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.
3,205
datasets available to search
ShareScore release 0.9.0
Dataset results
3,205 results for “New tribe”
Fig. 8 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 8. Coccidella globocula (HAMBLETON, 1946) (modified after WILLIAMS & GRANARA DE WILLINK 1992)
Figs 1–5. Anatrichus pygmaeus LAMB, puparium. 1 in Grassflies Of The Tribe Elachipterini (Diptera: Chloropidae) From Vietnam And Thailand, With Description Of A New Species
Figs 1–5. Anatrichus pygmaeus LAMB, puparium. 1 = habitus, ventral view, 2 = anterior end of puparium, ventral view, 3 = posterior part of puparium, ventral view, 4 = anterior stigma, 5 = cephalo-
FIGURE 8 in Inventory of the Carabid Beetle Fauna of the Gaoligong Mountains, western Yunnan Province, China: Species of the Tribe Cyclosomini Laporte, 1934 (Coleoptera: Carabidae), with Descriptions of Two New Species.
FIGURE 8. Male genitalia, Cyclosomus acutangulus Kavanaugh & Cueva-Dabkoski, sp. nov. (CASENT 1012642, Longchuan Jiang at Longjiang Bridge, Wuhe Township, Tengchong County, Yunnan, China). A. Dorsal aspect; B. Left lateral aspect; scale line = 0.5 mm.
FIGURE 5. Left hind tibial medial spur and tarsomere 1, dorsal aspect. A in Inventory of the Carabid Beetle Fauna of the Gaoligong Mountains, western Yunnan Province, China: Species of the Tribe Cyclosomini Laporte, 1934 (Coleoptera: Carabidae), with Descriptions of Two New Species.
FIGURE 5. Left hind tibial medial spur and tarsomere 1, dorsal aspect. A. Cyclosomus acutangulus Kavanaugh & Cueva-Dabkoski, sp. nov. (CASENT 1012643, Longchuan Jiang at Longjiang Bridge, Wuhe Township, Tengchong County, Yunnan, China); B. Tetragonoderus elegans Andrewes (CASENT1039499, Longchuan Jiang just below bridge at Menglian village, Wuhe Township, Tengchong County, Yunnan, China). Scale lines = 0.2 mm.
Figs 33–38. Parahiraciini. 33–34 in New Genus And Species Of The Tribe Parahiraciini (Hemiptera, Fulgoroidea, Issidae) From The Philippines And Vietnam
Figs 33–38. Parahiraciini. 33–34 = Nisoprincessa palawana palawana ssp. n., holotype: 33 = dorsal view, 34 = frontal view. 35 = N. palawana bacuita ssp. n., holotype, lateral view. 36–38 =Brevicopius jianfenglingensis Chen, Zhang et Chang, male: 36–37 = dorsal view, 38 =
Рис. 2. Invetrix bifaria gen. nov., sp. nov.: A, B — генитаΛии самца, общий виΔ снизу и сбоку, C — стернит и тергит 8-го сегмента брюшка, D — пучки анΔрокониаΛьных чешуек на 2-м сегменте брюшка, E — генитаΛии самки Fig. 2. Invetrix bifaria gen. nov., sp. nov.: A, B — male genitalia (ventral view and lateral view), C — sternite and tergite of the 8th segment of the abdomen, D — bundles of androconial scales on the 2nd segment of the abdomen, E — female genitalia in A New Genus Of Gelechiid Moths Of The Tribe Litini (Lepidoptera, Gelechiidae: Gelechiinae) From Malaysia
Рис. 2. Invetrix bifaria gen. nov., sp. nov.: A, B — генитаΛии самца, общий виΔ снизу и сбоку, C — стернит и тергит 8-го сегмента брюшка, D — пучки анΔрокониаΛьных чешуек на 2-м сегменте брюшка, E — генитаΛии самки Fig. 2. Invetrix bifaria gen. nov., sp. nov.: A, B — male genitalia (ventral view and lateral view), C — sternite and tergite of the 8th segment of the abdomen, D — bundles of androconial scales on the 2nd segment of the abdomen, E — female genitalia
Fig. 1 in New data on the biology and chorology of the tribe Gonocerini (Hemiptera: Heteroptera: Coreidae) in the Canary Islands.
