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1,285 results for “cicada”
Fig. 4 in Dead-twig discrimination for oviposition in a cicada, Cryptotympana facialis (Hemiptera: Cicadidae)
Fig. 4 Frequency and duration of probing behavior of Cryptotympana facialis females on different oviposition substrates. a The number of probing behaviors per female during a 90-min observation period. b The mean duration of a single probing behavior. The number of females is indicated at the top of the graph. Groups marked with the same alphabetical letter were not significantly different (a likelihood-ratio test of GLM and post hoc multiple comparisons, p> 0.05). For details of Tukey box plots, see Fig. 2
Fig. 1 in Hot-blooded singers: endothermy facilitates crepuscular signaling in African platypleurine cicadas (Hemiptera: Cicadidae: Platypleura spp.)
Fig. 1. Rate of abdominal pumping frequency (Hz) as a function of body temperature (Tb, °C) in Platypleura capensis
Fig. 4 in Audiospectrographical analysis of cicada sound production: a catalogue (Hemiptera, Cicadidae)
Fig. 4. Cumulative number of calling songs of different cicadas described through audiospectrographic analysis since 1948.
Figs 1 - 3. The three graphic representation s in Audiospectrographical analysis of cicada sound production: a catalogue (Hemiptera, Cicadidae)
Figs 1 - 3. The three graphic representation s of sound: the calling song of the PalaearcticspeciesCicadaon i Linnaeus 1758, 1: oscillogram (amplitude vs time). 2: spectrogram or sonagram (frequenc y vs time). 3: spectrum (amplitude vs frequency). Sound analysis software: SYNTANA T. Aubin CNRS U A 149 1 (Aubin 1994).
FIGURE 1. Zammara conflutrimacula n in Two new species and two new records for cicadas (Hemiptera: Cicadidae) from French Guiana, with an updated faunal list of French Guiana and the first synoptic list for Guyana
FIGURE 1. Zammara conflutrimacula n. sp.: A, Holotype male habitus; B, holotype male dorsum; C, holotype male timbal; D, holotype male operculum; E, holotype male lateral view of genitalia; F, holotype male posterior view of genitalia; G, holotype male venter on day of capture; H, holotype male dorsum on day of capture. G and H courtesy of Jérémie Lapèze. Scale bar: A, 2 cm; B, 5 mm; C–D, 2 mm; E–F, 1 mm.
FIG. 1 in A Multi-year Adult Emergence Study of the Cicada Neotibicen canicularis (Harris) (Hemiptera: Cicadidae) in Wisconsin
FIG. 1.—Adult female (left) and male (right) of Neotibicen canicularis (Harris), dorsal aspect, as vouchers deposited in the collections of the Milwaukee Public Museum
Figure 8 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 8 TEM micrographs of the anterior segment of the midgut loop. (a) Basal region of the anterior segment cell. (b) Detail of the apical region of the anterior segment cell. (c) Apical region of cell of the anterior segment. H, heterochromatin; F, ferritin-like granules; RER, rough endoplasmic reticulum; V, vesicles; Mv, microvilli. Scale bars, 0.2 μm.
Figure 3 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 3 Electron micrographs of the oesophagus. (a) Transverse section of the oesophagus. (b) High magnification of the basal region of an esophageal cell. (c) Apical region of the cells. (d) Close-up of the apical region of cell. If, infoldings of the basal plasma membrane; N, nuclei; V, vesicles of various electron-density; Mi, mitochondria; n, nucleoli; SJ, septate junctions; Ep, epicuticle; En, endocuticle. Black arrows in (d) indicate virus-like particles enclosed in membrane. White arrow in (d) indicates brushlike structures. Scale bars, 1.0 μm (a), 0.2 μm (b,d), 0.5 μm (c).
Figure 7 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 7 TEM micrographs of the conical segment. (a) Transverse section of the conical segment. (b) Near the basal region of the conical segment cell. (c) Detail of the apical region of cell. If, infoldings of basal plasma membrane; BL, basal lamina; Mi, mitochondria; Mv, microvilli; V, vesicles; L, lumen; RER, rough endoplasmic reticulum; F, ferritin-like granules; H, heterochromatin; N, nuclei. Arrow indicates in (c) virus-like particles bound in membrane. Scale bars, 0.5 μm (a,b), 0.2 μm (c).
Figure 11 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 11 TEM micrographs of the hindgut. (a) Apical region of the ileum cell. (b) Basal region of the ileum cell. (c) Transverse section of the rectum. Mi, mitochondria; AL, apical leaflets; C, cuticle; V, vesicles; If, infoldings of basal plasma membrane; Ep, epicuticle; En, endocuticle; BL, basal lamina. Scale bars, 0.2 μm.
Figure 9 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 9 TEM micrographs of the mid-segment of the midgut loop. (a) Basal region of the mid-segment cell. Arrows indicate electron-lucent vesicles contained in the basal infoldings. (b) Basal region of the midsegment cell. (c) Apical region of the mid-segment cell. (d) Close-up of the virus-like particles enclosed in membrane of the mid-segment cell. Black arrows indicate membrane, which appears to be destroyed due to the virus-like particles. White arrows indicate brush-like structures. BL, basal lamina; Mi, mitochondria; Mv, microvilli; If, infoldings of basal plasma membrane. Scale bars, 0.5 μm (a), 0.2 μm (b,c), 0.1 μm (d).
