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1,416 results for “Evidence Base”
FIGURE 1 in Hymenagaricus pakistanicus (Agaricaceae, Agaricales), a new species from Pakistan based on morphological and molecular evidence
FIGURE 1. Map representing the geographical location of the research area of Tahsil Takht-e-Nasrati, Karak, Khyber Pukhtunkhwa, Pakistan. Red spot indicates the sampling area. Drawing by: Mahrukh Farid Syed.
FIGURE 20 in The Rhyacophila fasciata Species Complex (Trichoptera: Rhyacophilidae) in Central Europe with description of a new species, Rhyacophila loeffleri Valladolid & Waringer, n. sp., based on morphological, genetic and ecological evidence.
FIGURE 20. Spatial distribution of Rhyacophila loeffleri Valladolid & Waringer n. sp. in Austria, Czech Republic, France, Italy and Switzerland, and of R. fasciata in neighbouring areas of Czech Republic and Germany. Circles: localities of R. loeffleri. Triangles: localities of R. fasciata. White: specimens from Austria. Pale blue: specimens from Czech Republic. Yellow: specimens from France. Green: specimens from Germany. Dark blue: specimens from Italy. Orange: specimens from Switzerland. Star: specimens with DNA information. Question mark: specimens assigned to a species but not confirmed.
FIGURES 11, 12 in The Rhyacophila fasciata Species Complex (Trichoptera: Rhyacophilidae) in Central Europe with description of a new species, Rhyacophila loeffleri Valladolid & Waringer, n. sp., based on morphological, genetic and ecological evidence.
FIGURES 11, 12. Male and female genitalia of Rhyacophila loeffleri Valladolid & Waringer n. sp., respectively. 11, male: 11A, 2nd segment of left inferior appendage, left lateral; 11BV, 11BL, parameres: 11BV, parameres (p) and ventral lobe of aedeagus (phallicata) (vl), ventral; 11BL, left paramere, left lateral. 11CL, 11CD, aedeagus (phallicata) and lateroventral lobes: 11CL, aedeagus and its left lateroventral lobe, left lateral; 11CD, aedeagus and its lateroventral lobes (lvl), dorsal. 10DD, apicodorsal lobe of segment IX (al) and preanal appendages (pa); 11DV, segment X, ventral ab= apical band, as= anal sclerites, va= nonsclerotized ventral area. 12, female segments VIII–XI: 12L, left lateral; 12D, dorsal; 12V, ventral. Scale bars: unlabelled = 1 mm; ● = 0.5 mm; * = 200 μm.
FIGURES 2–7 in The Rhyacophila fasciata Species Complex (Trichoptera: Rhyacophilidae) in Central Europe with description of a new species, Rhyacophila loeffleri Valladolid & Waringer, n. sp., based on morphological, genetic and ecological evidence.
FIGURES 2–7. Larva of Rhyacophila loeffleri Valladolid & Waringer n. sp. 2a–2d, head: 2a, dorsal; 2b, right lateral; 2c, ventral; 2d, frontoclypeus, dorsal. 3D–3V, mandibles from last instar larval exuviae, left (l) and right (r): 3D, dorsal; 3V, ventral. 4a–4b, prothorax: 4a, dorsal; 4b, right hemisclerite, right lateral. 5, abdominal segment III, dorsal, A = anterior edge. 6, abdominal tergite IX. 7a–7c, details of anal prolegs: 7a, right anal claw, right lateral; 7b, detail of basolateral plate with sword process and basoventral hook, right lateral; 7c, detail of right claw, right lateral. Scale bars: unlabelled = 1 mm; ● = 0.5 mm.
FIGURE 1 in The Rhyacophila fasciata Species Complex (Trichoptera: Rhyacophilidae) in Central Europe with description of a new species, Rhyacophila loeffleri Valladolid & Waringer, n. sp., based on morphological, genetic and ecological evidence.
FIGURE 1. Setae (S) and sensory pits (P) of the head and thorax of Rhyacophila larvae. 1a, head, dorsal; 1b, prothorax, right sclerite, dorsal (from Williams & Wiggins 1981).
