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.
27,734
datasets available to search
ShareScore release 0.9.0
Dataset results
27,734 results for “adults”
Fig. 7 in Fig. 7 in Coexistence of Juvenile with Adult at Culebra Beach, Panama: A Temporal-spatial Partitioning Compromise.
Fig. 7. Non-metric Multidimensional Scaling plot of the activity budget of the juvenile and adult Ocypode gaudichaudii from Culebra Beach superimposed with Bray-Curtis cluster analysis using 60% and 80% similarity. 2D stress = 0.15.
Fig. 3 in Fig. 7 in Coexistence of Juvenile with Adult at Culebra Beach, Panama: A Temporal-spatial Partitioning Compromise.
Fig. 3. Boxplots of the median carapace width and interquartile range of Ocypode gaudichaudii during the day and night at Culebra Beach. Dark bands represent medians, boxes represent interquartile range and whiskers represent 1.5 times the interquartile range.
Fig. 6 in Fig. 7 in Coexistence of Juvenile with Adult at Culebra Beach, Panama: A Temporal-spatial Partitioning Compromise.
Fig. 6. Mean proportion of time (± S.E.) that Ocypode gaudichaudii from Culebra Beach were engaged in seven behaviors after burrow emergence. ScF, scavenging; DepF, deposit-feeding; Probe, probing for food; BurM, burrow maintenance; Walk, walking; In bur, staying within the burrow; Rest, resting at the burrow entrance.
Fig. 2 in Fig. 7 in Coexistence of Juvenile with Adult at Culebra Beach, Panama: A Temporal-spatial Partitioning Compromise.
Fig. 2. Location of Culebra Beach with the inset showing a 30 × 30 m plot marked out as the sampling area across six five-metre zones (zone 1 to zone 6). The area was divided into 36 (5 × 5 m) quadrats.
Fig. 5 in Fig. 7 in Coexistence of Juvenile with Adult at Culebra Beach, Panama: A Temporal-spatial Partitioning Compromise.
Fig. 5. Burrow densities of the juvenile and adult Ocypode gaudichaudii in zones 1 to 3 of Culebra Beach during the night with respect to the high and low tide levels from 9 June to 29 November, 2012.
Fig. 4 in Fig. 7 in Coexistence of Juvenile with Adult at Culebra Beach, Panama: A Temporal-spatial Partitioning Compromise.
Fig. 4. Burrow densities of the juvenile and adult Ocypode gaudichaudii at zones 1 to 5 of Culebra Beach during the day with respect to the high and low tide levels from 9 June to 29 November, 2012.
Fig. 2 in A Different Perspective on Sex Dimorphism in the Adult Hermann's Tortoise: Geometric Morphometry.
Fig. 2. Dorsal view of landmarks used for the carapace. A, Landmark points used on the photo. B, The differences between females and males are indicated by landmarks (MorphoJ). The round marks represent the female, and extensions from those marks indicate the direction and changes in the male turtles.
Fig. 5. 95 in A Different Perspective on Sex Dimorphism in the Adult Hermann's Tortoise: Geometric Morphometry.
Fig. 5. 95% confidence ellipses for plastron landmarks (used past, Version 2.17c). PC1-PC2 and PC1-PC3. Blue dots are male; red dots are female. Table 1. The length ratios of three interscute sutures in the midline of the Hermann's tortoise plastron
Fig. 4 in A Different Perspective on Sex Dimorphism in the Adult Hermann's Tortoise: Geometric Morphometry.
Fig. 4. Dorsal view of landmarks used for the plastron. A, Landmark points used on the photo. B, The differences between females and males are indicated by landmarks (MorphoJ). The round marks represent the female, and extensions from those marks indicate the direction and changes in the male turtles.
Fig. 3. 95 in A Different Perspective on Sex Dimorphism in the Adult Hermann's Tortoise: Geometric Morphometry.
Fig. 3. 95% confidence ellipses for carapace landmarks (used past, Version 2.17c). PC1-PC2 and PC1-PC3. Blue dots are male; red dots are female.
