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4,486 results for “emergence”
Fig. 4. A–C. Lioclema celebratum Morozova, 1961 in Emergence and extinction of the Givetian to Frasnian bryozoan faunas in the Kostomłoty facies zone, Holy Cross Mountains, Poland
Fig. 4. A–C. Lioclema celebratum Morozova, 1961. Tangential section (A), longitudinal section (B), and transverse section (C) of the specimen PIN 4873/41 from Givetian of Laskowa Quarry, Laskowa Góra Beds. D, E. Atactotoechus polygonius Bigey, 1988. Tangential section (D), longitudinal section (E) of the specimen PIN 4873/43 from Givetian of Laskowa Quarry, Laskowa Góra Beds. F. Eridotrypella arguta Morozova and Weis, sp. nov. Tangential section of the paratype PIN 4873/6 from Frasnian of Górno, Józefka Hill, Wietrznia Beds. Scale bars 1 mm.
Fig. 2 in Emergence and extinction of the Givetian to Frasnian bryozoan faunas in the Kostomłoty facies zone, Holy Cross Mountains, Poland
Fig. 2. Position of the bryozoan−bearing sections under study (see Fig. 1B) against developmental stages of the Middle to Late Devonian bank−to−reef complex of the Holy Cross Mountains; stratigraphic−facies cross−section (after Racki 1993: fig. 3, changed) is shown to emphasise eustatic rhythmic control of the depositional pattern and main bryzozoan immigrational events in the Kostomłoty basin (asterisked); Ic–IId, transgressive−regressive cycles modified from Johnson et al. (1985); GC, Góra Cmentarna; GŁ, Góra Łgawa; M, Marzysz; P, Posłowice; GZ, Góra Zamkowa; SG, Sowie Górki; JB, Jurkowice−Budy; Sk, Skały; K, Kostomłoty (eastern hill).
Fig. 1 in Emergence and extinction of the Givetian to Frasnian bryozoan faunas in the Kostomłoty facies zone, Holy Cross Mountains, Poland
Fig. 1. Location of bryozoan sites in Poland (A) and Holy Cross Mountains (B, based on Racki 1993: fig. 2); see also Fig. 2 for palaeographic−facies setting.
Fig. 3. A, B. Fistulipora pavimenta Bigey, 1988 in Emergence and extinction of the Givetian to Frasnian bryozoan faunas in the Kostomłoty facies zone, Holy Cross Mountains, Poland
Fig. 3. A, B. Fistulipora pavimenta Bigey, 1988. Shallow tangential (A) and longitudinal (B) sections of the specimen PIN 4873/23 from Givetian of Laskowa Quarry, Laskowa Góra Beds. C–F. Canutrypa francqana Bassler, 1952. Shallow tangential section (C), longitudinal section (D), transverse section (E), and oblique tangential section with well visible longitudinal section of the autozooecial chambers with diaphragms (F) of the specimen PIN 4873/25 from Frasnian of Górno, Józefka Hill, Wietrznia Beds. Scale bars 1 mm.
Figure 4 in TEMPORAL PARTITIONING OF CHIRONOMIDAE EMERGENCE IN AN INSULAR, TROPICAL RAINFOREST STREAM Abstract
Figure 4. Monthly emergence of abundant Tanypodinae taxa (>1% of total abundance). Shaded area indicates dry season.
Figure 7 in TEMPORAL PARTITIONING OF CHIRONOMIDAE EMERGENCE IN AN INSULAR, TROPICAL RAINFOREST STREAM Abstract
Figure 7. Dissimilarities (Bray-Curtis) between monthly samples of emerging Chironomidae for (a) Quebrada Prieta (USA; Puerto Rico) and (b) Kalengo River (Democratic Republic of the Congo). Grey circles are individual paired months and black circles are the average dissimilarities of all pairs of samples separated by the same number of months.
Figure 3 in TEMPORAL PARTITIONING OF CHIRONOMIDAE EMERGENCE IN AN INSULAR, TROPICAL RAINFOREST STREAM Abstract
Figure 3. Monthly total abundance (a) and taxa richness (b) of emerging Chironomidae from Quebrada Prieta. Shaded area indicates dry season.
Figure 1 in TEMPORAL PARTITIONING OF CHIRONOMIDAE EMERGENCE IN AN INSULAR, TROPICAL RAINFOREST STREAM Abstract
Figure 1. Average monthly water temperature (a) and rainfall (b) from stations near the sample site on Quebrada Prieta. Circles are average values of water temperature (1983-2018) and rainfall (1975-2021) with error bars representing standard deviation. Grey bars are data for February 1990 through January 1991. Water temperature data are from a downstream station in Quebrada Sonadora (McDowell 2021) and rainfall data are from the El Verde Field Station (Ramirez 2021).
Figure 6 in TEMPORAL PARTITIONING OF CHIRONOMIDAE EMERGENCE IN AN INSULAR, TROPICAL RAINFOREST STREAM Abstract
Figure 6. Monthly emergence of abundant Chironominae taxa (>1% of total abundance). Shaded area indicates dry season.
