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Fig. 60. Latentemys plowdeni, n in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 60. Latentemys plowdeni, n. gen. et sp. BMNH R.11998. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [G. Giardina, del.]
Fig. 60 in The Spider Subfamily Amaurobioidinae (Araneae, Anyphaenidae): A Phylogenetic Revision At The Generic Level
Fig. 60. Josa nigrifrons (Simon), male palp. A. Ventral view (lectotype). B. Copulatory bulb, expanded (Panama´, El Volcán, 12.VIII.1950). C. Copulatory bulb, apical view (Loja, Malacatos). D. Palp, prolateral view (lectotype). E. Same, retrolateral view. Scale bars = A, 0.2 mm; B–E, 0.5 mm. (C1 = primary conductor; C2 = secondary conductor; DH = distal hematodocha; E = embolus; MA = median apophysis; PBE = process on base of embolus; T = tegulum.)
Fig. 60-65 in Revision of the Genus Polytes Stål (Heteroptera: Scutelleridae)
Fig. 60-65. Polytes bimaculatus. (60) Genitalcup, ventralaspect. (61) Genital cup, dorsal aspect. (62) Genital cup, caudal aspect. (63) Paramere, ectalaspect.(64) Sclerotized apex of 2nd conjunctival diverticula. (65) Sclerotized apex of 3rd conjunctival diverticula.
Map 1 in Artheneis foveolata Spinola, 1837 (Hemiptera: Artheneidae) rediscovered in Portugal, more than 60 years after its first record
Map 1.- Iberian distribution of Artheneis foveolata Spinola, 1837, with the previously known Spanish provinces and Portuguese districts in grey, and the previously known (in blue) and new (in orange) Portuguese MGRS 100 km2 squares.
Fig. 9 in Fig. 2. 60 in Identification and Distribution of Wedge Clams (Donacidae: Bivalvia) in Thailand by Geometric Morphometric and Molecular Analysis.
Fig. 9. Venn diagram showing the number of shared operational taxonomic units (OTUs) among adult, subadult, and juvenile Asian elephants at 97% similarity.
Fig. 8 in Fig. 2. 60 in Identification and Distribution of Wedge Clams (Donacidae: Bivalvia) in Thailand by Geometric Morphometric and Molecular Analysis.
Fig. 8. Venn diagram showing the number of shared operational taxonomic units (OTUs) between male and female Asian elephants at 97% similarity.
Fig. 5. Heatmap with a in Fig. 2. 60 in Identification and Distribution of Wedge Clams (Donacidae: Bivalvia) in Thailand by Geometric Morphometric and Molecular Analysis.
Fig. 5. Heatmap with a dendogram showing dietary plant abundance at the genus level for adult, subadult, and juvenile Asian elephants. Gradient heatmap shows the 20 most abundant genera.
Fig. 4. Heatmap with a in Fig. 2. 60 in Identification and Distribution of Wedge Clams (Donacidae: Bivalvia) in Thailand by Geometric Morphometric and Molecular Analysis.
Fig. 4. Heatmap with a dendogram showing dietary plant abundance at the genus level for male and female Asian elephants. Gradient heatmap shows the 20 most abundant genera.
Fig. 3 in Fig. 2. 60 in Identification and Distribution of Wedge Clams (Donacidae: Bivalvia) in Thailand by Geometric Morphometric and Molecular Analysis.
Fig. 3. Distribution (%) of plants consumed by adult, subadult, and juvenile Asian elephants in Taman Negara National Park (TNNP) at the genus level (20 most abundant genera).
Fig. 2 in Fig. 2. 60 in Identification and Distribution of Wedge Clams (Donacidae: Bivalvia) in Thailand by Geometric Morphometric and Molecular Analysis.
Fig. 2. Distribution (%) of plants consumed by male and female Asian elephants in Taman Negara National Park (TNNP) at the genus level (20 most abundant genera).
Fig. 1 in Fig. 2. 60 in Identification and Distribution of Wedge Clams (Donacidae: Bivalvia) in Thailand by Geometric Morphometric and Molecular Analysis.
Fig. 1. Distribution (%) of plants consumed by wild Asian elephants in Taman Negara National Park (TNNP) at the genus level (> 1% abundance).