Рис. 2. Некоторые преΑставитеΛи роΑа Calliteara (Lymantriidae) из Верхнебуреинского района Хабаровского края. Имаго, общий виΑ: A — C. axutha, самец, Буреинский хребет, 10 км Ю устья р. Серегекта, 27–28.06.2023; B — C. axutha, самка, там же, 3–4.07.2023; C — C. abietis, самец, р. Бурея, окоΛо устья р. Серегекта, 5–6.07.2023; D — C. abietis, самка, р. Бурея, Буреинский заповеΑник, корΑон «СтреΛка», 6–7.07.2023. ГенитаΛии самцов: E — C. axutha, F — C. abietis Fig. 2. Some Calliteara species (Lymantriidae) from Verkhnebureinsky district (Khabarovsk Kray). Adults, habitus: A — C. axutha, male, Bureinsky Range, 10 km S of the mouth of Seregekta River, 27–28 June 2023; B — C. axutha, female, at the same place, 3–4 July 2023; C — C. abietis, male, Bureya River, near the mouth of Seregekta River, 5–6 July 2023; D — C. abietis, female, Bureya River, Bureinsky Nature Reserve, ranger station 'Strelka', 6–7 July 2023. Male genitalia: E — C. axutha, F — C. abietis in Findings of Zaranga tukuringra Streltzov et Yakovlev, 2007, Calliteara axutha (Collenette, 1934) and other species of Macrolepidoptera in the northern part of the Bureinsky Range (Russia, Khabarovsk Krai)
Рис. 2. Некоторые преΑставитеΛи роΑа Calliteara (Lymantriidae) из Верхнебуреинского района Хабаровского края. Имаго, общий виΑ: A — C. axutha, самец, Буреинский хребет, 10 км Ю устья р. Серегекта, 27–28.06.2023; B — C. axutha, самка, там же, 3–4.07.2023; C — C. abietis, самец, р. Бурея, окоΛо устья р. Серегекта, 5–6.07.2023; D — C. abietis, самка, р. Бурея, Буреинский заповеΑник, корΑон «СтреΛка», 6–7.07.2023. ГенитаΛии самцов: E — C. axutha, F — C. abietis Fig. 2. Some Calliteara species (Lymantriidae) from Verkhnebureinsky district (Khabarovsk Kray). Adults, habitus: A — C. axutha, male, Bureinsky Range, 10 km S of the mouth of Seregekta River, 27–28 June 2023; B — C. axutha, female, at the same place, 3–4 July 2023; C — C. abietis, male, Bureya River, near the mouth of Seregekta River, 5–6 July 2023; D — C. abietis, female, Bureya River, Bureinsky Nature Reserve, ranger station 'Strelka', 6–7 July 2023. Male genitalia: E — C. axutha, F — C. abietis
Fig. 4 in Characterization of tongue worms, Linguatula spp. (Pentastomida) in Romania, with the first record of an unknown adult Linguatula from roe deer (Capreolus capreolus Linnaeus)
Fig. 4 Light and scanning electron microscopy images of male specimens of Linguatula sp. collected from Capreolus capreolus. A SEM of posterior hook (SPL1165-2), with sensory papillae #3. B Anterior hook with fulcrum (SPL1165-2). Scale bar = 100 µm. C Posterior hook with fulcrum (SPL1165-2). Scale bar = 100 µm. D Posterior hook opening "pit" (SPL1165-2), showing fine spines on cuticle (arrow). Scale bar = 10 µm. E Anterior hook base with fine spines (arrow) (SPL1165-2). Scale bar = 25 µm. F Buccal capsule (SPL1156-1). Scale bar = 100 µm. G SEM of male genital aperture with sensory papillae #4 on lateral edges (SPL1165-3). H SEM of tip of copulatory spicule emerging from male genital aperture (SPL1165- 2). I Dissected copulatory spicule (SPL1165-1). Scale bar = 100 µm
Fig. 1 in Characterization of tongue worms, Linguatula spp. (Pentastomida) in Romania, with the first record of an unknown adult Linguatula from roe deer (Capreolus capreolus Linnaeus)
Fig. 1 Map of the collection locations for the pentastomes examined in this study. Locations are indicated by red (collected from Canis lupus), yellow (collected from Canis aureus), and blue (collected from Capreolus capreolus) markers. The number within the marker refers to the specimen listed in Table 1
