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25 results for “Tibicen”
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.
Figure 5 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 5 Relationship of effective clutch size and temperature to larval residence time. Each data point represents the mean residence time of the parasitoid larvae inside a single host cicada along with the effective clutch size (number of larvae emerging from the host) and the mean air temperature experienced by the host during parasitoid development. The planar surface represents the multiple linear regression model of the effects of temperature and effective clutch size on larval residence time. Lines connected to the data points indicate the vertical distance of each data point from the regression surface (i.e., the residuals).
Figure 4 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 4 Larviposition by E. erro. A first-instar larva of E. erro on the right fore wing of a T. dorsatus moments after larviposition (larva indicated by blue arrow). The cicada's head and foreleg are at top center.
Figure 3 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 3 Locations of study sites. Filled circles indicate the primary sites used for estimating host parasitism rates, and open circles indicate secondary sites used for additional collections of cicadas and flies. Primary sites are referenced in the text by the counties in which they were located: 1) Harvey Co., 2) McPherson Co., 3) Reno Co., 4) Ellsworth Co., 5) Hamilton Co., and 6) Prowers Co. Both T. dorsatus and E. erro were found at all 11 sites. The inset map indicates the location of the main map in the United States.
Figure 6 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 6 Emergence of E. erro from its host. A mature larva of E. erro emerges from between the left operculum and the abdomen of a deceased male T. dorsatus from Prowers Co., CO.
Figure 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 1 Male Tibicen dorsatus, Harvey Co., KS.
Figure 2 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 2 Female Emblemasoma erro, Ellsworth Co., KS.
Figure 7 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 7 The distribution of parasitoid loads (larvae per host) of infected cicadas in the field.
FIGURE 33. Tibicen chihuahuaensis n in New species, new records and checklist of cicadas from Mexico (Hemiptera: Cicadomorpha: Cicadidae)
FIGURE 33. Tibicen chihuahuaensis n.sp. lateral view of holotype male genitalia. FIGURE 34. Tibicen chihuahuaensis n.sp. posterior view of holotype male genitalia.
F in Morphometry and sexual maturity of the tropical hermit crab Calcinus tibicen (Crustacea, Anomura) from Brazil
F. 1. Calcinus tibicen. Relative growth of left propodus (LPL, left propodus length; LPH, left propodus height) and weight in relation to shield length (SL). The regression equations are given in table 1.
FIGURE 6. Aspredinichthys tibicen, ROM 66330, 75 in Annotated list and key to the stream fishes of Trinidad & Tobago
FIGURE 6. Aspredinichthys tibicen, ROM 66330, 75 mm SL, beach between Pomeroon and Moruka rivers, Guyana.
FIGURE 30. Tibicen chihuahuaensis n in New species, new records and checklist of cicadas from Mexico (Hemiptera: Cicadomorpha: Cicadidae)
FIGURE 30. Tibicen chihuahuaensis n.sp. holotype male. Bar = 2 cm. FIGURE 31. Tibicen chihuahuaensis n.sp. holotype dorsum. FIGURE 32. Tibicen chihuahuaensis n.sp. holotype male operculum.
FIGURE 2. Tibicen egae Distant, 1892 in Resolving taxonomic issues of cicadas (Hemiptera: Cicadidae) including new combinations, new synonymies, and revised status, with updates on the diversity of the Brazilian cicada fauna and new records for four South American countries
FIGURE 2. Tibicen egae Distant, 1892 type specimen (NHMUK010392112) dorsal (top) and ventral (middle) habitus. The inflated aedeagus with membrane and recurved terminal spines are characteristic of Brevialavenosa. ©The Trustees of the Natural History Museum, London. Photos courtesy of Fernley Symons and Mick Webb.
Fig. 1. A in The Identity Of Cicada tibicen Linné [=Tibicen chloromerus (Walker, 1850)](Hemiptera: Cicadoidea: Cicadidae)
Fig. 1. A. Cicada tibicen specimen in the Linnaean collection of the Uppsala University Zoological Museum. The label is in Thunberg's handwriting and links the specimen to Linné. B. Ventral view of Cicada tibicen from the Linnean collection illustrating large opercula described in Linné (1764).
