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.
1,347
datasets available to search
ShareScore release 0.9.0
Dataset results
1,347 results for “84”
Fig. 84 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 84. Dorsal views of adult skulls representing three species of Bunomys. Left to right: Bunomys fratrorum (USNM 217650, Temboan, northeastern peninsula), B. karokophilus (AMNH 225038, holotype, Sungai Sadaunta, west-central mountain block), and B. andrewsi (AMNH 225652, Kuala Navusu, central Sulawesi). ×2.
Figs. 78–85. Simlops similis, male. 78. Cephalothorax, dorsal view. 79. Same, anterior view. 80. Same, ventral view. 81. Lateral view. 82. Abdomen, ventral view. 83. Left palp, prolateral view. 84. Same, dorsal view. 85 in Simlops, A New Genus Of Goblin Spiders (Araneae: Oonopidae) From Northern South America
Figs. 78–85. Simlops similis, male. 78. Cephalothorax, dorsal view. 79. Same, anterior view. 80. Same, ventral view. 81. Lateral view. 82. Abdomen, ventral view. 83. Left palp, prolateral view. 84. Same, dorsal view. 85. Same, retrolateral view.
Fig. 84 in The Mammals Of Paracou, French Guiana: A Neotropical Lowland Rainforest Fauna Part 2. Nonvolant Species
Fig. 84. Results of groundlevel (conventional) trapping with Victor rat traps and Sherman live traps at Paracou, where 124 identifiable captures of 16 species of marsupials and rodents were obtained with 5960 trapnights of effort using this equipment in 1991 and 1992. Note the abrupt change of slope for cumulative captures after about 2600 trapnights in the upper graph.
Figs. 84–90. Wugigarra wiri, n. gen., n in The Pholcids Of Australia (Araneae; Pholcidae): Taxonomy, Biogeography, And Relationships
Figs. 84–90. Wugigarra wiri, n. gen., n. sp. 84. Left cymbium and procursus, retrolateral view. 85, 86. Tip of left procursus, prolateral (slightly dorsal) (85) and dorsal (86) views. 87, 88. Left genital bulb, retrolaterodorsal (87) and retrolateral (88) views; unshafted arrow: wormshaped process; shafted arrow: sperm duct opening. 89, 90. Epigynum, ventral (89) and dorsal (90) views. Scale lines: 0.3 mm (84, 87–90), 0.2 mm (85, 86).
Figs. 84–88. Nepaliodes solangelae. 84. Aedeagus, ventral. 85. Sternites V and VI, male. 86. Aedaegus, lateral. 87. Sternite VII, male. 88 in Revision of the Asian Tribe Megarthropsini (Coleoptera: Staphylinidae: Tachyporinae)
Figs. 84–88. Nepaliodes solangelae. 84. Aedeagus, ventral. 85. Sternites V and VI, male. 86. Aedaegus, lateral. 87. Sternite VII, male. 88. Sternum VIII, male.
FIGURES 83–91. Wroughtonia similis holotype, female. 83. Head, dorsal. 84. Head, frontal. 85. Head, lateral. 86. Mesoscutum. 87. Mesopleuron. 88. Hind femur, lateral. 89. Propodeum. 90. Metasomal tergites 1 in Review of the genus Wroughtonia Cameron, 1899 (Hymenoptera, Braconidae, Helconinae), with the description of 12 new species from Vietnam
FIGURES 83–91. Wroughtonia similis holotype, female. 83. Head, dorsal. 84. Head, frontal. 85. Head, lateral. 86. Mesoscutum. 87. Mesopleuron. 88. Hind femur, lateral. 89. Propodeum. 90. Metasomal tergites 1+2+3. 91. Forewing.
FIGS. 77–84 in Implications of the tympanal hearing organ and ultrastructure of chaetotaxy for the higher classification of Embioptera
FIGS. 77–84. Chaetotaxy and middle bladder: 77, slender hook of Oligotoma saundersi (Oligotomidae); 78, slender hook of Archembia lacombea (Archembiidae); 79, middle bladder with sculpture on Archembia lacombea (Archembiidae); 80, middle bladder with few microtrichia of Gibocercus chaco (Archembiidae); 81, middle bladder without sculpture or michrotrichia Pachylembia unicincta (Archembiidae); 82, small middle bladder with microtrichia Pararhagadochir trachelia (Archembiidae); 83, mechanoreceptor on middle bladder Antipaluria urichi (Clothodidae); 84, detail of mechanoreceptor (circle in fig. 83) on middle bladder of Antipaluria urichi (Clothodidae).
Figs. 81–84. Meedo booti, new species. 81. Left male palp, ventral view. 82. Same, retrolateral view. 83. Epigynum, ventral view. 84 in A Revision Of The Australasian Ground Spiders Of The Families Ammoxenidae, Cithaeronidae, Gallieniellidae, And Trochanteriidae (Araneae: Gnaphosoidea)
Figs. 81–84. Meedo booti, new species. 81. Left male palp, ventral view. 82. Same, retrolateral view. 83. Epigynum, ventral view. 84. Same, dorsal view.
FIG. 84 in Sicyonia (Crustacea, Decapoda, Penaeoidea, Sicyoniidae) de l'Indo-ouest Pacifique
FIG. 84. — Sicyonia trispinosa de Man, 1907, 4,7 mm, holotype, Indonésie, île Paternoster, Siboga, stn 37, 27 m (ZMA), pétasma, partie distale de la face ventrale.
