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.
107
datasets available to search
ShareScore release 0.9.0
Dataset results
107 results for “group living”
Figs 105–110. Live specimens. Aetana kinabalu group. — 105–106. A in Revision, phylogeny, and microhabitat shifts in the Southeast Asian spider genus Aetana (Araneae, Pholcidae)
Figs 105–110. Live specimens. Aetana kinabalu group. — 105–106. A. lambir Huber, sp. nov., ♂ and ♀ with eggsac from Lambir, Sarawak. — 107–108. A. poring Huber, sp. nov., ♂♂ from Mt. Kinabalu, Sabah. — 109– 110. A. indah Huber, sp. nov., adult and penultimate instar, ♂♂ from Crocker Range, Sabah.
Figs 99–104. Live specimens. Aetana kinabalu group. — 99–103. A. kinabalu Huber, 2005 in Revision, phylogeny, and microhabitat shifts in the Southeast Asian spider genus Aetana (Araneae, Pholcidae)
Figs 99–104. Live specimens. Aetana kinabalu group. — 99–103. A. kinabalu Huber, 2005. ♂ and ♀ with eggsac from Gunung Mulu, Sarawak (99, 100); ♀ with eggsac and ♂ from Crocker Range, Sabah (101, 102); and ♂ from Mt. Kinabalu, Sabah (103). — 104. A. gaya Huber, sp. nov., ♂ from Gaya Island, Sabah.
Figs 6–12. Live specimens. Aetana ocampoi group. 6–7. A in Revision, phylogeny, and microhabitat shifts in the Southeast Asian spider genus Aetana (Araneae, Pholcidae)
Figs 6–12. Live specimens. Aetana ocampoi group. 6–7. A. ocampoi Huber, sp. nov., ♂ from Mt. Isarog, Luzon. 8–9. A. libjo Huber, sp. nov., ♂ and ♀ from Dinagat Island, Mindanao. 10–12. A. baganihan Huber, sp. nov., ♂♂ from Baganighan, Mindanao.
Figs 178–188. Live specimens. Aetana omayan group. — 178–179. A in Revision, phylogeny, and microhabitat shifts in the Southeast Asian spider genus Aetana (Araneae, Pholcidae)
Figs 178–188. Live specimens. Aetana omayan group. — 178–179. A. abadae Huber, sp. nov., ♂ and ♀ with eggsac from Twin Lakes, Negros. — 180–181. A. omayan Huber, 2005, ♂ and ♀ with eggsac from Baguio, Luzon. — 182–183. A. manansalai Huber, sp. nov., ♂ and ♀ from Mt. Banahaw, Luzon. — 184–185. A. lozadae Huber, sp. nov., ♂♂ from Mt. Isarog, Luzon. — 186–188. Female prosomata, showing stridulatory plates (arrows), in A. abadae Huber, sp. nov. (186), A. omayan Huber, 2005 (187) and A. manansalai Huber, sp. nov. (188).
Figs 50–53. Live specimens. 50–52 in The Philippine hair wax spiders and their relatives: revision of the Pholcus bicornutus species group (Araneae, Pholcidae)
Figs 50–53. Live specimens. 50–52. Pholcus baguio Huber, sp. nov., ♁, ♀, and ♀ with egg-sac and emerging juveniles, Mt. Kabuyao. 53. Pholcus arayat Huber, 2011, ♁, Pamulaklakin Forest Trail.
Figs 54–57. Live specimens. 54. Pholcus arayat Huber, 2011 in The Philippine hair wax spiders and their relatives: revision of the Pholcus bicornutus species group (Araneae, Pholcidae)
Figs 54–57. Live specimens. 54. Pholcus arayat Huber, 2011, ♀, Pamulaklakin Forest Trail. 55–57. Pholcus pagbilao Huber, 2011, ♁ from Loboc (55), ♁ from Mt. Banahaw (56), and ♀ with egg-sac from Loboc (57).
