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Fig. 5 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 5. Lewisister masumotoi sp. nov. A, Head, dorsal view. B, Propygidium, dorsal view. C, Pygidium, caudal view. D, Protibia, dorsal view. E, Metatibia, ventral view. F, Prosternal keel, ventral view. Scale bar = 0.5 mm.

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Fig. 2. Lewisister excellens Bickhardt, 1912. A in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 2. Lewisister excellens Bickhardt, 1912. A, Head, dorsal view. B, Propygidium, dorsal view. C, Pygidium, caudal view. D, Protibia, dorsal view. E, Metatibia, ventral view. F, Prosternal keel, ventral view. Scale bar = 0.5 mm.

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Fig. 3 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 3. (A–G). Photographs detailing infection by P. tortugensis in gobies: the size and morphology of male and female copepods, and gill damage in parasitized fish. Scale bars are = 1 mm in all photos. (A) Profile of an infected C. glaucofraenum with operculum removed. Dotted line indicates perimeter measurement. Abbreviations are: GA: 1st gill arch, M: placement of males on the gill arch and on perimeter of gill cavity wall, LP: lateral process of gravid female copepod attached to host gill cavity wall, ES: egg sac of gravid female copepod. (B) Two gravid female copepods. (C) Three large male copepods. (D) Size comparison of juvenile (left), small male (center), and large male (right). (E) Gill arch with a male copepod (M) attached. (F) Display of gill arches 4 – 1 (L to R) from an unparasitized goby. (G) Gill arches 1 – 4 (L to R) from a parasitized goby. Damaged and missing filaments are indicated with arrows on the 3rd and 4th arches. Some filaments are also missing, and less severe damage overall is seen in the 1st and 2nd arches.

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Fig. 10 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 10. Liver mass as a function of total body mass in parasitized and unparasitized C. venezuelae.

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Fig. 11 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 11. Gonad mass as a function of total body mass in parasitized and unparasitized C. venezuelae.

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Fig. 1 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 1. Geographic distribution of the king cobra (Ophiophagus hannah). Black dots are the presence localities used for biogeographic analysis.

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Fig. 7 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 7. Most parsimonious tree showing monophyly of Elpidium as sister-group to Intrepidocythere and internal phylogenetic relationships within Elpidium. Tree obtained with software TNT (details in MATERIALS AND METHODS).

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Fig. 6 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 6. Elpidium litoreum sp. nov., ñ, carapace. A, dorsal view (MZUSP 38811); B, dorsal view, detail of posterior region (MZUSP 38811); C, dorsal view, detail of anterior region (MZUSP 38811); D, ventral view (MZUSP 38810); E, ventral view, detail of posterior region (MZUSP 38810); F, ventral view, detail of anterior view (MZUSP 38810); G, right lateral view (MZUSP 38809); H, right lateral view, detail of posterior region (MZUSP 38809); I, right lateral view, detail of anterior region (MZUSP 38809); J, right lateral view, flange (MZUSP 38809); K, right lateral view, carapace ornamentation (MZUSP 38809); L, left valve, internal view (MZUSP 38807); M, left valve, internal view, detail of anterior region (MZUSP 38807); N, left valve, internal view, detail of posterior region (MZUSP 38807); O, left valve, internal view, detail of posterior region, arrow points to the tiny pseudochaetae row (MZUSP 38807); P, right valve, internal view (MZUSP 38816); Q, right valve, internal view, detail of anterior region (MZUSP 38816); R, right valve, internal view, detail of posterior region (MZUSP 38816); S, right valve, internal view, detail of posterior hinge proto-tooth (MZUSP 38816). Scale bars: A, D, G, L, P = 100 µm; B, E, F, H, I, M, N, Q, R = 20 µm; C, J, K, O, S = 10 µm.

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Fig. 1 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 1. Examples of six predominant search patterns (top figures) and angular position (bottom figures) of S. geminata workers in a circular arena. (A) clockwise (CW) turning; (B) counterclockwise (CCW) turning; (C) CW-CCW turning; (D) CCW-CW turning; (E) straight-line path; (F) tortuous path. Circled data points refer to the positions of the worker at 0.5 s intervals.

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Fig. 3 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 3. Elpidium litoreum sp. nov., A, C, D, ñ, B, E–H, ò, appendages. A, antennula, detail of first segment, arrows point to the sub-apical expansion structure and to the two pseudochaetae rows (MZUSP 38816); B, antenna, detail of first protopodite segment (coxa), arrow points to the pseudochaetae row (MZUSP 38817); C, antenna, detail of second protopodite segment, arrows point to the numerous pseudochaetae rows (MZUSP 38816); D, antenna, first endopodal segment, arrows point to the three pseudochaetae groups (MZUSP 38816); E, antenna, second endopodal segment showing the aesthetasc (MZUSP 38817); F, antenna, portion of second endopodal segment and third endopodal segment, arrow points to the tiny vestigial seta (MZUSP 38817); G, mandible, portion of coxa (MZUSP 38817; H, mandible, portion of coxa, arrows point to the tiny spines (MZUSP 38817). Scale bars: A, D, E, H = 2 µm; B, C, F, G = 10 µm.

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Fig. 2 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 2. Elpidium litoreum sp. nov., A, B, E, ò, C, D, F–H, ñ, appendages. A, antennula (MZUSP 38815); B, antenna (MZUSP 38815); C, antenna (MZUSP 38818); D, antenna, terminal segment (MZUSP 38805); E, maxillula (MZUSP 38815); F, mandible, coxa (MZUSP 38805); G, mandible, basis (MZUSP 38805); H, mandible, respiratory plate (MZUSP 38805). Scale bars: A–C = 0.05 mm; D–H = 0.01 mm.

