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Fig. 2 in Novelties from the Northern Mountains Complex of Madagascar IV: A new Rinorea Aubl. (Violaceae) of restricted range from the Galoko and Kalabinono massifs
Fig. 2. – Distribution map of Rinorea callmanderi Wahlert (stars) in Madagascar plotted on a map of forest cover in 2000 (grey)
Fig. 3 in Novelties from the Northern Mountains Complex of Madagascar V: A new threatened Pandanus (Pandanaceae) from the Kalobinono massif
Fig. 3. – Photograph of Pandanus kalobinonensis Callm., Razakamal. & Luino. [Luino & Razakamalala et al. 106] [Photo: I. Luino]
Fig. 2 in Novelties from the Northern Mountains Complex of Madagascar V: A new threatened Pandanus (Pandanaceae) from the Kalobinono massif
Fig. 2. – Pandanus kalobinonensis Callm., Razakamal. & Luino. A. Fruiting branch; B. Detail of the syncarp; C. Drupe; D. Cross section of a drupe; E. Basal section of a leaf; F. Mid section of a leaf; G. Apex section of a leaf. [A–D: Razakamalala et al. 7586, TAN; E–G: Luino & Razakamalala 106, TAN] [Drawing: R.L. Andriamiarisoa]
Fig. 4 in A New Species Of The Genus Allochthonius (Pseudoscorpiones, Pseudotyrannochthoniidae) From Liupan Mountains, China, With The Description Of The Male Of Allochthonius Brevitus
Fig. 4. Allochthonius (Urochthonius) brevitus Hu et Zhang, 2012, habitus (dorsal view): a = male, b = female.
Fig. 4 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species
Fig. 4. Occurrences of the non-indigenous microcrustacean species in the investigated artificial lakes of north-eastern Hungary. Abbrev.: Eurytemora velox: +, Daphnia ambigua: ▲, Pleuroxus denticu-
Fig. 1 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species
Fig. 1. Species accumulation curves of the fish ponds for total microcrustaceans (a) and for cladocerans and copepods separately (b)
Fig. 3 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species
Fig. 3. Frequency of occurrence (incl. species occurring in at least 5 fish ponds). Abbrev.: Chy_sph – Chydorus sphaericus, Bos_lon – Bosmina longirostris, Cyc_vic – Cyclops vicinus, Dap_cuc – Daphnia cucullata, Euc_ser – Eucyclops serrulatus, Aca_tra – Acanthocyclops trajani, Eud_gra – Eudiaptomus gracilis, Mac_alb – Macrocyclops albidus, Ple_adu – Pleuroxus aduncus, Sim_vet – Simocephalus vetulus, Mac_lat – Macrothrix laticornis, Euc_spe – Eucyclops speratus, The_oit – Thermocyclops oithonoides, Nit_hib – Nitocra hibernica, Alo_rec – Alona rectangula, Sca_muc – Scaphole-
Fig. 5 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species
Fig. 5. The relative frequencies of Eurytemora velox (white), Eudiaptomus gracilis (black) and all other microcrustacean species (grey) in those fish ponds where the invasive E. velox was present
Fig. 6 in The Enchytraeid Fauna (Enchytraeidae, Clitellata) Of The Rax Mountain (Austria) With Description Of Two New Species And Comparison Of Fridericia Discifera Healy, 1975 And F. Alpica Sp. N.
Fig. 6. Maximum likelihood (ML) trees of studied Fridericia species based on the ITS region (A), CO1 (B) and H3 genes (C). Bootstrap values greater than 50 are shown at the nodes. Sequences from new species described here appear in bold. A = ML tree of the ITS region
Fig. 4 in The Enchytraeid Fauna (Enchytraeidae, Clitellata) Of The Rax Mountain (Austria) With Description Of Two New Species And Comparison Of Fridericia Discifera Healy, 1975 And F. Alpica Sp. N.
Fig. 4. Micrograph of Fridericia raxiensis sp. n. A = epidermal glands, B = clitellar glands dorsally (weakly developed), C = brain, D = second nephridium preclitellarly, E–F = coe- lomocytes, G = pharyngeal glands dorsal view (the additional ventral lobes in VII marked with arrows), H = chylus cells in XIV–XV of holotype, I = male copulatory organ (marked with white arrow) and the small subneural gland in XIII (marked with black arrow). (A–B, E in vivo, C–D, F–I fixed, stained; scale bars = 50 Μm)
Fig. 1 in The Enchytraeid Fauna (Enchytraeidae, Clitellata) Of The Rax Mountain (Austria) With Description Of Two New Species And Comparison Of Fridericia Discifera Healy, 1975 And F. Alpica Sp. N.