Figs 36–39. Live specimens. 36–37 in The Philippine hair wax spiders and their relatives: revision of the Pholcus bicornutus species group (Araneae, Pholcidae)
Figs 36–39. Live specimens. 36–37. Pholcus mulu Huber, sp. nov., ♁, Gunung Mulu. 38–39. Pholcus kawit Huber, sp. nov., ♁ and ♀, Mt. Matutum.
Economies of scale shape energetics of solitary and group living spiders and their webs
<p>Metabolic scaling, whereby larger individuals use less energy per unit mass than smaller ones, may apply to the combined metabolic rate of group-living organisms as group size increases. Spiders that form groups in high disturbance environments can serve to test the hypothesis that economies of scale benefit social groups.</p> <p>Using solitary and group-living spiders, we tested the hypothesis that spiders exhibit negative allometry between body or colony mass and the standing mass of their webs and whether, and how, such a relationship may contribute to group-living benefits in a cooperative spider.</p> <p>Given the diverse architecture of spider webs—orb, tangle, and sheet-and-tangle, and associated differences in silk content, we first assessed how standing web mass scales with spider mass as a function of web architecture and whether investment in silk differs among web types. As group-living spiders are predominantly found in clades that build the presumably costlier sheet-and-tangle webs, we then asked whether cost-sharing through cooperative web maintenance contributes to a positive energy budget in a social species.</p> <p>We found that larger spiders had a relatively smaller investment in silk per unit mass than smaller ones, but more complex sheet-and-tangle webs contained orders of magnitude more silk than simpler orb or tangle ones. In the group-living species, standing web mass per unit spider mass continued to decline as colony size increased with a similar slope as for unitary spiders. When web maintenance activities were considered, colonies also experienced reduced mass-specific energy expenditure with increasing colony size. Activity savings contributed to a net positive energy balance for medium and large colonies after inputs from the cooperative capture of large prey were accounted for.</p> <p>Economies of scale have been previously demonstrated in animal societies characterized by reproductive and worker castes, but not in relatively egalitarian societies as those of social spiders. Our findings illustrate the universality of scaling laws and how economies of scale may contribute to setting limits on social behaviour and hunting strategies.</p>
Figs 61–68. Live specimens. 61–62 in The Panjange nigrifrons group in Borneo (Araneae: Pholcidae): high diversity in Sarawak, apparent absence in Sabah
Figs 61–68. Live specimens. 61–62. Pa. iban Huber, 2011, Ƌ and ♀ with egg-sac from Semengoh. 63–64. Pa. kubah Huber, sp. nov., Ƌ from Kubah. 65–68. Pa. seowi Huber, sp. nov., Ƌ, ♀, and ♀ with egg-sac from Penrissen.
Figs 8–15. Live specimens. 8–9 in The Panjange nigrifrons group in Borneo (Araneae: Pholcidae): high diversity in Sarawak, apparent absence in Sabah
Figs 8–15. Live specimens. 8–9. Panjange pueh Huber, sp. nov., Ƌ and ♀ from Pueh. 10–14. Pa. kapit Huber, sp. nov. from Kapit. 10–11. Adult Ƌ, 12. Penultimate instar Ƌ, 13–14. ♀ with egg-sac. 15. Pa. niah Huber, sp. nov., ♀ with egg-sac from Niah.
