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.
3,647
datasets available to search
ShareScore release 0.9.0
Dataset results
3,647 results for “new female”
FIGURES 1–11 in A reanalysis of the morphological phylogeny of the spider genus Physocyclus Simon (Araneae: Pholcidae) with the description of a new species and description of the female of Physocyclus paredesi Valdez-Mondragón from Mexico
FIGURES 1–11. Physocyclus peribanensis sp. nov. Male (holotype). 1–3, Habitus, dorsal, lateral, and ventral views respectively. 4, Carapace and chelicerae, frontal view. 5, Carapace dorsal view. 6–7, Chelicerae, frontal and lateral views respectively. 8, 9, 11, Left palp, retrolateral, dorsal, and prolateral views respectively (left arrow on Fig. 8 indicates the dorsal apophysis on the procursus, right arrow indicates the ventral notch basally on the procursus; arrow on Fig. 9 indicates the three distal projections on procursus; arrow on Fig. 11 indicates the setae sockets which look like pores). 10, Detail of the three distal projections on procursus (arrow indicates the brush of pseudotrichia). Scales: 0.5 mm (Figs 6, 7), 1 mm (Figs 1–5, 8, 9, 11). Abbreviations: BU, bulb of the palp; ES, embolic sclerites; LAC, lateral apophyses of chelicerae; SF, stridulatory files of chelicerae; SO, spermatic operculum.
FIGURE 36. Implied weighted tree found with concavity value K in A reanalysis of the morphological phylogeny of the spider genus Physocyclus Simon (Araneae: Pholcidae) with the description of a new species and description of the female of Physocyclus paredesi Valdez-Mondragón from Mexico
FIGURE 36. Implied weighted tree found with concavity value K=10. Larger numbers above branches indicate significant Symmetric Resampling (SR) values (≥ 70). Red arrow indicates Physocyclus peribanensis sp. nov.
FIGURE 35 in A reanalysis of the morphological phylogeny of the spider genus Physocyclus Simon (Araneae: Pholcidae) with the description of a new species and description of the female of Physocyclus paredesi Valdez-Mondragón from Mexico
FIGURE 35. Strict consensus tree of two most parsimonious trees found by cladistic analysis with equal weighting of characters. Black bars indicate unreversed synapomorphic or apomorphic states, white bars indicate homoplastic characters. Small numbers above bars indicate character number; small numbers below bars indicate character state. Larger numbers above branches indicate Jackknife support values (≥75); larger numbers below branches indicate Bremer support values. Numbers on nodes are explained in the discussion. Red arrow indicates Physocyclus peribanensis sp. nov.
FIGURES 28–33 in A reanalysis of the morphological phylogeny of the spider genus Physocyclus Simon (Araneae: Pholcidae) with the description of a new species and description of the female of Physocyclus paredesi Valdez-Mondragón from Mexico
FIGURES 28–33. Physocyclus paredesi Valdez-Mondragón, 2010. Female. 28–30, Habitus, dorsal, lateral, and ventral views respectively (left arrow on Fig. 28 indicates the posterior dorsal protuberance on carapace, right arrow indicates the sclerotized patch on opisthosoma). 31, Epigynum, ventral view. 32, Epigynum, left lateral view. 33, Epigynum, dorsal view. Scales: 0.5 mm. Abbreviations: PP, pore plates; VAE, ventral apophyses of epigynum.
FIGURES 18–27 in A reanalysis of the morphological phylogeny of the spider genus Physocyclus Simon (Araneae: Pholcidae) with the description of a new species and description of the female of Physocyclus paredesi Valdez-Mondragón from Mexico
FIGURES 18–27. Physocyclus paredesi Valdez-Mondragón, 2010. Male (holotype). 18–20, Habitus, dorsal, lateral, and ventral views respectively. 21, Carapace and chelicerae, frontal view. 22, Carapace dorsal view. 23–24, Chelicerae, frontal and lateral views respectively (arrow indicates the subdistal apophysis on each chelicera). 25–27, Left palp, retrolateral, dorsal, and prolateral views respectively (arrow on Fig. 25 indicates the distal apophysis on femur, which has a long seta; left arrow on Fig. 26 indicates the apical conspicuous spine on embolus, right arrow indicates the apical bifurcation on embolus). Scales: 0.3 mm (Fig. 24), 0.5 mm (Figs 18–23, 25–27). Abbreviations: BU, bulb of the palp; ES, embolic sclerites; LAC, lateral apophyses of chelicerae; SF, stridulatory files of chelicerae; SO, spermatic operculum.
