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Fig. 9 in Supplementary Description of Three Acartiella Species (Crustacea: Copepoda: Calanoida) from Estuarine Waters in Thailand
Fig. 9. Acartiella sinensis Shen and Lee, 1963, female (A), male (B–E). A, legs 5; B, habitus, dorsal view; C, habitus, lateral view; D, right antennule; E, legs 5. Roman numerals in D indicate numbers of ancestral segments following Huys and Boxshall (1991).
Fig. 7 in Supplementary Description of Three Acartiella Species (Crustacea: Copepoda: Calanoida) from Estuarine Waters in Thailand
Fig. 7. Acartiella sinensis Shen and Lee, 1963, female. A, habitus, dorsal view; B, habitus, lateral view; C, right antenna; D, right mandible; E, right maxillule; F, left maxilla.
Fig. 6. Acartiella nicolae Dussart, 1985 female. A in Supplementary Description of Three Acartiella Species (Crustacea: Copepoda: Calanoida) from Estuarine Waters in Thailand
Fig. 6. Acartiella nicolae Dussart, 1985 female. A, right mandible; B, right maxillule; C, left maxilla; D, right maxilliped; E, right leg 1; F, right leg 2; G, right leg 3; H, right leg 4; I, legs 5.
Fig. 5. Acartiella nicolae Dussart, 1985, female. A in Supplementary Description of Three Acartiella Species (Crustacea: Copepoda: Calanoida) from Estuarine Waters in Thailand
Fig. 5. Acartiella nicolae Dussart, 1985, female. A, habitus, dorsal view; B, habitus, lateral view; C, right antennule; D, left antenna. Roman numerals in C indicate numbers of ancestral segments following Huys and Boxshall (1991).
Fig. 3. Acartiella kempi Sewell, 1914 in Supplementary Description of Three Acartiella Species (Crustacea: Copepoda: Calanoida) from Estuarine Waters in Thailand
Fig. 3. Acartiella kempi Sewell, 1914, female (A) and male (B–D). A, left maxilliped; B, habitus, dorsal view; C, habitus, lateral view; D, right antennule. Roman numerals in D indicate numbers of ancestral segments following Huys and Boxshall (1991).
Fig. 1 in Supplementary Description of Three Acartiella Species (Crustacea: Copepoda: Calanoida) from Estuarine Waters in Thailand
Fig. 1. Distribution of the genus Acartiella based on the present and previous data. Three sampling sites in the present study in Thailand: Station 1, Prasae Estuary, Rayong Province, Gulf of Thailand (black triangle); Station 2, Bangpakong Estuary, Chon Buri Province, Gulf of Thailand (black circle); Station 3, Kraburi Estuary, Ranong Province, Andaman Sea (black square);. Previous distributional data: A. nicolae (Dussart 1985; Mulyadi 2004; Razouls et al. 2014); A. sinensis (Shen and Lee 1963; Zheng et al. 1982; Suwanrumpha 1987; Pholpunthin 1997; Orsi and Ohtsuka 1999; Pinkaew 2003; Shang et al. 2007; Razouls et al. 2014); A. kempi (Sewell 1914; Razouls et al. 2014); A. gravelyi (Sewell 1919; Razouls et al. 2014); A. keralensis (Wellershaus 1969; Razouls et al. 2014); A. major (Sewell 1932; Razouls et al. 2014); A. minor (Sewell 1919; Razouls et al. 2014); A. natalensis (Connell and Grindly 1974; Razouls et al. 2014); A. sewelli (Steur 1934; Razouls et al. 2014); A. tortaniformis (Sewell 1932; Razouls et al. 2014); and A. faoensis (Khalaf 1991; Ali et al. 2009; Peyghan et al. 2011; Razouls et al. 2014).
Fig. 3. Pseudione nephropsi Shiino, 1951. A–D in Topotype-based DNA Barcode of the Parasitic Isopod Pseudione nephropsi (Bopyridae), with a Supplementary Morphological Description
Fig. 3. Pseudione nephropsi Shiino, 1951. A–D, female; E, F, male. A, left antenna 1, ventral view; B, left antenna 2, ventral view, with most portion of basal segment (bs) omitted; b1, distal region of left antenna 2, ventral view, with most setae omitted; C, E, left pereopod 1; D, F, left pereopod 7. Scales: 0.1 mm (A, B, E, F), 0.05 mm (b1), 0.5 mm (C, D).
