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1,285 results for “Cicada”
Figure 15 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 15. Four stages of opening a turret. (a) Beginning of the draft work (6:21 a.m.). (b) draft in progress (9:58 a.m.). (c) Draft completed (10:43 a.m.). (d) Equalisation of the border completed (11:35 a.m.). Observation on 19.08.2019.
Figure 10 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 10. Spontaneous reduction in the height of the turret by construction of an internal top and drying out of the old one. The white line represents the old wall of the upper part of the turret.
Figure 7 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 7. Occlusion in progress by the nymph with clay mixed with its urine (mcl) after its turret has been severed.
Figure 5 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 5. (a) concrete moulding inside an 88 cm deep well, 26 cm of which have been excavated. The curvature (circle), just below the ground level, is clearly visible. The turret is traced (tur). (b) oblique galleries (gal) at the base of the well, oblique as well, up to a curvature at 15 cm from the bottom; cem: Cement moulding.
Figure 4 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 4. Manaus and the Adolfo Ducke Reserve. Google Maps https://www.google.ch/maps/place/Reserva+Florestal+ Adolpho+Ducke/@-2.8580657,-60.0242213,71,452 m/data =!3 m1!1e3!4 m5!3 m4!1s0x926c1ec4d40d48b7:0x897d 42e519777eb2!8 m2!3d-2.9633439!4d-59.9228331.
Figure 3 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 3. Endoscopic images of the nymph in its well; lbi: Labium, frl: Foreleg,mdl: Middle leg, hnl: Hind leg. Clay can be seen on the head of the nymph.
Figure 17 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 17. Six snapshots illustrating the nymph's rotations when equalising the edge of the opening with its forelegs. (a) 9:15 a.m. (b) 9:35 a.m. (c) 9:37 a.m. (d) 9:38 a.m. (e) 9:41 a.m. (f) 9:45 a.m.. Arrows represent the rotations from the previous snapshot; ant: Antenna, fl: Foreleg, cly: Clypeus. Observation on 01.09.2019.
Figure 6. A in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 6. A pile of stems and leaves became an obstacle during the construction of this turret; the nymph avoided it by raising the turret obliquely, but it reestablished the verticality as soon as the obstacle was passed.
Figure 1 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 1. (a) View of a turret. (b) Turret removed. (c) Entrance to the well. (d) Inner surface of the summit.
Figure 4 in A Case Study of Wavelets and SVM Application in Coffee Agriculture: Detecting Cicadas Based on Their Acoustic and Image Patterns
Figure 4. The SVM structure used in application one approach. The weights determined during the superoised part of the training are {w0, w1, ..., wX̅1}. The output element linearly combines the outputs of the hidden layer with the weights.
Figure 2. The paraconsistent plane where the axes G1 and G2 in A Case Study of Wavelets and SVM Application in Coffee Agriculture: Detecting Cicadas Based on Their Acoustic and Image Patterns
Figure 2. The paraconsistent plane where the axes G1 and G2 represent the degrees of certainty and contradiction, respectioely. P = (G1, G2) = (α ̅ β, α + β ̅ 1), drawn in blue just to exemplify, is an important element for our analysis: The closer it is to the corner (1,0), the weaker the classifier associated with the features oector can be. The oalues of α and β are derioed from intra-class and inter-class analyses, respectioely, as detailed in [17].
Figure 1 in A Case Study of Wavelets and SVM Application in Coffee Agriculture: Detecting Cicadas Based on Their Acoustic and Image Patterns
Figure 1. Quesada gigas. On the left, male emitting acoustic signals. On the right, lateral oiew of male resting.
