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226 results for “equality”
Data file: Equal performance of HTK-based and UW-based perfusion solutions in sub-normothermic liver machine perfusion
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Experimental data used in the article entitled "Electron Microscopy Study of Structural Defects Formed in Additively Manufactured AlSi10Mg Alloy Processed by Equal Channel Angular Pressing"
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FIGURE 3. Species Richness per Ecoregion. The richness data per ecoregion were categorized into classes with equal intervals, using 14 in Revealing the Baja California Peninsula's Hidden Treasures: An Annotated checklist of the native bees (Hymenoptera: Apoidea: Anthophila)
FIGURE 3. Species Richness per Ecoregion. The richness data per ecoregion were categorized into classes with equal intervals, using 14 breaks. However, the map displays only the eight categories where ecoregional richness is concentrated. Ecoregion: Coastal Sage Matorral (CSM); Chaparral (Ch); Baja California Mountains (BCM); Succulent Coastal Matorral (SCM); Lower Colorado Desert (LCD); Central Desert (CD); Vizcaíno Desert (VD); Gulf Coast (GC); La Giganta Ranges (GR); Magdalena Plains (MP); Tropical Dry Forest (TDF); Cape Mountains (CM); Sarcocaulescent Shrubland (SS).
The number of sources limiting equality before the law during COVID-19
<p><span>Rak Joanna, Bäcker Roman, The number of sources limiting equality before the law during COVID-19.</span></p> <p> </p> <p><span>This dataset was elaborated for the research project <em>Civil Disorder in Pandemic-ridden European Union</em>. The latter was financially supported by the National Science Centre, Poland [grant number 2021/43/B/HS5/00290].</span></p>
Figure 9. Fouldenia dorsal fins. Unlabelled scale bars equal 1 in Styracopterid (Actinopterygii) ontogeny and the multiple origins of post-Hangenberg deep-bodied fishes
Figure 9. Fouldenia dorsal fins. Unlabelled scale bars equal 1 cm. A, NMS 1980.40.30; B, NMS 1980.40.27; C, NMS 1965.4.3; D, NMS 1980.40.31; E, NHM P61548; F, NHM P61549.
Figure 8. Fouldenia paired fins. Unlabelled scale bars equal 1 in Styracopterid (Actinopterygii) ontogeny and the multiple origins of post-Hangenberg deep-bodied fishes
Figure 8. Fouldenia paired fins. Unlabelled scale bars equal 1 cm. A, GSE 2143 pectoral; B, 1980.40.30 pectoral; C, 1984.67.61 pectoral; D, NMS 1984.67.61 pelvic; E, GLAHM V8327 pectoral; F, NHM P13183 pectoral; G, NHM P14564 pectoral; H, NMS 1984.67.65 pectoral; I, NHM 1984.67.65 pelvic; J, NHM P61002 pectoral; K, NMS 1984.67.64 pectoral.
Figure 10. Fouldenia anal fins. Unlabelled scale bars equal 1 in Styracopterid (Actinopterygii) ontogeny and the multiple origins of post-Hangenberg deep-bodied fishes
Figure 10. Fouldenia anal fins. Unlabelled scale bars equal 1 cm. A, NMS 1980.40.30; B, GSE 2187; C, NMS 1965.4.3 (part); D, NMS 1965.4.3 (counterpart); E, NMS 1984.67.61; F, NMS 1980.40.31; G, NMS P61549; H, NHM P61002; I, NMS 1984.67.62; J, NHM P61548.
Figure 2. Styracopterus paired fins. Unlabelled scale bars equal 1 in Styracopterid (Actinopterygii) ontogeny and the multiple origins of post-Hangenberg deep-bodied fishes
Figure 2. Styracopterus paired fins. Unlabelled scale bars equal 1 cm. A, GSE 8731 pectoral; B, NMS 1891.53.50 pectoral; C, NMS 1891.53.51; D, GSE 5672 pectoral; E, GSE 5664 pectoral; F, GSE 5663 pectoral; G, NHM P1663 pelvic; H, GSE 8731 pelvic; I, GSE 5663 pelvic.
FIGURE 2. Most parsimonious combined tree under equal weights, with 17 in Phylogenetic analysis of the Pantomorus-Naupactus complex (Coleoptera: Curculionidae: Entiminae) from North and Central America
FIGURE 2. Most parsimonious combined tree under equal weights, with 17 morphological characters coded as additive. Bootstrap values over 50% below the corresponding branches.
FIGURE 1. Most parsimonious morphological tree under equal weights, with 17 in Phylogenetic analysis of the Pantomorus-Naupactus complex (Coleoptera: Curculionidae: Entiminae) from North and Central America
FIGURE 1. Most parsimonious morphological tree under equal weights, with 17 morphological characters coded as additive. Bremer support values over 3 are given above each corresponding branch and bootstrap values over 50% are below the branches.
