in Lucanus zhuxiangi sp. n., a New Species from Southeast China (Coleoptera: Lucanidae: Lucaninae)
Figure 2. Habitus of Lucanus zhuxiangi sp. n., ♂♂, Hunan, dorsal view. A paratype, large-sized B holotype, common-sized C paratype, moderate-sized D paratype, small-sized.
Figure 1 in Lucanus zhuxiangi sp. n., a New Species from Southeast China (Coleoptera: Lucanidae: Lucaninae)
Figure 1. Habitus of Lucanus spp. A–B, D–E L. zhuxiangi sp. n., Hunan A–B holotype, ♂ D–E paratype,♀ C, F L. brivioi Zilioli, 2003, Fujian C ♂ F ♀. A, C, D, F dorsal view B, E ventral view.
Figs 1–4 in CYMINDIS (ARROSTUS) BORKINI SP. N., A NEW SPECIES OF GROUND-BEETLES FROM THE HIMACHAL PRADESH STATE, INDIA (COLEOPTERA: CARABIDAE: LEBIINI)
Figs 1–4. Cymindis (Arrostus) borkini sp. n. 1 – holotype, habitus, dorsal view; 2 – the same, paratype from Spiti Valley; 3 – holotype, median lobe of aedeagus; 4 – the same, paratype from Spiti Valley.
Fig. 5. a in Morphological and molecular description of Pallisentis roparensis n. sp. (Acanthocephala: Quadrigyridae) infecting the freshwater cat fish Wallago attu from Ropar Wetland, Punjab, India
Fig. 5. a-histological section of small intestine of uninfected fish (Wallago attu) showing intestinal villi with a continuous epithelium; b-ruptured intestinal villi of the infected fish host; c-unusual branching of villi and dilated lymphatic vessels in mucosa of infected small intestine; d-abrasion and desquamation of the mucosal epithelium in infected fish; e– hyperplasia of the intestinal villi at the site of parasite attachment; f-magnified view of the infiltrated immune cells in the sub mucosal layer of the infected intestine (M-mucosa, SM-submucosa, ML-muscularis, DL-dilated lymphatic vessels, UBunusual branching, DSE-desquamated intestinal epithelium, HP- hyperplasia, MP- macrophage).
Fig. 4. Maximum likelihood tree generated using ITS1-5.8S-ITS2 in Morphological and molecular description of Pallisentis roparensis n. sp. (Acanthocephala: Quadrigyridae) infecting the freshwater cat fish Wallago attu from Ropar Wetland, Punjab, India
Fig. 4. Maximum likelihood tree generated using ITS1-5.8S-ITS2 gene sequence of Pallisentis roparensis and the sequences of related taxa downloaded from GenBank. Numbers near internal nodes show ML bootstrap clade frequencies.
Fig. 3. Maximum likelihood tree generated using 28S in Morphological and molecular description of Pallisentis roparensis n. sp. (Acanthocephala: Quadrigyridae) infecting the freshwater cat fish Wallago attu from Ropar Wetland, Punjab, India
Fig. 3. Maximum likelihood tree generated using 28S rRNA gene sequence of Pallisentis roparensis and the sequences of related taxa downloaded from GenBank. Numbers near internal nodes show ML bootstrap clade frequencies.
Fig. 2. Maximum likelihood tree generated using 18S in Morphological and molecular description of Pallisentis roparensis n. sp. (Acanthocephala: Quadrigyridae) infecting the freshwater cat fish Wallago attu from Ropar Wetland, Punjab, India
Fig. 2. Maximum likelihood tree generated using 18S rRNA gene sequence of Pallisentis roparensis and the sequences of related taxa downloaded from GenBank. Numbers near internal nodes show ML bootstrap clade frequencies.
Fig. 1 in Morphological and molecular description of Pallisentis roparensis n. sp. (Acanthocephala: Quadrigyridae) infecting the freshwater cat fish Wallago attu from Ropar Wetland, Punjab, India
Fig. 1. Line drawings of specimens of Pallisentis roparensis from Wallago attu. a-male; b-posterior end of the male; c-proboscis (female); d-hooks of the proboscis declining gradually in the size; e– conical trunk spines; f- Y-shaped collar spines; g-mature egg; h-female; i-posterior end of the female.
Fig. 12. M in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 12. M. chakravartyi spores from the fin of a catla. Arrow is indicating the charasteristic intercapsular appendix. Inset: deformed spore with the Henneguya like caudal extension. Mount picture. Bar = 10 μm.
Fig. 13 in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 13. Schematic drawing of spore of M. chakravartyi, a: frontal view, b: frontal view of deformed spore with caudal extension. Bar = 10 μm.
Fig. 10 in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 10. Schematic drawing of spore of M. dermiscalis, a: frontal view, b: sutural view. Bar = 10 μm.
Fig. 11 in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 11. Myxobolus chakravartyi plasmodia (P) in the fin of a catla in close contact with fin rays (Fr). Mount picture. Bar = 200 μm.
Fig. 7 in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 7. Schematic drawing of spore of M. bandyopadhyayi, a: frontal view, b: sutural view. Bar = 10 μm.
Fig. 6. M. bandyopadhyayi n in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 6. M. bandyopadhyayi n. sp. spores of a rohu in frontal view. Inset: A spore in sutural view. Mount picture. Bar = 10 μm.
Fig. 5. Myxobolus bandyopadhyayi n in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 5. Myxobolus bandyopadhyayi n. sp. plasmodium (P) in the scale of a rohu. Mount picture. Bar = 2 mm.
Fig. 1 in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 1. Phylogenetic analysis of the studied myxozoan species based on ssrDNA sequences with Maximum Likelihood algorithm. Chloromyxum fluviatile was used as the outgroup. Bootstrap values are given at the nodes. The scale-bar indicates the number of expected substitutions per site.
Fig. 2. A in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 2. A plasmodium (P) of Thelohanellus caudatus in the fin of a rohu in close contact with the cartilaginous fin ray (Fr). Mount picture. Bar = 200 μm.
Fig. 15 in The occurrence of known Myxobolus and Thelohanellus species (Myxozoa, Myxosporea) from Indian major carps with the description of Myxobolus bandyopadhyayi n. sp. in West Bengal
Fig. 15. Spores of M. rewensis from the fin of mrigal. Arrow is indicating the characteristic globule inside the intercapsular appendix. Mount picture. Bar = 10 μm.
Fig. 2 in Gyrodactylus molweni sp. n. (Monogenea: Gyrodactylidae) from Chelon richardsonii (Smith, 1846) (Mugilidae) from Table Bay, South Africa
Fig. 2. Light micrographs of the attachment hooks of Gyrodactylus molweni sp. n. A. The haptoral central hook complex of hamuli, and ventral bar. B. Hamulus. C. Marginal hook. Scale Bars = 10 μm.
Fig. 1 in Gyrodactylus molweni sp. n. (Monogenea: Gyrodactylidae) from Chelon richardsonii (Smith, 1846) (Mugilidae) from Table Bay, South Africa
Fig. 1. Gyrodactylus molweni sp. n. A. The haptoral central hook complex of hamuli (ham), dorsal (db) and ventral (vb) bars. B. Hamulus. C. Ventral bar (vb) which for this species bears large ventral bar processes (vbp) and a rhomboid-shaped ventral bar membrane (vbm). D. Male copulatory organ bearing a single principal spine (ps) and then a single row of four small spines, the outer two larger than the central pair. E. Marginal hook. Scale Bars = 10 μm.
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.