Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
718
datasets available to search
ShareScore release 0.9.0
Dataset results
718 results for “1874”
Fig. 3 in NC-Clustering demonstrates heterospecificity of the cryptic ant species Temnothorax luteus (FOREL, 1874) and T. racovitzai (BONDROIT, 1918) (Hymenoptera: Formicidae)
Fig. 3: Head of Temnothorax luteus (FOREL, Fig. 5: Head of lectotype of Temnothorax racovitzai (BONDROIT, 1918).
Fig. 1 in NC-Clustering demonstrates heterospecificity of the cryptic ant species Temnothorax luteus (FOREL, 1874) and T. racovitzai (BONDROIT, 1918) (Hymenoptera: Formicidae)
Fig. 1: NC-Ward clustering of 64 worker nest samples of Temnothorax luteus (FOREL, 1874) and T. racovitzai (BONDROIT, 1918) considering 18 unselected morphometric characters. Arrows point to three nest samples of T. luteus erroneously placed in the T. racovitzai cluster.
Fig. 2 in NC-Clustering demonstrates heterospecificity of the cryptic ant species Temnothorax luteus (FOREL, 1874) and T. racovitzai (BONDROIT, 1918) (Hymenoptera: Formicidae)
Fig. 2: NC-Ward clustering of 64 worker nest samples of Temnothorax luteus (FOREL, 1874) and T. racovitzai (BONDROIT, 1918) considering 7 selected morphometric characters.
Fig. 4. 2B in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 4. 2B-PLS analysis of T. septentrionis. (A) Forewing size; (B) Forewing shape; (C) Hindwing size; and (D) Hindwing shape.
Fig. 7 in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 7. Forewing shape analysis. Mlp female (A) % of variance, (B) PC1, (C) PC2, (D) PC3. Mlp male (E) % of variance, (F) PC1, (G) PC2, (H) PC3. Wyn female (I) % of variance, (J) PC1, (K) PC2, (L) PC3. Wyn male (M) % of variance, (N) PC1, (O) PC2, (P) PC3.
Fig. 10 in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 10. FE-SEM image analysis of T. septentrionis. Forewing brown regions (A–F), and bluish-white regions (G–J) of T. septentrionis. Hindwing brown regions (K–Q), and bluish-white regions (R–T). FE-SEM image of the male pouch scale of T. septentrionis (U–X). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 1. T in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 1. T. septentrionis forewing (A) with 25 landmarks; hindwing (B) with 18 landmarks. male pouch represented in white circle.
Fig. 9 in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 9. Morphospace analysis. (A) forewing PCs morphospace analysis, PC1 vs. PC2; (B) forewing CVs morphospace analysis; (C) hindwing PCs morphospace analysis, PC1 vs. PC2; (D) hindwing CVs morphospace analysis. Alphabet code used in image – first three letter code indicated as the collection site and fourth letter for sex (male or female). For eg: MlpF – Malappuram female.
Fig. 6 in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 6. Sexual wing asymmetry (male vs. female) of T. septentrionis wings validated by Discriminant function analysis (DFA). Forewing of T. septentrionis (A–D) and hindwing of T. septentrionis (E–H). Alphabet code used in image – first three letter code indicated as the collection site and fourth letter for sex (male or female). For eg: MlpF – Malappuram female.
Fig. 8 in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 8. Hindwing shape analysis. Mlp female (A) % of variance, (B) PC1, (C) PC2, (D) PC3. Mlp male (E) % of variance, (F) PC1, (G) PC2, (H) PC3. Wyn female (I) % of variance, (J) PC1, (K) PC2, (L) PC3. Wyn male (M) % of variance, (N) PC1, (O) PC2, (P) PC3.
Fig. 5 in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 5. Wing asymmetry (right or left) of T. septentrionis wings validated by Discriminant function analysis (DFA). Forewing of T. septentrionis (A–D) and hindwing of T. septentrionis (E–H). Alphabet code used in image – first three letter code indicated as the collection site and fourth letter for sex (male or female), fifth letter for wing side (right or left). For eg: MlpFR – Malappuram female right.