Figure 10 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 10 TEM micrographs of the posterior segment of the midgut loop. (a) Basal region of the posterior segment cell. (b) Apical region of the posterior segment cell. Arrows indicate virus-like particles. (c) High magnification of the apical region of the posterior segment cell. (d) Detail of the cell of the posterior segment. BL, basal lamina; Mi, mitochondria; If, infoldings of basal plasma membrane; Mv, microvilli; V, vesicles; F, ferritinlike granules; H, heterochromatin; N, nuclei; RER, rough endoplasmic reticulum. Scale bars, 0.2 μm (a), 0.5 μm (b), 0.2 μm (c,d).
Figure 5 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 5 TEM micrographs of the posterior end of the midgut. (a) Apical region of the first type of cell, showing tightly packed microvilli. (b) The second type of cell, showing well-developed basal infoldings associated with mitochondria. (c) Detail of the second type of cell. (d) Close-up of the autophagosomes in the cytoplasm. V, vesicles; Mi, mitochondria; Mv, microvilli; If, infoldings of basal plasma membrane; BL, basal lamina; RER, rough endoplasmic reticulum; Ap, autophagosomes; X, dense bodies. Scale bars, 0.5 μm (a), 0.2 μm (b,c,d).
Figure 4 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 4 TEM micrographs of the filter chamber. (a) Cellular sheath surrounding the filter chamber, showing irregular and large nuclei. (b) Transverse section of the anterior end of the midgut. (c) Basal region of the first type of cell of the posterior end of the midgut. (d) Cytoplasm of the first type of cell of the posterior end of the midgut. BL, basal lamina; N, nuclei; Tr, tracheoles; Mv, microvilli; L, lumen; If, infoldings of basal plasma membrane; V, vesicles; Mi, mitochondria; RER, rough endoplasmic reticulum. Arrows in (b) indicate filamentous materials covering the microvilli. Scale bars, 2.0 μm (a), 0.2 μm (b,c,d).
Figure 1 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 1 Gross morphology of the alimentary canal and Malpighian tubule of the P. kaempferi. For convenient visibility, only one Malpighian tubule is left, and the other three ones are removed. Oe, oesophagus; FC, filter chamber; CS, conical segment; Il, ileum; AMg, anterior midgut; MMg, mid-midgut; PMg, posterior midgut; PS, peritoneal sheath; Rc, rectum; MT, Malpighian tubule. Scale bar, 5.0 mm.
Figure 6 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 6 TEM micrographs of the posterior end of the midgut and internal proximal end of the Malpighian tubule. (a) Apical region of the second type of cell of the posterior end of the midgut. (b) Transverse section of the internal proximal end of the Malpighian tubule. SJ, septate junctions; V, vesicles; Mi, mitochondria; Mv, microvilli; BL, basal lamina; If, infoldings of basal plasma membrane; L, lumen. Scale bars, 0.2 μm.
Figure 2 in Morphology and ultrastructure of the alimentary canal of the cicada Platypleura kaempferi (Hemiptera: Cicadidae)
Figure 2 Schematic illustration of the alimentary canal of the P. kaempferi. Oe, oesophagus; FC, filter chamber; CS, conical segment; Il, ileum; AMg, anterior midgut; MMg, mid-midgut; PMg, posterior midgut; PS, peritoneal sheath; Rc, rectum; MT, Malpighian tubule; IMT, internal proximal ends of the Malpighian tubules.
FIGURE 2 in Discovery of the cicada genus Becquartina Kato, 1940 (Hemiptera: Cicadidae: Cicadinae) in India with the description of a new species from Meghalaya
FIGURE 2. Becquartina bicolor sp. nov. A, C: Dorsal view and ventral view of the male Cicada, Form 1. (Holotype: NCBSBH997). B, D: Dorsal view and ventral view of the female cicada, Form 2 (Paratype: NCBS-BH998). E, F: Posterior and lateral view of the male genitalia. (Photo by V. Sarkar.)
FIGURE 1 in Discovery of the cicada genus Becquartina Kato, 1940 (Hemiptera: Cicadidae: Cicadinae) in India with the description of a new species from Meghalaya
FIGURE 1. Becquartina bicolor sp. nov. A, C, E, G: Lateral view, dorsal view, wings and Ventral view of the male Cicada, Form 1 (Holotype: NCBS-BH997). B, D, F, H: Lateral view, dorsal view, wings and Ventral view of the female cicada, Form 2 (Paratype: NCBS-BH998). (Photo by V. Sarkar.)
FIGURE 5 in Discovery of the cicada genus Becquartina Kato, 1940 (Hemiptera: Cicadidae: Cicadinae) in India with the description of a new species from Meghalaya
FIGURE 5. Colour forms of Becquartina bicolor sp. nov. Habitus: Paratype, A. Male (Saffron form). B. Female (Saffron form) C. Male (White form), D. Female (white form) (Bar=1 cm) (Photo. S.R.Hajong)
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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
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