FIGURE 4. Female paratype NMK-L3240 in A new species of arboreal forest-dwelling gecko (Hemidactylus: Squamata: Gekkonidae) from coastal Kenya, East Africa
FIGURE 4. Female paratype NMK-L3240/1 of Hemidactylus mrimaensis sp. nov. in life in Kaya Mrima Forest.
FIGURES 1–16 in Three new species of the genus Scaphoideus (Hemiptera: Cicadellidae) with notes on the female of Scaphoideus varna from India
FIGURES 1–16. Species of Scaphoideus. 1–4. Scaphoideus ramamurthyi sp. nov. 1. Subgenital plate; 2. Style; 3. Processes of connective; 4. Aedeagus lateral view. 5–8. Scaphoideus menoni sp. nov. 5. Subgenital plate; 6. Style; 7. Processes of connective; 8. Aedeagus lateral view. 9–12. Scaphoideus viraktamathi sp. nov. 9. Subgenital plate; 10. Style; 11. Processes of connective; 12. Aedeagus lateral view. 13–16. S. varna Viraktamath & Mohan 13. Subgenital plate; 14. Style; 15. Processes of connective; 16. Aedeagus lateral view.
FIGURES 58–84 in Three new species of the genus Scaphoideus (Hemiptera: Cicadellidae) with notes on the female of Scaphoideus varna from India
FIGURES 58–84. Species of Scaphoideus. 58–63. Scaphoideus viraktamathi sp. nov. 58. Habitus; 59, 60. Aedeagus lateral & caudal view; 61. Processes of connective; 62. Style; 63. Subgenital plate. 64–70. S. bifidus 64. Habitus; 65, 66. Aedeagus lateral & caudal view; 67. Processes of connective; 68; Style; 69. Subgenital plate; 70. Pygofer. 71–77. S. kirti 71. Habitus; 72, 73. Aedeagus lateral & caudal view; 74. Processes of connective; 75; Style; 76. Subgenital plate; 77. Pygofer. 78–84. S. katraini; 78. Habitus; 79, 80. Aedeagus lateral & caudal view; 81. Processes of connective; 82. Style; 83. Subgenital plate; 84. Pygofer.
FIGURES 35–43 in Three new species of the genus Scaphoideus (Hemiptera: Cicadellidae) with notes on the female of Scaphoideus varna from India
FIGURES 35–43. Habitus, and genitalia male Scaphoideus viraktamathi sp. nov. 35, 36. Habitus, dorsal and lateral view; 37, 38 & 39. Aedeagus, dorsal, lateral and caudal view respectively; 40. Style; 41. Processes of connective; 42. Subgenital plate; 43. Pygofer.
FIGURES 26–34 in Three new species of the genus Scaphoideus (Hemiptera: Cicadellidae) with notes on the female of Scaphoideus varna from India
FIGURES 26–34. Habitus, face and genitalia male Scaphoideus menoni sp. nov. 26, 27. Habitus, dorsal and lateral view; 28. Face; 29. Style; 30, 31. Aedeagus, caudal & lateral view; 32. Subgenital plate; 33. Processes of connective; 34. Pygofer.
FIGURES 44–57 in Three new species of the genus Scaphoideus (Hemiptera: Cicadellidae) with notes on the female of Scaphoideus varna from India
FIGURES 44–57. Habitus, face and genitalia Scaphoideus varna Viraktamath & Mohan 44–46. Female, 44, 45. Habitus, dorsal and lateral view; 46. Face; 47–54 Male, 47. Face; 48, 49. Habitus, dorsal and lateral view; 50. Aedeagus, lateral view; 51. Processes of connective; 52. Style; 53. Pygofer; 54. Subgenital plate. 55–57. Female 55. Seventh sternite; 56–57. Second gonopophyses.
