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Figure 3 in Life history traits and exploitation of Hampala barb (Hampala macrolepidota - Cyprinidae) in a subtropical reservoir (Lao PDR)
Figure 3. – Monthly frequency evolution of the translucent and opaque zones at the otolith edge from the Hampala macrolepidota from the Nam Theun 2 Reservoir in Lao PDR. The number of otolith samples is indicated at the top above each month (N).
Figure 8 in Life history traits and exploitation of Hampala barb (Hampala macrolepidota - Cyprinidae) in a subtropical reservoir (Lao PDR)
Figure 8. – Percentage of catches during 2016 according to size class of Hampala macrolepidota from the Nam Theun 2 Reservoir in Lao PDR.
Figure 9 in Life history traits and exploitation of Hampala barb (Hampala macrolepidota - Cyprinidae) in a subtropical reservoir (Lao PDR)
Figure 9. – Percentage of catches during 2016 according to age group (year) of Hampala macrolepidota from the Nam Theun 2 Reservoir in Lao PDR.
Figure 7 in Life history traits of the exploited Nile Tilapia (Oreochromis niloticus - Cichlidae) in a subtropical reservoir (Lao PDR)
Figure 7. – Demographic structure of the exploited stock of Oreochromis niloticus by fishermen at the Nam Theun 2 Reservoir in Lao PDR between March and December 2016.
Figure 5 in Life history traits of the exploited Nile Tilapia (Oreochromis niloticus - Cichlidae) in a subtropical reservoir (Lao PDR)
Figure 5. – Von Bertalanffy growth curve adjusted to the age-standard length of Oreochromis niloticus from the Nam Theun 2 Reservoir in Lao PDR between November 2015 and January 2017.
Figure 4 in Life history traits of the exploited Nile Tilapia (Oreochromis niloticus - Cichlidae) in a subtropical reservoir (Lao PDR)
Figure 4. – Length-weight relationship of Oreochromis niloticus from the Nam Theun 2 Reservoir in Lao PDR between November 2015 and January 2017 according to sex.
Figure 3 in Life history traits of the exploited Nile Tilapia (Oreochromis niloticus - Cichlidae) in a subtropical reservoir (Lao PDR)
Figure 3. – Monthly frequency evolution of the translucent and opaque zones at the edge of otoliths from Oreochromis niloticus from the Nam Theun 2 Reservoir in Lao PDR based on transversal section readings; the number of sampled specimens is given at the top of the figure for each month (N).
Figure 2 in Life history traits of the exploited Nile Tilapia (Oreochromis niloticus - Cichlidae) in a subtropical reservoir (Lao PDR)
Figure 2. – Transverse section of otolith (sagittae) from a 6+ yearold Oreochromis niloticus from the Nam Theun 2 Reservoir in Lao PDR. The section was stained with toluidine blue and viewed using reflected light: the coloured translucent zones are counted along the sulcus axis. Core (C), translucent stainable zone (TZ), opaque zone (OZ), ventral face (V), dorsal face (D), external face (E), and internal face (I).
Figure 1 in Life history traits of the exploited Nile Tilapia (Oreochromis niloticus - Cichlidae) in a subtropical reservoir (Lao PDR)
Figure 1. – Map of the Nam Theun 2 Reservoir in Lao PDR at its higher level (538 m a.s.l) and localization of sampling sites (black dots) by experimental gillnet fishing and of villages (black stars) for the monitoring of landing/fishing effort.
Figure 7 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 7. The flowers of A. horrida showing the stigma deflected towards the corolla lip. Photograph: M. Koekemoer.
Figure 6 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 6. SEM images of pollen grains (unacetolised) of Acanthopsis. A, A. glauca, equatorial view (Steyn 1888, PRE); B, A. hoffmannseggiana typical form, polar view (Steyn 1900, PRE); C, A. spathularis, showing reticulum (ret), colpus (c) and ridge (r) (Steyn 2135, PRE); D, A. adamanticola, showing muri (see arrows) connecting the ridge and reticulum (Smook 11204, PRE); E, A. carduifolia, surface sculpturing of mesocolpium reticulate (Koekemoer 4260, PRE); F, A. tetragona subsp. tetragona, surface sculpturing of mesocolpium microreticulate to foveolate (Steyn 1848, PRE). Scale bar: A = 10 µm, B = 20 µm, C = 2 µm, D = 8 µm, E, F = 2 µm.
Figure 9. Mature Acanthopsis infructescence morphology. A in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 9. Mature Acanthopsis infructescence morphology. A, persistent dry infructescences of A. hoffmannseggiana typical form; B, dry infructescence, A. scullyi (Steyn 1911, PRE); C, wet infructescence, A. scullyi (Steyn 1911, PRE); D and E, opened sepals exposing the apical tip of the capsule (wet state), A. hoffmannseggiana typical form (Steyn 2148, PRE); F, appressed hygroscopic hairs on seed (dried state), A. horrida (Steyn 1814b, PRE). Scale bar: B, C = 2 mm, D, E = 1 mm, F = 0.5 mm.