FIG. 84 in Ascidians from the tropical western Pacific
FIG. 84. — Phallusia philippinensis Millar, 1975; A, left side of the body; B, internal side of the gut loop; C, right side of the body; D, dorsal tubercle. Scale bars: A-C, 1 cm; D, 0.5 mm.
Figs. 82–86. Titiotus costa, new species. 82. Left male palp, prolateral view. 83. Same, ventral view. 84. Same, retrolateral view. 85. Epigynum, ventral view. 86 in A Revision of the Endemic Californian Spider Genus Titiotus Simon (Araneae, Tengellidae)
Figs. 82–86. Titiotus costa, new species. 82. Left male palp, prolateral view. 83. Same, ventral view. 84. Same, retrolateral view. 85. Epigynum, ventral view. 86. Same, dorsal view.
Figs. 83–87. Zorocrates potosi, new species. 83. Left male palp, prolateral view. 84 in A Revision of the Spider Genus Zorocrates Simon (Araneae, Zorocratidae)
Figs. 83–87. Zorocrates potosi, new species. 83. Left male palp, prolateral view. 84. Same, ventral view.
FIGURE 84 in Systematic Revision Of The Asian Forest Scorpions (Heterometrinae Simon, 1879), Revised Suprageneric Classification Of Scorpionidae Latreille, 1802, And Revalidation Of Rugodentidae Bastawade Et Al., 2005
FIGURE 84. Chersonesometrus beccaloniae (Kovařík, 2004), comb. nov., habitus: A, C. dorsal and B, D. ventral aspects. A, B. ♂ (ZMH), Ootacalum, India. C, D. ♀ (AMNH), Yelagiri Hills, India. Scale bars = 10 mm.
Figs. 74–84 in The Malagasy Goblin Spiders Of The New Genus Malagiella (Araneae, Oonopidae)
Figs. 74–84. Malagiella ranomafana, new species, tarsal claws. 74. Male (PBI_OON 01999), claw I, apicolateral view. 75. Same, claw II. 76. Same, apical view. 77. Same, claw III, retrolateral view. 78. Same, claw IV, dorsal view. 79. Female (PBI_OON 03227), claw I, prolateral view. 80. Same, apical view. 81. Same, claw II, apicolateral view. 82. Same, claw III, prolateral view. 83. Same, claw IV, prolateral view. 84. Same, dorsal view. Arrows show clawlike setae and dashes show the enlarged inner tooth in the female. Scale bars are 10 um.
FIGURE 84 in Taxonomic Revision Of The Jumping Goblin Spiders Of The Genus Orchestina Simon, 1882, In The Americas (Araneae: Oonopidae)
FIGURE 84. Orchestina waorani, SEM of male right palp. A. Prolateral view. B. Cymbium, dorsal view. C. Detail of embolus and apophyses, prolateral view (flopped). D. Same, retrolateral view (flopped). Scale bars: A. 100 μm. B, C. 20 μm. D. 50 μm. (PBI_OON 37128).
Figs. 77–84 in The Goblin Spider Genus Brignolia (Araneae, Oonopidae)
Figs. 77–84. Brignolia parumpunctata (Simon), female. 77. Tarsal organ from leg I, dorsal view. 78. Same, leg II. 79. Same, leg III. 80. Same, leg IV. 81. Claws of leg I, lateral view. 82. Claws of leg II, apical view. 83. Claws of leg III, oblique lateral view. 84. Claws of leg IV, distal view.
Fig. 84 in The New World Goblin Spiders Of The New Genus Neotrops (Araneae: Oonopidae), Part 1
Fig. 84. Neotrops silvae, new species, male PBI_OON 43316. A. Habitus, anterior view. B–D. Palp. B. Dorsal view. C. Prolateral view. D. Retrolateral view.
Fig. 84. Coxapopha diblemma Platnick, male. A. Tibia IV in The Goblin Spider Genus Zyngoonops (Araneae, Oonopidae), With Notes On Related Taxa
Fig. 84. Coxapopha diblemma Platnick, male. A. Tibia IV, ventral view. Arrow: group of specialized setae. B. Detail of A, showing group of specialized setae. C. Coxa IV, lateral view, showing hand-shaped apophysis. D. Hand-shaped apophysis, peg setae, lateral view. E. Pedipalp, prolateral view. F. Same, retrolateral view. Scale bars: 5 Mm (D), 10 Mm (B), 50 Mm (A, C, E, F).
Figs. 74–84 in The Goblin Spider Genera Prodysderina, Aschnaoonops, And Bidysderina (Araneae, Oonopidae)
Figs. 74–84. Prodysderina megarmata, new species, male (74, 77–82) and female (75, 76, 83, 84). 74. Sternum and mouthparts, ventral view. 75. Abdomen, ventral view. 76, 83. Genitalia, ventral view. 77. Left palp, prolateral view. 78. Same, ventral view. 79. Same, retrolateral view. 80. Left embolus, prolateral view. 81. Same, ventral view. 82. Same, retrolateral view. 84. Genitalia, dorsal view.
Figure 84. CASIZ 072185. A in A taxonomic revision of Paradoris sea slugs (Mollusca, Gastropoda, Nudibranchia, Doridina)
Figure 84. CASIZ 072185. A, dorsal notum, scale = 20 µm. B, dorsal notum, scale = 20 µm. C, rhinophoral lamellae, scale = 10 µm. D, lateral jaw, scale = 20 µm. E, jaw rodlets, scale = 20 µm. F, left radular rows, scale = 10 µm. G, right radular rows, scale = 20 µm.
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.