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FIGURES 35–36 in The larvae of caddisfly species (Insecta, Trichoptera) in northern Thai streams and their relationships to environmental variables
FIGURES 35–36. Larva of Hydropsyche askalaphos Malicky & Chantaramongkol 2000: 35, sterna VIII and IX and anal prolegs, ventral; 36, tergum IX (with small lateral sclerite and large subdorsal sclerite) and anal prolegs, right lateral.
FIGURES 2–8 in The larvae of caddisfly species (Insecta, Trichoptera) in northern Thai streams and their relationships to environmental variables
FIGURES 2–8. Larva of Hydropsyche pallipenne Banks 1938: 2, larval habitus, right lateral; 3, head, right dorsolateral; 4, head, ventral; 5, frontoclypeal apotome, dorsal; 6, labrum, dorsal; 7, submentum and anterior ventral apotome, ventral; 8, mandibles, ventral. ap = acuminate peg-like setae, tp = truncate peg-like setae.
FIGURES 16–19 in The larvae of caddisfly species (Insecta, Trichoptera) in northern Thai streams and their relationships to environmental variables
FIGURES 16–19. Larva of Hydropsyche pallipenne Banks 1938: 16–17, abdominal segments I–II with slender, dark hair-like setae (hl) and scale-hair setae (sh). 18, sterna VIII and IX and anal prolegs, ventral, with paired sternites (arrows); 19, tergum IX, with large subdorsal sclerite (arrow), and anal prolegs, right dorsolateral.
FIGURES 27–34 in The larvae of caddisfly species (Insecta, Trichoptera) in northern Thai streams and their relationships to environmental variables
FIGURES 27–34. Larva of Hydropsyche askalaphos Malicky & Chantaramongkol 2000: 27, pronotum, dorsal; 28, mesonotum, dorsal; 29, metanotum, dorsal; 30, right pleuron, foretrochantin (arrow indicating lower fork), and foreleg, right posterolateral; 31, right midleg, right posterolateral; 32, right hind leg, right posterolateral; 33, prosternites, ventral; 34, abdominal segments I–III with dorsal scale-like setae and hair-like setae, right lateral.
FIGURE 37 in The larvae of caddisfly species (Insecta, Trichoptera) in northern Thai streams and their relationships to environmental variables
FIGURE 37. Canonical correspondence analysis (CCA) ordination of 7 sampling collections based on physicochemical variables and 41 abundant taxa of caddisflies larvae. Abbreviations: WT = water temperature; NH3 = ammonia-nitrogen (NH3- N). Abbreviations of taxa are shown in Table 3.
FIGURES 20–26 in The larvae of caddisfly species (Insecta, Trichoptera) in northern Thai streams and their relationships to environmental variables
FIGURES 20–26. Larva of Hydropsyche askalaphos Malicky & Chantaramongkol 2000: 20, larval habitus, right lateral; 21, head, dorsal; 22, head, ventral; 23, frontoclypeal apotome, dorsal; 24, labrum, dorsal; 25, mandibles, ventral; 26, submentum and anterior ventral apotome, ventral.
FIGURES 9–15 in The larvae of caddisfly species (Insecta, Trichoptera) in northern Thai streams and their relationships to environmental variables
FIGURES 9–15. Larva of Hydropsyche pallipenne Banks 1938: 9, pronotum, dorsal; 10, mesonotum, dorsal; 11, metanotum, dorsal; 12, prosternites, ventral; 13, right pleuron, foretrochantin, right foreleg, right posterolateral; 14, right midleg, right posterolateral; 15 right hind leg, right posterolateral.
FIGURE 7 in Paracanthocobitis putaoensis, a new loach species (Cypriniformes: Nemacheilidae) from the Irrawaddy basin in northern Myanmar
FIGURE 7. Phylogenetic relationships of Paracanthocobitis species based on COI gene sequences reconstructed by Bayesian inference (BI); values above and below branches correspond to BI posterior probabilities and maximum-likelihood (ML) bootstrap support, respectively.
FIGURE 5 in Paracanthocobitis putaoensis, a new loach species (Cypriniformes: Nemacheilidae) from the Irrawaddy basin in northern Myanmar
FIGURE 5. Distribution map of Paracanthocobitis putaoensis; star for locality of holotype, triangle for those of paratypes, circle for locality of specimens used in molecular genetic analysis.
FIGURE 4 in Paracanthocobitis putaoensis, a new loach species (Cypriniformes: Nemacheilidae) from the Irrawaddy basin in northern Myanmar
FIGURE 4. Live individual of Paracanthocobitis putaoensis, from a small stream on the way from Zeyar Dan to Hponkanrazi on Dec., 15, 2015. Photo by Chen Xiao-Yong.
FIGURE 2 in Paracanthocobitis putaoensis, a new loach species (Cypriniformes: Nemacheilidae) from the Irrawaddy basin in northern Myanmar
FIGURE 2. Paracanthocobitis putaoensis sp. nov. after fixation, paratypes; a. SEABRI 20140229, 65.5 mm SL; b. SEABRI 20151113, 42.3 mm SL; and c. SEABRI 20151249, 41.2 mm SL.