Fig. 2. 30 in High and lowland dependent wing phenotypic variation of the dark blue tiger butterfly, Tirumala septentrionis (Butler, 1874) (Lepidoptera: Nymphalidae) with FE-SEM wing scales nanomorphology
Fig. 2. 30 years mean climate data (A) Mlp region mean temperature, and precipitation; (B) Mean temperature of Mlp; (C) Wyn region mean temperature, and precipitation; (B) Mean temperature of Wyn.
FIGURE 1. Atlantor reinii, BMNH 1901.7.26.2-3, 1, 146 in Atlantor, a new generic name for Barbus reinii Günther, 1874 from Morocco (Teleostei: Cyprinidae)
FIGURE 1. Atlantor reinii, BMNH 1901.7.26.2-3, 1, 146 mm SL; Oued Oum er Rbia, Morocco. Photo: S. Tränkner.
Figure 6. Cheiracanthium insigne O. Pickard-Cambridge 1874 in A survey of cheiracanthiid spiders (Araneae: Cheiracanthiidae) from Hainan Island, China
Figure 6. Cheiracanthium insigne O. Pickard-Cambridge 1874, male and female from Hainan, China. (a) female habitus, dorsal view; (b) male habitus, dorsal view; (c) epigyne, ventral view; (d) vulva, dorsal view; (e) left male palp, prolateral view; (f) same, ventral view; (g) same, retrolateral view.
Subspecies and Distribution. B.s. sumichrasti Saussure, 1860 — Mexico (Veracruz, Oaxaca, Quintana Roo & Campeche). B. s. latrans Davis & Lukens, 1958 — Mexico (Guerrero). B. s. notinus Thomas, 1903 — Costa Rica and Panama. B. s. oaxacensis Goodwin, 1956 — Mexico (Oaxaca). B. s. variabilis Peters, 1874 — S Mexico (Chiapas), Guatemala and Belize to Costa Rica. in Procyonidae
Subspecies and Distribution. B.s. sumichrasti Saussure, 1860 — Mexico (Veracruz, Oaxaca, Quintana Roo & Campeche). B. s. latrans Davis & Lukens, 1958 — Mexico (Guerrero). B. s. notinus Thomas, 1903 — Costa Rica and Panama. B. s. oaxacensis Goodwin, 1956 — Mexico (Oaxaca). B. s. variabilis Peters, 1874 — S Mexico (Chiapas), Guatemala and Belize to Costa Rica.
Subspecies and Distribution. H.b.bruceiGray,1868—Ethiopia. H.b.albipesHollister,1922—Kenya. H.b.bakeriGray,1874—Uganda. H.b.bocageiGray,1869—Angola. H.b.chapiniHatt,1933—DRCongo. H.b.dieseneriBrauer,1917—Tanzania. H.b.fromm:Brauer,1913—Tanzania. H.b.grantiWroughton,1910—SouthAfrica. H.b.hindeiWroughton,1910—Kenya. H.b.hoogstraaliSetzer,1956—Sudan. H.b.kemp:Thomas,1910—Kenya. H.b.lademanniBrauer,1917—Tanzania. H.b.manningiWroughton,1910—Malawi. H.b.mossambicusPeters,1870—Mozambique. H.b.muenzneriBrauer,1913—Tanzania. H.b.princepsThomas,1910—Ethiopia. H.b.prittwitziBrauer,1917—Tanzania. H.b.pumilusThomas,1910—Somaliland. H.b.rudd:Wroughton,1910—Mozambique. H.b.rudolfiThomas,1910—Ethiopia. H.b.somalicusThomas,1892—Somaliland. H.b.ssongeaeBrauer,1917—Tanzania. H.b.thomasiNeumann,1901—Sudan. H. b. victorianjansae Brauer, 1917 — Tanzania. Endemic to Africa from NE Sudan throughout the Horn of Africa, south to Limpopo and Mpumalanga provinces in South Africa, and also isolated populations in Angola. Determining the limits of subspecific distribution is not possible for the moment, but the subspecies and the countries bearing their type localities are included above. in Procaviidae
