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.
13,397
datasets available to search
ShareScore release 0.9.0
Dataset results
13,397 results for “sp. nov.”
Fig. 5 in Testate Amoebae in Karst Caves of the Dinaric Arc (South-Eastern Europe) with a Description of Centropyxis bipilata sp. nov.
Fig. 5. Centropyxis bipilata sp. nov. A–C. Ventral view, arrows point to the position of the struts; D, F. Frontal view, showing the two struts connected to the dorsal part; E. Side view, showing one strut. A, C–E stacked images. Scale bars: 20 µm.
Figure 1 in Synopsis Of The Tribe Dorcaschematini Thomson, 1860 (Coleoptera, Cerambycidae, Lamiinae) Of The Philippines With The Description Of Olenecamptus Cabrasae Sp. Nov. From Davao Oriental
Figure 1. Olenecamptus cabrasae sp. nov.: A. dorsal habitus, holotype, male. B. dorsal habitus, paratype, female. C. holotype, male, frons. D. holotype, male, lateral aspect. E. paratype, female, frons. F. paratype, female, lateral aspect. Photo: M. N. Medina.
Рис. 1. Protoripoda (Protoripoda) bureensis sp. nov.; 1 — ΔорсаΛьная сторона; 2 — вентраΛьная сторона. Масштаб — 50 мкм Fig. 1. Protoripoda (Protoripoda) bureensis sp. nov.; 1 — dorsal view; 2 — ventral view. Scale bar — 50 µm in Sp. Nov. And Other Interesting Finding Of Oribatid Mites (Acari, Oribatida) From Bureinsky Reserve (Khabarovsky Krai)
Рис. 1. Protoripoda (Protoripoda) bureensis sp. nov.; 1 — ΔорсаΛьная сторона; 2 — вентраΛьная сторона. Масштаб — 50 мкм Fig. 1. Protoripoda (Protoripoda) bureensis sp. nov.; 1 — dorsal view; 2 — ventral view. Scale bar — 50 µm
Рис. 4. Фотографии Parasphaerolaimus minor sp. nov., гоΛотип самца (А–Г, Е, Ж), паратип самца (Á, З). А — общий виΑ; Б — переΑний конец теΛа; В, Г, Á — гоΛова; Е, Ж — теΛо в обΛасти кΛоаки; З — заΑний конец теΛа. Масштаб: А — 100 μm; Б, З — 20 μm; Á, Ж — 10 μm; В, Г, Е — 5 μm Fig. 4. Light micrograph Parasphaerolaimus minor sp. nov., male holotype (А–Г, Е, Ж), male paratype (Á, З). А — general view; Б — anterior view; В, Г, Á — head; Е, Ж — cloaca area; З — posterior view. Scale: А — 100 μm; Б, З — 20 μm; Á, Ж — 10 μm; В, Г, Е — 5 μm in Two New Species Of The Genus Ditlevsen, 1918 (Nematoda, Monhysterida) From Water Bodies Of Northern Vietnam
Рис. 4. Фотографии Parasphaerolaimus minor sp. nov., гоΛотип самца (А–Г, Е, Ж), паратип самца (Á, З). А — общий виΑ; Б — переΑний конец теΛа; В, Г, Á — гоΛова; Е, Ж — теΛо в обΛасти кΛоаки; З — заΑний конец теΛа. Масштаб: А — 100 μm; Б, З — 20 μm; Á, Ж — 10 μm; В, Г, Е — 5 μm Fig. 4. Light micrograph Parasphaerolaimus minor sp. nov., male holotype (А–Г, Е, Ж), male paratype (Á, З). А — general view; Б — anterior view; В, Г, Á — head; Е, Ж — cloaca area; З — posterior view. Scale: А — 100 μm; Б, З — 20 μm; Á, Ж — 10 μm; В, Г, Е — 5 μm
Рис. 3. Parasphaerolaimus minor sp. nov., cамец. А — общий виΑ; Б — переΑний конец теΛа; В — заΑний конец теΛа. Масштаб: А — 75 мкм; Б, В — 30 мкм Fig. 3. Parasphaerolaimus minor sp. nov., male. А — general view; Б — anterior view; В — posterior view. Scale: А — 75 μm Б, В — 30 μm in Two New Species Of The Genus Ditlevsen, 1918 (Nematoda, Monhysterida) From Water Bodies Of Northern Vietnam
Рис. 3. Parasphaerolaimus minor sp. nov., cамец. А — общий виΑ; Б — переΑний конец теΛа; В — заΑний конец теΛа. Масштаб: А — 75 мкм; Б, В — 30 мкм Fig. 3. Parasphaerolaimus minor sp. nov., male. А — general view; Б — anterior view; В — posterior view. Scale: А — 75 μm Б, В — 30 μm
Рис. 1. Parasphaerolaimus tropicus sp. nov., самец. А — общий виΑ; Б — переΑний конец теΛа; В — заΑний конец теΛа. Масштаб: А — 150 мкм; Б, В — 50 мкм Fig. 1. Parasphaerolaimus tropicus sp. nov., male. А — general view; Б — anterior body end; В — posterior body end. Scale bars: А — 150 μm; Б, В — 50 μm in Two New Species Of The Genus Ditlevsen, 1918 (Nematoda, Monhysterida) From Water Bodies Of Northern Vietnam
