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1,285 results for “cicada”
FIGURE 1 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 1. Drymopsalta wallumi sp. nov., Bokarina, near Kawana Waters, Sunshine Coast, southeast Queensland. A, lateral abdomen view; B, fore and hind wings; C, timbal (posterior margin at right, dorsal edge at top); D, left operculum. Scale bars 1 mm, except wings (3 mm). Terminology for selected wing veins and cells are shown (after Moulds 2012): 2A, 3A anal veins 2 and 3; a1, a5, a8 apical cells 1, 5 and 8; ac1, ac2, ac3 anal cells 1, 2 and 3; bc basal cell; cc costal cell; cuc cubital cell (FW); cuc1, cuc2 cubital cells 1 and 2, (HW); CuA cubitus anterior vein; M median vein; m medial crossvein; mc medial cell; r radial crossvein; RA radius anterior vein; rc radial cell; r-m radiomedial crossvein; RP radius posterior vein; u1, u3 ulnar cells 1 and 3. Terminology for the opercula is shown (after de Boer, A.J.,1999; note that the crest is described fully by the author as 'crest around distolateral corner of basal part of operculum').
FIGURE 12 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 12. Drymopsalta wallumi sp. nov. Amplitude spectra. A, B, D, E, extended sets of multiple phrases within the normal calling song (17–40 seconds of recordings used in analyses), and C, anomalous song. A, from Currimundi Conservation Park; B, C, Woodgate National Park; D, Tinnanbar; E, Pine Ridge, near Hollywell. The horizontal bars indicate the high amplitude frequency envelope of each spectrum, used to estimate the dominant frequency and the nominal bandwidth of each song. The apparent sidebands, measured from the spectra, are tabulated.
FIGURE 3 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 3. Drymopsalta hobsoni sp. nov., Bringalily State Forest, 8.8 km WSW of Robert Wicks Research Station, via Inglewood, southern Queensland. A, lateral abdomen view; B, fore and hind wings; C, timbal (posterior margin at right, dorsal edge at top); D, left operculum. Scale bars 1 mm, except wings (3 mm).
FIGURE 7 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 7. Drymopsalta daemeli (Distant), from Wises Track, near Audley, Royal National Park, N.S.W. A, male abdomen, lateral view; B, fore and hind wings; C, timbal (posterior margin at right, dorsal edge at top); D, left operculum; E, F, pygofer and genitalia. E, lateral view; F, ventral view. Length of pygofer 1.5 mm. Scale bars 1 mm, except wings (3 mm).
FIGURE 15 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 15. Drymopsalta acrotela sp. nov. Waveform plots showing; A, buzzing echemes with intervening segments of normal and anomalous chirp songs. B, time expanded plot showing more detail of the intervening normal and anomalous chirp sequences. Field recording, filtered to 10 kHz.
FIGURE 11 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 11. Drymopsalta wallumi sp. nov. Waveform plots of anomalous song, characterised by variable tick numbers in the chirps, and the absence of intervening single ticks. A, segment showing a sequence of chirps; B and C, progressive time expanded plots of a single chirp (B) and finer details within the chirp. Woodgate National Park, northern Hervey Bay, in situ field recording, filtered to 12 kHz.
FIGURE 6 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 6. Distribution records of the four described Drymopsalta species from Queensland and the Northern Territory. Inset shows the distribution of D. daemeli in N.S.W. (after Moulds, 2012).
FIGURE 10 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 10. Drymopsalta wallumi sp. nov. Waveform plots of normal calling songs, from; A, B, Tinnanbar, southern Hervey Bay, in situ field recording; B, time expanded segment of a single chirp (see A); C, D, Pine Ridge Conservation Park, near Hollywell, Gold Coast, in situ field recording; D, time expanded segment of a single chirp (shown in C). Recordings filtered to 11 kHz.
FIGURE 21 in New species of Drymopsalta Heath Cicadas (Cicadidae: Cicadettinae: Cicadettini) from Queensland and Northern Territory, Australia, with overview of genus
FIGURE 21. Waveform plot of two repeated phrases from the normal song of Drymopsalta wallumi, showing the duration of the song segments, each demarcated with lines that were measured. These measurements were performed for each species except D. crepitum, and used for the statistical analyses.
FIGURE 3 in A new cicada species of the genus Purana Distant, 1905 (Hemiptera: Cicadidae), with a key to the Purana species from Vietnam
FIGURE 3. Male genitalia of Purana trui sp. nov. in ventral view, lateral view, and lateroventral view.
FIGURE 5 in First record of the cicadas genus Orientopsaltria Kato, 1944 (Hemiptera: Cicadidae) from Vietnam, with description of one new species
FIGURE 5. Male body in ventral view: A: Orientopsaltria duarum (after Duffels & Zaidi, 2000), B: Orientopsaltria saudarapadda (after Duffels & Zaidi, 2000), C: Orientopsaltria padda (after Duffels & Zaidi, 2000), D: Orientopsaltria moultoni (after Duffels & Zaidi, 2000), E: Orientopsaltria dongnaiensis sp.nov.
FIGURE 4 in First record of the cicadas genus Orientopsaltria Kato, 1944 (Hemiptera: Cicadidae) from Vietnam, with description of one new species
FIGURE 4. Male body in dorsal view. A: Orientopsaltria duarum (after Duffels & Zaidi, 2000), B: Orientopsaltria padda (after Duffels & Zaidi, 2000), C: Orientopsaltria saudarapadda (after Duffels & Zaidi, 2000), D: Orientopsaltria moultoni (after Duffels & Zaidi, 2000), E: Orientopsaltria dongnaiensis sp.nov.
