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84 results for “Cimicomorpha”
Figure 2 in The systematic position of the tribe Stenodemini (Heteroptera: Cimicomorpha: Miridae: Mirinae) in the light of the male internal reproductive system
Figure 2. Fragments of cross sections through the male reproductive system in selected representatives of Stenodemini. (A) Acetropis carinata, fragment of cross section through distal part of vasa deferentia and accessory glands. Cross section with mesodermal glands, ectodermal
Figure 4 in The systematic position of the tribe Stenodemini (Heteroptera: Cimicomorpha: Miridae: Mirinae) in the light of the male internal reproductive system
Figure 4. Selected elements of the male reproductive system in representatives of Stenodemini. Male reproductive system of Myrmecoris gracilis: (A) diagram of the male reproductive system; (B) total preparation, light microscopy (× 40); (C) distal part of vas deferens, total preparation, light microscopy (× 40). Male reproductive system of Notostira elongata: (D) internal lateral gland, total preparation, light microscopy (× 40); (E) diagram of the male reproductive system; (F) total preparation, light microscopy (× 40). t., testis; v.d., vas deferens; v.s.p., proximal seminal vesicle; v.s.d., distal seminal vesicle; d.s., seminal duct; g.l.e., external lateral gland; g.l.i., internal lateral gland; b.e., ejaculatory bulb.
Figure 1 in The systematic position of the tribe Stenodemini (Heteroptera: Cimicomorpha: Miridae: Mirinae) in the light of the male internal reproductive system
Figure 1. Fragments of cross sections through the testis of Stenodemini species. (A) Acetropis carinata; (B) Dolichomiris linearis; (C) Leptopterna ferrugata; (D) Leptopterna dolabrata;
Fig. 1. Anommatocoris bolivianus, new species. A. Habitus view. B in DESCRIPTION OF THE FIRST RECENT MACROPTEROUS SPECIES OF VIANAIDINAE (HETEROPTERA: TINGIDAE) WITH COMMENTS ON THE PHYLOGENETIC RELATIONSHIPS OF THE FAMILY WITHIN THE CIMICOMORPHA
Fig. 1. Anommatocoris bolivianus, new species. A. Habitus view. B. Ventral view.
Fig. 2. Forewing, A. bolivianus, new species. A. Dorsal view. B in DESCRIPTION OF THE FIRST RECENT MACROPTEROUS SPECIES OF VIANAIDINAE (HETEROPTERA: TINGIDAE) WITH COMMENTS ON THE PHYLOGENETIC RELATIONSHIPS OF THE FAMILY WITHIN THE CIMICOMORPHA
Fig. 2. Forewing, A. bolivianus, new species. A. Dorsal view. B. Lateral view.
Fig. 9 in DESCRIPTION OF THE FIRST RECENT MACROPTEROUS SPECIES OF VIANAIDINAE (HETEROPTERA: TINGIDAE) WITH COMMENTS ON THE PHYLOGENETIC RELATIONSHIPS OF THE FAMILY WITHIN THE CIMICOMORPHA
Fig. 9. Phylogenetic relationships of Miroidea based on data presented in Tables 1 and 2.
FIGURE 37 in Fossil flower bugs (Heteroptera: Cimicomorpha: Cimicoidea) from the Late Jurassic of Northeast China, including a new family, Vetanthocoridae
FIGURE 37. Mecopodus xanthos gen. & sp. nov. Holotype, ♂, CNU-HE-LB2006031. Scale bar= 1 mm.
FIGURE 3 in Fossil Tingoidea (Heteroptera: Cimicomorpha) from French Cretaceous amber, including Tingidae and a new family, Ebboidae
FIGURE 3. Ebboa areolata new genus and species, holotype MNHN Arc 236.4, general habitus.