Рис. 1. Parasphaerolaimus tropicus sp. nov., самец. А — общий виΑ; Б — переΑний конец теΛа; В — заΑний конец теΛа. Масштаб: А — 150 мкм; Б, В — 50 мкм Fig. 1. Parasphaerolaimus tropicus sp. nov., male. А — general view; Б — anterior body end; В — posterior body end. Scale bars: А — 150 μm; Б, В — 50 μm
Рис. 4. Trichembola Meyrick, генитаΛии: a–c — Trichembola remota sp. nov. (a, b — самца, общий виΔ снизу и сбоку, c — самки), d, e — Trichembola latitans sp. nov., самца (d — общий виΔ снизу, e — гнатос и ΔистаΛьная часть ваΛьвы сбоку) Fig. 4. Trichembola Meyrick, genitalia: a–c — Trichembola remota sp. nov. (a, b — male [general appearance, ventral view and lateral view], c — female), d, e — Trichembola latitans sp. nov., male (d — ventral view, e — gnatos and the distal portion side of the valva) in New Genera And Species Of Gelechiid Moths From The Subfamily Gelechiinae (Lepidoptera, Gelechiidae) From Laos And Malaysia
Рис. 4. Trichembola Meyrick, генитаΛии: a–c — Trichembola remota sp. nov. (a, b — самца, общий виΔ снизу и сбоку, c — самки), d, e — Trichembola latitans sp. nov., самца (d — общий виΔ снизу, e — гнатос и ΔистаΛьная часть ваΛьвы сбоку) Fig. 4. Trichembola Meyrick, genitalia: a–c — Trichembola remota sp. nov. (a, b — male [general appearance, ventral view and lateral view], c — female), d, e — Trichembola latitans sp. nov., male (d — ventral view, e — gnatos and the distal portion side of the valva)
Рис. 2. Namlika gen. nov., Sabaha gen. nov., генитаΛии: a–c — Namlika davidi sp. nov. (a, b — самца, общий виΔ снизу и эΔеагус, c – самки), d — Sabaha spathulata sp. nov., самца, общий виΔ сбоку Fig. 2. Namlika gen. nov., Sabaha gen. nov., genitalia: a–c — Namlika davidi sp. nov. (a, b — male [general appearance, ventral view, and aediagus], c — female), d — Sabaha spathulata sp. nov., male, ventral view in New Genera And Species Of Gelechiid Moths From The Subfamily Gelechiinae (Lepidoptera, Gelechiidae) From Laos And Malaysia
Рис. 2. Namlika gen. nov., Sabaha gen. nov., генитаΛии: a–c — Namlika davidi sp. nov. (a, b — самца, общий виΔ снизу и эΔеагус, c – самки), d — Sabaha spathulata sp. nov., самца, общий виΔ сбоку Fig. 2. Namlika gen. nov., Sabaha gen. nov., genitalia: a–c — Namlika davidi sp. nov. (a, b — male [general appearance, ventral view, and aediagus], c — female), d — Sabaha spathulata sp. nov., male, ventral view
Рис. 1. Namlika gen. nov., Sabaha gen. nov., бабочки: a–c — Namlika davidi sp. nov. (a — самец, b, c — самка), d, e — Sabaha spathulata sp. nov., самец Fig. 1. Namlika gen. nov., Sabaha gen. nov., moth: a–c — Namlika davidi sp. nov. (a — male, b, c — female), d, f — Sabaha spathulata sp. nov., male in New Genera And Species Of Gelechiid Moths From The Subfamily Gelechiinae (Lepidoptera, Gelechiidae) From Laos And Malaysia
Рис. 1. Namlika gen. nov., Sabaha gen. nov., бабочки: a–c — Namlika davidi sp. nov. (a — самец, b, c — самка), d, e — Sabaha spathulata sp. nov., самец Fig. 1. Namlika gen. nov., Sabaha gen. nov., moth: a–c — Namlika davidi sp. nov. (a — male, b, c — female), d, f — Sabaha spathulata sp. nov., male
FIGURE 5 in A large coelacanth, †Whiteia giganteus sp. nov., from the Triassic of Texas, USA, establishes a Pangean radiation of early Mesozoic actinistians
FIGURE 5. Comparative anatomy of †Whiteia giganteus gen. et sp. nov. Skull of †W. giganteus (A) compared to other species of coelacanths from the Late Paleozoic to Mesozoic of North America, including (B) †Whiteia spp. (after Schaeffer et al., 1976), (C) †Diplurus newarki (personal observation of YPM VPPU 14944), and (D) †Chinlea sorenseni (after Schaeffer, 1967). All drawings are traces over photographs. 1 = elongated preorbital region, 2 = lachrymojugal with straightened anterior process, 3 = opercle with rounded dorsal and posterior margins and pointed ventral apex. 1* = large angular foramina row, 2* = strongly angled lachrymojugal below orbit. Numbers indicate apomorphies of †Whiteia, numbers with asterisks indicate autapomorphies of the new species.