FIGURE 2 in First record of the cicadas genus Orientopsaltria Kato, 1944 (Hemiptera: Cicadidae) from Vietnam, with description of one new species
FIGURE 2. Orientopsaltria dongnaiensis sp.nov., holotype male: A, dorsal view of male. B, ventral view of male.
FIGURE 6 in First record of the cicadas genus Orientopsaltria Kato, 1944 (Hemiptera: Cicadidae) from Vietnam, with description of one new species
FIGURE 6. Male genitalia in ventral view: A: Orientopsaltria duarum (after Duffels & Zaidi, 2000), B: Orientopsaltria moultoni (after Duffels & Zaidi, 2000), C: Orientopsaltria padda (after Duffels & Zaidi, 2000), D: Orientopsaltria saudarapadda (after Duffels & Zaidi, 2000), E: Orientopsaltria dongnaiensis sp. nov.
FIGURES 4–6 in Macrotristria monteithi sp. n., a large new cicada from central Queensland with a small distribution (Cicadoidea, Cicadidae, Macrotristriini)
FIGURES 4–6. (4) distribution of Macrotristria monteithi sp. n.; locality records indicated by black circles and the type locality circled; (5) Macrotristria monteithi sp. n., male genitalia in lateral view, holotype; (6) same, ventral view, holotype.
FIGURES 1–3 in Macrotristria monteithi sp. n., a large new cicada from central Queensland with a small distribution (Cicadoidea, Cicadidae, Macrotristriini)
FIGURES 1–3. Macrotristria monteithi sp. n. (1) holotype male in dorsal view, genitalia removed; (2) holotype male in ventral view, genitalia removed; (3) paratype female in dorsal view, Rangers HQ, Mt Moffatt National Park, L. Popple.
FIGURE 2 in Metarhizium macrosemiae sp. nov. and the anamorph of M. guniujiangense on adult cicada from Guniujiang Nature Preserve, southeastern China
FIGURE 2. Metarhizium macrosemiae (GNJ20200812-01, culture ex-type RCEF 6696). A. Fungus on adult cicada. B. Macroconidia on insect host. C. Microconidia on insect host. D–E. Colonies on SDAY/4. F. Conidiophores bearing phialides and conidia on SDAY/4. G. Macro- and microconidia on SDAY/4. H–I. Colonies on PDA. J. Conidiophores bearing phialides and conidia on PDA. K. Macro- and microconidia on PDA. L–M. Colonies on OA. N. Conidiophores bearing phialides and conidia on OA. O. Macro- and microconidia on OA. Scale bars: A = 10 mm, D–E, H–I, L–M = 15 mm, B–C, F–G, J–K, N–O = 10 μm.
FIGURE 1 in Metarhizium macrosemiae sp. nov. and the anamorph of M. guniujiangense on adult cicada from Guniujiang Nature Preserve, southeastern China
FIGURE 1. Phylogenetic relationships of Metarhizium and related genera in the Clavicipitaceae obtained from the combined SSU, LSU, TEF, RPB1 and RPB2 sequences based on maximum parsimony, maximum likelihood and Bayesian analyses. Numbers on the nodes are MP bootstrap values / ML bootstrap values / Bayesian posterior probability above 70% (MPBS-MLBS) or 0.7 (BIPP). Bold lines indicate support for the three analyses was 100% (MPBS-MLBS) or 1.0 (BIPP). *Represents the ex-type strain.
Data of wing size and body size of three cicada species
<p><span>Sexual dimorphism in body size has been observed for many insect species, while whether dimorphism influences the flight performance for closely related insects or between the sexes of conspecifics however has seldom been examined. </span></p> <p><span>We collected the nymphs of three species of cicadas, <em>Cryptotympana atrata</em>,<em> Meimuna mongolica</em>, and<em> Platypleura kaempferi</em> in their eclosion or as adults that had just shed their exoskeletons and were drying their wings on tree trunks or branches at the Nanjing Forestry University campus. Because the sample size of <em>C. atrata</em> from the Nanjing Forestry campus was too small, we collected more <em>C. atrata</em> adults that were resting on trees using a metal rod tipped with sticky flour at another site that is 13.7 km away from the Nanjing Forestry University campus.</span></p> <p><span>The fresh body mass and body length were measured, and the two pairs of wings were surgically removed with a scalpel and then scanned using a photo scanner. We extracted the planar coordinates of wing boundaries and then calculated wing areas using the computer programs that were first developed to calculate leaf area in prior studies. Total wing area per individual is equal to the sum of wing areas of the pairs of forewings and hindwings.</span></p> <p><span>In this data set, we provided the data of wing size (including forewing and hindwing length, width and area) and those of body size (including body length and mass) of the three cicada species. The wing data of males and females were distinguished.</span></p>
Periodical cicada emergences affect masting behavior of oaks
<p>Oaks (<em>Quercus</em> spp.) are well-known "masting" species exhibiting highly variable and synchronized acorn production. We investigated the hypothesis that periodical cicadas (<em>Magicada</em> spp.), well-known to have strong effects on the ecosystems in which they occur, affect acorn production of oaks through their xylem feeding habits as nymphs, the oviposition damage they inflect as adults during emergences, or the nutrient pulse resulting from the decomposition of their bodies following breeding. We found negative effects on acorn production during emergence years and the year following emergences, and enhanced acorn production two years post-emergence. We also found evidence suggesting a significant effect of cicada emergences on spatial synchrony of acorn production by trees growing within the range of the same cicada brood compared to different broods. These results demonstrate that periodical cicadas act as a trophic environmental "veto" depressing acorn production during and immediately following emergences, after which the nutrient pulse associated with the cicada's demise enhances oak reproduction.</p>
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.