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101 results for “population fluctuation”
Data to support "Stochastic density effects on adult fish survival and implications for population fluctuations"
Data on stage-specific abundance of black surfperch (Embiotoca jacksoni), the amount of foraging habitat and the availability of surfperch prey (crustaceans) were collected at fixed sites on the north shore of Santa Cruz Island, California annually (autumn) from 1993-2009. Data are grouped into four regions. Counts of fish distinguished among young-of-year, juveniles (1 year old) and adults (>= 2 years old). These data have been presented in Okamoto, D. K., R. J. Schmitt and S. J. Holbrook. 2016. Sochastic density effects on adult fish survival and implications for population fluctuations. Ecology Letters, 19:153-162. doi: 10.1111/ele.12547.
Figure 1 in Population fluctuation of some economically important mites on two mango cultivars in Qalyubia governorate, Egypt
Figure 1. Population fluctuation of plant-feeding and predacious mites on "Naomi" mango cultivar at Qalyubia governorate during 2020–2022 seasons.
Figure 2 in Population fluctuation of some economically important mites on two mango cultivars in Qalyubia governorate, Egypt
Figure 2. Population fluctuation of plant-feeding and predacious mites on "Heidi" mango cultivar at Qalyubia governorate during 2020–2022 seasons.
Fig. 4 in Fluctuating Asymmetry And Length-Weight Relationship Of The Three Populations Of Sardinella Lemuru (Clupeiformes, Dorosomatidae) From Surigao Del Norte, Philippines
Fig. 4. Principal components (PC) inferred deformation grid and histogram of individual (symmetry) in Surigao City, Surigao del Norte.
Fig. 2 in Fluctuating Asymmetry And Length-Weight Relationship Of The Three Populations Of Sardinella Lemuru (Clupeiformes, Dorosomatidae) From Surigao Del Norte, Philippines
Fig. 2. Principal components (PC) inferred deformation grid and histogram of individual (symmetry) in Malimono, Surigao del Norte.
Fig. 1 in Fluctuating Asymmetry And Length-Weight Relationship Of The Three Populations Of Sardinella Lemuru (Clupeiformes, Dorosomatidae) From Surigao Del Norte, Philippines
Fig. 1. The Philippine map showing the location of Caraga Region in Mindanao Island and the three sampling areas in the province of Surigao del Norte. Map credited to Engr. Medielyn M. Odtojan.
Fig. 3 in Fluctuating Asymmetry And Length-Weight Relationship Of The Three Populations Of Sardinella Lemuru (Clupeiformes, Dorosomatidae) From Surigao Del Norte, Philippines
Fig. 3. Principal components (PC) inferred deformation grid and histogram of individual (symmetry) in San Francisco, Surigao del Norte.
Figure 1 in Study of the population fluctuations and feeding effects of Tetranychus urticae (Acari: Tetranychidae) on three cultivars of Capsicum annuum (Solanaceae)
Figure 1. Population fluctuations of T. urticae mobile stages on the three C. annuum cultivars at El-Beheira governorate
Generation time in stage-structured populations under fluctuating environments (Simulations)
<p>The study is about the computation of the generation time when individuals are classified based on their stage and the environment stochastically fluctuates with time. This folder contains simulation code in R to plot Figure 2 of the manuscript.</p>
Figure 1 in Effect of initial infestation on population fluctuation and spatial distribution of Panonychus citri (Acari: Tetranychidae) on Thomson navel orange in Ghaemshahr, Iran
Figure 1. Population fluctuation of Panonychus citri on Thomson navel orange in a multi-treatment experiment in in 2016. Control treatment = average number of 0.48 mite per leaf; Treatment 1 = average number of 1.12 mites per leaf, Treatment 2 = average number of 1.23 mites per leaf, Treatment 3 = average number of 6.36 mites per leaf, Treatment
Figure 4 in Effect of initial infestation on population fluctuation and spatial distribution of Panonychus citri (Acari: Tetranychidae) on Thomson navel orange in Ghaemshahr, Iran
Figure 4. Population fluctuation of Panonychus citri on Thomson navel orange in a paired-treatment experiment in 2017. Infested treatment = average number of 0.79 mite per leaf, Control treatment = average number of 0.59 mite per leaf.
Figure 2 in Effect of initial infestation on population fluctuation and spatial distribution of Panonychus citri (Acari: Tetranychidae) on Thomson navel orange in Ghaemshahr, Iran
Figure 2. Population fluctuation of Panonychus citri on Thomson navel orange in a multi-treatment experiment in in 2016. Control treatment = average number of 0.2 mite per leaf, Treatment 1 = average number of 0.3 mite per leaf, Treatment
Fig. 9 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico
Fig. 9. Population fluctuation of Thrips tabaci in the onion crops at Axochiapan, Morelos, Mexico, 2010–2011. Sufficient thermal units (180 degree days) occurred to support 1 life cycle of T. tabaci from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.
Fig. 6 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico
Fig. 6. Population fluctuation of Frankliniella occidentalis related with tomato crops at Tlayacapan and Atlatlahucan, Morelos, Mexico, 2010–2011. Sufficient thermal units (195 degree days) occurred to support 1 life cycle of F. occidentalis from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.
Fig. 2 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico
Fig. 2. Population fluctuation of Frankliniella occidentalis in the cucumber crops at Tlayacapan, Morelos, Mexico, 2010–2011. Sufficient thermal units (195 degree days) occurred to support 1 life cycle of F. occidentalis from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.
Fig. 7 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico
Fig. 7. Population fluctuation of Frankliniella occidentalis in the tomatillo crops at Tlayacapan, Morelos, and Tepeojuma, Puebla, Mexico, 2010–2011. Sufficient thermal units (195 degree days) occurred to support 1 life cycle of F. occidentalis from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.
Fig. 4 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico
Fig. 4. Population fluctuation of Frankliniella occidentalis in the zucchini crops at Tlayacapan, Tepalcingo and Atlatlahucan, Morelos, Mexico, 2010–2011. Sufficient thermal units (195 degree days) occurred to support 1 life cycle of F. occidentalis from transplantation until the 1st red vertical arrow and between consecutive red arrows.
Fig. 5 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico
Fig. 5. Population fluctuation of Frankliniella occidentalis in the pepper crops at Izucar de Matamoros and Tepeojuma, Puebla, and Tlayacapan, Morelos, Mexico, 2010–2011. Sufficient thermal units (195 degree days) occurred to support 1 life cycle of F. occidentalis from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.
Fig. 1 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico
Fig. 1. Population fluctuation of Frankliniella occidentalis in the cucumber crops at Atlatlahucan and Tepalcingo, Morelos, Mexico, 2010–2011. Sufficient thermal units (195 degree days) occurred to support 1 life cycle of F. occidentalis from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.
Fig. 10 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico
Fig. 10. Population fluctuation of Thrips tabaci in the onion crops at Tilapa and Tepeojuma, Puebla, Mexico, 2010–2011. Sufficient thermal units (180 degree days) occurred to support 1 life cycle of T. tabaci from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.
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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.