Рис. 3. Camacolaimus vietnamicus sp. nov., гоΛотип самца (а, c, d) и паратип самки (b, e): a — гоΛова; b — теΛо в обΛасти вуΛьвы; с, e — хвост; d — переΑний конец теΛа. Масштаб: а — 10 мкм; c, d — 40 мкм; e — 50 мкм; b — 60 мкм Fig. 3. Camacolaimus vietnamicus sp. nov., male holotype (а, c, d), female paratype (b, e): a — head; b — vulva region; с, e — tail; d — anterior body end. Scale bars: а — 10 µm; c, d — 40 µm; e — 50 µm; b — 60 µm in Two new species of the free-living nematodes (Nematoda, Chromadorea) from coral reefs of Vietnam
Рис. 3. Camacolaimus vietnamicus sp. nov., гоΛотип самца (а, c, d) и паратип самки (b, e): a — гоΛова; b — теΛо в обΛасти вуΛьвы; с, e — хвост; d — переΑний конец теΛа. Масштаб: а — 10 мкм; c, d — 40 мкм; e — 50 мкм; b — 60 мкм Fig. 3. Camacolaimus vietnamicus sp. nov., male holotype (а, c, d), female paratype (b, e): a — head; b — vulva region; с, e — tail; d — anterior body end. Scale bars: а — 10 µm; c, d — 40 µm; e — 50 µm; b — 60 µm
Рис. 3. Thalassironus longicaudatus sp. nov., гоΛотип самца и паратип самки: A — гоΛова самца; B — теΛо в обΛасти вуΛьвы; C — переΑний конец теΛа самца; D — заΑний конец теΛа самца; Е — заΑний конец теΛа самки. Масштаб: A — 12 мкм; C — 50 мкм; D, E — 60 мкм; B — 70 мкм Fig. 3. Thalassironus longicaudatus sp. nov., male holotype and female paratypes: A — male head; B — vulva region; C — anterior body end of male; D — posterior body end of male; Е — posterior body end of female. Scale bars: A — 12 µm; C — 50 µm; D, E — 60 µm; B — 70 µm in Two new species of the genus Thalassironus de Man, 1889 (Nematoda, Enoplida, Ironidae) from the coral reefs in Vietnam
Рис. 3. Thalassironus longicaudatus sp. nov., гоΛотип самца и паратип самки: A — гоΛова самца; B — теΛо в обΛасти вуΛьвы; C — переΑний конец теΛа самца; D — заΑний конец теΛа самца; Е — заΑний конец теΛа самки. Масштаб: A — 12 мкм; C — 50 мкм; D, E — 60 мкм; B — 70 мкм Fig. 3. Thalassironus longicaudatus sp. nov., male holotype and female paratypes: A — male head; B — vulva region; C — anterior body end of male; D — posterior body end of male; Е — posterior body end of female. Scale bars: A — 12 µm; C — 50 µm; D, E — 60 µm; B — 70 µm
Fig. 60 in Fourteen new species of Allobathynella Morimoto and Miura, 1957 from South Korea: with a redescription of A. coreana Morimoto, 1970 (Crustacea, Bathynellacea, Parabathynellidae)
Fig. 60. Allobathynella yecheonensis (holotype: Ş) (A) Thoracopod IV (frontal); (B) Thoracopod V (frontal); (C) Thoracopod VI (frontal). Scale bar = 0.05 mm.
RAIRS spectrum of a H2O:CS2 (400:60 ML) ice mixture at 6 K
<p>The title is self-explanatory. First column contains wavenumbers in cm-1. Second column contains absorbance. </p> <p>The spectrum was collected in the SPACE TIGER setup at the Center for Astrophysics | Harvard & Smithsonian. We assume that the spectrum is the same as in transmittance mode except for the absorbance, that is a factor 2.32 higher (note that this factor is setup-dependent and was measured for the SPACE TIGER setup in Martín-Doménech et al. 2020). </p> <p> </p>
FIGURE 60 in A Revision of the Malagasy Crack-Leg Spiders of the Genus Uduba Simon, 1880 (Araneae, Udubidae), with Description of 35 New Species from Madagascar
FIGURE 60. Uduba salegy, new species, Holotype (CASENT9006044) from Parc National Montagne d'Ambre, left male palpus. A. Prolateral. B. Ventral. C. Retrolateral. TA2, proapical apophysis of the tegulum; TA3, retroapical apophysis of the tegulum. Scale bar = 0.5mm.
Supplementary file 60 in Methylphenidate for attention deficit hyperactivity disorder (ADHD) in children and adolescents - assessment of possible adverse events in non-randomised studies
<p>Supplementary file 60: Proportion of participants on methylphenidate with abdominal pain</p>
Predicted soil water content (volumetric %) for 33kPa and 1500kPa suctions at 6 standard depths (0, 10, 30, 60, 100 and 200 cm) at 250 m resolution
<p>Migrated to: <a href="https://doi.org/10.5281/zenodo.2629589">https://doi.org/10.5281/zenodo.2629589</a></p>
Female terminalia: 58, Pseudonomoneura calijornica (Hardy); 59, Nemomudas sp.; 60, Messiasia pertenuis (Johnson); 61, Phyllomydas bruesii Johnson. in The American Genera of Mydidae (Diptera), with the Description of three new Genera and two new Species
Female terminalia: 58, Pseudonomoneura calijornica (Hardy); 59, Nemomudas sp.; 60, Messiasia pertenuis (Johnson); 61, Phyllomydas bruesii Johnson.
Plate VII: Figures. 58-60. Anatya guttata, male anal appendages, left lateral view. (58) "normalis" form; (59) "guttata" form (both Base Camp); (60) intermediate specimen (Venezuela, Tachira, La Fria). Figures 61-64. Erythrodiplax amazonica, male ultimate instar exuviae (61), Exuviae, dorsal view; (62) left antenna; (63) labium with right palp, dorsal view; (64) anal pyramid, dorsal view. in Dragonflies (Odonata) From The Sierras Of Tapirapeco And Unturan, In The Extreme South Of Venezuela
Plate VII: Figures. 58-60. Anatya guttata, male anal appendages, left lateral view. (58) "normalis" form; (59) "guttata" form (both Base Camp); (60) intermediate specimen (Venezuela, Tachira, La Fria). Figures 61-64. Erythrodiplax amazonica, male ultimate instar exuviae (61), Exuviae, dorsal view; (62) left antenna; (63) labium with right palp, dorsal view; (64) anal pyramid, dorsal view.
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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.