Fig. 1. Micrograph of Fridericia alpica sp. n. A = clitellar glands dorsally, B = clitellar glands ventrally, C–D = brain, E–F = pharyngeal glands (marked with white arrows, * = ventral
Figures 22–31 in A new species of Pseudouroctonus from the Pinaleño Mountains southern Arizona (Scorpiones Vaejovidae)
Figures 22–31: Pseudouroctonus moyeri sp. n., paratype male (USNM). Figures 22–25. Hemispermatophore internal (22), ventral (23), external (24), and dorsal (25) views. Figures 26–31. Mating plug dorsal (26), distal (27), ventral (28), proximal (29), internal (30), and external (31) views.
Figure 32–33 in A new species of Pseudouroctonus from the Pinaleño Mountains southern Arizona (Scorpiones Vaejovidae)
Figure 32–33. Pseudouroctonus moyeri sp. n., paratype juvenile female 4th instar (32) and female with newborns (33).
Figures 1–2 in A new species of Pseudouroctonus from the Pinaleño Mountains southern Arizona (Scorpiones Vaejovidae)
Figures 1–2. Pseudouroctonus moyeri sp. n., paratypes, female (1) and male shortly after last ecdysis (2).
Fig. 1 in Salmincola markewitschi (Copepoda: Lernaeopodidae) Parasitic on Whitespotted Char, Salvelinus leucomaenis, in a Mountain Stream of Honshu Island, Central Japan
Fig. 1. Salmincola markewitschi, female, NSMT-Cr 28337, from whitespotted char, Salvelinus leucomaenis, from the Zako River, a tributary of the upper Nakatsu River, Nagano Prefecture, central Honshu Island, Japan. A, habitus, lateral view; B, habitus, dorsal view; C, cephalothorax, second maxillae and bulla, anterior view; D, first antenna, dorsal view; E, second antenna, anterolateral view; F, exopod of second antenna, lateral view; G, H, mandibles, lateral view; I, first maxilla, lateral view; J, maxilliped, dorsolateral view; K, maxilliped, palp, dorsolateral view. Abbreviations: h1, hook 1; p, palp; p4, process 4; p5, process 5; s2, spine 2; t3, tubercle 3. Scale bars: A–C, 1 mm; D, 20 µm; E, 50 µm; F–H, 20 µm; I, 30 µm; J, 100 µm; K, 20 µm.
Figs 33-44 in A mysterious dwarf: Suthepiidae nov. fam., a new harvestman family from mountains of northern Thailand (Arachnida: Opiliones: Laniatores)
Figs 33-44. Suthepia inermis sp. nov., male holotype (33-38), female paratype (39-44). (33) Penis in dorsal view. (34) Same in ventral view. (35-36) Same in lateral view. (37, 39) Right chelicera, prolateral view. (38, 40) Same in retrolateral view. (41) Whole ovipositor, ventral view. (42) Distal part of ovipositor, ventral view. (43-44). (43) Single claw of leg I of female, retrolateral view. (44) Double claw of leg IV of female, retrolateral view. Scale lines: 0.3 mm (33-36; 37-41), 0.05 mm (42), 0.07 mm (43-44).
Figs 3-8 in A mysterious dwarf: Suthepiidae nov. fam., a new harvestman family from mountains of northern Thailand (Arachnida: Opiliones: Laniatores)
Figs 3-8. Suthepia inermis sp. nov, male holotype (3, 5-6), female paratype. (4, 7-8). (3-4) Habitus, lateral view. (5, 7) Habitus, dorsal view, (6, 8) Habitus, ventral view. Scale line 0.5 mm.
Figs 17-32 in A mysterious dwarf: Suthepiidae nov. fam., a new harvestman family from mountains of northern Thailand (Arachnida: Opiliones: Laniatores)
Figs 17-32. Suthepia inermis sp. nov., male paratype (17-20, 25-28), female paratype (21-24, 29-32). (17-24) Femora I-IV, retrolateral view. (25-32) Tarsi I-IV, retrolateral view. Scale lines 0.3 mm.
Figs 9-16 in A mysterious dwarf: Suthepiidae nov. fam., a new harvestman family from mountains of northern Thailand (Arachnida: Opiliones: Laniatores)
Figs 9-16. Suthepia inermis sp. nov., pedipalps of male holotype (9-12) and of female paratype (13-16). (9, 13) Right pedipalp, retrolateral view. (10, 14) Same, prolateral view. (11, 15) Right pedipalpal tarsus, retrolateral view. (12, 16) Same, prolateral view. Scale lines 0.3 mm.
Figs 1-2 in A mysterious dwarf: Suthepiidae nov. fam., a new harvestman family from mountains of northern Thailand (Arachnida: Opiliones: Laniatores)
Figs 1-2. Suthepia inermis sp. nov., body in dorsal view. (1) Female paratype. (2) Male holotype. Scale line 0.5 mm. Photograph by J. Severin.
ScienceDex guides
Understand access before you commit
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.