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104 results for “spider populations”
Figure 8 in Population dynamics of the bark-dwelling spider Eustala perfida Mello-Leitão, 1947 (Araneidae)
Figure 8. Number of arthropods captured by Eustala perfida (observed) and number expected based on the frequencies of arthropods intercepted in the sticky traps. (a) Numbers by prey type (order or suborder). DI: Diptera, HY: Hymenoptera, CO: Coleoptera, AU: Auchenorrhyncha, AR: Araneae, PS: Psocoptera, HE: Heteroptera, LE: Lepidoptera. (b) Numbers by body classes. Orders with frequencies lower than 1% were not placed in the figure (see Table 5).
Figure 2 in Population dynamics of the bark-dwelling spider Eustala perfida Mello-Leitão, 1947 (Araneidae)
Figure 2. Circular histogram of abundance of the Eustala perfida population. Black vector line inside the circle indicates the mean angle; transverse line on the external sector of the circle indicates the confidence interval (95%).
Figure 1 in Population dynamics of the bark-dwelling spider Eustala perfida Mello-Leitão, 1947 (Araneidae)
Figure 1. Climatic diagram of Serra do Japi, São Paulo, Brazil, registering the temperature and precipitation of the period between 2011 and 2013. Areas containing vertical lines in white areas indicate humid periods; vertical lines in dark areas, super-wet periods; and dotted areas, dry periods.
Figure 7 in Population dynamics of the bark-dwelling spider Eustala perfida Mello-Leitão, 1947 (Araneidae)
Figure 7. Circular frequency histograms of adult females and adult males of Eustala perfida. The black vector line inside the circle indicates the mean angle or direction of the data. The transverse line on the external sector of the circle indicates the confidence interval of 95%.
Figure 6 in Population dynamics of the bark-dwelling spider Eustala perfida Mello-Leitão, 1947 (Araneidae)
Figure 6. Circular histograms of age structure established for the population of Eustala perfida. The black vector line inside the circle indicates the mean angle or direction of the data. The transverse line on the external sector of the circle indicates the confidence interval of 95%.
Figure 6 in Strong phenological differences between two populations of a Neotropical funnel-web wolf spider
Figure 6. Schematic diagram showing the phonological patterns of central Argentina (CA) and southern Uruguay (SU) populations during the year. Note the clear temporal separation between the sexual periods of both populations and the overwintering only of females in SU as well as only of immature individuals in CA. ♀eggs + spid: females carrying eggsac or spiderlings (maternal period); Immature indiv: immature (juveniles and penultimate) individuals; ♀♀: females (most of them mated).
Figure 3. Mean temperature and annual rainfall during 2010–2011 in Strong phenological differences between two populations of a Neotropical funnel-web wolf spider
Figure 3. Mean temperature and annual rainfall during 2010–2011, according to the Portal Oficial del Gobierno de la Provincia de Córdoba (Argentina) and the Dirección Nacional de Meteorología (Uruguay).
Figure 2 in Strong phenological differences between two populations of a Neotropical funnel-web wolf spider
Figure 2. Characteristic landscape of both locations under study: (A) central Argentina, (B) southern Uruguay.
Figure 1 in Strong phenological differences between two populations of a Neotropical funnel-web wolf spider
Figure 1. Location of A. lagotis populations: central Argentina (CA) (Ascochinga, Sierras Chicas, Córdoba, Argentina), southern Uruguay (SU) (Piedras de Afilar, Canelones, Uruguay) and Brazilian populations of Minas Gerais (MG) and São Pablo (SP).
Figure 5 in Strong phenological differences between two populations of a Neotropical funnel-web wolf spider
Figure 5. Relative abundance of males, females and immature individuals from both studied populations of A. lagotis during the year (2011–2012). Categories are compared in pairs. ♂CA: males from central Argentina; ♂SU: males from southern Uruguay; ♀CA: females from central Argentina; ♀SU: females from southern Uruguay; ♀eggs + spid CA: females from central Argentina carrying eggsac or spiderlings (maternal period); ♀eggs + spid SU: females from southern Uruguay carrying eggsac or spiderlings (maternal period); immature CA: immature (juveniles and penultimate) individuals from central Argentina; immature SU: immature (juveniles and penultimate) individuals from southern Uruguay.
Figure 4 in Strong phenological differences between two populations of a Neotropical funnel-web wolf spider
Figure 4. Number of individuals captured in webs during the year from central Argentina (CA) and southern Uruguay (SU) populations of A. lagotis.
FIGURE 3 in Population Growth Parameters Of The Two-Spotted Spider Mite, Tetranychus Urticae, On Three Peach Varieties In Iran
FIGURE 3: Daily fecundity curves (eggs/female/day) of T. urticae on three peach varieties.
Phylogenomic variation at the population-species interface and assessment of gigantism in a model wolf spider genus (Lycosidae, Schizocosa)
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Data from: Colonization history and population genetics of the color-polymorphic Hawaiian happy-face spider Theridion grallator (Araneae, Theridiidae)
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Dispersal and life history of brown widow spiders in dated invasive populations on two continents
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Data from: Population-specific effect of Wolbachia on the cost of fungal infection in spider mites
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Data from: Linking native and invader traits explains native spider population responses to plant invasion
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Multimodal and multifunctional signaling? – web reduction courtship behavior in a North American population of the false black widow spider
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Data from: Evolution of sociality in spiders leads to depleted genomic diversity at both population and species level
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Data from: Northern range expansion of European populations of the wasp spider Argiope bruennichi is associated with global warming correlated genetic admixture and specific temperature adaptations
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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)
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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.