Figure 5 in TEMPORAL PARTITIONING OF CHIRONOMIDAE EMERGENCE IN AN INSULAR, TROPICAL RAINFOREST STREAM Abstract
Figure 5. Monthly emergence of abundant Orthocladiinae taxa (>1% of total abundance). Shaded area indicates dry season.
Fig. 4 in Molecular characterization of the re-emerging West Nile virus in avian species and equids in Israel, 2018, and pathological description of the disease
Fig. 4 Replication of yellow-legged seagull-derived WNV in Vero and C6/36 cells. Cytopathic effect (left) was observed after one passage in both cell lines. The control cells (right) were grown under the same conditions. Scale-bars: 100 µM
Fig. 5 in Molecular characterization of the re-emerging West Nile virus in avian species and equids in Israel, 2018, and pathological description of the disease
Fig. 5 Phylogenetic analysis of West Nile viruses (WNVs) from avian and equine hosts studied in Israel during 2016 and 2018. The analysis was conducted on a nucleotide sequence of the genes encoding the capsid, pre-membrane protein, and membrane protein, using the neighbor-joining method implemented in MEGA X software. The robustness of branching pattern was tested by 1000 bootstrap replications. The rates among sites algorithm used was gamma distribution with invariant sites (G+I). The bar denotes 0.02 nucleotide substitutions per site. Lineage 1 and 2 reference strains are present with country and year of isolation. The GenBank annotated sequences are underlined and the sequences obtained in this study (during 2016 and 2018) are marked with rectangles
On the emergence of fault afterslip during laboratory seismic cycles
<div>This is the ReadMe file corresponding to the dataset of the study entitled:</div> <div>"On the emergence of fault afterslip during laboratory seismic cycles"</div> <div>By Noël C., Twardzik C., Dublanchet P., and Passelègue F.</div> <div> </div> <div>This Read-Me file has been last edited in October 2024</div> <div> </div> <div>This readme file describes the data repository and supplementary files accompanying the above publication. </div> <div>For any further queries please contact corentin.noel@geoazur.unice.fr</div> <div> </div> <div> </div> <div> </div> <div>Each experiment has a .txt file. The nam of the file is composed of first the sample configuration, then the confining pressure. If "down" is following, it stands for the confining pressure downphase at the end of the experiment (see method section of the manuscript). For Granite_Marble experiments, "bis" at the end of the name stands for the duplicated experiment. </div> <div> </div> <div>The data are tab separate file, each column is a variable as follow:</div> <div>Column 1: Time(s)</div> <div>Column 2: Axial average displacement (mm)</div> <div>Column 3: Axial stress (MPa)</div> <div>Column 4: Confining pressure (MPa)</div> <div>Column 5: Strain gage 1 (µstrain)</div> <div>Column 6: Strain gage 2 (µstrain)</div> <div>Column 7: Strain gage 3 (µstrain)</div> <div>Column 8: Strain gage 4 (µstrain)</div> <div>Column 9: Strain gage 5 (µstrain)</div> <div>Column 10: Strain gage 6 (µstrain)</div> <div>Column 11: Strain gage 7 (µstrain)</div> <div>Column 12: Strain gage 8 (µstrain)</div>
V 1.0 Dataset for "Emergence and Evolution of Big Data Research: A 30-year (1993-2022) Scientometric Analysis of The Knowledge Field"
<p>This dataset includes the bibliometric data used in the scientometric analysis of the field of big data research over a 30-year period (1993-2022). The data was collected from the Scopus database, and contains information on 70,163 articles and 315,235 author keywords. The dataset is structured by 17 interrelated data categories that trace the conceptual emergence and evolution of the big data field, focusing on keyword co-occurrences, disciplinary distributions, and the temporal growth of publications. This dataset supports the analyses presented in the related manuscript.</p>
Dataset for article: Emerging materials and technologies for advancing bioresorbable surgical meshes
<p>The dataset contains all the data discussed in the related paper: Mechanical and biological performances of bioresorbable meshes, clinical complications associated with meshes. Separate folders include data on ideal surgical meshes (Tables), advanced manufactering technologies such as 3D and 4D printing, methods of surface modifications in jpg files. </p> <p> </p>
THE IMPACT OF PAEDIATRIC EMERGENCY MANAGEMENT SKILLS ON PATIENT OUTCOMES IN ZARIA
<p><span>Paediatric emergencies represent a critical challenge in Nigeria, where approximately 2,300 children under the age of five die daily, predominantly from preventable and treatable conditions such as pneumonia, malaria, and diarrheal diseases. Mortality rates are disproportionately higher in rural areas, where primary health care (PHC) centers often serve as the only point of access to medical services. The effectiveness of these centers is largely dependent on the emergency management skills of their healthcare workers. Despite their importance, there has been limited research on how the skills of PHC workers in managing paediatric emergencies impact patient outcomes.</span></p> <p><span>This study aimed to assess the proficiency of healthcare workers in primary healthcare centers in Zaria in managing common paediatric emergencies. A cross-sectional descriptive study was conducted among 139 health workers selected through a multi-stage sampling technique in Sabon Gari and Zaria Local Government Areas. Data collection was carried out using a pre-tested semi-structured self-administered questionnaire. The data were analyzed using SPSS version 21, and associations were tested using the chi-square test, with results presented in tables and charts.