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276 results for “population biology”
Figure 2 in Description, biology and conservation of a new species of Australian tree frog (Amphibia: Anura: Hylidae: Litoria) and an assessment of the remaining populations of Litoria genimaculata Horst, 1883: systematic and conservation implications of an unusual speciation event
Figure 2. Litoria myola, sp. nov., males (A, a pale individual; B, a heavily marked individual), Kuranda, north-east Queensland.
Figure 3 in Description, biology and conservation of a new species of Australian tree frog (Amphibia: Anura: Hylidae: Litoria) and an assessment of the remaining populations of Litoria genimaculata Horst, 1883: systematic and conservation implications of an unusual speciation event
Figure 3. Spectrogram of the courtship call of Litoria myola sp. nov. (recorded at an air temperature of 25 °C). The spectrogram displays a single courtship call consisting of six notes ('tocs'). The degree of shading displays call intensity.
Figure 7 in Description, biology and conservation of a new species of Australian tree frog (Amphibia: Anura: Hylidae: Litoria) and an assessment of the remaining populations of Litoria genimaculata Horst, 1883: systematic and conservation implications of an unusual speciation event
Figure 7. Rainforest stream habitat, with rocky (A) and sandy (B) substrate, Kuranda, north-east Queensland. Litoria myola sp. nov. and Litoria genimaculata are present at both sites.
Figure 2 in Biology, pathotype, and virulence of Globodera rostochiensis populations from Kenya
Figure 2: Figure showing the mean number of different developmental stages of Globodera rostochiensis, of 'HAR1' and 'Ecosse' populations in resistant cv. 'Laura' and susceptible cv. 'Désirée' in the glasshouse in the second experiment.
Figure 1 in Biology, pathotype, and virulence of Globodera rostochiensis populations from Kenya
Figure 1: Figure showing the mean number of different developmental stages of Globodera rostochiensis, 'HAR1' and 'Ecosse' populations in resistant cv. 'Laura' and susceptible cv. 'Désirée' in the glasshouse during the first experiment.
Figure 4 in Biology, pathotype, and virulence of Globodera rostochiensis populations from Kenya
Figure 4: Percentage hatch of Globodera rostochiensis 'HAR1' population in PRD for three successive generations of cysts without diapause. Vertical bars are mean percentage ± standard error (n = 4).
Figure 3 in Biology, pathotype, and virulence of Globodera rostochiensis populations from Kenya
Figure 3: Mean reproduction factor (±SE) of six populations of Globodera rostochiensis from Kenya on the susceptible cultivar 'Désirée' for three successive generations without diapause. Vertical bars show the standard error of the mean (n = 6). Means within a population with the same small letter are not significantly different (p> 0.05).
Figure 9 in Population biology of the ghost shrimps, Trypaea australiensis and Biffarius arenosus (Decapoda: Thalassinidea), in Western Port, Victoria.
Figure 9. Relationships between embryo volume (mm3) and body size (CL3 = carapace length3) for females of Trypaea australiensis and Biffarius arenosus. Embryos were from females collected from March 2006 to May 2007 at Warneet and Crib Point, Western Port.
Figure 8 in Population biology of the ghost shrimps, Trypaea australiensis and Biffarius arenosus (Decapoda: Thalassinidea), in Western Port, Victoria.
Figure 8. Carapace length (CL) size frequency distributions for Biffarius arenosus collected at Crib Point, Western Port in 2006-2007. Non-ovigerous females are shown by black bars, ovigerous females by grey bars and males by open bars (n = number of shrimp collected). Individuals are grouped into size classes by rounding to the closest mm from two decimal places. Arrows show mean CL for cohorts as calculated in FISAT II.
Figure 7 in Population biology of the ghost shrimps, Trypaea australiensis and Biffarius arenosus (Decapoda: Thalassinidea), in Western Port, Victoria.
Figure 7. Carapace length (CL) size frequency distributions for Biffarius arenosus collected at Warneet, Western Port in 2006-2007. Non-ovigerous females are shown by black bars, ovigerous females by grey bars and males by open bars (n = number of shrimp collected). Individuals are grouped into size classes by rounding to the closest mm from two decimal places. Arrows indicate mean CL of cohorts calculated in FISAT II.
Figure 5 in Population biology of the ghost shrimps, Trypaea australiensis and Biffarius arenosus (Decapoda: Thalassinidea), in Western Port, Victoria.
