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Figs. 3–4. Colydiinae anatomy. 3 in Colydiine Genera (Coleoptera: Zopheridae: Colydiinae) of the New World: A Key and Nomenclatural Acts 30 Years in the Making
Figs. 3–4. Colydiinae anatomy. 3) Prothoraces, ventral view, illustrating procoxal cavity closure (external). a) Broadly open (Holopleuridia sp.), b) Narrowly open (Monoedus sp.), c) Moderately closed (Lasconotus sp.), d) Narrowly closed (Lobogestoria sp.), e) Broadly closed (Nematidium sp.); 4) Abdomina, ventral view. a) Intercoxal process acute, ventrites free, sutures flat, ventrite V with subapical groove, b) Intercoxal process broadly rounded, ventrites I–III connate, c) Intercoxal process truncate, ventrites free, sutures deeply impressed.
FIGURE 6 in Nomenclatural types of Hieracium (Asteraceae) species described from the Balearic Islands (Spain) and several related taxa
FIGURE 6. Lectotype of Hieracium microscapum Arv.-Touv. in GRM (code MHNGr.1914.44032).—Image by courtesy of the Muséum d'Histoire Naturelle de Grenoble (Herbarium GRM), reproduced with permission.
FIGURE 5 in Nomenclatural types of Hieracium (Asteraceae) species described from the Balearic Islands (Spain) and several related taxa
FIGURE 5. Lectotype of Hieracium majoricanum Arv.-Touv. in GRM.—Image by courtesy of the Muséum d'Histoire Naturelle de Grenoble (Herbarium GRM), reproduced with permission.
FIGURE 4 in Nomenclatural types of Hieracium (Asteraceae) species described from the Balearic Islands (Spain) and several related taxa
FIGURE 4. Isolectotype of Hieracium cataractarum Arv.-Touv. & Huter in BM (barcode BM001050678).—Image by courtesy of The Natural History Museum, London (Herbarium BM), reproduced with permission.
FIGURE 3 in Nomenclatural types of Hieracium (Asteraceae) species described from the Balearic Islands (Spain) and several related taxa
FIGURE 3. Lectotype of Hieracium elisaeanum Arv.-Touv. ex Willk. in P (barcode P03686242) and capitula details of the specimen.— Image by courtesy of the Muséum National d'Histoire Naturelle (Herbarium P), reproduced with permission
FIGURE 2 in Nomenclatural types of Hieracium (Asteraceae) species described from the Balearic Islands (Spain) and several related taxa
FIGURE 2. Lectotype of Hieracium balearicum Arv.-Touv. in GRM (code MHNGr.1914.45564).—Image by courtesy of the Muséum d'Histoire Naturelle de Grenoble (Herbarium GRM), reproduced with permission.
FIGURE 1 in Nomenclatural types of Hieracium (Asteraceae) species described from the Balearic Islands (Spain) and several related taxa
FIGURE 1. Lectotype of Hieracium aragonense Scheele in COI (barcode COI00041604).—Image by courtesy of the University of Coimbra (Herbarium COI), reproduced with permission.
FIGURE 4 in Critical review of the nomenclature and taxonomy of Sorghastrum canescens (Poaceae: Panicoideae: Andropogoneae), an endemic Brazilian species
FIGURE 4. Scanning electron microscopy of Sorghastrum canescens (G. Eiten & L. Eiten 4414, UB). A. Detail of the pilose region of the awn. B. Spikelet. C. Lemma surface.
FIGURE 2 in Critical review of the nomenclature and taxonomy of Sorghastrum canescens (Poaceae: Panicoideae: Andropogoneae), an endemic Brazilian species
FIGURE 2. Geographic distribution of Sorghastrum canescens, S. incompletum var. incompletum, and Sorghastrum incompletum var. bipennatum.
FIGURE 1 in Critical review of the nomenclature and taxonomy of Sorghastrum canescens (Poaceae: Panicoideae: Andropogoneae), an endemic Brazilian species
FIGURE 1. Variation of the four characters used to test the delimitation of Sorghastrum canescens based on measures taken from herbarium samples. Differences in the median values have statistical significance for every character according to the Kruskal-Wallis test (p = 0.01 for spikelet length; p = 0.02 for spikelet width; p <0.01 for awn length; p <0.01 for awn/spikelet length proportion).
FIGURE 3. Sorghastrum canescens. A. Habit. B in Critical review of the nomenclature and taxonomy of Sorghastrum canescens (Poaceae: Panicoideae: Andropogoneae), an endemic Brazilian species
FIGURE 3. Sorghastrum canescens. A. Habit. B. Apex of the leaf sheath with auricles, ligular region, and base of the leaf blade. C. Spikelet and awn. D. Spikelet, lower glume view. E. Spikelet, upper glume view. F. Upper glume, ventral view. G. Lower glume, ventral view. H. Base of the awn. I. Detail of the twisted region of the awn. J. Anthers. Drawn from G. Eiten & L. Eiten 4414 (UB).
FIGURE 4 in Taxonomic and nomenclatural notes on Jacobaea othonnae (Asteraceae- Senecioneae-Senecioninae)
FIGURE 4. Detail of the inflorescence: A. Jacobaea othonnae subsp. adamsii; B. Jacobaea othonnae subsp. anomala.