Fig. 1.-. Plinachtus imitator (Reuter, 1891). a.-Adult on leaves of Schinus molle. b.- Late instar nymph on leaves of Maytenus canariensis. c.- Early instar nymph on fruits of Maytenus canariensis.
Figure 1 in New genus of the tribe Ceutorhynchini (Coleoptera: Curculionidae) from the late Oligocene of Enspel, southwestern Germany, with a remark on the role of weevils in the ancient food web
Figure 1. Igneonasus rudolphi gen. et sp. nov., holotype PE 2013/5017-LS, habitus, lateral view. Scale bar = 1.0 mm.
Figure 3 in New genus of the tribe Ceutorhynchini (Coleoptera: Curculionidae) from the late Oligocene of Enspel, southwestern Germany, with a remark on the role of weevils in the ancient food web
Figure 3. (a) Cyprinid fish Palaeorutilus enspelensis (Böhme, 1996) with digestive tract filled with weevil elytra, specimen PW 2011/5743- LS a; (b) digestive tract of counterpart specimen enlarged, PW 2011/5743-LS b; (c) coprolite made of small weevil elytra, supposedly produced by Palaeorutilus, specimen PE 2014/5144-LS.
Figure 2 in New genus of the tribe Ceutorhynchini (Coleoptera: Curculionidae) from the late Oligocene of Enspel, southwestern Germany, with a remark on the role of weevils in the ancient food web
Figure 2. Igneonasus rudolphi gen. et sp. nov., holotype PE 2013/5017-LS, contour of body, lateral view. Scale bar = 1.0 mm.
Figure 12 in Contributions to scorpion systematics. II. Stahnkeini, a new tribe in scorpion family Vaejovidae (Scorpiones: Chactoidea)
Figure 12: Basal pectinal teeth of female Serradigitus joshuaensis (top), Borrego Springs, California, and female Serradigitus minutis (bottom), Cabo San Lucas, Baja California Sur, Mexico, showing details of specialized tooth modifications. Note that the basal tooth exhibits all modifications: Laterally symmetric, and for these species, blunted in appearance (i.e., not elongated as exhibited in many Stahnkeini species), smooth, thus completely lacking a sensorial area. The second tooth exhibits partial modifications, slight angling and a reduced sensorial area. Note, though reduced in area, the density of the individual peg sensilla is the same as that found in the normal tooth. Other teeth lack these modifications, showing distal angling and a full-sized sensorial area.
Figure 46 in Contributions to scorpion systematics. II. Stahnkeini, a new tribe in scorpion family Vaejovidae (Scorpiones: Chactoidea)
Figure 46: Reported distribution of tribe Stahnkeini. • = Serradigitus (species identified); O = Stahnkeus (see Map in Fig. 47 for species identifications). Localities based on specimens examined and from the following sources: Stahnke (1940a, 1940b), Gertsch & Allred (1965), Williams (1968, 1970a, 1970b, 1980), Hjelle (1972), Soleglad (1972, 1974), Johnson & Allred (1972), Williams & Berke (1986), Berke (1987, in part) and Sissom & Stockwell (1991).
Figure 1 in Contributions to scorpion systematics. II. Stahnkeini, a new tribe in scorpion family Vaejovidae (Scorpiones: Chactoidea)
Figure 1: Distal half of movable finger, external view, of female Serradigitus g. gertschi, San Diego, California, showing configuration of outer (OD) denticles 1–3 as they relate to MD and inner (ID) denticles 1–4. Typically the only OD denticles discernible in tribe Stahnkeini are 1–3. Distally OD denticles are larger than adjacent MD denticles, but more proximally, the MD denticles, increasing in size, approach the size of the OD denticle thus obscuring their identification. Also note that the OD denticles are directly inline with the MD denticle row exhibiting no outer placement or basal swollenness on the finger externally. The four identified ID denticles are located on the internal aspect of the finger, and therefore are partially hidden by the OD and MD denticles.
Figures 17–32 in Contributions to scorpion systematics. II. Stahnkeini, a new tribe in scorpion family Vaejovidae (Scorpiones: Chactoidea)
Figures 17–32: Examples of the female pecten of genera Serradigitus and Stahnkeus showing the varied configurations of the basal teeth. 17. Serradigitus wupatkiensis. 18. S. adcocki. 19. S. torridus. 20. S. calidus. 21. S. bechteli. 22. S. g. gertschi. 23. S. minutis. 24. S. littoralis. 25. S. hearnei. 26. S. joshuaensis. 27. S. haradoni. 28. S. gramenestris. 29. S. pacificus. 30. Stahnkeus harbisoni. 31. S. subtilimanus. 32. S. deserticola. Figs. 20, 22, 26, 30–32 after Soleglad (1974, in part).
