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422 results for “species rediscovery”
FIGURES 1–3 in Paraneseuthia Franz of Japan: two new species and rediscovery of the enigmatic P. holzneri Franz (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 1–3. Dorsal habitus of males. Paraneseuthia ishigakiana sp. n. (1); P. ehimensis sp. n. (2), P. holzneri (Franz) (3).
FIGURES 10–17 in Paraneseuthia Franz of Japan: two new species and rediscovery of the enigmatic P. holzneri Franz (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 10–17. Aedeagus in ventral (10, 12, 14, 16) and lateral (11, 13, 15, 17) views. Paraneseuthia ishigakiana sp. n. (10–11); P. ehimensis sp. n. (extreme forms of variability among studied specimens, 12–15), P. holzneri (Franz) (16–17).
PLATE 5 in Amblyseiinae of New Zealand (Acari: Phytoseiidae): redescriptions, rediscoveries new records, new combinations and keys to species
PLATE 5. Proprioseiopsis lenis (female holotype). A. idiosoma (dorsal view); B. idiosoma (ventral view). C. Chelicerae. D. spermatheca; E. Ventrianal shield.
FIGURE 7 in Amblyseiinae of New Zealand (Acari: Phytoseiidae): redescriptions, rediscoveries new records, new combinations and keys to species
FIGURE 7. Proprioseiopsis lenis (female). A. dorsal idiosoma; B. ventral idiosoma; C. insemination apparatus. D. chelicera.
PLATE 4 in Amblyseiinae of New Zealand (Acari: Phytoseiidae): redescriptions, rediscoveries new records, new combinations and keys to species
PLATE 4. Phytoscutus acaridophagus (male). A. dorsal view of idiosoma; B. ventral view of idiosoma; C. spermathecal.
FIGURE 3 in Amblyseiinae of New Zealand (Acari: Phytoseiidae): redescriptions, rediscoveries new records, new combinations and keys to species
FIGURE 3. Amblyseius lentiginosus (female paratype; Australia). A. dorsal idiosoma; B. ventral idiosoma; C. chelicerae.
PLATE 2 in Amblyseiinae of New Zealand (Acari: Phytoseiidae): redescriptions, rediscoveries new records, new combinations and keys to species
PLATE 2. Amblyseius lentiginosus (paratype female). A. idiosoma (dorsal view); B. idiosoma (ventral view). C. Chelicera. D. spermatheca; E. Ventrianal shield.
FIGURE 1 in Amblyseiinae of New Zealand (Acari: Phytoseiidae): redescriptions, rediscoveries new records, new combinations and keys to species
FIGURE 1. Amblyseius lentiginosus (female). A. dorsal idiosoma; B. ventral idiosoma; C. chelicera; D. insemination apparatus.
PLATE 3 in Amblyseiinae of New Zealand (Acari: Phytoseiidae): redescriptions, rediscoveries new records, new combinations and keys to species
PLATE 3. Phytoscutus acaridophagus (female). A. dorsal view of idiosoma; B. ventral view of idiosoma; C. spermatheca; D. leg IV.
FIGURE 9 in Rediscovery of Youngia longipes reveals a new species of Youngia (Asteraceae) in China
FIGURE 9. Bayesian consensus tree of Youngia wulingensis and related species. The BP tree is constructed, based on the combined matrix of ITS and rps16 sequences. Numbers below branches are ML bootstraps and above branches indicate Bayesian posterior probability. Youngia wulingensis is shown in bold.
FIGURE 4. Youngia wulingensis T.Deng, D.G in Rediscovery of Youngia longipes reveals a new species of Youngia (Asteraceae) in China
FIGURE 4. Youngia wulingensis T.Deng, D.G.Zhang & Qun Liu and related species. 1. Basal leaves of Y. wulingensis; 2. Cauline leaves of Y. wulingensis; 3. Stems with curly hairs; 4. Inflorescences; 5–7. Involucre; 8. Seeds; 9. Basal leaves of Y. longipes; 10. Cauline leaves of Y. longipes (drawing by Wenqi He).
FIGURE 6 in Rediscovery of Youngia longipes reveals a new species of Youngia (Asteraceae) in China
FIGURE 6. Selected specimens of Youngia longipes. A. Type (K000808279); B. PE(01691155); C–D. Daigui Zhang JY1.