FIGURE 1 in Paracanthocobitis putaoensis, a new loach species (Cypriniformes: Nemacheilidae) from the Irrawaddy basin in northern Myanmar
FIGURE 1. Paracanthocobitis putaoensis sp. nov. after fixation. KIZ 2015006395, holotype, male, 55.7 mm SL. a. lateral view; b. dorsal view; c. ventral view.
FIGURE 3 in Paracanthocobitis putaoensis, a new loach species (Cypriniformes: Nemacheilidae) from the Irrawaddy basin in northern Myanmar
FIGURE 3. Morphological characteristics of Paracanthocobitis putaoensisis; a. lower lip (KIZ 2015006395, holotype, male, 55.7 mm SL); b. lateral view of the axillary pelvic lobe (SEABRI 20151118, paratype, 66.0 mm SL); c. ventral view of the digestive tract (SEABRI 20151114); d. lateral view of the suborbital groove in males (SEABRI 20151113, paratype, male, 42.3 mm SL).
FIGURE 3. A–C, Pinguicula warijia. A. Summer rosette. B. Flower. C. Seed. D–F, Pinguicula zamudioana. D. Summer rosette. E. Flower. F. Seed. G–I. Pinguicula oblongiloba. G. Summer rosette. H. Flower. I. Seed. Photos A and B in Pinguicula warijia sp. nov. (Lentibulariaceae), a newly rediscovered species from the Sierra Obscura, northern Mexico
FIGURE 3. A–C, Pinguicula warijia. A. Summer rosette. B. Flower. C. Seed. D–F, Pinguicula zamudioana. D. Summer rosette. E. Flower. F. Seed. G–I. Pinguicula oblongiloba. G. Summer rosette. H. Flower. I. Seed. Photos A and B by Martín Mata-Rosas; D by David Juárez-Gutiérrez; E, G and H by Julián Hernández-Rendón; C, F and I by Greta Hanako Rosas-Saito.
FIGURE 1. Pinguicula warijia. A in Pinguicula warijia sp. nov. (Lentibulariaceae), a newly rediscovered species from the Sierra Obscura, northern Mexico
FIGURE 1. Pinguicula warijia. A. Habit with rosette, flower, fruit and flower bud. B. Leaf series with variation in size and form. C. Detail of the stipitate glands of the leaf. D. Calyx, back view. E. Flower, lateral view. F. Corolla shape variation, frontal view. G. Detail of the throat of the tube showing the multicellular trichomes and stigma. H. Trichomes of the tube. Drawing by María Teresa Jiménez-Segura.
FIGURE 2. Pinguicula warijia. A. Habitat overview. B in Pinguicula warijia sp. nov. (Lentibulariaceae), a newly rediscovered species from the Sierra Obscura, northern Mexico
FIGURE 2. Pinguicula warijia. A. Habitat overview. B. Plants growing on igneous rocks on a ca. 30° slope. C. Plants growing upside down on the ceiling of a small cave. D. Detail of the flower. E. Capsule. F. Plant growing in a dry area with reduced leaves. G. A two-tailed swallowtail (Papilio multicaudata) butterfly pollinating a P. warijia flower. Photos A, F and G by Julián Hernández-Rendón; B, C, D and E by Martín Mata-Rosas.
FIGURE 4 in Pinguicula warijia sp. nov. (Lentibulariaceae), a newly rediscovered species from the Sierra Obscura, northern Mexico
FIGURE 4. Distribution map of Pinguicula warijia, and related species P. oblongiloba, P. zamudioana, P. michoacana and P. orchidioides. Map made by Abraham Ornelas-Ibarra.
FIGURE 2 in Three species of Amanita section Lepidella (Amanitaceae, Agaricales) from northern Thailand
FIGURE 2. RAxML tree based on nrLSU-ITS dataset. Bootstrap values (BS) for ML ≥ 50% and posterior probabilities (PP) for BI ≥ 0.95 are placed above or below the branches respectively. Newly generated sequences are indicated in red. The tree is rooted with Limacella bangladeshana (CMU-JK0146, CMU-NK0356 & HKAS 75316).
FIGURE 4 in Three species of Amanita section Lepidella (Amanitaceae, Agaricales) from northern Thailand
FIGURE 4. Amanita aureofloccosa (SDBR-STO-2020-PS38). a: Basidiospores. b: Hymenium and subhymenium. c: Longitudinal section of volval remnants on pileus. Bars: a=5 μm, b=20 μm, c=60 μm
FIGURE 3 in Three species of Amanita section Lepidella (Amanitaceae, Agaricales) from northern Thailand
FIGURE 3. Amanita albicarnosa (CMUB-39971, holotype). a: Basidiospores. b: Hymenium and subhymenium. c: Longitudinal section of volval remnants on pileus. Bars: a=5 μm, b=40 μm, c=40 μm.
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)
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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.