FIGURE 2. Embolemus honshuensis, female holotype. A in Revision of the Embolemidae of Japan (Hymenoptera: Chrysidoidea), with description of a new genus and two new species
FIGURE 2. Embolemus honshuensis, female holotype. A. Head in lateral view. B. Mesosoma in dorsal view. C. Outline of border between anterior and posterior surface of propodeum. Scale bar 1.1 mm for A, 0.7 mm for B, 0.4 mm for C.
FIGURE 4. Embolemus walkeri, female holotype. A in Revision of the Embolemidae of Japan (Hymenoptera: Chrysidoidea), with description of a new genus and two new species
FIGURE 4. Embolemus walkeri, female holotype. A. Head in lateral view. B. Mesosoma in dorsal view. C. Outline of border between anterior and posterior surface of propodeum. Scale bar 1.9 mm for A, 0.9 mm for B, 0.7 mm for C.
FIGURE 15 in New Sensiava species (Copepoda: Calanoida: Diaixidae) from the deep South Atlantic and first description of the female
FIGURE 15. Right antennule ancestral segments XVII to XXVIII. Male. A, Procenognatha semisensata Markhaseva & Schulz, 2010; B, Sensiava longiseta Markhaseva & Schulz, 2006; C, Sensiava cf. secunda sp. nov. A & B, after Markhaseva and Schulz (2006, 2010). Arrows mark segments with modified shape and setal elements.
FIGURE 14 in New Sensiava species (Copepoda: Calanoida: Diaixidae) from the deep South Atlantic and first description of the female
FIGURE 14. Sensiava sp. Female. A, posterior prosome and genital double somite, sprematheca, lateral view; B, antenna, basis,distomedial and proximal part of endopod segment 1; C, P1, endo- and exopod; P4, coxa. Scale bars 0.1 mm.
FIGURE 13 in New Sensiava species (Copepoda: Calanoida: Diaixidae) from the deep South Atlantic and first description of the female
FIGURE 13. Sensiava cf. longiseta Markhaseva & Schulz, 2006. Female. A, spermatheca, lateral view; B, antenna, coxa, basis, endopod segment 1; C, mandible, cutting edge; D, maxillule (arrow marks distalmost terminal seta curved at the apex); E, maxilla; F, maxilliped syncoxa; G, maxilliped, basis, distal setae not figured; I, P1. Scale bars 0.1 mm.
FIGURE 10 in New Sensiava species (Copepoda: Calanoida: Diaixidae) from the deep South Atlantic and first description of the female
FIGURE 10. Sensiava peculiaris sp. nov. Female, holotype. A, antennule, articulating segments 1–14 (ancestral segments I–XVII); B, antennule, articulating segments 15–24 (ancestral segments XVIII–XXVIII); C, antenna; D, mandible; E, mandible, gnathobase; F, maxillule (arrow marks distalmost terminal seta curved at the apex). Scale bars 0.1 mm.
FIGURE 11 in New Sensiava species (Copepoda: Calanoida: Diaixidae) from the deep South Atlantic and first description of the female
FIGURE 11. Sensiava peculiaris sp. nov. Female, holotype. A, maxilla, sensory setae of endopod are not figured; B, maxilla, sensory setae of endopod; C, maxilliped; D, P1. Scale bars 0.1 mm.
FIGURE 9 in New Sensiava species (Copepoda: Calanoida: Diaixidae) from the deep South Atlantic and first description of the female
FIGURE 9. Sensiava peculiaris sp. nov. Female, holotype. A, habitus, dorsal view; B, habitus, lateral view; C, rostrum, dorsal view; D, rostrum, lateral view; E, posterior prosome and urosome, dorsal view; F, posterior prosome and urosome, lateral view (dorsal and lateral setae added after paratype); G, genital field, lateral view. Scale bars: A–B 0.5 mm, C–H 0.1 mm.
FIGURE 3. Embolemus krombeini, female holotype. A in Revision of the Embolemidae of Japan (Hymenoptera: Chrysidoidea), with description of a new genus and two new species
FIGURE 3. Embolemus krombeini, female holotype. A. Head in lateral view. B. Mesosoma in dorsal view. C. Outline of border between anterior and posterior surface of propodeum. Scale bar 1.1 mm for A, 0.6 mm for B, 0.3 mm for C.
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.