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209 results for “fighting”
Microcystin-LR (one of the toxic congeners of microcystin) exposure causes crayfish to forget previous fight outcomes as well as previous opponents, MI, 2025
Harmful algal blooms are increasing across the globe as a function of nutrient run off and climate change. While the study of the mechanisms that underlie the blooms themselves are abundant, the impact of the toxins produced by blooms needs more research. Crayfish are keystone species in aquatic habitats and rely on chemoreception for many of their ecosystem functions. Crayfish were placed in a fight arena for measure both the outcome and dynamics aspects of agonistic encounters. Then the loser of the fights were exposed to either controls or microcystin for four days. Afterwards, the crayfish fought either another unfamiliar opponent or the previous opponent. The data contained in this package has the concentrations of microcystin exposure, morphological data on the crayfish, and then behavioral data from the two different fights. The behavioral data has two categories: time spent at different levels of intensity and time it took the crayfish pair to reach a certain intensity.
Water restriction induces behavioral fight but impairs thermoregulation in a dry-skinned ectotherm
<p>Raw data of the article "Water restriction induces behavioral fight but impairs thermoregulation in a dry‐skinned ectotherm" by Rozen-Rechels D. et al., published in Oikos in 2020 (https://doi.org/10.1111/oik.06910). These data are freely available and are provided as csv files. Check the readme file for information on metadata.</p> <p>Data were formatted by David Rozen-Rechels and produced according to standards and protocols described in the companion paper.</p>
Fighting COVID-19 with computational tools: an AI guided review of 17,000 studies - The CSCoV database.
<p>CSCoV (Computational Studies about COVID-19) is a dataset containing COVID-19 related studies extracted from PubMed, bioRxiv, medRxiv, and arXiv, together with article and author related metrics obtained from Semantic Scholar (plus page views from bioRxiv and medRxiv). Using machine learning, the articles are categorized in six topics (Pharmacology, Genomics, Epidemiology, Healthcare, Clinical Medicine, Clinical Imaging) and prioritized. The database is periodically updated.</p> <ul> <li>Publication: TBA</li> <li>Files included in this release: <ul> <li>cscov_09_2021.png: dataset statistics for the current CSCoV release.</li> <li>cscov_09_2021.tsv: CSCoV database.</li> <li>schema.json: metadata.</li> <li>cscov_09_2021.tar.gz: Doc2Vec and DeepWalk features used for the DL model</li> </ul> </li> <li> <p>Source code: <a href="https://github.com/SFB-KAUST/covid-review">https://github.com/SFB-KAUST/covid-review</a></p> </li> </ul>
Supplementary materials (Allometry and fighting behaviour of a dimorphic stag beetle Cyclommatus miniszechi (Coleoptera: Lucanidae))
<p><strong>Supplementary Materials:</strong></p> <p><strong>Table S1.</strong> The morphological measurements of males of <em>Cyclommatus mniszechi</em> used for allometry analyses.</p> <p><strong>Table S2. </strong>The behavioural sequence data used for sequential analyses of size-matched contests in major males of <em>Cyclommatus mniszechi</em>.</p> <p><strong>Table S3. </strong>The behavioural sequence data used for sequential analyses of size-matched contests in minor males of <em>Cyclommatus mniszechi</em>.</p> <p><strong>Video S1.</strong> The behavioural sequence of males of <em>Cyclommatus mniszechi</em> in fighting contests under the laboratory setups. One of the opponents walked to the other and touched it (00:07), and then both of them displayed ‘defensive posture’ (00:08) after ‘touch’. Once both individuals approached each other, they accelerated antennation and raised their mandibles and prothoracic parts. The contest then progressed into ‘body raising’ (00:14). They then performed ‘attack’ and ‘push’ to each other several times and then escalated to ‘tussle’ (00:20) and interlocked their mandibles until one of the contestants was clamped (‘clamp1’) in the air by the other for a second and flipped (00:50). The winner dropped the loser and kept attacking and pushing the loser while the loser retreated and moved backwards (00:51).</p>
Fight or flight? Behaviour and experiences of laypersons in the face of an incipient fire