FIGURE 5. A in A revision of the Malagasy Kalanchoe subg. Kitchingia (Crassulaceae subfam. Kalanchooideae): history, taxonomy, and nomenclature
FIGURE 5. A. Kalanchoe 'Tessa' has a predominantly epiphytic growth habit. Most plant parts, including the inflorescence and flowers, are covered with a slight pubescence. B. The cultivar has medially unconstricted, sparsely pubescent flowers with divergent styles that are adpressed to the corolla tube. C. Leaf morphology of Kalanchoe 'Tessa'. Photographs: Ronen Shtein.
FIGURE 3 in A revision of the Malagasy Kalanchoe subg. Kitchingia (Crassulaceae subfam. Kalanchooideae): history, taxonomy, and nomenclature
FIGURE 3. Known natural geographical distribution ranges of Kalanchoe gracilipes, Kalanchoe peltata, and their varieties upheld in this study.
FIGURE 1. A in A revision of the Malagasy Kalanchoe subg. Kitchingia (Crassulaceae subfam. Kalanchooideae): history, taxonomy, and nomenclature
FIGURE 1. A. Epiphytic, vegetative growth of Kalanchoe gracilipes var. gracilipes in the Ankaratra mountain range, central Madagascar. B. Flowering specimen of Kalanchoe gracilipes var. gracilipes in primary forest relicts near Ambositra, central Madagascar. C and D. Comparison between the isolectotype of the name Kalanchoe gracilipes var. gracilipes, P-P00374109 (C) and the lectotype of the name Kalanchoe gracilipes var. microphylla, P-P00431005 (D), both to scale. Photos: A. Nadia Raheliarisoa; B. Norbert Rebmann; C, D. Material held in the Muséum national d'Histoire naturelle, Paris, France, Collection: Vascular plants (Herb. P).
FIGURE 5 in Novitates neocaledonicae. XIII. Taxonomy and nomenclature of the genus Xyris (Xyridaceae, Poales) in New Caledonia, with description of a new species
FIGURE 5.—Comparison between flowers of the three species of Xyris of New Caledonia. A X. desquamatus (same population as Gâteblé et al. 1070 & 1071) B X. pancheri (Gâteblé 999) C X. neocaledonica (Munzinger et al. 7689). Photos by Gildas Gâteblé (A–B) and Jérôme Munzinger (C).
FIGURE 4 in Novitates neocaledonicae. XIII. Taxonomy and nomenclature of the genus Xyris (Xyridaceae, Poales) in New Caledonia, with description of a new species
FIGURE 4.—Distribution of Xyris on Grande Terre, New Caledonia based on herbarium specimens. X. desquamatus (black dots, type specimen indicated with a "T"), X. neocaledonica (black crosses), X. pancheri (dark grey squares with a black dot).
FIGURE 1.—Xyris desquamatus J.R in Novitates neocaledonicae. XIII. Taxonomy and nomenclature of the genus Xyris (Xyridaceae, Poales) in New Caledonia, with description of a new species
FIGURE 1.—Xyris desquamatus J.R.Morel & Munzinger, A Habit (MacKee 5056, holotype [P01760130]) B Leaf tip with details of the surface (Balansa 665) C Fertile bract, dorsal view (Dagostini & Rigault 544) D Sepal (MacKee 42273) E Spike (Based on a picture in the field of the collection Gâteblé et al. 1070) F Flower (Dagostini & Rigault 544) G Gynoecium (Dagostini & Rigault 544) H Petal and stamen (Dagostini & Rigault 544) I Seed (Dagostini & Rigault 544). Drawings by Jérémie Morel.
FIGURE 3 in Novitates neocaledonicae. XIII. Taxonomy and nomenclature of the genus Xyris (Xyridaceae, Poales) in New Caledonia, with description of a new species
FIGURE 3.—Comparison of anatomical characters of the three species of Xyris of New Caledonia. Transversal cross sections of leaves (A– C, scale bars = 1000 μm), epidermis with cortical parenchyma (B1) and epidermis with palisade parenchyma (C1), medullary parenchyma (B2 & C2), cortical parenchyma (B3) and cortical collenchyma (C3), scale bars = 20 μm. A Xyris neocaledonica [NOU046858] B Xyris pancheri [P01766981] C Xyris desquamatus [P01766983] B1 X. pancheri [NOU04838] B2 X. pancheri [P01767050] B3 X. pancheri [NOU021191] C1 X. desquamatus [NOU046832] C2 X. desquamatus [P01760139] C3 X. desquamatus [P01766983].
FIGURE 2.—Xyris desquamatus A in Novitates neocaledonicae. XIII. Taxonomy and nomenclature of the genus Xyris (Xyridaceae, Poales) in New Caledonia, with description of a new species
FIGURE 2.—Xyris desquamatus A Habit in situ B Spike C Spike with a flower in lateral view D Junciform leaves E Focus on junciform (red arrow) and desquamating leaves (red and white arrow). (Same population as Gâteblé et al. 1070 & 1071). Photos by Gildas Gâteblé (A–E).
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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.