Figs. 11–15. Attavicinus monstrosus structural features. Scale bars equal 0.5 in Attavicinus, a New Generic Name for the Myrmecophilous Dung Beetle Liatongus monstrosus (Scarabaeidae: Scarabaeinae)
Figs. 11–15. Attavicinus monstrosus structural features. Scale bars equal 0.5 mm. 11) Pygidium and propygidium, male; 12) Pygidium and propygidium, female; 13) Male genitalia, lateral view; 14) Mesoscutum-scutellum; 15) Ventral surface of mesoventrite, metaventrite and leg bases with right metaleg removed.
Figs. 3–8. Attavicinus monstrosus head structures. Scale bars equal 0.5 in Attavicinus, a New Generic Name for the Myrmecophilous Dung Beetle Liatongus monstrosus (Scarabaeidae: Scarabaeinae)
Figs. 3–8. Attavicinus monstrosus head structures. Scale bars equal 0.5 mm. 3) Antenna; 4) Epipharynx, ventral; 5) Mandible, ventral; 6) Mandible, dorsal; 7) Maxillae, dorsal and ventral views (scale bar 5 0.5 mm); 8) Labium, ventral.
Figs. 2–6. Anillinus aleyae male aedeagus and female genitalia. Scale bar for figures 2–4 equals 100 in A New Species and the First Record of the GenusAnillinus(Carabidae: Trechinae: Bembidiini) from the Ozark Region
Figs. 2–6. Anillinus aleyae male aedeagus and female genitalia. Scale bar for figures 2–4 equals 100 mm, for figures 5–6 equals 50 mm. 2) Median lobe; 3) Left paramere; 4) Right paramere; 5) Spermatheca; 6) Right stylomere and sternum IX.
FIGURE. RAxML tree based on a combined dataset of partial LSU and ITS sequence analyses. Bootstrap support values for ML equal to or greater than 60 %, Bayesian posterior probabilities (BYPP) equal to or greater than 0.95 are shown as ML/ BYPP above the nodes. New isolates are in red bold. The tree is rooted to Conioscypha lignicola and Conioschypha minutispora (FMR11245) and Conioscyphascus varius. The scale bar represents the expected number of nucleotide substitutions per site. in Yunnan-Guizhou Plateau: a mycological hotspot
FIGURE. RAxML tree based on a combined dataset of partial LSU and ITS sequence analyses. Bootstrap support values for ML equal to or greater than 60 %, Bayesian posterior probabilities (BYPP) equal to or greater than 0.95 are shown as ML/ BYPP above the nodes. New isolates are in red bold. The tree is rooted to Conioscypha lignicola and Conioschypha minutispora (FMR11245) and Conioscyphascus varius. The scale bar represents the expected number of nucleotide substitutions per site.
Data from: Honey bees are the most abundant visitors to Australian watermelon but native stingless bees are equally effective as pollinators
<p><span>Despite the benefits of a diverse approach to crop pollination, global food production remains reliant on a low diversity of managed pollinators, especially </span>the European honey bee (<em>Apis mellifera</em>). To facilitate more robust pollinator management and improve the resilience of the production system, it is necessary to understand regional variation in the pollination ecology of global food crops. Watermelon (<em>Citrullus lanatus</em> (Thunb.) Matsum. & Nakai) is a highly insect pollinator-dependent crop and even though it is grown globally across many different climate zones, little is known about its pollination ecology across the diverse growing regions of Australia, spanning from the tropics to the arid zone. We compared the species composition, visitation rates, and effectiveness of the dominant floral visitors on 15 farms across five major watermelon-growing regions of Australia. We found that insect species composition differed significantly among regions, but honey bees were the dominant watermelon flower visitor, with relative abundance varying from 73 - 94%. However, native bees (including stingless bees <em>Tetragonula</em> sp., and bees from Families Megachilidae, and Halictidae such as <em>Lasioglossum</em>, <em>Homalictus</em>, <em>Lipotriches</em>), and flies (particularly Syrphidae sp.) also visited and transferred pollen onto watermelon flowers. In particular, native stingless bees were common visitors in several growing regions and deposited similar amounts of pollen to honey bees. Our findings indicate that the Australian watermelon industry utilizes honey bees, but the diverse assemblage of available native pollinating taxa provides an additional opportunity for growers in specific growing regions. These native taxa may be encouraged in the production system by deploying managed populations (e.g. native stingless bee colonies), employing pollinator-safe land management practices, as well as exploring methods for increasing the efficiency of managed honey bee colonies.</p>
Both sexes responded equally to food restriction
<p>The collected juveniles were randomly assigned into two groups (Nstarving = 161, Ncontrol = 159), the control group was supplied with abundant food across the entire experiment process, and the experiment group was provided with only half amount of required food resource for the entire development process.In order to investigate the effects of food restriction on the development duration, adult body length and weight of spiders and the differences between female and male spiders, we measured the body length of each spider every five days since the experiment started until they reached adulthood, then their body weight, sex and the development duration were recorded.In order to explore the behavioral responses, concerning daily time allocation and hunting, of spiders between different food conditions, sexes and growth stages, we randomly selected some spiders from "Experiment 1" and carried out the following trails. Detailed number of spiders from each sex, each growth stage and each food condition are summarized in supplementary materials.</p>