Figure 2 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 2. Types of inflorescences found in Acanthopsis based on the density of individual flowers and their bracts. A, dense (> 60% bract overlap); B, lax (B1, 30– 60% bract overlap; B2, <30% bract overlap). Scale bar: 10 mm. Artist: Daleen Roodt.
Fig. 1 in Life History and Larva of Allomorpha hirasana (Hymenoptera, Tenthredinidae) Feeding on Symplocos in Japan
Fig. 1. Allomorpha hirasana, all photographed in Nakagawa, 2019. —A, Branch of Symplocos sawafutagi with leaves partly eaten by a larva of A. hirasana; B, female last feeding instar larva, June 11; C, same larva, June 15; D, same larva, June 16; E, same larva, shortly before molt, June 21; F, same larva, matured, just after molt, June 22; G, same larva and cast skin, June 22.
Fig. 11 in New and revised life history of the Florida hairstreak Eumaeus atala (Lepidoptera: Lycaenidae) with notes on its current conservation status
Fig. 11. Graphic showing the mean development times of Atala butterfly life stages. Credit: Thomas Chouvenc.
Fig. 4 in New and revised life history of the Florida hairstreak Eumaeus atala (Lepidoptera: Lycaenidae) with notes on its current conservation status
Fig. 4. (A) Visually apparent size differences in eggs from a dissected female. (B) Scanning electron microscopy photograph of an Atala egg showing highly sculptured chorion ultrastructure and micropyle. Bar measures 200 μm.
Fig. 10 in New and revised life history of the Florida hairstreak Eumaeus atala (Lepidoptera: Lycaenidae) with notes on its current conservation status
Fig. 10. Graph displaying number of eggs found per age in females dissected at natural death (n = 128). Note the 86-d-old female that still had 29 eggs internally in contrast to the 80-d-old female with no eggs.
Figures 54-68 from: Staniec B, Pietrykowska-Tudruj E, Pawlęga K (2018) First description of the larva of Dinaraea Thomson, 1858, with comments on chaetotaxy, pupa, and life history based on two saproxylic species from Europe (Staphylinidae, Aleocharinae, Athetini). ZooKeys 752: 99-123. https://doi.org/10.3897/zookeys.752.24440
Figures 54-68 D. linearis (54–57, 60–64), D. aequata (58, 59, 65–68), mature larva (54–56, 58), first larval instar (57, 59, 60), prepupa (61), cocoon (62, 63), cocoon and pupa (64), pupa (65–68). 54, 55 abdominal segments VIII-X in dorsal (54) and lateral (55) aspect 56, 57 tergal gland reservoir of segment VIII 58–60 abdominal segments IX and X in ventral (58, 59) and lateral (60) aspect 61, 62 pupal cocoon 63 prepupa in lateral aspect 64 ripped cocoon with pupa inside in lateral aspect 65–68 pupa in ventral aspect (65), front of head (66), terminal abdominal sternites VII–IX (67) and microstructure of abdominal sternite VIII (68). Abbreviations: Ah anal hooks, Fr frons, Lr labrum, Md mandible, Mp maxillary palp, Op opening of gland reservoir, Pg pretergal gland, R tergal gland reservoir, Sp spiracle, St sternite, Te tergite, Tp terminal prolongation, Ug urogomphus.
Figures 33-40 from: Staniec B, Pietrykowska-Tudruj E, Pawlęga K (2018) First description of the larva of Dinaraea Thomson, 1858, with comments on chaetotaxy, pupa, and life history based on two saproxylic species from Europe (Staphylinidae, Aleocharinae, Athetini). ZooKeys 752: 99-123. https://doi.org/10.3897/zookeys.752.24440
Figures 33-40 D. aequata (33, 34, 36–40) D. linearis (35), mature larva. 33 right maxilla in ventral aspect and apex of maxillary palp (33a), 34, 35 right mala in ventral aspect 36–38 adoral margin of left mala in dorsal (36, 37) and ventral (38) aspect 39, 39a labium and apex of labial palp, view from hypopharynx, 40 functional position of hypopharynx and adoral margins of malae and apex of ligula (40a). Abbreviations: I–III articles of maxillary palp, Cd cardo, F furrow, Hp hypopharynx, Lg ligula, Lp labial palp, M microtrichia, Ma mala, Pf palpifer, Pm maxillary palp, 1–2 and S1–4 sensilla, Stp stipes.
Figures 1-11 from: Staniec B, Pietrykowska-Tudruj E, Pawlęga K (2018) First description of the larva of Dinaraea Thomson, 1858, with comments on chaetotaxy, pupa, and life history based on two saproxylic species from Europe (Staphylinidae, Aleocharinae, Athetini). ZooKeys 752: 99-123. https://doi.org/10.3897/zookeys.752.24440
Figures 1-11 D. aequata (1, 3, 5, 7–11), D. linearis (2, 4, 6), mature larva. 1–7 habitus in dorsal (1, 2), lateral (3, 4, 7) and ventral (5, 6) aspect, 8–11 setae near epicranial suture (8) of abdominal tergites (9–11).
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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.