Figure 5. Proportion of ovigerous females for April 2004 to March 2005 (a. Trypaea australiensis, b Biffarius arenosus) and March 2006 to May 2007 (c. T. australiensis, d. B. arenosus) at Warneet, Western Point. Proportion of ovigerous females for April 2006, October 2006 - February 2007 and April 2007 (e. T. australiensis, f. B. arenosus) at Crib Point, Western Port. Solid line is total proportions of ovigerous females, triangles with dashed line is proportion of ovigerous females with uneyed embryos and squares with dashed line is proportion of ovigerous females with eyed embryos.
Figure 4 in Population biology of the ghost shrimps, Trypaea australiensis and Biffarius arenosus (Decapoda: Thalassinidea), in Western Port, Victoria.
Figure 4. Carapace length (CL) size frequency distributions for Trypaea australiensis collected at Crib Point, Western Port in 2006-2007. Nonovigerous females are shown by black bars, ovigerous females by grey bars and males by open bars (n = number of shrimp collected). Individuals are grouped into size classes by rounding to the closest mm from two decimal places. Arrows show mean CL of the cohorts using FISAT II.
Figure 2 in Population biology of the ghost shrimps, Trypaea australiensis and Biffarius arenosus (Decapoda: Thalassinidea), in Western Port, Victoria.
Figure 2. Carapace length (CL) size frequency distributions for Trypaea australiensis collected at Warneet, Western Port in 2004-2005. Non-ovigerous females are shown by black bars, ovigerous females by grey bars and males by open bars (n = number of shrimp collected). Individuals are grouped into size classes by rounding to the closest mm from two decimal places. Arrows show mean CL length of the cohorts identified using FISAT II
Figure 3 in Population biology of the ghost shrimps, Trypaea australiensis and Biffarius arenosus (Decapoda: Thalassinidea), in Western Port, Victoria.
Figure 3. Carapace length (CL) size frequency distributions for Trypaea australiensis collected at Warneet, Western Port in 2006-2007. Non-ovigerous females are shown by black bars, ovigerous females by grey bars and males by open bars (n = number of shrimp collected). Individuals are grouped into size classes by rounding to the closest mm from two decimal places. Arrows show the mean CL length of cohorts identified using FISAT II.
Figure 6 in Recruitment biology of cleavers (GOlium spp.) populations in western Canada
Figure 6. Emergence percentage of Canadian Galium spp. populations in fall of (A) 2013 and (B) 2014. Error bars represent SE, and similar letters indicate values do not differ statistically at P = 0.05. SPG, Saskatchewan Pulse Growers.
Figure 4 in Recruitment biology of cleavers (GOlium spp.) populations in western Canada
Figure 4. Cumulative emergence percentage of Canadian Galium spp. populations in spring of (A) 2013 and (B) 2014. Error bars represent SE, and similar letters indicate values do not differ statistically at P = 0.05. SPG, Saskatchewan Pulse Growers.
Figure 5 in Recruitment biology of cleavers (GOlium spp.) populations in western Canada
Figure 5. Emergence timing of Galium spp. populations (observed and predicted values, respectively) at Goodale in the fall of (A) 2013 and (B) 2014. Growing degree days (GDD) were determined with a base temperature of 2 C. Arrows indicate significant rainfall events (16.2 mm at 600 GDD in 2013 and 4.8 mm and 7.8 mm at 150 and 360 GDD in 2014).SPG, Saskatchewan Pulse Growers.
Figure 3 in Recruitment biology of cleavers (GOlium spp.) populations in western Canada
Figure 3. Emergence timing of Galium spp. at Goodale in the spring of 2013 (left) and 2014 (right). Growing degree days (GDD) were determined with a base temperature of 2 C. Arrows indicate significant rainfall events (8.4 and 47 mm in 2013 at 200 and 350 GDD, and 51 and 63 mm in 2014 at 200 and 400 GDD, respectively). SPG, Saskatchewan Pulse Growers.
Figure 2 in Recruitment biology of cleavers (GOlium spp.) populations in western Canada
Figure 2. The effect of temperature on percent germination of Galium spp. populations from different locations on the Canadian Prairies.Data points represent the means of two trial runs conducted using the thermogradient plate. SPG, Saskatchewan Pulse Growers.
Figure 1 in Recruitment biology of cleavers (GOlium spp.) populations in western Canada
Figure 1. Google map showing Saskatchewan and Alberta locations where Galium spp. populations were collected.
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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.