FIGURE 3. Youngia wulingensis T.Deng, D.G in Rediscovery of Youngia longipes reveals a new species of Youngia (Asteraceae) in China
FIGURE 3. Youngia wulingensis T.Deng, D.G.Zhang & Qun Liu and similar species. b1. Cauline leaves of Y. wulingensis (from HAC- D2); b2. Cauline leaves of Y. longipes (from SN); b3. Cauline leaves of Y. zhengyiana; b4. Basal leaves of Y. wulingensis; b5. Basal leaves of Y. longipes (from SN); b6. Basal leaves of Y. zhengyiana.
FIGURE 2. Youngia wulingensis T.Deng, D.G.Zhang & Qun Liu. a1–a3 in Rediscovery of Youngia longipes reveals a new species of Youngia (Asteraceae) in China
FIGURE 2. Youngia wulingensis T.Deng, D.G.Zhang & Qun Liu. a1–a3. Capitula; b1–b3. Involucre; c1–c2. Achene; d1–d4. Basal leaves (from HAC-D2, photos by Qun Liu).
FIGURE 7 in Rediscovery of Youngia longipes reveals a new species of Youngia (Asteraceae) in China
FIGURE 7. Selected specimens of Youngia wulingensis (previously misidentified as Y. longipes). A. Hui Zhou & Dasong Zhou 1035711 (CSF); B. LS-2111 (CSH); C. Kaidong Lei 4331271407210609 (JIU); D. Daigui Zhang 170714015 (JIU).
FIGURE 2 in Revision of the genus Costularia (Cyperaceae: Schoeneae) for the flora of the Seychelles, including the rediscovery and resurrection of a rare endemic species
FIGURE 2. Distribution maps on the island of Mahé (Seychelles) for Costularia hornei (A) and Costularia xipholepis (B), showing also the distribution of their respective habitats (based on Senterre & Wagner 2014).
FIGURE 1 in Revision of the genus Costularia (Cyperaceae: Schoeneae) for the flora of the Seychelles, including the rediscovery and resurrection of a rare endemic species
FIGURE 1. Costularia xipholepis (all photos by B. Senterre, mostly on the living population at Copolia: B. Senterre & E. Henriette 7101). A. Part of a clump showing many stems branching from one original plant; B. Closer view showing stem branching and distichous basal leaves; C. Basal leaf-sheath; D. Cauline leaf-sheath; E. Dissected stem (after removing the basal dead leaves) showing the insertion of the inflorescence below the green basal leaves; F. Developing nutlet; G. Fully ripe nutlet (seen only in B. Senterre & E. Henriette 7117) showing basal stipe and hairy beak; H. Mature stamens in flowering spikelets (seen only in B. Senterre 6589); I. Maturing spikelets showing persistent rachilla and deciduous glumes; J. Dissected spikelet showing the male flower below the terminal hermaphrodite flower still partly in its glume.
FIGURE 6 in A new species of Boesenbergia and rediscovery of B. rotunda (Zingiberaceae) from India
FIGURE 6. Comparison of anatomy of various parts and pollen grains of Boesenbergia meghalayensis (A, C, E, G, I, K, M, O & Q) and B. rotunda (B, D, F, H, J, L, N, P & R). A & B. T.S of midrib (towards base). C & D. T.S of midrib (towards tip). E & F. Lamina. G & H. Margin. I & J. Sheath. K & L. Petiole. M & N. Petiole margin. O & P. Epidermal peeling (abaxial surface) and Q & R. Pollen. (Inset in A. Oil cell in B. meghalayansis. M & N. Petiole margins- portion enlarged).
FIGURE 5 in A new species of Boesenbergia and rediscovery of B. rotunda (Zingiberaceae) from India
FIGURE 5. UPGMA tree using ITS gene sequences of Boesenbergia species in India (Bootstrap percentage indicated on side).
FIGURE 4 in A new species of Boesenbergia and rediscovery of B. rotunda (Zingiberaceae) from India
FIGURE 4. UPGMA tree using matK gene sequences of Boesenbergia species in India (Bootstrap percentage indicated on side).
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)
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.