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FIGURES 1–7 in On the taxonomic status of the genus Horvathinia Montandon (Hemiptera: Belostomatidae)
FIGURES 1–7. Horvathinia pelocoroides Montandon; 1, body form; 2, head dorsal view; 3, head lateral view; a. beak, b. prosternal keel; 4, abdominal pilosity; 5–7, male genitalia; 5, lateral view; 6, dorsal view; 7, ventral view.
FIGURE 3 in On the taxonomic status of Cicada orni Linnaeus (Hemiptera, Cicadidae) from Lesbos island in Greece
FIGURE 3. Bidimensional diagrams of relationships between specimens of C. orni L. (103 OTUs) of a principal component analysis based on a correlation matrix between 13 acoustic variables (standardized data). The first and second axes explain 42.3% and 22.6% of the total variation, respectively.
FIGURE 2. C. orni L in On the taxonomic status of Cicada orni Linnaeus (Hemiptera, Cicadidae) from Lesbos island in Greece
FIGURE 2. C. orni L. calling song profile (specimen from Athens). A Oscillogram (amplitude vs. time), B spectrogram (frequency vs. time), and C mean amplitude spectrum (frequency vs. amplitude).
FIGURE 3 in On the taxonomic status of the genus Thrasyopsis (Poaceae, Panicoideae, Paspaleae): new combinations in Paspalum
FIGURE 3. Simplified phylogeny of Paspalum based on 4 cpDNA markers (rnL intron, trnL-trnF spacer, atpB-rbcL spacer, and trnG intron, 2223 BP) and 115 morphological characters (redrawn from Rua et al. 2010), in which Thrasyopsis is deeply nested within Paspalum. Values above branches represent symmetric jackknife frequencies.
FIGURE 1 in On the taxonomic status of the genus Thrasyopsis (Poaceae, Panicoideae, Paspaleae): new combinations in Paspalum
FIGURE 1. Parodi´s handwritten memorandum to Swallen, attached to the holotype of T. rawitscheri at BAA, in which relationship of Thrasyopsis with Paspalum group 'Crassa' was suggested.
FIGURE 2 in On the taxonomic status of the genus Thrasyopsis (Poaceae, Panicoideae, Paspaleae): new combinations in Paspalum
FIGURE 2. Transverse sections of rachises of both species formerly placed in Thrasyopsis and here transferred to Paspalum: A, P. repandum (Araujo 174, BAA), and B, P. rawitscheri (Rua & Rosa 728, BAA), scale bars 0.5 mm.
FIGURE 1. Maximum parsimony tree constructed under a 7 in Taxonomic status of Brucepattersonius albinasus (Rodentia: Sigmodontinae)
FIGURE 1. Maximum parsimony tree constructed under a 7:1 ts:tv ratio scheme, with six haplotypes of B. griserufescens, the holotype of B. albinasus and two haplotypes from GenBank: B. iheringi and B. soricinus. Tree length = 555, CI = 0.9225, RI = 0.8673, RC = 0.8001. Numbers above the branches are bootstrap values (1000 / 500 replicates from MP / ML analyses).
FIGURE 1 in Taxonomic update, distribution and conservation status of grammitid ferns (Polypodiaceae, Polypodiopsida) in Veracruz State, Mexico
FIGURE 1. Map of Veracruz and bordering states, Mexico, indicating Los Tuxtlas and central montane area around the capital city of Xalapa.
FIGURE 11. Female florets. A in Evaluation of the taxonomic status of the genus Aliella (Compositae, Gnaphalieae): a recircumscription of the genus Phagnalon
FIGURE 11. Female florets. A. Aliella ballii (Sáez 6191, Sáez pers. herb.) B. Phagnalon latifolium (Charpin et al. MAR 206, W). C. Phagnalon stenolepis (Collenette 9135, E), (A–C) scale bar = 1 mm. Waxy cushions on the corolla lobes. D. Phagnalon carolipaui (Sauvage 12374, MA), scale bar = 20 µm.
FIGURE 14 in Evaluation of the taxonomic status of the genus Aliella (Compositae, Gnaphalieae): a recircumscription of the genus Phagnalon
FIGURE 14. Distribution of Phagnalon ballii subsp. ballii, Phagnalon ballii subsp. embergeri, Phagnalon ballii subsp. nitidum, Phagnalon platyphyllum and Phagnalon iminouakense.
FIGURE 13. Styles. A in Evaluation of the taxonomic status of the genus Aliella (Compositae, Gnaphalieae): a recircumscription of the genus Phagnalon
FIGURE 13. Styles. A. Aliella ballii (Sáez 6186, Sáez pers. herb.), scale bar = 200 µm. B. Aliella embergeri (Gómiz 5650, Gómiz pers. herb.), scale bar = 500 µm. C. Aliella platyphylla (Fernández Casas 3329, MA), scale bar = 200 µm. D. Aliella iminouakensis (Sáez 6182, Sáez pers. herb.), scale bar = 100 µm.