</span></p> <p><span>The findings revealed a significant deficiency in the emergency management skills of healthcare workers. A majority of respondents demonstrated inadequate skills in handling paediatric emergencies, with 66 (48.5%) exhibiting very poor competency in the management of common paediatric emergencies, and 32 (23.5%) displaying poor competency. Only a small fraction, 4 (2.9%) of respondents, demonstrated excellent skills in emergency management. Similarly, 46.7% of the respondents had very poor skills in the treatment of common paediatric emergencies, while only 3.0% exhibited excellent treatment skills. A statistically significant relationship was observed between the level of academic qualification and emergency management skills (p < 0.05).</span></p> <p><span>The results underscore the critical need to enhance the skill levels of healthcare workers in PHCs through continuous professional development. This could be achieved through collaborative efforts between the Department of Paediatrics at Ahmadu Bello University Teaching Hospital and the Primary Health Care Departments of Zaria and Sabon Gari local governments, focusing on regular training and workshops. Improving the skills of healthcare workers in managing paediatric emergencies is essential for reducing child mortality and improving health outcomes in the region.</span></p>
WORK-LIFE BALANCE OF THE EMPLOYED POPULATION DURING THE EMERGENCY SITUATION OF COVID-19 IN LATVIA
<p>All the employees face the challenge of finding the right work-life balance. The ability of employees to deal with the successful combining of work, family responsibilities, and personal life is crucial for both employers and family members of employees. During the COVID-19 emergency situation, many people around the world were forced to work remotely. Initially, there were observed some certain expectations about the possibility of working from home as a positive factor that will promote work-life balance. However, over time, negative tendencies were also revealed, as employees were only one call or message away from the employer, and uncertainty and leisure time with family often created more stress. As many organizations and individuals were not ready for this sudden change, many mistakes were made, which further raised the issue of work-life balance. The aim of the research was to evaluate the flexibility of reconciling work and private life of Latvian employees in various socio-demographic groups during the COVID-19 emergency situation in spring 2020, to investigate how family life influenced employees’ ability to perform work duties, to find out if employees had any additional housework responsibilities and how their workload changed concerning housework amount during the COVID-19 emergency situation. The research is based on the data obtained in the survey of the Latvian employed population, which was conducted within the framework of the Latvian National Research Programme Project “CoLife” in the second half of 2020. As a result, the hypothesis of the research that all groups of employees experienced work-life balance difficulties during the COVID-19 emergency situation has been partially confirmed, i.e. women in the 18-44 age group and respondents with minor children in the household more likely faced difficulties of work-life balance. The scientific research methods that were used in the research are the monographic method, content analysis, survey, data processing with SPSS to determine the mutual independence of the data from the questionnaires. </p>
Figures 75–79. Habitus images. 75 in Comparison of Coleoptera emergent from various decay classes of downed coarse woody debris in Great Smoky Mountains National Park, USA
Figures 75–79. Habitus images. 75) Sepedophilus cinctulus (Erichson) (Staphylinidae: Tachyporinae). 76) Sepedophilus occultus (Casey) (Staphylinidae: Tachyporinae). 77) Hymenorus sp. (female) (Tenebrionidae). 78) Strongylium crenatum Mäklin (Tenebrionidae). 79) Aulonothroscus distans Blanchard (Throscidae).
Figures 51–56. Habitus images. 51 in Comparison of Coleoptera emergent from various decay classes of downed coarse woody debris in Great Smoky Mountains National Park, USA
Figures 51–56. Habitus images. 51) Priobium sericeum (Say) (Ptinidae: Anobiinae). 52) Dendroides canadensis Latreille (Pyrochroidae). 53) Dendroides concolor (Newman) (Pyrochroidae). 54) Clinidium baldufi Bell (Rhysodidae). 55) Rhinosimus viridiaeneus (Randall) (Salpingidae). 56) Aleocharinae gen. sp. (Staphylinidae: Aleocharinae).
Figures 69–74. Habitus images. 69 in Comparison of Coleoptera emergent from various decay classes of downed coarse woody debris in Great Smoky Mountains National Park, USA
Figures 69–74. Habitus images. 69) Trimioplectus obsoletus Brendel (Staphylinidae: Pselaphinae). 70) Euconnus (Napochus) sp. (Staphylinidae: Scydmaeninae). 71) Euconnus (Scopophus) n. sp. (Staphylinidae: Scydmaeninae). 72) Euconnus (Scopophus) sp. (Staphylinidae: Scydmaeninae). 73) Hesperus apicialis (Say) (Staphylinidae: Staphylininae). 74) Sepedophilus brachypterus Campbell (Staphylinidae: Tachyporinae).
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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.