FIGURE 19 in The Rhyacophila fasciata Species Complex (Trichoptera: Rhyacophilidae) in Central Europe with description of a new species, Rhyacophila loeffleri Valladolid & Waringer, n. sp., based on morphological, genetic and ecological evidence.
FIGURE 19. Phylogenetic relationships among the species of the Rhyacophila fasciata Complex included in this study. Combination of Bayesian inference and maximum likelihood trees based on COI. Support for each node is represented by the posterior probabilities (PP) resulting from the Bayesian inference analysis and the bootstrap support values (BS) obtained for the maximum likelihood tree (PP/BS, respectively). 19a, Rhyacophila cf. obliterata (Robl), outgroup; 19b–19j, R. fasciata Complex: 19b, R. kykladica Malicky & Sipahiler 1993 (Rkyk); 19c, R. denticulata McLachlan 1879 (Rden); 19d, R. sociata Navás 1916 (Rsoc); 19e, R. loeffleri Valladolid & Waringer n. sp. (Rloe); 19f, R. fasciata Hagen 1859 (Rfas); 19g, R. macedonica Karaouzas, Valladolid & Ibrahimi 2022 (in Valladolid et al. 2022) (Rmac); 19h, R. delici Kučinić & Valladolid 2020 (in Valladolid et al. 2020) (Rdel); 19i, R. fasciata viteceki Valladolid & Kučinić 2020 (in Valladolid et al. 2020) (Rfvit); 19j, Rhyacophila septentrionis McLachlan 1865 (Rsep). Data for specimens are summarized in Table 1. Countries: BEL = Belgium, BAH = Bosnia and Herzegovina, CRO = Croatia, CZE = Czech Republic, EST = Estonia, FIN = Finland, FRA = France, GER = Germany, GRE = Greece, ITA = Italy, KOS = Kosovo, MAC = Republic of North Macedonia, NOR = Norway, POL = Poland, RUS = Russia, SER = Serbia, SLO = Slovakia, SPA = Spain, SWI = Switzerland, UK = United Kingdom. Scale bar: mean number of nucleotide substitutions per site or nucleotide position on the respective branch.
FIGURES 9, 10 in The Rhyacophila fasciata Species Complex (Trichoptera: Rhyacophilidae) in Central Europe with description of a new species, Rhyacophila loeffleri Valladolid & Waringer, n. sp., based on morphological, genetic and ecological evidence.
FIGURES 9, 10. Wings of Rhyacophila fasciata Hagen 1859 and Rhyacophila loeffleri Valladolid & Waringer n. sp. 9a, forewing of R. fasciata, lectotype [Museum of Comparative Zoology of Harvard University, Cambridge, MA, USA (MCZH), with permission]; 9b, forewing of R. fasciata male from Slovakia; 9c, hind wing of R. fasciata male from Slovakia. 10a, 10b, forewings of R. loeffleri males from Italy and Austria respectively; 10c, hind wing of R. loeffleri male from Austria. Major veins: C = costa, Sc = subcosta, R1–R 5 = radius, M1–M4 = media, Cu1–Cu2 = cubitus, A1–A3 = anal, m-cu = crossvein between medial and cubital veins (from Holzenthal et al. 2007). Scale bars: 2 mm. 9a: specimen preserved dry, 9b–c, 10a–c: specimens preserved in alcohol.
FIGURES 15–18 in The Rhyacophila fasciata Species Complex (Trichoptera: Rhyacophilidae) in Central Europe with description of a new species, Rhyacophila loeffleri Valladolid & Waringer, n. sp., based on morphological, genetic and ecological evidence.