Highly variable (no clear pattern). All portions of the dorsal views were equally used. In head images the area around the eye, the top of the head, the snout and the throat were all used in similar proportions. P. carbonelli Variable for both views. Snout and middle of the dorsum used in dorsal view. Top of the head most frequently (but not strictly) used in lateral view. P. guadarramae Whole body used for dorsal view (but variable); either throat (most common) or ear region used in head lateral views. P. hispanicus Variable. Anterior portion of snout used more frequently than in other species for both dorsal and head lateral views. P. liolepis Highly variable. Whole body used in most dorsal images, area around the eye and throat used in head lateral views, but other patterns common. P. lusitanicus Highly variable. All parts of the dorsum used (but frequently the most posterior part); area around the ear frequently used in head lateral images. P. tunesiacus Highly variable. Dorsal area near the insertion of the posterior limbs used more frequently than in other species; different regions of the head used, often simultaneously. P. Ʋaucheri Highly variable. Different regions of dorsum (from head to the posterior region) used in dorsal images, all portions of the head, but most frequently the throat, used in lateral images. P. Ʋirescens Highly variable. All parts of both images used. Head and anterior part of the dorsum more used than in other species. in Identification of morphologically cryptic species with computer vision models: wall lizards (Squamata: Lacertidae: Podarcis) as a case study
Highly variable (no clear pattern). All portions of the dorsal views were equally used. In head images the area around the eye, the top of the head, the snout and the throat were all used in similar proportions. P. carbonelli Variable for both views. Snout and middle of the dorsum used in dorsal view. Top of the head most frequently (but not strictly) used in lateral view. P. guadarramae Whole body used for dorsal view (but variable); either throat (most common) or ear region used in head lateral views. P. hispanicus Variable. Anterior portion of snout used more frequently than in other species for both dorsal and head lateral views. P. liolepis Highly variable. Whole body used in most dorsal images, area around the eye and throat used in head lateral views, but other patterns common. P. lusitanicus Highly variable. All parts of the dorsum used (but frequently the most posterior part); area around the ear frequently used in head lateral images. P. tunesiacus Highly variable. Dorsal area near the insertion of the posterior limbs used more frequently than in other species; different regions of the head used, often simultaneously. P. Ʋaucheri Highly variable. Different regions of dorsum (from head to the posterior region) used in dorsal images, all portions of the head, but most frequently the throat, used in lateral images. P. Ʋirescens Highly variable. All parts of both images used. Head and anterior part of the dorsum more used than in other species.
New Challenges for Gender Equality in AI: Navigating the Ethical and Social Implications.- 1st SPATIAL podcast episode
<p>Gender bias can penetrate AI systems through multiple avenues, posing a significant challenge in ensuring fair and equitable outcomes. From historical biases ingrained in the data to biased data selection methods, these factors contribute to biased AI systems. Recognizing the implications of gender bias in AI is crucial, as it impacts various domains such as social media advertising, job recruitment, smart devices, facial recognition, and voice recognition. To strive for equity, it is essential to understand the interconnectedness of different social and political identities, emphasizing intersectionality and the need to avoid generalizing experiences.</p> <p>In the first episode of the <a href="https://spatial-h2020.eu/">SPATIAL </a>podcast, we had the privilege of conversing with Marcus Westberg, postdoctoral researcher and project manager at <a href="https://www.tudelft.nl/">TU Delft</a>, the coordinator of the SPATIAL project.</p>
A Clinical Trial to Evaluate the Detection of Atrial Fibrillation for an One Day Versus More Than or Equal to Eight Days Using MEMO Patch PLUS in Individuals Aged ≥ 75 Years, or Those at High Risk of
ClinicalTrials.gov study NCT05355948. IPD Sharing: Not stated. Countries: 1. Publications: 1.
OraL Crushed and dIspersed Ticagrelor 180mg Compared to Whole Tablets of eQUal Dose in STEMI Patients unDergoing Primary PCI: a Pharmacokinetic/Pharmacodynamic Study (the LIQUID Study)
ClinicalTrials.gov study NCT02046486. IPD Sharing: Not stated. Countries: 1. Publications: 1.
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.