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Figs 10–13 in Morphology of larvae and pupae of the genus Autocrates (Coleoptera: Trictenotomidae) and its phylogenetic implications
Figs 10–13. First instar larva of Autocrates maqueti Drumont, 2006. 10 – right mandible in ventral view; 11 – left mandible in ventral view; 12 – foreleg in lateral view; 13 – abdominal segments VIII–X in lateral view. Abbreviations: Mo – mola; Mot – molar tooth; s VIII/IX/X – sternum VIII/IX/X; t VIII/ IX/X – tergum VIII/IX/X; Ug – urogomphi.
Figs 4–7 in Morphology of larvae and pupae of the genus Autocrates (Coleoptera: Trictenotomidae) and its phylogenetic implications
Figs 4–7. First instar larva of Autocrates maqueti Drumont, 2006. 4 – dorsal habitus; 5 – ventral habitus; 6–7 – scanning electron micrographs of head, thorax and abdominal segment I (6) and abdominal segments II–IX (7).
Figs 17–22 in Morphology of larvae and pupae of the genus Autocrates (Coleoptera: Trictenotomidae) and its phylogenetic implications
Figs 17–22. Last instar larva of Autocrates maqueti Drumont, 2006. 17–18 – head in dorsal (17) and ventral views (18); 19–20 – thorax & abdominal segments I–II in dorsal (19) and ventral views (20); 21–22 – abdominal segments VIII–IX in dorsal (21) and ventral views (22).
Figs 1–3 in Morphology of larvae and pupae of the genus Autocrates (Coleoptera: Trictenotomidae) and its phylogenetic implications
Figs 1–3. Adults and eggs of Autocrates maqueti Drumont, 2006. 1 – male (right) and female (left); 2 – egg cluster under the bark; 3 – eggs at high magnification.
Figs 14–16 in Morphology of larvae and pupae of the genus Autocrates (Coleoptera: Trictenotomidae) and its phylogenetic implications
Figs 14–16. Last instar larva of Autocrates maqueti Drumont, 2006. 14 – dorsal habitus; 15 – ventral habitus; 16 – lateral habitus.
Figs 8–9 in Morphology of larvae and pupae of the genus Autocrates (Coleoptera: Trictenotomidae) and its phylogenetic implications
Figs 8–9. First instar larva of Autocrates maqueti Drumont, 2006. 8 – head in dorsal view; 9 – head in ventral view. Abbreviations: C – cardo; De – dorsoepicranial seta; Df – dorsofrontal seta; Dp – dorsoposterior seta; Es – epicranial stem; Fa – frontal arms; Gu – gula; Hyr – hypostomal ridge; L – lateral seta; Lb – labrum; Ma – mala; Md – mandible; Pmt – prementum; Ps – pad-like structure; Smt – submentum; V – ventral seta.
Figs 8–10 in A new species of Afrothaumalea Stuckenberg, 1960 (Diptera: Thaumaleidae) from the Western Cape (South Africa) and first description of the pupa of this genus
Figs 8–10. Afrothaumalea stuckenbergi sp. n., terminalia: (8) male, ventral view, left gonostylus removed; (9) male, lateral view; (10) female, lateral view. Scale bars= 0.1 mm. Abbreviations: cerc – cercus; goncx – gonocoxite; goncx apod – gonocoxal apodeme; goncx bl – gonocoxal blade; gonst – gonostylus; hyp vlv – hypogynial valve; pm – paramere; T – tergite.
Figs 5–7 in A new species of Afrothaumalea Stuckenberg, 1960 (Diptera: Thaumaleidae) from the Western Cape (South Africa) and first description of the pupa of this genus
Figs 5–7. Afrothaumalea stuckenbergi sp. n.: (5) wing; (6) pupa, dorsal view; (7) pupa, ventral view. Scale bars = 1.0 mm. Abbreviations: CuA – anterior branch of cubital vein; M1,2,4 – medial veins; R1,2,3,4,5 – radial veins; sp – spiracle.
Figs 1–4 in A new species of Afrothaumalea Stuckenberg, 1960 (Diptera: Thaumaleidae) from the Western Cape (South Africa) and first description of the pupa of this genus
Figs 1–4. Afrothaumalea stuckenbergi sp. n.: (1) female; (2) Steve Marshall collecting immatures on rock face at type locality; (3) pupae; (4) larva (photographs: S.A. Marshall).