Subspecies and Distribution. H.b.bruceiGray,1868—Ethiopia. H.b.albipesHollister,1922—Kenya. H.b.bakeriGray,1874—Uganda. H.b.bocageiGray,1869—Angola. H.b.chapiniHatt,1933—DRCongo. H.b.dieseneriBrauer,1917—Tanzania. H.b.fromm:Brauer,1913—Tanzania. H.b.grantiWroughton,1910—SouthAfrica. H.b.hindeiWroughton,1910—Kenya. H.b.hoogstraaliSetzer,1956—Sudan. H.b.kemp:Thomas,1910—Kenya. H.b.lademanniBrauer,1917—Tanzania. H.b.manningiWroughton,1910—Malawi. H.b.mossambicusPeters,1870—Mozambique. H.b.muenzneriBrauer,1913—Tanzania. H.b.princepsThomas,1910—Ethiopia. H.b.prittwitziBrauer,1917—Tanzania. H.b.pumilusThomas,1910—Somaliland. H.b.rudd:Wroughton,1910—Mozambique. H.b.rudolfiThomas,1910—Ethiopia. H.b.somalicusThomas,1892—Somaliland. H.b.ssongeaeBrauer,1917—Tanzania. H.b.thomasiNeumann,1901—Sudan. H. b. victorianjansae Brauer, 1917 — Tanzania. Endemic to Africa from NE Sudan throughout the Horn of Africa, south to Limpopo and Mpumalanga provinces in South Africa, and also isolated populations in Angola. Determining the limits of subspecific distribution is not possible for the moment, but the subspecies and the countries bearing their type localities are included above.
FIGURE 17. Lycaea pulex Marion, 1874. Male, 8.6 in Review of the hyperiidean amphipod family Lycaeidae Claus, 1879 (Crustacea: Amphipoda: Hyperiidea)
FIGURE 17. Lycaea pulex Marion, 1874. Male, 8.6 mm, SAMA C5282. Scale bars = 1.0 mm (habitus); 0.5 mm (A2, G1–P7, Us); 0.2 mm (A1).
FIGURE 16. Lycaea pulex Marion, 1874. Female, 9.1 in Review of the hyperiidean amphipod family Lycaeidae Claus, 1879 (Crustacea: Amphipoda: Hyperiidea)
FIGURE 16. Lycaea pulex Marion, 1874. Female, 9.1 mm, USNM 1242808. Scale bars = 1.0 mm (habitus); 0.5 mm (G1–P7); 0.2 mm (A1).
FIGURE 6. Larinia tumulus n in Two new species in the orb-weaving spider genus Larinia Simon, 1874 (Araneae, Araneidae) from Western Australia
FIGURE 6. Larinia tumulus n. sp. holotype male (WAM T153634) and female (WAM T153635) genitalia. A, Left male pedipalp, dorso-mesal view. B, Left male pedipalp, meso-ventral view. C, Cleared epigynum, dorsal view. D, Epigynum, ventral view. Scale bars: A, B, 0.1 mm; C, D, 0.05 mm.
FIGURE 1. Larinia sexta n in Two new species in the orb-weaving spider genus Larinia Simon, 1874 (Araneae, Araneidae) from Western Australia
FIGURE 1. Larinia sexta n. sp., holotype male (WAM T80638). A, Dorsal habitus. B, Ventral habitus. C, Left pedipalp, dorsomesal view. D, Left pedipalp, meso-ventral view. Scale bars: A, B, 1 mm; C, D, 0.25 mm.
ScienceDex guides
Understand access before you commit
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.