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1,864 results for “Cicadidae”
Figs 3–8 in A new species of the genus Cicadatra from Iran (Hemiptera: Auchenorrhyncha: Cicadidae)
Figs 3–8. Cicadatra barbodi sp. nov. 3 – lateral view of male pygopher; 4–5 posterior view of male pygofer; 6 – male claspers; 7 – male aedeagus; 8 – female terminal segments.
Figs 3−7 in Cicadatra pazukii, a new cicada species, with an identification key to the species of Cicadatra in Iran (Hemiptera: Cicadidae)
Figs 3−7. Cicadatra pazukii sp. nov., paratype. 3 – male pygofer, lateral view; 4 – male pygofer, dorsal view; 5 –male pygofer, ventral view; 6 – male timbal; 7 – male operculum.
Figs 1−2 in Cicadatra pazukii, a new cicada species, with an identification key to the species of Cicadatra in Iran (Hemiptera: Cicadidae)
Figs 1−2. Cicadatra pazukii sp. nov., holotype (pygofer dissected). 1 – dorsal view 2 – ventral view.
Figs 8−10 in Cicadatra pazukii, a new cicada species, with an identification key to the species of Cicadatra in Iran (Hemiptera: Cicadidae)
Figs 8−10. Male genitalia of Cicadatra pazukii sp. nov. 8 − left clasper; 9 − aedeagus, lateral view; 10 – detail of aedeagus apex, lateral view.
Þekil 3. Cicadatra persicaÕda yeni ergin disside bir ovariyolun yapÝsÝ. T.F.: Terminal flament Grm.: Germanyum Fol.: Folikl Pdcl.: Pedicel in An Investigation on the Morphology of Genital Organs and Oviposition Capacit of Cicadatra persica Kirkaldy, 1909 (Cicadidae, Homoptera)
Þekil 3. Cicadatra persicaÕda yeni ergin disside bir ovariyolun yapÝsÝ. T.F.: Terminal flament Grm.: Germanyum Fol.: Folikl Pdcl.: Pedicel
Þekil 2. Cicadatra persicaÕda dissi reme organÝ Ov.: Ovaryum L.Od.: Lateral oviduct Odc.: Oviduct Yd.b.: YardÝmcÝ bez Spt.: Spermatheca Vg.: Vagina in An Investigation on the Morphology of Genital Organs and Oviposition Capacit of Cicadatra persica Kirkaldy, 1909 (Cicadidae, Homoptera)
Þekil 2. Cicadatra persicaÕda dissi Ÿreme organÝ Ov.: Ovaryum L.Od.: Lateral oviduct Odc.: Oviduct Yd.b.: YardÝmcÝ bez Spt.: Spermatheca Vg.: Vagina
Þekil1. Cicadatra persicaÕda erkek reme organÝ Ts.: Testis Vd.: Vas deferens Yd.b.: YardÝmcÝ bez Ejb.: Bulbus ejaculatorius Ejb: Ductus ejaculatorius in An Investigation on the Morphology of Genital Organs and Oviposition Capacit of Cicadatra persica Kirkaldy, 1909 (Cicadidae, Homoptera)
Þekil1. Cicadatra persicaÕda erkek Ÿreme organÝ Ts.: Testis Vd.: Vas deferens Yd.b.: YardÝmcÝ bez Ejb.: Bulbus ejaculatorius Ejb: Ductus ejaculatorius
Fig. 1 in Scaling of Sound Pressure Level and Body Size in Cicadas (Homoptera: Cicadidae; Tibicinidae)
Fig. 1. Mean call sound pressure level (SPL) at 50 cm as a function of mean body mass for 30 cicada species. Call SPL was calculated from the mean power output determined for each species (n = 1 -40). Body mass is the mean value determined for the males of each species, not the specific individuals that were calling (n = 9-223).
Fig. 2 in Scaling of Sound Pressure Level and Body Size in Cicadas (Homoptera: Cicadidae; Tibicinidae)
Fig. 2. Alarm call SPL as a function of body mass. The alarm calls were measured 50 cm from individual insects using the apparatus described. Each cicada was rotated in space while producing the alarm call to eliminate any variation between species caused by possible asymmetries in the sound field.
Fig. 2 in Diurnal activity, temperature responses and endothermy in three South American cicadas (Homoptera: Cicadidae: Dorisiana bonaerensis, Quesada gigas and Fidicina mannifera)
Fig. 2. Tb of Dorisiana bonaerensis during a light rain under a heavy overcast on the 21st December 1986. These animals were not exposed to direct solar radiation before the Tb was recorded. Closed circles, represent body temperatures of singing D. bonaerensis; open circles, represent body temperatures of D. bonaerensis engaged in other activities (including no activity). Details as in Fig. 1.
