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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 1 in Fluctuating asymmetry in populations of the South American frog Physalaemus cuvieri (Leptodactylidae) in areas with different degrees of disturbance
Figure 1. Ecological Station of Minas Gerais Federal University (EEUFMG) and Serra do Cipó National Park (PNSC), located at Minas Gerais State, southeastern Brazil. State boundaries are represented by black lines, while rivers, lakes and sea are represented in grey. State capitals are represented by white circles.
Figure 3 in Genetic, ecological and morphological differences among populations of the cactophilic Drosophila mojavensis from southwestern USA and northwestern Mexico, with descriptions of two new subspecies
Figure 3. Photographs showing lateral views of the aedeagus and aedeagal apodeme in the four subspecies of Drosophila mojavensis. (A) D. m. mojavensis; (B) D. m. baja; (C) D. m. sonorensis; (D) D. m. wrigleyi.
Figure 1 in Genetic, ecological and morphological differences among populations of the cactophilic Drosophila mojavensis from southwestern USA and northwestern Mexico, with descriptions of two new subspecies
Figure 1. Map showing approximate geographic distribution of the four subspecies of Drosophila mojavensis in southwestern USA and northwestern Mexico.?5unconfirmed subspecies at San Felipe, Baja California. Numbers show localities where flies used for laboratory cultures were collected: (1) Mojave; (2) Baja; (3) Sonora; (4) Catalina (see 'Materials and methods' for details).
Data and statistical code from: Population differences in the effect of context on personality in an invasive lizard
<p>Within populations, individuals often differ consistently in their average level of behavior (i.e. animal personality), as well as their response to environmental change (i.e. behavioral plasticity). Thus, changes in environmental conditions might be expected to mediate the structure of animal personality traits. However, it is currently not well understood how personality traits change in response to environmental conditions, and whether this effect is consistent across multiple populations within the same species. Accordingly, we investigated variation in personality traits across two ecological contexts in the invasive delicate skink (<i>Lampropholis delicata</i>). Specifically, lizards from three different populations were repeatedly measured for individual activity in group behavioral assays under differing levels of food availability. We found that environmental context had a clear effect on the structure of lizard personality, where activity rates were not repeatable in the absence of food, but were repeatable in the presence of food resources. The difference in repeatability of activity rates across contexts appeared to be largely driven by an increase in among-individual variance when tested in the presence of food resources. However, this was only true for one of the populations tested, with food context having no effect on the expression of personality traits in the other two populations. Our results highlight the important role of environmental context in mediating the structure of animal personality traits and suggest that this effect may vary among populations.</p>
FIGURE 3 Synotis alata from different populations. A and B in Four new synonyms in Synotis (Asteraceae, Senecioneae)
FIGURE 3 Synotis alata from different populations. A and B. The valley at the right of Kangshan Bridge, Nyalam, Xizang, China, M. Tang & C. Ren 490 (IBSC). C and D. Pianma Pass, Lushui, Yunnan, China, M. Tang & Y. Hong 231 (IBSC). E and F. Chenwanglao Shan, Tianlin, Guangxi, China, L. Y. Wang & M. Tang 136 (IBSC). Noting that the plants in A, C and E have solitary flowering stem and their leaves sub-aggregated below the synflorescence, while the plants in B, D and F produce alternative leaves and their flowering stems bear many secondary peduncles with smaller leaves. Red arrows show the alternative leaves on the flowering stem or secondary peduncles.