FIGURE 6 in A large coelacanth, †Whiteia giganteus sp. nov., from the Triassic of Texas, USA, establishes a Pangean radiation of early Mesozoic actinistians
FIGURE 6. Phylogenetic position of †Whiteia giganteus gen. et sp. nov. Strict consensus topology derived from phylogenetic analysis of the 59 OTU, 110-character-dataset in the parsimony program TNT v. 1.5. Numbers indicate bootstrap support values.
FIGURE 4 in A large coelacanth, †Whiteia giganteus sp. nov., from the Triassic of Texas, USA, establishes a Pangean radiation of early Mesozoic actinistians
FIGURE 4. Anatomy of †Whiteia giganteus gen. et sp. nov. YPM VP 3928 in (a) left lateral view, showing detail of mandible.
FIGURE 1 in A large coelacanth, †Whiteia giganteus sp. nov., from the Triassic of Texas, USA, establishes a Pangean radiation of early Mesozoic actinistians
FIGURE 1. Anatomy of †Whiteia giganteus gen. et sp. nov. YPM VP 3928 in (A) left lateral, (B) right lateral, (C) dorsal, and (D) ventral views.
FIGURE 2 in A large coelacanth, †Whiteia giganteus sp. nov., from the Triassic of Texas, USA, establishes a Pangean radiation of early Mesozoic actinistians
FIGURE 2. Anatomy of †Whiteia giganteus gen. et sp. nov. YPM VP 3928 in left lateral view, showing detail of rostrum.
FIGURE 3 in A large coelacanth, †Whiteia giganteus sp. nov., from the Triassic of Texas, USA, establishes a Pangean radiation of early Mesozoic actinistians
FIGURE 3. Anatomy of †Whiteia giganteus gen. et sp. nov. YPM VP 3928 in right lateral view, showing detail of exposed palate.
FIGURE 14 in Petrodactyle wellnhoferi gen. et sp. nov.: A new and large ctenochasmatid pterosaur from the Late Jurassic of Germany
FIGURE 14. Reconstruction of the complete skeleton of Petrodactyle wellnhoferi in a standing pose. Scale bar is 200 mm. Missing parts based on Cycnorhamphus following Witton (2013).
FIGURE 13 in Petrodactyle wellnhoferi gen. et sp. nov.: A new and large ctenochasmatid pterosaur from the Late Jurassic of Germany
FIGURE 13. Comparison drawing of restored skulls of assorted Solnhofen ctenochasmatids (not to scale). A, Petrodactyle; B, Cycnorhamphus (following Bennett, 2013); C, Pterodactylus (following Wellnhofer, 1970), D, Ardeadactylus; E, Germanodactylus (following Unwin, 2003).
FIGURE 12 in Petrodactyle wellnhoferi gen. et sp. nov.: A new and large ctenochasmatid pterosaur from the Late Jurassic of Germany
FIGURE 12. 'Nopsca chart' showing major proportions of the skeleton comparing Petrodactyle to other large Solnhofen region ctenochasmatids (data in Table 1). Petrodactyle shows a similar pattern to other animals, though with a proportionally larger head and a long tibia.
FIGURE 10 in Petrodactyle wellnhoferi gen. et sp. nov.: A new and large ctenochasmatid pterosaur from the Late Jurassic of Germany
FIGURE 10. Close up of the poorly preserved area of the Petrodactyle holotype that contains the pectoral girdles, seen under UV C light to highlight the bone fragments. Abbreviations as in Figure 3. Scale bar is 50 mm.
FIGURE 11 in Petrodactyle wellnhoferi gen. et sp. nov.: A new and large ctenochasmatid pterosaur from the Late Jurassic of Germany
FIGURE 11. Close up of manual elements of Petrodactyle. In a mixture of UV A, B and C light. Abbreviations as in Figure 3. Scale bar is 100 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.