Figure 47 in Contributions to scorpion systematics. II. Stahnkeini, a new tribe in scorpion family Vaejovidae (Scorpiones: Chactoidea)
Figure 47: Map showing distribution of genus Stahnkeus. Individual localities based on specimens examined, Williams (1970a, 1980: fig. 98, in part), Berke (1987, in part) and Sissom & Stockwell (1991).
Fig. 11 in A new tribe of Tropiduchidae (Hemiptera: Fulgoroidea) with revision of the genus Buca and description of asymmetric hind leg spinulation
Fig. 11. Buca asymmetrospinata sp. nov. female terminalia (paratype); A) dorsal view of segment IX, anal tube and paraproct; B) lateral view of anal tube and paraproct; C) ventral view of gonapophyses IX and gonospiculum bridge; D) right lateral view of gonapophyses IX and gonospiculum bridge; E) right lateral view of gonapophysis VIII (distal portion upward).
Figs. 7 and 8. Wing venation. Fig. 7 in A new tribe of Tropiduchidae (Hemiptera: Fulgoroidea) with revision of the genus Buca and description of asymmetric hind leg spinulation
Figs. 7 and 8. Wing venation. Fig. 7. Wing venation of Buca simplex Walker; A) forewing (holotype); B) hind wing (Bolivia). Annotations: A1, A2 = anal veins; B = basal cell; C1, C2, C3 (C3a, C3', C3b), C4 = Cells 1-4; C = Costa; CA = anterior Costa; CP = posterior Costa; CuA = anterior Cubitus; CuP = posterior Cubitus; cup- (pcu+a1) = transverse vein from CuP to Cpu+A1 veins; im = intramedial crossvein; m-cu = medial-cubitus crossvein; MP = posterior Media; Pc = Precosta; PcA = anterior Precosta; Pcu = postcubitus; r-m = radial-media crossvein; R = Radius; RP = posterior Radius; ScP = posterior Subcosta. Fig. 8. Forewing venation; A) Buca asymmetrospinata sp. nov. (paratype); B) Buca truncoptera sp. nov. (holotype). Annotations: A1, A2 = anal veins; B = basal cell; C1, C2, C3 (C3a, C3', C3b), C4, C5 = Cells 1-5; C = Costa; CA = anterior Costa; CP = posterior Costa; CuA = anterior Cubitus; CuP = posterior Cubitus; cup-(pcu+a1) = transverse vein from CuP to Cpu+A1 veins; im = intramedial crossvein; m-cu = medial-cubitus crossvein; MP = posterior Media; Pc = Precosta; PcA = anterior Precosta; Pcu = postcubitus; r-m = radialmedia crossvein; R = Radius; RP = posterior Radius; ScP = posterior Subcosta.
Fig. 6 in A new tribe of Tropiduchidae (Hemiptera: Fulgoroidea) with revision of the genus Buca and description of asymmetric hind leg spinulation
Fig. 6. Apex of metatibia and metatarsus of B. asymmetrospinata sp. nov. (in. spine = apical intermediate spines of metatibia; l-ap spine = latero-apical spines of metatibia; l-ap spine II = latero-apical spines of 2nd metatarsomere; lobe = ventral lobe of second metatarsomere); A) dorsal view; B) ventral view (same leg).
Fig. 3 in A new tribe of Tropiduchidae (Hemiptera: Fulgoroidea) with revision of the genus Buca and description of asymmetric hind leg spinulation
Fig. 3. Buca asymmetrospinata sp. nov., (paratypes, A–B, Onkone Gare ♀; C, Shushufindi); A) habitus, lef lateral view; B) habitus, dorsal view; C) right wings.
Fig. 5 in A new tribe of Tropiduchidae (Hemiptera: Fulgoroidea) with revision of the genus Buca and description of asymmetric hind leg spinulation
Fig. 5. Buca truncoptera sp. nov. (holotype, ♀); A) habitus, lef lateral view; B) habitus, dorsal view.
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.