Fig. 3 in Diurnal activity, temperature responses and endothermy in three South American cicadas (Homoptera: Cicadidae: Dorisiana bonaerensis, Quesada gigas and Fidicina mannifera)
Fig. 3. Distribution of Dorisiana bonaerensis Tb as a function of Ta. The slope of the linear regression for "active" animals (closed circles) is significantly different from one, suggesting thermoregulation. The slope of the linear regression for "inactive" animals (open circles) is not significantly different from one, suggesting no thermoregulation is occurring.
Fig. 4 in Diurnal activity, temperature responses and endothermy in three South American cicadas (Homoptera: Cicadidae: Dorisiana bonaerensis, Quesada gigas and Fidicina mannifera)
Fig. 4. Distribution of Tb of as a function of Ta when Dorisiana bonaerensis were not exposed to solar radiation. The slope of the linear regression for " active " animals (closed circles) is significantly different from one, suggesting thermoregulation is occurring with endogenous heat. The slope of the linear regression for " inactive " animals (open circles) is not significantly different from one, suggesting no thermoregulation is occurring when the animals do not generate heat for activity.
Fig. 1 in Diurnal activity, temperature responses and endothermy in three South American cicadas (Homoptera: Cicadidae: Dorisiana bonaerensis, Quesada gigas and Fidicina mannifera)
Fig. 1. Diurnal distribution of Tb of Dorisiana bonaerensis and Quesada gigas on the 13th December 1986. A rainstorm from 07.00 to 08.00 h followed by a misting rain until 09.45 h delayed the start of activity approx. 2 h. Body temperatures are below ambient temperature before activity begins. Body temperatures are elevated at the start of activity (10.00 h) and regulated throughout the day. Body temperatures of quiescent animals decrease with ambient temperature after sunset (20.10 h). Animals participating in the evening chorus have body temperatures in or near the body temperature range measured during the day. Closed circles, Tb of singing D. bonaerensis; open circles, Tb of D. bonaerensis engaged in other activities (including no activity); closed triangles, Tb of singing Q. gigas; open triangles, Tb of Q. gigas performing other activities; solid line, ambient air temperature.
Figura 2 in Cigarras (Cicadidae) coletadas por armadilha luminosa em mata da galeria no município de Israelândia, Goiás
Figura 2. Sazonalidade de espécies de cigarras coletadas por armadilha luminosa em área de mata de galeria no município de Israelândia, GO, entre setembro de 2016 e junho de 2017.
Figura 1 in Cigarras (Cicadidae) coletadas por armadilha luminosa em mata da galeria no município de Israelândia, Goiás
Figura 1. Curva de rarefação (Mao Tau) e estimativa de espécie (Jackknife 1) obtidos para cigarras coletadas com o uso de armadilha luminosa em área de mata de galeria localizada no município de Israelândia durante o período de setembro de 2016 a junho de 2017. Os pontos indicam o valor médio e as barras o intervalo de confiança a 95%.
Figura 2 in Levantamento de cigarras (Hemiptera: Cicadidae) em área de mata seca no município de Israelândia, Goiás
Figura 2. Sazonalidade de espécies de cigarras coletadas por armadilha luminosa em área de mata seca no município de Israelândia, GO, entre setembro de 2016 e julho de 2017.
Figura 1 in Levantamento de cigarras (Hemiptera: Cicadidae) em área de mata seca no município de Israelândia, Goiás
Figura 1. Curva de rarefação de espécies de cigarras coletadas por armadilha luminosa em área de mata seca no município de Israelândia, GO, entre setembro de 2016 e julho de 2017.
Figure 4 in Oviposition of Quesada gigas (Hemiptera: Cicadidae) in coffee plants
Figure 4. Percentage of branches with Quesada gigas egg nest in the two areas of the experiment, in different thirds of the coffee plant height and in the collection periods of the branches. São Sebastião do Paraíso, Minas Gerais, Brazil. 2008.
Figure 3 in Oviposition of Quesada gigas (Hemiptera: Cicadidae) in coffee plants
Figure 3. Quesada gigas eggs collected from dry coffee-plant branches. Scale: 1 mm. São Sebastião do Paraíso, Minas Gerais, Brazil. 2008.
Figure 2 in Oviposition of Quesada gigas (Hemiptera: Cicadidae) in coffee plants
Figure 2. Oviposition by Quesada gigas on a dry coffee-plant branch. A. Female depositing eggs inside the branch. B. Insertion point of ovipositor that was sealed after egg-laying. C. Mass of eggs shown from upper view. D. Mass of eggs shown in lateral view. São Sebastião do Paraíso, Minas Gerais, Brazil. 2008.
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