FIGURES 16–17 in Studies of True Bugs of Xinjiang, Western China. II. Cimicomorpha: Lace Bugs (Hemiptera: Heteroptera: Tingidae: Tinginae)
FIGURES 16–17. Kalama wangi sp. n. 16—photo; 17—original drawing.
FIGURES 10–11. Habitus images. 10—C in Studies of True Bugs of Xinjiang, Western China. II. Cimicomorpha: Lace Bugs (Hemiptera: Heteroptera: Tingidae: Tinginae)
FIGURES 10–11. Habitus images. 10—C. josifovi; 11—C. guentheri.
FIGURES 18–19. Kalama vinokurovi. 18 in Studies of True Bugs of Xinjiang, Western China. II. Cimicomorpha: Lace Bugs (Hemiptera: Heteroptera: Tingidae: Tinginae)
FIGURES 18–19. Kalama vinokurovi. 18—photo; 19—drawing (after Golub, 1979).
FIGURE 2 in An annotated catalog of the Iranian Reduvioidea (Hemiptera: Heteroptera: Cimicomorpha)
FIGURE 2. Species diversity in each subfamily of Iranian Reduviidae.
FIGURE 3 in An annotated catalog of the Iranian Reduvioidea (Hemiptera: Heteroptera: Cimicomorpha)
FIGURE 3. Species diversity in each genera of Iranian Reduviidae.
FIGURE 3 in Updated catalogue of Iranian Anthocoridae (Hemiptera: Heteroptera: Cimicomorpha)
FIGURE 3. Number of reported species of Iranian Anthocoridae by province.
FIGURE 1 in Updated catalogue of Iranian Anthocoridae (Hemiptera: Heteroptera: Cimicomorpha)
FIGURE 1. Map of Iran with boundaries of provinces.
FIGURE 2 in Updated catalogue of Iranian Anthocoridae (Hemiptera: Heteroptera: Cimicomorpha)
FIGURE 2. Species diversity of genera of Iranian Anthocoridae.
Fig. 7. A in Studies on the Cimicomorpha and Pentatomomorpha (Hemiptera: Heteroptera) of Khuzestan and the adjacent provinces of Iran
Fig. 7. A – Geocoris limbatellus (Horváth, 1885); B – G. fedtschenkoi Reuter, 1885: B–E – variability of colouring of head, pronotum and scutellum; F – pygophore; G – paramere (after KERZHNER 1979).
Figure 1 from: Grozeva S, Nokkala S, Nokkala C (2011) Cytogenetics of the true bug infraorder Cimicomorpha (Hemiptera, Heteroptera): a review. ZooKeys 154: 31-70. https://doi.org/10.3897/zookeys.154.1953
Figure 1 - Autosome numbers' range in Cimicomorpha. X-axis denotes the diploid number of autosomes, Y-axis shows the number of species
Figure 2 from: Grozeva S, Nokkala S, Nokkala C (2011) Cytogenetics of the true bug infraorder Cimicomorpha (Hemiptera, Heteroptera): a review. ZooKeys 154: 31-70. https://doi.org/10.3897/zookeys.154.1953
Figure 2 - Distribution of sex chromosome systems in Cimicomorpha. Different sex chromosome systems are plotted on the X-axis. Y-axis shows the number of species. Xn - the number of X-chromosomes exceeds 5.
Fig. 4. A in DESCRIPTION OF THE FIRST RECENT MACROPTEROUS SPECIES OF VIANAIDINAE (HETEROPTERA: TINGIDAE) WITH COMMENTS ON THE PHYLOGENETIC RELATIONSHIPS OF THE FAMILY WITHIN THE CIMICOMORPHA
Fig. 4. A. Ventral view of head and thorax, A. bolivianus. B. Frontal view of head, A. bolivianus. C. Lateral view of head, coleopteroid Anommatocoris sp. D. Detail of eye region, coleopteroid Anommatocoris sp. E. Ventral view of head and thorax, Cantacader sp. F. Ventral view of head and thorax, Corythucha sp.
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