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Figure 9. Ischnopter galibi Hebard, 1926 in New and enigmatic cockroaches (Dictyoptera: Blattodea) of Guyana
Figure 9. Ischnopter galibi Hebard, 1926. Adult male. (a) Ventral subgenital plate. Voucher number: DEKBO0869. (b) Ventral supra-anal plate. Voucher number: DEKBO0348. (c) Terminal terga showing supra-anal plate and tergal gland. Voucher number: DEKBO0344. (d) Right phallomere (R2). (e) Left phallomere (L3). (f). Medial phallomere (Lvm). Voucher number: DEKBO0869. (g) Wing. Voucher number: DEKBO0634.
Figure 6 in New and enigmatic cockroaches (Dictyoptera: Blattodea) of Guyana
Figure 6. Dasyblatta warei sp. nov. (a–c) Adult male holotype. Voucher number: DECBA0907. (a) Dorsal body; (b) dorsal abdomen; (c). ventral abdomen. (d, e) Adult female allotype. Voucher number: DECBA1803. (d) Dorsal body; (e) ventral body.
Figure 1 in Male wing variation in the Cuban cockroach Byrsotria fumigata (Guérin-Méneville, 1857) (Blattodea: Blaberidae)
Figure 1. Differences in wing shape and size in males of Byrsotria fumigata. (A) dorsal view of a brachypterous individual, with its right tegmen (B) and membranous wing (C) detailed in dorsal view. For comparison, same detail views of the right tegmen (D) and membranous wing (E) of a macropterous individual are included. (F) continuous variation in tegmina, modified from Gutiérrez & Linares (2003). / 1. Diferencias en la forma y tamaño de las alas de los machos de Byrsotria fumigata. (A) vista dorsal de un individuo braquÍptero, con el detalle de su tegmina (B) y ala membranosa (C) derechas en vista dorsal. Para comparación, se incluyen las mismas vistas en detalle de la tegmina (D) y ala membranosa (E) derecha de un individuo macróptero. (F) variación continua en las tegminas, modificado de Gutiérrez & Linares (2003).
Fig. 1 in Solving the 250-year-old mystery of the origin and global spread of the German cockroach, Blattella germanica
Fig. 1. Population genetic structure and global spread routes of the German cockroach, Blattella germanica. (A) Median joining haplotype network based on the COI gene (1,536 bp). (B) Principal component analysis based on 158,216 genome-wide single nucleotide polymorphisms. (C) Bar plot (Top), split into regionspecific bar plots mapped to sampling sites, derived from maximum likelihood estimation of ancestry (ADMIXTURE) at the optimal number of ancestral clusters (K = 6). The diagram on top of the bar plot indicates nucleotide diversity (π) per locus at each sampling site. The inferred timing and routes of global spread are mapped with black arrows. (D) Divergence of key populations presented in the form of an allele-frequency-based unrooted tree with residuals of drift parameters mapped as migration edges. (E) A zoomed-in view of (C) focused on Asia. The natural range of the ancestor, B. asahinai, is shown in green.
Fig. 4 in Integrated pest management of the German cockroach (Blattodea: Blattellidae) in manufactured homes in rural North Carolina
Fig. 4. Distribution of German cockroaches from trap catches at various locations within homes of individual participants.
Fig. 2 in Integrated pest management of the German cockroach (Blattodea: Blattellidae) in manufactured homes in rural North Carolina
Fig. 2. Trend of monthly mean cockroach trap catches per participant over the sampling period (Oct 2011 to Mar 2014) during the Pre-IPM, IPM-education, and IPM-education plus bait intervention phases.
Fig. 3 in Integrated pest management of the German cockroach (Blattodea: Blattellidae) in manufactured homes in rural North Carolina
Fig. 3. Total population levels and decrease (%) of German cockroach populations from all participants during the Pre-IPM, IPM-education, and IPM-education plus bait intervention phases for 6 manufactured homes in rural North Carolina.
Fig. 1 in Integrated pest management of the German cockroach (Blattodea: Blattellidae) in manufactured homes in rural North Carolina
Fig. 1. Population fluctuations of German cockroaches from Oct 2011 to Mar 2014 in 6 manufactured homes in rural North Carolina during the Pre-IPM, IPMeducation, and IPM-education plus bait intervention phases.