Figure 8. Site 2 in Protandrous Arrival in a Population of the Periodical Cicada Magicicada septendecim (Linnaeus) (Hemiptera: Cicadidae) in Montgomery County, Maryland
Figure 8. Site 2: Number of male and female newly metamorphosed adult periodical cicadas, Magicicada septendecim Brood X, found on successive mornings on 14–23 May 2004 in a fixed route of random sampling, in Silver Spring, Maryland. A total of 104 newly metamorphosed males and 115 newly metamorphosed females were found. According to hypothesis tests of single proportions, the number of males is significantly greater than the number of females at α 0.05 for days 1 and 3 and at approximately α 0.01 for days 1–3. This result is evidence for protandry.
Figure 7. Site 1 in Protandrous Arrival in a Population of the Periodical Cicada Magicicada septendecim (Linnaeus) (Hemiptera: Cicadidae) in Montgomery County, Maryland
Figure 7. Site 1: Number of male and female newly metamorphosed adult periodical cicadas, Magicicada septendecim Brood X, found on successive mornings on 14–23 May 2004 in a fixed route of random sampling in Silver Spring, Maryland. A total of 444 newly metamorphosed males and 585 newly metamorphosed females were found. According to hypothesis tests of single proportions, the number of females is significantly greater than the number of males at α 0.05 for days 6, 7, and 9.
Figure 6 in Protandrous Arrival in a Population of the Periodical Cicada Magicicada septendecim (Linnaeus) (Hemiptera: Cicadidae) in Montgomery County, Maryland
Figure 6. Total Number of male and female newly metamorphosed adult periodical cicadas, Magicicada septendecim Brood X, found on successive mornings on 14–23 May 2004 in a fixed route of random sampling of a neighborhood of Silver Spring, Maryland. A total of 548 newly metamorphosed males and 700 newly metamorphosed females were found. According to hypothesis tests of single proportions, the number of males is significantly greater than the number of females at α 0.05 for days 1 and 3, and the number of females is significantly greater than the number of males at α 0.01 for days 9 and 10. On days 1 and 3, this result is evidence for protandry. At α 0.01, there are also significantly more females than males for the season as a whole.
Figure 5. The two locations where periodical cicadas, Magicicada septendecim Brood X in Protandrous Arrival in a Population of the Periodical Cicada Magicicada septendecim (Linnaeus) (Hemiptera: Cicadidae) in Montgomery County, Maryland
Figure 5. The two locations where periodical cicadas, Magicicada septendecim Brood X, were counted in Silver Spring, Maryland, May–June 2004.
Figure 4 in Protandrous Arrival in a Population of the Periodical Cicada Magicicada septendecim (Linnaeus) (Hemiptera: Cicadidae) in Montgomery County, Maryland
Figure 4. Magicicada septendecim: female, ventral view of abdomen showing ovipositor. (Note: this specimen is a four-year early emergent of the 2021 Brood X; Maryland, Michael J. Raupp, 29 May 2017.)
Figure 3 in Protandrous Arrival in a Population of the Periodical Cicada Magicicada septendecim (Linnaeus) (Hemiptera: Cicadidae) in Montgomery County, Maryland
Figure 3. Magicicada septendecim: male, ventral view of abdomen. (Note: this specimen is a four-year early emergent of the 2021 Brood X; Maryland, Michael J. Raupp, 24 May 2017.)
Figure 1 in Protandrous Arrival in a Population of the Periodical Cicada Magicicada septendecim (Linnaeus) (Hemiptera: Cicadidae) in Montgomery County, Maryland
Figure 1. Magicicada septendecim: mass emergence of nymphs from the ground. (Maryland, Michael J. Raupp, 15 May 2004)
Figure 8 Relationship between host parasitism rate and mean parasitoid load per host. Each data point represents 1 in Infection behavior, life history, and host parasitism rates of Emblemasoma erro (Diptera: Sarcophagidae), an acoustically hunting parasitoid of the cicada Tibicen dorsatus (Hemiptera: Cicadidae)
Figure 8 Relationship between host parasitism rate and mean parasitoid load per host. Each data point represents 1 year of host population sampling data for a single study site. The solid line (blue in the color figure) represents the linear regression model for the data.
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Allen Brain Atlas
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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.