FIGURE 12 in Evaluation of the taxonomic status of the genus Aliella (Compositae, Gnaphalieae): a recircumscription of the genus Phagnalon
FIGURE 12. Stamens and sterile basal appendages. (A–B) Aliella platyphylla (Ait Lafkin et al., MA). A. Stamens, scale bar = 200 µm. B. Sterile basal appendages, scale bar = 100 µm. (C–D) Phagnalon yerrimense (Brunt 2422, BM). C. Stamens, scale bar = 500 µm. D. Sterile basal appendages, scale bar = 200 µm. (E–F) Phagnalon sinaicum (Fayed 1384, E). E. Stamens, scale bar = 500 µm. F. Sterile basal appendages, scale bar = 200 µm. (G–H). Phagnalon barbeyanum (Harris? 1688, E). G. Stamens, scale bar = 500 µm. H. Sterile basal appendages, scale bar = 200 µm.
FIGURE 10 in Evaluation of the taxonomic status of the genus Aliella (Compositae, Gnaphalieae): a recircumscription of the genus Phagnalon
FIGURE 10. Indumentum. (A–B). Multicellular, biseriate glandular hairs on corolla. A. Aliella iminouakensis (Sáez 6182, Sáez pers. herb.), scale bar = 50 µm. B. Aliella embergeri (Maire 602, MPU), scale bar = 50 µm. (C–D). Multicellular, biseriate glandular hairs on the receptacle. C. Aliella iminouakensis (Sáez 6182, Sáez pers. herb.), scale bar = 500 µm. D. Aliella iminouakensis (Sáez 6182, Sáez pers. herb.), scale bar = 20 µm. (E–F). Achene and eglandular, filiform twin hairs. E. Aliella iminouakensis (Sáez 6182, Sáez pers. herb.), scale bar = 500 µm. F. Achene surface and eglandular, filiform twin hairs. Aliella platyphylla (Fernández Casas 3329, MA), scale bar = 100 µm. (G–H). Eglandular hair, hair type "B" of Drury & Watson (1966). G. Phagnalon schweinfurthii (Hedge et al. W7790, E), scale bar = 100 µm. H. Phagnalon acuminatum (Bowes Lyon 631, E).
FIGURES 3–9 in Evaluation of the taxonomic status of the genus Aliella (Compositae, Gnaphalieae): a recircumscription of the genus Phagnalon
FIGURES 3–9. Box plots representing the variability of diagnostic characters of Aliella. Fig. 3. Number of bracts on the peduncle. Fig. 4. Ratio of length of the bracts on the peduncle/Length of the middle bracts. Fig. 5. Female corolla width. Fig. 6. Length of sterile appendages of anthers. Fig. 7. Ratio length of cilia/bristle width of the base of the bristle. Fig. 8. Ratio length of cilia/bristle width of the middle of the bristle. Fig. 9. Ratio length of cilia/bristle width of the apex of the bristle.
FIGURE 2 in Taxonomic status of Euzonitis haroldi (Heyden, 1870) (Coleoptera: Meloidae) inferred from morphological and molecular data
FIGURE 2. Elytral patterns in Euzonitis quadrimaculata. Pattern B corresponds to E. haroldi phenotype. Frequency of each pattern in the Iberian Peninsula (n = 195): a: 0 %; b: 7.7 %; c: 0.5 %; d: 1.5 %; e: 62.6 %; f: 0.5 %; g: 0.5%; h: 3.1 %; i: 7.7 %; j: 7.7 %; k: 3.1 %; l: 5.1 %. Frequency of each pattern in Morocco (n = 22): a: 86.4 %; e: 9.1 %; l: 4.5 %.
FIGURE 1 in Taxonomic status of Euzonitis haroldi (Heyden, 1870) (Coleoptera: Meloidae) inferred from morphological and molecular data
FIGURE 1. Habitus of Euzonitis quadrimaculata (Torrelaguna, Madrid, Spain). a: E. haroldi phenotype. b: Typical phenotype.
FIGURE 3 in Taxonomic status of Euzonitis haroldi (Heyden, 1870) (Coleoptera: Meloidae) inferred from morphological and molecular data
FIGURE 3. Male genitalia of E. quadrimaculata (Torrelaguna, Madrid, Spain): a: tegmen, lateral view; b: tegmen, dorsal view; c: tegmen, ventral view; d: median lobe, lateral view; e: median lobe, ventral view; f: median lobe, dorsal view. Scale bar = 0.5 mm (J. L. Ruiz del.).
Figure 3 in An integrative approach to the nomenclature and taxonomic status of the genus Blanus Wagler, 1830 (Squamata: Blanidae) from the Iberian Peninsula
Figure 3. Proposed lectotype of Amphisbaena cinerea (Vandelli, 1797) and corresponding labels, currently present in the collections of the ANSP (ANSP 9672). Photo by Luis M. P. Ceríaco.
Figure 2 in An integrative approach to the nomenclature and taxonomic status of the genus Blanus Wagler, 1830 (Squamata: Blanidae) from the Iberian Peninsula
Figure 2. Map of the currently known distribution of the two lineages of Iberian Blanus. In red are the specimens of the Central Iberian Clade and in blue those of the Southwestern Iberian clade. A: Lisbon area, type locality of Amphisbaena cinerea; B: Loulé, type locality of Blanus mariae; C: Carvoeiro, type locality of Blanus vandellii sp. nov.
Figure 6 in An integrative approach to the nomenclature and taxonomic status of the genus Blanus Wagler, 1830 (Squamata: Blanidae) from the Iberian Peninsula
Figure 6. Neotype of Amphisbaena cinerea Vandelli, 1797 (MUHNAC/MB03-000375). Photo by Luis M. P. Ceríaco.
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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)
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.