Data and code to replicate the analyses in "Interpopulation differences in male reproductive effort drive the population dynamics of a host exposed to an emerging fungal pathogen"
<p>Data and code used to run the analyses presented in the article "Interpopulation differences in male reproductive effort drive the population dynamics of a host exposed to an emerging fungal pathogen" published in Journal of Animal Ecology. Please cite this article if you use the data or write to the authors for a potential collaboration. If you require further details about the data please write to: andresvalenzuela.zoo@gmail or avalenzuela@ranitadedarwin.org.</p> <p>This study is part of an ongoing long-term monitoring program focused on the threatened Southern Darwin's frog (<em>Rhinoderma darwinii</em>), led by the Chilean non-profit organization ONG Ranita de Darwin (www.ranitadedarwin.org/monitoreo). This project has been funded by Zoo Leipzig, The National Geographic Society, Rufford Foundation, Weeden Foundation, Mohamed Bin Zayed Species Conservation Fund, VONA, Fundación Huilo Huilo, and Fundación MERI. We want to thank to the many volunteers that have kindly participated during this project.</p>
FIGURES – 7. SEM images of Craspedostauros laevissimus from different populations. 42. Close up of the central area externally, showing the weakly expanded central raphe endings and the cribrate areolae with usually four to five peripheral pores and up to one central pore (sample 13). 43. Close up of the central area internally, showing the narrow stauros located in a wider hyaline area, the central raphe endings with double helictoglossa, and the rounded to rectangular areolar openings internally (sample 13). 44. Close up of the apex, showing the bent distal raphe endings, cribrate areoale with up to six peripheral pores and up to two central pores (sample 13). 45. Close ups of both the valve exterior and interior (sample 11), showing the weakly expanded central raphe endings externally; the areolae near the raphe with usually four to five peripheral pores and one central pore; the central raphe endings with double helictoglossa and the rounded areolar openings internally. 46. Internal valve view, showing the narrow transverse rib of silica at the valve center (strauros) and the central raphe endings with double helictoglossa (sample 11). 47. Close up of the apex of the same valve internally, showing the rounded to square or rectangular areolar openings (sample 11). Scale bars = 5 μm (Fig. 46); 1 μm (Figs 42–45,47). in The genus Craspedostauros E.J.Cox (Bacillariophyta) on the coasts of Livingston Island, Maritime Antarctica
FIGURES – 7. SEM images of Craspedostauros laevissimus from different populations. 42. Close up of the central area externally, showing the weakly expanded central raphe endings and the cribrate areolae with usually four to five peripheral pores and up to one central pore (sample 13). 43. Close up of the central area internally, showing the narrow stauros located in a wider hyaline area, the central raphe endings with double helictoglossa, and the rounded to rectangular areolar openings internally (sample 13). 44. Close up of the apex, showing the bent distal raphe endings, cribrate areoale with up to six peripheral pores and up to two central pores (sample 13). 45. Close ups of both the valve exterior and interior (sample 11), showing the weakly expanded central raphe endings externally; the areolae near the raphe with usually four to five peripheral pores and one central pore; the central raphe endings with double helictoglossa and the rounded areolar openings internally. 46. Internal valve view, showing the narrow transverse rib of silica at the valve center (strauros) and the central raphe endings with double helictoglossa (sample 11). 47. Close up of the apex of the same valve internally, showing the rounded to square or rectangular areolar openings (sample 11). Scale bars = 5 μm (Fig. 46); 1 μm (Figs 42–45,47).
Supplements: Comparison of different validation methods for single-step genomic evaluations based on a simulated cattle population
<p><strong>Supplementary Figures</strong></p> <p>Supplemental Figures to show true and estimated dispersion for the different scenarios</p>
Microsatellite and morphological data for Carpobrotus species sampled from 40 different populations
<p>Microsatellite data for six loci and 698 individuals of Carpobrotus species sampled from 40 different population</p> <p>Morphological data for individuals of Carpobrotus species from 40 different populations</p>
Vitamin D Status and Immune-inflammatory Status in Different UK Populations With COVID-19 Infection
ClinicalTrials.gov study NCT04519034. IPD Sharing: NO. Countries: 1. Publications: 8.
A Study, Called UV Population, to Learn More About the Safety of the Study Drug Ultravist, Which is Given to Get Clearer X-ray Pictures, in People of Different Sexes, Races, and From Different Countri
ClinicalTrials.gov study NCT05428397. IPD Sharing: NO. Countries: 1. Publications: 4.
Characterization of Chronic Pain in Elderly Population with Emphasis on Differences Between Gender
ClinicalTrials.gov study NCT06855797. IPD Sharing: NO. Countries: 1. Publications: 5.
Determine Immunoglobulin G4 (IgG4) Standards for Cow's Milk and Egg in Different Populations of Allergic and Non-allergic Children
ClinicalTrials.gov study NCT03776474. IPD Sharing: NO. Countries: 1. Publications: 1.
This Will Be an Observational, Exploratory Study Targeting a Population of Subjects with Diabetes from 4 Different Geographical Areas of Emilia- Romagna.
ClinicalTrials.gov study NCT06639100. IPD Sharing: NO. Countries: 1. Publications: 1.
Impact of 10 Different Prior Cancer History on Survival of Patients Who Underwent Surgery for Second Primary Colorectal Cancer: a Population-based Cohort Study
ClinicalTrials.gov study NCT06189547. IPD Sharing: UNDECIDED. Countries: 1. Publications: 5.
Data: Phenotypic trait differences between Iris pseudacorus in native and introduced ranges support greater capacity of invasive populations to withstand sea level rise
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Data from: Postmating-prezygotic isolation between two allopatric populations of Drosophila montana: fertilisation success differs under sperm competition
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Data from: Genetically distinct populations of northern shrimp, Pandalus borealis, in the North Atlantic: adaptation to different temperatures as an isolation factor
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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)
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.