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Fig. 1 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 1. Elpidium litoreum sp. nov., ò, carapace. A, dorsal view (MZUSP 38812); B, dorsal view, detail of anterior region (MZUSP 38812); C, dorsal view, detail of posterior region (MZUSP 38812); D, ventral view (MZUSP 38813); E, ventral view, detail of anterior region (MZUSP 38813); F, ventral view, detail of posterior region (MZUSP 38813); G, right lateral view (MZUSP 38812); H, right lateral view, detail of anterior region (MZUSP 38812); I, right lateral view, detail of posterior region (MZUSP 38812); J, left valve, internal view (MZUSP 38819); K, left valve, internal view, detail of anterior region (MZUSP 38819); L, left valve, internal view, detail of posterior region (MZUSP 38819); M, right valve, internal view (MZUSP 38831); N, right valve, internal view, detail of anterior region (MZUSP 38831); O, right valve, internal view, detail of posterior region (MZUSP 38831). Scale bars: A, D, J, M = 100 µm; B, C, E, F, H, N, O = 20 µm; G = 30 µm; I = 10 µm; K, L = 50 µm.

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Fig. 2 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 2. Moving speed of workers showing counterclockwise (CCW) and clockwise (CW) direction on their first turn; n.s., not statistically significant.

opencc-by-4.0Jun 2022View details →
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Fig. 5 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 5. Elpidium litoreum sp. nov., ò, appendages. A, first thoracic limb, detail of protopodite and first endopodal segment, arrow points to the segment expansion that wraps the two protopodite setae basis (MZUSP 38817); B, first thoracic limb, arrow points to the short pseudochaetae group laterally placed on first endopodal segment (MZUSP 38819); C, first thoracic limb, arrow points to the short pseudochaetae group laterally placed on second endopodal segment (MZUSP 38819); D, first thoracic limb, detail of third endopodal segment and distal claw, arrow points to the transverse pseudochaetae rows on the segment (MZUSP 38817); E, second thoracic limb (MZUSP 38817); F, second thoracic limb, detail of third endopodal segment and distal claw, arrow points to the transverse pseudochaetae rows on the segment (MZUSP 38817); G, second thoracic limb, distal claw, arrows point to the transverse pseudochaetae rows on the apex and distal claw ending (MZUSP 38817); H, third thoracic limb, detail of second endopodal segment, arrows point to the pseudochaetae rows that transect the segment (MZUSP 38819); I, third thoracic limb, part of third endopodal segment, arrow points to the pseudochaetae rows that transect the segment (MZUSP 38819); J, third thoracic limb, detail of distal claw, arrows point to vestigial seta (MZUSP 38819); K, hemipenis (MZUSP 38817); L, hemipenis, detail of lower ramus and copulatory process (MZUSP 38817); M, hemipenis, detail of copulatory process (MZUSP 38817). Scale bars: A, C, D, G, J = 2 µm; B, I = 5 µm; E, H, K = 10 µm; F, M = 1 µm; L = 3 µm.

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Fig. 4 in Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

Fig. 4. Elpidium litoreum sp. nov., A–D, ò, E, ñ, appendages. A, first thoracic limb (MZUSP 38815); B, second thoracic limb (MZUSP 38815); C, third thoracic limb (MZUSP 38815); D, hemipenis (MZUSP 38815); E, abdomen (MZUSP38805). Scale bars: A–E = 0.05 mm.

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Fig. 6 in Habitat Use and Migratory Life History of Salangid Icefish (Salangidae) Revealed by Otolith Sr/Ca Ratios

Fig. 6. Icefish (Salanx ariakensis) collected from the Yangtze River estuary show diverse otolith Sr/Ca profiles that represent whole-life residence in the sea (a), the movement from the river to the sea at during juvenile stage (b) and the movement from the sea to the river at adult stage (c).

opencc-by-4.0Dec 2016View details →
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Fig. 5 in Habitat Use and Migratory Life History of Salangid Icefish (Salangidae) Revealed by Otolith Sr/Ca Ratios

Fig. 5. Icefish (Neosalanx anderssoni) collected from Qinhuangdao (Bohai Sea) display variably high otolith Sr/Ca ratios, indicating marine residence for the fish.

opencc-by-4.0Dec 2016View details →
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Fig. 4 in Habitat Use and Migratory Life History of Salangid Icefish (Salangidae) Revealed by Otolith Sr/Ca Ratios

Fig. 4. Icefish (Neosalanx tangkahkeii) collected from the Pearl River estuary display consistently high otolith Sr/Ca ratios, indicating brackish and marine residence for these 10 fish.

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Fig. 2 in Habitat Use and Migratory Life History of Salangid Icefish (Salangidae) Revealed by Otolith Sr/Ca Ratios

Fig. 2. Otolith of the icefish (Neosalanx anderssoni) collected in Qinhuangdao (Bohai Sea) showing the daily growth increments and electron microprobe transect from the core to the edge for measuring Sr/Ca ratios. Arrows point out the rectangular beam marks after the analysis by the eletron microprobe.

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Fig. 1 in Habitat Use and Migratory Life History of Salangid Icefish (Salangidae) Revealed by Otolith Sr/Ca Ratios

Fig. 1. Approximate sampling locations (indicated by the arrows) of the icefish in the Bohai Sea, the Yangtze River estuary, Taihu Lake and the Pearl River estuary.

opencc-by-4.0Dec 2016View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record