<p>This dataset contains raw data collected in an experimental study by the University of Muenster, Germany, in cooperation with the German Fire Protection Association and the State Fire Service Institute NRW, Germany. The study is part of a larger research project and examined the behavior of laypersons when confronted with an incipient fire.</p> <p>Within minutes, an incipient fire can develop into a life-threatening full fire. Consequently, it should be fought as early as possible. But are laypersons capable of doing this? In such a situation, how do they behave and feel? These questions are addressed in the current study. Persons without any professional firefighting training (N=64) were confronted in two experimental runs with a real incipient fire in the form of a burning pillow.</p> <p>The study was approved by the ethics committee of the Department 7 of the University of Münster (ID 2018-16-MT) and pre-registered with AsPredicted.org under the number 20436 (https://aspredicted.org/8py33.pdf). The study was supported by the German Federal Ministry of Education and Research (funding code FKZ 13N14208).</p> <p>In addition to the raw data, the codebook as well as the R- analysis script is included here for better comprehensibility. The raw data contains only the information of persons who were included in the analysis and have agreed to it. Some demographic information was deleted to ensure anonymity.</p>
Fig. 3 in A new species of black water fighting fish from Singkep Island (Teleostei: Osphronemidae)
Fig. 3. Schematic diagrams of throat pattern of the Betta waseri group in chronological order of discovery: a, B. waseri, b, B. hipposideros, c, B. tomi, d, B. spilotogena, e, B. chloropharynx, f, B. renata, g, B. pi, h, B. pardalotos, i, B. omega, and j, B. andrei.
Fig. 1. Betta andrei, ZRC 64279, 50.7 in A new species of black water fighting fish from Singkep Island (Teleostei: Osphronemidae)
Fig. 1. Betta andrei, ZRC 64279, 50.7 mm SL: topmost – live fish; second from top – freshly preserved fish with white background; third from top – freshly preserved fish with black background; bottom – radiograph.
Fighting the School-to-Prison Pipeline with Excellence Project
<p><strong>Join the movement of <a href="https://www.excellenceproject.org/take-action">organizations fighting school to prison pipeline</a> to transform education and opportunities for students at risk. Excellence Project works tirelessly to combat the school-to-prison pipeline by fostering equitable learning environments, mentorship programs, and advocacy for restorative justice. </strong></p>
MERICS China Podcast: Fighting local government debt, with Victor Shih and Max Zenglein
<p>After months of weak economic performance, Beijing has introduced a series of measures aimed at stabilizing the economy. They include a 10 trillion yuan local government debt restructuring package.</p> <p>To shed light on the blatant levels of local government indebtedness, <strong>Claudia Wessling</strong>, Director Communications and Publications at MERICS, talks to <strong>Victor Shih</strong> and <strong>Max Zenglein</strong> in this episode of the MERICS China Podcast. Victor is a professor of political science, director of the 21st Century China Center at the School of Global Policy and Strategy and the Ho Miu Lam Chair in China and Pacific Relations at UC San Diego. Max is the Chief Economist at MERICS and the driving force behind the Economic Indicators, a quarterly series of analyses for MERICS members that puts China’s economic statistics into context. </p>
Dataset del análisis de los juegos de Fight COVID Jam 2019
<p>Dataset realizado por medio del modelo "Modelo de análisis de serious games en el entorno de las game jam" (https://zenodo.org/record/6462394) en la muestra de juegos presentados en la Fight COVID Jam 2019 (https://fightcovid.gamebcn.co/).</p>
ArMoR Cluster: 5 research projects fight Antimicrobial Resistance in livestock farming
<p>Within Horizon Results Booster programme (HRB), 4 Horizon 2020 projects (AVANT, DISARM, HealthyLivestock and ROADMAP) and 1 BBSRC funded project (AMRILS) have formed the "ArMoR Cluster" to develop a conceptual framework to improve understanding of AMR in livestock systems.</p> <p>Supported by the European Commission, Horizon Dissemination Booster (HRB) contributes to an effective transfer of research and innovation project results to policy makers, industry and society by offering various services as dissemination, exploitation strategy and business plan development to projects.</p> <p>The video is available on YouTube: <strong><a href="https://www.youtube.com/watch?v=rnU35ytdEuM">https://www.youtube.com/watch?v=rnU35ytdEuM</a></strong></p> <p>For any further questions please contact us at:</p> <ul> <li><strong><a href="https://zenodo.org/record/avant@rtds-group.com">avant@rtds-group.com</a></strong> (project AVANT),</li> <li><strong><a href="https://zenodo.org/record/info@disarmproject.eu">info@disarmproject.eu</a></strong> (project DISARM),</li> <li><strong><a href="https://zenodo.org/record/healthylivestockproject@yahoo.com">healthylivestockproject@yahoo.com</a></strong> (project Healthy Livestock) or</li> <li><strong><a href="mailto:roadmap.communication@gmail.com">roadmap.communication@gmail.com</a></strong> (project ROADMAP). </li> </ul>
Figure 7 in Fighting an invasive fish parasite in subarctic Norwegian rivers - The end of a long story?