FIGURES 15–18. Males and females of Rhyacophila loeffleri Valladolid & Waringer n. sp. and Rhyacophila fasciata Hagen 1859. 15, male of R. loeffleri: 15a, 2nd segment of left inferior appendage, left lateral; 15b, apicodorsal lobe of segment IX and preanal appendages, dorsal; 15c, parameres and ventral lobe of aedeagus (phallicata), ventral; 15d, left paramere, left lateral. 16, male of R. fasciata: 16a, 2nd segment of left inferior appendage, left lateral; 16b, apicodorsal lobe of segment IX and preanal appendages, dorsal; 16c, parameres and ventral lobe of aedeagus (phallicata), ventral; 16d, left paramere, left lateral. 17, female segments VIII–XI of R. loeffleri: 17L, left lateral; 17D, dorsal; 17V, ventral. 18, female segments VIII–XI of R. fasciata: 18L, left lateral; 18D, dorsal; 18V, ventral. Scale bars: Figures 14a–c, 15a–c = 0.5 mm, Figures 15d, 16d = 200 μm, Figures 17, 18 = 1 mm.
FIGURE 8. Rhyacophila loeffleri Valladolid & Waringer n in The Rhyacophila fasciata Species Complex (Trichoptera: Rhyacophilidae) in Central Europe with description of a new species, Rhyacophila loeffleri Valladolid & Waringer, n. sp., based on morphological, genetic and ecological evidence.
FIGURE 8. Rhyacophila loeffleri Valladolid & Waringer n. sp., paired abdominal hook plates of male pupa. 8l and 8r, left and right hook plates, respectively. A = anterior hook plates, dorsal, P = posterior hook plates, dorsal; III–VII = abdominal terga III through VII, dorsal. Scale bars: 50 μm.
FIGURE 5 in Re-establishment of Begonia corallina Carrière (Begoniaceae) based on morphoanatomical evidence
FIGURE 5. Stem cross section of Begonia corallina (A, C, F) and Begonia maculata (B, D, E, G). A–B. Overview showing epidermis (Ep), cortex formed by collenchyma (Co), parenchyma (Pa) and sclereids (Sc), vascular bundles with phloem (Ph) and xylem (Xy) and parenchymatic pith (Pi). C–D. Details showing epidermis (Ep) and collenchyma (Co) with anthocyanin in the vacuole in fresh samples. E. Glandular trichome with unicellular base (Bc), stalk (St) and multicellular secretory head (Hc). F. Vascular bundles with phloem (Ph), vascular cambium (Vc) and xylem (Xy). Note the presence of perivascular fibers (Fi) in F. Bars: A–B, F = 30 µm, C–E = 60 µm, G = 120 µm.
FIGURE 4 in Re-establishment of Begonia corallina Carrière (Begoniaceae) based on morphoanatomical evidence
FIGURE 4. Leaf blade cross section and frontal view of Begonia corallina (A, C, E, G, I K) and Begonia maculata (B, D, F, H, J, L). A-B. Overview showing unistratified epidermis (Ep) with anisocytic stomata (St) on the abaxial surface, palisade (Pp) and spongy (Sp) parenchyma. C. Glandular trichome (Gt) sunk in the epidermis. D. Glandular trichome showing unicellular base, biseriate short stalk and multicellular biseriate secretory head. E. Detail showing palisade (Pp) and spongy (Sp) parenchyma. F. Detail showing palisade (Pp) and spongy (Sp) parenchyma with sclereids (Sc). G–H. Frontal view showing druses (arrowhead) and sclereids (arrow) on the midrib (Mr), secondary (2a) and tertiary (3a) veins. I. Midrib with concave shape, collenchyma (Co), vascular bundles (Vb) organized in circle and sclereids (arrow). Inset shows vascular bundle in detail, highlighting the perivascular fibers. J. Midrib with concave shape, few layers of collenchyma (Co), three vascular bundles (Vb) and sclereids (arrow). K. Sclereids (Sc) with rectangular shape. L. Sclereids (Sc) with irregular shape. Bars: G, H, J = 300 µm, A-B = 120 µm, C-K = 60 µm, D, E, F, I, L = 30 µm.