Data from: Status-dependent metabolic effects of social interactions in a group-living fish
<p>Social interactions can sometimes be a source of stress, but social companions can also ameliorate and buffer against stress. Stress and metabolism are closely linked, but the degree to which social companions modulate metabolic responses during stressful situations—and whether such effects differ depending on social rank—is poorly understood. To investigate this question, we studied Neolamprologus pulcher, a group-living cichlid fish endemic to Lake Tanganyika, and measured the metabolic responses of dominant and subordinate individuals when they were either visible or concealed from one another. When individuals could see each other, subordinates had lower maximum metabolic rates and tended to take longer to recover following an exhaustive chase compared to dominants. In contrast, metabolic responses of dominants and subordinates did not differ when individuals could not see one another. These findings suggest that the presence of a dominant individual has negative metabolic consequences for subordinates, even in stable social groups with strong prosocial relationships.</p>
Dataset: Liberty Live Group (LLYVA) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Liberty Live Group (LLYVK) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Intelligent Living Application Group Inc. (ILAG) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Review of Recent Trends in Measuring the Computing Systems Intelligence-igure 2. Intelligence of different living creature (accessed 01.11.2017). 2.1. A crow solving a complex task (https://www.disclose.tv/spooky-genius-crow-had-to-be-removed-from-scientific-experiment- 314886). 2.2. A group of dolphins with a social behaviour (http://www.sciencemag.org/news/2012/04/teamwork-builds-big-brains); 2.3. An orangutan that use a spear to fish (https://primatology.net/2008/04/29/orangutan-photographed-using-tool-as-spear-to-fish)
<p>Some species of birds have been shown capable of using different tools. Many studies consider the crows as very intelligent. Smirnova, Lazareva, and Zorina (2000) suggested that crows have some kind of numerical ability. Figure 2.1 presents a crow that uses a tool, a small stone in order to catch a worm from a glass of water.The dolphins in many studies are considered intelligent at the individual level. An advanced ability of dolphins is the self-awareness. Marten and Psarakos (1995) presented an interesting study based on self-view television to distinguish between self-examination and social behavior in the Bottlenose dolphin. The most well-known abilities of dolphins are to teach, learn and cooperate. Dolphins have a complex communication and social behaviour. Figure 2.2 presents the image of a common group of dolphins. Some studies prove that primates are one of the most intelligent in the class of animals (Reader, Hager, & Laland, 2011). Orangutans are one of the most intelligent primates. The ability of orangutans to use different types of tools in order to perform tasks is well-known. Figure 2.3 presents an orangutan that uses a spear to catch fish. The orangutans can be considered intelligent at individual level.</p>
Photographs of live individuals from: Pristimantis trachyblepharis species group, a clade of miniaturized frogs: description of four new species and insights into the evolution of body size within the genus
<p>Photographs in jpg format of live individuals examined for morphological comparisons and descriptions. </p> <ul> <li><em>P. albujai</em> (photographs of 28 specimens).</li> <li><em>P. aquilonaris</em> (photographs of 12 specimens).</li> <li><em>P. nanus</em> sp. nov. (photographs of 7 specimens).</li> <li><em>P. pramukae </em>sp. nov. (photographs of 36 specimens).</li> <li><em>P. trachyblepharis</em> (photographs of 26 specimens).</li> <li><em>P. ujucami</em> sp. nov. (photographs of 27 specimens).</li> <li><em>P. ventristellatus</em> sp. nov. (photographs of 26 specimens).</li> </ul> <p>Available photographs of several Unconfirmed Candidate Species (UCS) are also provided.</p>
Fig. 6 in Live coral predation by parrotfishes (Perciformes: Scaridae) in the Abrolhos Bank, eastern Brazil, with comments on the classification of species into functional groups
Fig. 6. (a) Scars caused by large individuals (> 40 cm TL) and (b) scrapes caused by small individuals (20-40 cm TL) of Scarus trispinosus on crustose calcareous algae.
Fig. 4 in Live coral predation by parrotfishes (Perciformes: Scaridae) in the Abrolhos Bank, eastern Brazil, with comments on the classification of species into functional groups
Fig. 4. Bite scars of Sparisoma amplum (a and b) and Scarus trispinosus (c and d) on the corals Montastrea cavernosa (top) and Siderastrea spp. (bottom).
Fig. 3 in Live coral predation by parrotfishes (Perciformes: Scaridae) in the Abrolhos Bank, eastern Brazil, with comments on the classification of species into functional groups
Fig. 3. Focused biting behavior by Sparisoma amplum. (a) Initial-phase individual biting a colony of Mussismilia braziliensis; (b) partial and (c) almost complete coral colony mortality due to Sp. amplum predation; (d) a discrete group of excavated colonies of M. braziliensis on the edge of a Sp. amplum territory.
Group-Based Intervention to Improve Mental Health and Adherence Among Youth Living With HIV in Low Resource Settings
ClinicalTrials.gov study NCT04024488. IPD Sharing: YES. Countries: 4. Publications: 0.
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.