Figure 7. Increase in rotenone concentration in water samples along the riverbank as result of spraying the bank with water of high rotenone concentration.
Figure 6 in Fighting an invasive fish parasite in subarctic Norwegian rivers - The end of a long story?
Figure 6. Temperature at 10 cm depth in substrate at a groundwater influenced riverbank before, during and after flooding the riverbed with rotenone-treated water. The curve shows an instant temperature rise, indicating rotenone treated surface water intruding the groundwater fed substrate.
Figure 5. Crew placing a in Fighting an invasive fish parasite in subarctic Norwegian rivers - The end of a long story?
Figure 5. Crew placing a rotenone disc in a small brook. Brooks of this size were numerous, often remote and typically inhabited with potentially infected arctic char juveniles. The rotenone disc replaced the more bulky 20 litre-can drip stations. Photograph by Dag H. Karlsen.
Figure 4. Spraying a in Fighting an invasive fish parasite in subarctic Norwegian rivers - The end of a long story?
Figure 4. Spraying a groundwater-fed side channel of the Skibotn River with portable backpack mounted pump. Surviving G. salaris infested arctic char was found in this location after the previous treatments in 1988 and 1995. In 2015 and 2016 this and similar locations was treated several times by different teams using both Vectocarb, CatSan hygiene litter saturated with CFT-Legumine and conventional spraying with water of high rotenone concentration. Photograph by Dag H. Karlsen.
Figure 2 in Fighting an invasive fish parasite in subarctic Norwegian rivers - The end of a long story?
Figure 2. Mapping of groundwater influx in the River Signaldalselva. The mapping was done by parallel logging of GPS position and temperatures along the riverbanks at late summer, the time of year with the highest temperature contrasts between surface water and upwelling groundwater. Photograph by Norwegian Veterinary Institute.
Figure 1 in Fighting an invasive fish parasite in subarctic Norwegian rivers - The end of a long story?
Figure 1. The large map shows the rivers (in red) with G. salaris in the Skibotn Region. Orange marks rivers treated without findings of the parasite. All rivers and brooks potentially inhabiting salmonids south of the black line across the Lyngen-fjord were treated. Inserted map shows the location in Norway.
Figure 3 in Fighting an invasive fish parasite in subarctic Norwegian rivers - The end of a long story?
Figure 3. Spraying the riverbank of the River Signaldalselva with water of high rotenone concentration. The iconic mountain Otertind in the background. Photograph by Dag H. Karlsen.
Figure 3. a in Fight or flight: agonistic interactions between females of Acanthogonatus centralis Goloboff 1995 (Araneae, Mygalomorphae)
Figure 3. a: Female A. centralis displaying threat behavior (fangs extended). b: Hug finished in cannibalism with female biting the female cephalothorax.
Figure 2 in Fight or flight: agonistic interactions between females of Acanthogonatus centralis Goloboff 1995 (Araneae, Mygalomorphae)
Figure 2. Flow diagram of the female–female interaction of A. centralis (n = 132). Arrows indicate frequency.
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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
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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.