Fig. 3 in Characterization of tongue worms, Linguatula spp. (Pentastomida) in Romania, with the first record of an unknown adult Linguatula from roe deer (Capreolus capreolus Linnaeus)
Fig. 3 Scanning electron microscopy images of male specimens of Linguatula sp. collected from Capreolus capreolus. A Anterior end, ventral view (SPL1165-3), white box marks location of sensory sensillae presented in E; ga, genital atrium. B Lateral edge of body (SPL1165-2), ventral side to the right. C Posterior end of body, dorsal view (SPL1165-2), note absence of chloride cells in midline of dorsal side. D Abdominal annulus, ventral view (SPL1165-2), note single row of chloride cells and markings on posterior edge of annuli. E Sensory pore, ventral surface of anterior end (SPL1165-3)
Fig. 2 in Characterization of tongue worms, Linguatula spp. (Pentastomida) in Romania, with the first record of an unknown adult Linguatula from roe deer (Capreolus capreolus Linnaeus)
Fig. 2 Scanning electron microscopy images of a male specimen of Linguatula serrata (Frölich 1789) collected from Canis lupus (specimen number L4). A Anterior end of specimen, ventral view; ga, genital atrium. B Posterior hook with hook "pit" showing spines on wall (white box). C Spines on wall of hook "pit"
Fig. 3 in A comparison of helminth infections as assessed through coprological analysis and adult worm burdens in a wild host
Fig. 3. The relationship between adult lungworm (A. falciformis) burden and number of larvae per g of faeces in Irish badgers (n = 289).
Fig. 2 in A comparison of helminth infections as assessed through coprological analysis and adult worm burdens in a wild host
Fig. 2. The relationship between adult hookworm (U. criniformis) burden and faecal egg counts (e.p.g) in Irish badgers (n = 289).
Fig. 1. Adult habitus. A. Cosmopterix flavidella Kuroko, 2011, male. B. Noduliferola abstrusa Kuznetzov, 1973, female. C. Maliarpha borealis Sasaki, 2012, male. D. Ectoblemma rosella Sugi, 1982, female. E in New records of five species of Lepidoptera (Cosmopterigidae, Tortricidae, Pyralidae and Erebidae) from sand-dunes along the western coastline of Korea
Fig. 1. Adult habitus. A. Cosmopterix flavidella Kuroko, 2011, male. B. Noduliferola abstrusa Kuznetzov, 1973, female. C. Maliarpha borealis Sasaki, 2012, male. D. Ectoblemma rosella Sugi, 1982, female. E. Metachrostis miasma (Hampson, 1891), male. Scale bars = 4 mm.
Fig. 1 Catapotia laevissima Thomson, adult morphology. a Dorsal habitus. b in The debris-cloaking larva of Catapotia laevissima and the origin of defensive strategies in Anamorphidae and other Coccinelloidea (Coleoptera)
Fig. 1 Catapotia laevissima Thomson, adult morphology. a Dorsal habitus. b Ventral habitus of female. c Antenna. d Frontal view of head. e Ventral view of head. f Abdominal apex of male. g Mesotarsus. h Metatarsal claws
Fig. 7 in Loss of complexity from larval towards adult nervous systems in Chaetopteridae (Chaetopteriformia, Annelida) unveils evolutionary patterns in Annelida
Fig. 7 The anterior adult nervous system of Phyllochaetopterus sp. revealed by immunohistochemistry. a, b confocal maximum projections of anti-5HT-staining. a: The brain (br) consists of a compact neuropil without prominent commissures. The palp nerves (pn1, pn2)
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.