Fig. 1. Pseudione nephropsi Shiino, 1951 in Topotype-based DNA Barcode of the Parasitic Isopod Pseudione nephropsi (Bopyridae), with a Supplementary Morphological Description
Fig. 1. Pseudione nephropsi Shiino, 1951 parasitizing Metanephrops japonicus (Tapparone-Canefri, 1873), fresh specimens. A, M. japonicus infested by bopyrids; B, C, female P. nephropsi extracted from host, dorsal (B) and ventral (C) views, with attached male (arrow). Scales: 50 mm (A), 5 mm (B, C).
Fig. 2. Pseudione nephropsi Shiino, 1951, fixed specimens. A–H in Topotype-based DNA Barcode of the Parasitic Isopod Pseudione nephropsi (Bopyridae), with a Supplementary Morphological Description
Fig. 2. Pseudione nephropsi Shiino, 1951, fixed specimens. A–H, female; I–O, male. A, head, dorsal view; B, left barbula, ventral view; C, D, left oostegite 1, ventral (C) and dorsal (D) views; E, F, left pereopods 1 and 7, respectively; G, tubercles on right pleopods, ventral view; H, posterior region of body, dorsal view; I, body, dorsal view; J, head, dorsal view; K, L, left pereopods 1 and 7, respectively; M, N, pleon, ventral (M) and slightly-left, ventral (N) views; O, pleomere 6, dorsal view. Abbreviations: pl1, pleopod 1; pl1e, exopodite of pleopod 1; ur, uropod. Arrows, anal cone. Scales: 1 mm (A–I), 0.5 mm (M, N), 0.1 mm (J–L, O).
Figure 14 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 14 Drawing of Aculus mastigophorus (Nalepa, 1890) (female). A – dorsal view of body; B – ventral view of body; C – empodium; D – internal genitalia of female.
Figure 11 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 11 Phase-contrast light microscope images of Shevtchenkella ulmi. A – dorsal view of body; B – dorsal view of prodorsal shield; C – coxigenital region of female.
Figure 10 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 10 Drawing of Shevtchenkella ulmi(Farkas, 1960) (female). A – dorsal view of body; B – ventral view of body; C – empodium; D – internal genitalia of female.
Figure 9 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 9 Phase-contrast light microscope images of Peralox longirostris. A – dorsal view of body; B – lateral view of body; C – coxigenital region of female; D – lateral view of telosoma.
Figure 7 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 7 Phase-contrast light microscope images of Eriophyes spiraeae. A; lateral view of body; B – dorsal view of prodorsal shield; C – coxigenital region of female.
Figure 4 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 4 Drawing of Aculops thymi (Nalepa, 1889) (female). A – lateral view of body; B – dorsal view of body; C – ventral view of body; D – empodium; E – internal genitalia of female.
Figure 5 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 5 Phase-contrast light microscope images of Aculops thymi. A – dorsal view of body; B – lateral view of body; C – coxigenital region.
Figure 6 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 6 Drawing of Eriophyes spiraeae (Nalepa, 1893) (female). A – antero-lateral view of body; B – lateral view of abdomen; C – lateral view of telosoma; D – prodorsal shield; E – coxigenital region of female; F – empodium; G – internal genitalia of female.
Figure 12 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 12 Drawing of Aceria filiformis (Nalepa, 1891) (female). A – antero-lateral view of body; B – lateral view of abdomen; C – lateral view of telosoma; D – prodorsal shield; E – coxigenital region of female; F – empodium; G – internal genitalia of female.
Figure 2 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 2 Drawing of Aceria thomasi (Nalepa, 1889) (female). A – antero-lateral view of body; B – lateral view of abdomen; C – lateral view
Figure 15 in Supplementary descriptions of seven eriophyoid mite species (Acari: Eriophyoidea) recovered from the Viennese Nalepa collection and comparison with Japanese species
Figure 15 Phase-contrast light microscope images of Aculus mastigophorus. A – dorsal view of body; B – dorsal view of prodorsal shield; C – coxigenital region of female; D – legs (arrow: tibial seta on leg I).
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.