FIGURE 2. A–H. Begonia maculata Raddi. A in Re-establishment of Begonia corallina Carrière (Begoniaceae) based on morphoanatomical evidence
FIGURE 2. A–H. Begonia maculata Raddi. A, Habitat; B, Base of stem, showing plant branch; C, Leaf blades, showing rounded silvery spots on leaf surface; D, Habit; E, Staminate flowers; F, Pistillate flowers. A–B, D–F from G.O.P. Guimarães 14; C, from Jacques et al. 1910. Bars: A = 30 cm, B-C = 1 cm, D = 14 mm, E = 4 mm., F = 4.5 mm.
FIGURE 1. A–H in Re-establishment of Begonia corallina Carrière (Begoniaceae) based on morphoanatomical evidence
FIGURE 1. A–H. Begonia corallina Carrière. A, Habitat; B–C, Habit; D, Apex of stem, showing rounded silvery spots on leaf surface; E, Base of stem, showing plant branch; F, Staminate flowers; G, Pistillate flowers; H, Fruits. A–B, D–H from Jacques et al. 2058; C, R. Zanatta. Bars: A–C = 20 mm, D, G-H = 5 mm, E = 10 Cm., F = 7 mm.
FIGURE 3 in Flaviporus albus (Steccherinaceae), a new species from southern China based on morphological and phylogenetic evidence
FIGURE 3. Microstructure of Flaviporus albus A: Basidiospores. B–D: Skeletocystidia from trama. E: Basidia. F–H: Clamp connection and branch of generative hyphae. I: Detail of the tramal hyphae. J: Hyphal pegs from the hymenium. Scale bar: 10 µm. Drawings by: Bing Leng, Fu-Chang Huang and Qiu-Lu Wei.
FIGURE 2 in Flaviporus albus (Steccherinaceae), a new species from southern China based on morphological and phylogenetic evidence
FIGURE 2. Basidiomes of Flaviporus albus a–c: Fresh basidiomes. Scale bar: 1cm. d: Longitudinal section of dry basidiome. Scale bar: 2mm. e: Dry pore surface. Scale bar: 1mm. Photos by: Hai-Fu Zheng.
FIGURE 1 in Flaviporus albus (Steccherinaceae), a new species from southern China based on morphological and phylogenetic evidence
FIGURE 1. Phylogenetic tree (Bayesian tree) obtained from the DNA sequences of ITS and LSU datasets from Flaviporus albus and other related species. Bootstrap values from Maximum Likelihood (ML, left) greater than 50 % and Bayesian Posterior Probabilities (BPP, right) greater than 0.95 are indicated above the nodes as MLBS/BPP. The new species is in bold.
FIGURE 4. Polystichum xinfeniae.—A. Habit.—B. Petioles.—C in Three new species of Polystichum (Dryopteridaceae) from Xizang, China based on morphological and molecular evidence
FIGURE 4. Polystichum xinfeniae.—A. Habit.—B. Petioles.—C. Abaxial pinnae, showing sori.—D. Upper portion of adaxial lamina.— E. Middle portion of adaxial lamina.
FIGURE 3. Polystichum wusugongii.—A. Habit.—B in Three new species of Polystichum (Dryopteridaceae) from Xizang, China based on morphological and molecular evidence
FIGURE 3. Polystichum wusugongii.—A. Habit.—B. Fiddlehead (young leaves).—C. Lower portion of plant.—D. Abaxial view of lower portion of lamina.—E. Adaxial view of portion of lamina.—F. Abaxial view of upper portion of lamina.—G. Abaxial view of portion of lamina showing sori.
FIGURE 1 in Three new species of Polystichum (Dryopteridaceae) from Xizang, China based on morphological and molecular evidence
FIGURE 1. Maximum likelihood phylogeny of Polystichum based on five plastid markers (rbcL, rps4, rps4-trnS, trnL, and trnL-F). The numbers associated with branches are maximum likelihood bootstrap support (MLBS) and Bayesian posterior probability (BIPP). The asterisk indicates MLBS = 100, BIPP = 1.00.
Development and Implementation of Evidence-Based Family-Oriented Support for Young Carers and Their Families in Germany
ClinicalTrials.gov study NCT00734942. IPD Sharing: Not stated. Countries: 1. Publications: 4.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.