Fig. 2 in Phylogenomics and deep convergence in cockroach hind-wing morphology
Fig. 2 Oulopteryx illuminata sp. nov. is demonstrative of a typical species with an apical folded membrane, but having a rare method of concealment at rest (i.e., coiling, a feature shared among Oulopterygidae, Theganopteryx, Prosoplecta, and possibly a few others). Forewing (a, b) and hind-wing (c) morphology to scale with full body (f, g). Folding occurs alone dashed lines. Method of rolling the hind-wing apical field at rest shown (h). Genital morphology (d, e) of male holotype from posterior dorsal views (d) and dorsal view (e). Labels identify genital sclerites using the nomenclature of Klass (1997). See supplementary figures for more details. Wing venation (b, c) nomenclature based on Li et al. (2018) with modification. *Pcu not identified. See Schubnel et al. (2019) for a discussion of Pcu's identity among Blattodea.
Fig. 28 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 28. Rhabdoblatta lyncea (Gerstaecker, 1883), paratype, juvenile (ZIMG-II 27341). Habitus in dorsal and ventral views, with labels. Photographed by Lara Lopardo (ZIMG). Scale bar = 5 mm.
Fig. 25 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 25. Rhabdoblatta pluriramosa (Karny, 1915), juvenile specimen (MNHN-EP7605), habitus in dorsal and ventral views. Scale bar = 5 mm.
Fig. 31 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 31. Unidentified female specimen (MNHN-EP7602). A. Habitus in dorsal and ventral views. B. Pronotum. C. Head. D. Hindleg with close-up on tarsi and serrated claws, ventral view. E. Subgenital plate and cerci. F. Front femur. Scale bars: A = 5 mm; B–F = 1 mm.
Fig. 22 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 22. Rhabdoblatta pluriramosa (Karny, 1915), male specimen (MNHN-EP7616). A. Habitus in dorsal and ventral views. B. Pronotum. C. Front femur. D. Subgenital plate. E. Supra-anal plate. F. Tarsi and claws of hind leg. Scale bars: A = 5 mm; B–F = 1 mm.
Fig. 21 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 21. Juvenile identified as Rhabdoblatta pallida (Borg, 1902) by K. Princis (MNHN-EP7604), habitus in dorsal and ventral views. Scale bar = 5 mm.
Fig. 18 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 18. Rhabdoblatta punctipennis (Saussure, 1895), male specimen (LUHM-1492). A. Habitus in dorsal and ventral views. B. Pronotum. C. Head. D. Tarsi and claws of front leg. E. Subgenital plate. F. Front femora. Scale bars: A = 5 mm; B–F = 1 mm.
Fig. 15 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 15. Rhabdoblatta fotoi Nyame, Legendre & Biram sp. nov., holotype, ♂ (MNHN-EP7600), genitalia. Abbreviations: see Material and methods. Scale bars = 0.5 mm.
Fig. 14 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 14. Rhabdoblatta fotoi Nyame, Legendre & Biram sp. nov., holotype, ♂ (MNHN-EP7600). A. Habitus in dorsal and ventral views. B. Frontwing and hindwing expanded. C. Head and frontlegs. D. Pronotum. E. Tergal gland on 4th abdominal tergite. F. Subgenital plate. G. Supra-anal plate, dorsal view. H. Hindleg, ventral view. I. Close-up on tarsi and serrated claws, ventral view. Scale bars: A–B = 5 mm; C, E–G, I = 1 mm; D, H = 2 mm.
Fig. 17 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 17. Rhabdoblatta fotoi Nyame, Legendre & Biram sp. nov., male nymph (MNHN-EP7590). A. Habitus in dorsal and ventral views. B. Close-up on tarsi. Arrows point at some of the long yellowish bristles found on the tarsi. Scale bar = 5 mm.
Fig. 8 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 8. Africalolampra stipata (Walker, 1868) comb. nov., male specimen (MNHN-EP7594). A. Habitus in dorsal and ventral views. B. Pronotum. C. Head. D. Tergal gland on 1st abdominal tergite. E. Supraanal plate, dorsal view. F. Tarsi and serrated claws of midleg, ventral view. G. Subgenital plate and right cercus. Scale bars: A = 5 mm; B–F = 1 mm.
Fig. 11 in Semi-aquatic Epilamprinae cockroaches (Blattodea: Blaberidae) in Cameroon: towards a revision of continental African species of Rhabdoblatta Kirby, 1903 and Africalolampra Roth, 1995
Fig. 11. Africalolampra erubescens (Gerstaecker, 1883). A–F. Holotype, ♂ (ZIMG-II-27340a). A. Habitus in dorsal and ventral views. B. Labels. C. Head. D. Front femora (type B2) with the most distal spine distinctly serrated. E. Subgenital plate. F. Hind leg, ventral view. G–I. Male specimen (MNHN-EP7613). G. Supra-anal plate. H. Tergal gland. I. Tarsi and claws of hindleg. Photographs A–F by Lara Lopardo (ZIMG). Scale bars: A = 5 mm; C–I = 1 mm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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