Fig. 2. A in The Identity Of Cicada tibicen Linné [=Tibicen chloromerus (Walker, 1850)](Hemiptera: Cicadoidea: Cicadidae)
Fig. 2. A. Lateralviewof Cicadatibicen fromthe Linnaeancollection. Thehumpbacked shape of the prothorax and head is characteristic of the species. B. Holotype specimen of Tibicen chloromerus (Walker) from the Natural History Museum, London. The specimen is identical to the specimen of Cicada tibicen in the Linnaean collection.
Fig. 3 in Comparative thermoregulation of sympatric endothermic and ectothermic cicadas (Homoptera: Cicadidae: Tibicen winnemanna and Tibicen chloromerus )
Fig. 3 Distribution of T. winnemanna Tb as a function of Ta for animals classified as ''inactive'' during the evening chorus (solid line, open circles, y ˆ 12.04 + 0.620x, r ˆ 0.834) and the Tbs of T. winnemanna after the species' evening activity period (dashed line, filled circles, y ˆ 15.73+0.435x, r ˆ 0.657). Although the slope of the regression for ''inactive'' animals is significantly dierent from one (t ˆ)3.20, df ˆ 12, P ˆ 0.0038), twoanimals hadbody temperatures equal to ambient temperature. Mean Tbs and the temperature gradient of ''inactive'' animals is significantly lower than ''active'' (soundproducing) animals (see text). The slope of the linear regression after activity is not significantly dierent from one, showing that T. winnemanna becomes a thermoconformer during the night (t ˆ)1.603, df ˆ 2, P ˆ 0.1251)
Fig. 2 in Comparative thermoregulation of sympatric endothermic and ectothermic cicadas (Homoptera: Cicadidae: Tibicen winnemanna and Tibicen chloromerus )
Fig. 2 Evening Tb distribution of T. chloromerus (solid line, filled circles, y ˆ 9.47 + 0.708x, r ˆ 0.761) and body temperature as a function of Ta in T. winnemanna (dashed line, open circles, y ˆ 16.34 + 0.618x, r ˆ 0.695) producing sound (''active'' animals) during the species' normal evening activity period. The slope of the regression for T. chloromerus is not significantly dierent than one, indicating that the species is a thermoconformer during the evening (t ˆ)9.673, df ˆ 4, P ˆ 0.1941). The slope of the regression for T. winnemanna is significantly dierent than one, indicating that T. winnemanna regulates Tb without access to solar radiation (t ˆ)5.736, df ˆ 92, P 0:00001)
Fig. 1 in Comparative thermoregulation of sympatric endothermic and ectothermic cicadas (Homoptera: Cicadidae: Tibicen winnemanna and Tibicen chloromerus )
Fig. 1 Diurnal body temperature (Tb) of Tibicen chloromerus (solid line, filled circles, y ˆ 31.35 + 0.202x, r ˆ 0.217) and T. winnemanna (dashed line, open circles, y ˆ 18.70 + 0.498x, r ˆ 0.619) as a function of ambient temperature (Ta). The slope of the linear regression is significantly dierent from one, suggesting thermoregulation (t ˆ)5.739, df ˆ 21, P <0.00001) for T. chloromerus and (t ˆ)2.509, df ˆ 10, P <0.02) for T. winnemanna
Figure 6 from: Stucky B (2013) Morphology, bioacoustics, and ecology of Tibicen neomexicensis sp. n., a new species of cicada from the Sacramento Mountains in New Mexico, U.S.A. (Hemiptera, Cicadidae, Tibicen). ZooKeys 337: 49-71. https://doi.org/10.3897/zookeys.337.5950
Figure 6 - Geographic distribution of Tibicen chiricahua (orange circles) and Tibicen neomexicensis sp. n. (yellow triangles), estimated from field observations and museum specimens. Green regions indicate pinyon-juniper habitats. The gray region represents the Albuquerque Basin and Chihuahuan Desert. Tibicen chiricahua is also found in Mexico (Sanborn 2007).
Figure 3 from: Stucky B (2013) Morphology, bioacoustics, and ecology of Tibicen neomexicensis sp. n., a new species of cicada from the Sacramento Mountains in New Mexico, U.S.A. (Hemiptera, Cicadidae, Tibicen). ZooKeys 337: 49-71. https://doi.org/10.3897/zookeys.337.5950
Figure 3 - Key morphological features separating Tibicen neomexicensis sp. n. (a) and Tibicen chiricahua (b): 1) the color of the cubitus anterior vein (CuA) and its second branch (CuA2) in the hind wing, and 2) the color of the anterior margin of the subcostal vein (Sc) of the fore wing.
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