Fig. 2 in Pupa menkeana Pfeiffer, 1853, type species of the speciose land snail genus Gulella Pfeiffer, 1856: correction of longstanding PLVLGHQWL¿FDWLRQ DQG GHVLJQDWLRQ RI QHRW\SH (Mollusca: Eupulmonata: Streptaxidae)
Fig. 2. (A, B) lectotype and paralectotype of Ennea adamsiana Pfeiffer, 1859 in 1854–1860, 'Port Natal, M.C. [Mus. Cuming]', length 8.45 and 8.1 mm (NHMUK 20110168); (C, D) syntypes of Ennea impervia Melvill & Ponsonby, 1896, 'Natal', length 8.8 and 8.75 mm (NHMUK 1903.3.11.85–86); (E) holotype of Ennea aurisleporis Melvill & Ponsonby, 1898, 'Natal', length 6.65 mm (NHMUK 1903.3.11.69); (F) holotype of Ennea socratica Melvill & Ponsonby, 1893, 'Pietermaritzburg', length 8.45 mm (NHMUK 1903.3.11.78); (G) Gulella menkeana, small inland form, Cumberland, Pietermaritzburg, length 7.2 mm (NMSA V9709); (H) G. menkeana, large form from coastal E. Cape, Port St Johns, length 9.24 mm (NMSA W561); (I) Pupa wahlbergi Krauss, 1848, probable paratype in SMNH, length 10.1 mm (SMNH-Type-2112); (J, K) P. wahlbergi Krauss, 1848, neotype, Durban Bluff, length 9.84 mm, diameter 4.92 mm (NMSA W7942/T2669); (L) holotype of Ennea formosa Melvill & Ponsonby, 1898, Pietermaritzburg, length 7.75 mm (NHMUK 1903.3.11.79).
Figure 2. Nilotanypus Kieffer. Pupa. A, B in Verifying Australian Nilotanypus Kieffer (Chironomidae) In A Global Perspective: Molecular Phylogenetic And Temporal Analyses, New Species And Emended Generic Diagnoses
Figure 2. Nilotanypus Kieffer. Pupa. A, B. Thoracic horn; C. Wing sheath; D–F. Abdomen, male); D. dorsal, E. ventral. Larva. F. Head capsule, left side ventral, right side dorsal; G. Dorsal head capsule; H. Antenna; I. Antennal apex, detail; J. Mandible; K. Ligula, paraligula; l. Maxilla; M. Submentum; N. Anterior parapod small comb claw; O. Posterior body; P. Posterior parapod comb claw. A, D–F, H–O. N. haplochelus sp. n.; B, C, G, P. N. ctenochelus sp. n. Abbreviations: S5 – S10 – cephalic setae, DP – dorsal pit, VP – ventral pit.
Figure 4. Pupae. a in OROPUELLA, A NEW GENUS OF ORTHOCLADIINAE FROM THE WESTERN NEARCTIC Abstract
Figure 4. Pupae. a) Oropuella eidolon n. sp. complete abdomen, dorsal view; b) Oropuella sp. F2 thoracic horn; c) Oropuella eidolon n. sp. apical abdominal segments, ventral view; d) Oropuella pallida n. sp. apical abdominal segments, ventral view; e) Oropuella sp. F1 apical abdominal segments, ventral view; f) Oropuella sp. F2 apical abdominal segments, ventral view; g) Oropuella sp. F3 apical abdominal segments, ventral view. Setae omitted except in 4a, setae D2–5 illustrated only on tergite V; scale bars = 100 μm.
Figure 1. Taxon 1 in Descriptions of two interesting chironomid pupae collected in Yunnan Province, China (Chironomidae: Chironominae)
Figure 1. Taxon 1: a) frontal apotome; b) thoracic horn; c) thorax; d) abdoman dorsal view; e) posterolateral spines of segment VIII. Taxon 2: f) abdoman dorsal view; g) posterolateral spines of segment VIII. Scale bar = XX μm.
Figure 1 in Description of the pupa of Tanytarsus alatus Paggi (1992) (Chironominae: Tanytarsini)
Figure 1. Tanytarsus alatus Paggi (1992) pupa. A) abdomen, dorsal view; B) frontal tubercles; C) posterolateral comb of abdominal segment VIII; D) thoracic horn; E) detail of the pores in the thoracic horn; F) patch on tergite III; G) patch on tergite IV; H) spinules on tergite V; I) spinules on tergite VI. Scale bar = 10 µm, except otherwise stated.
Figure 1 in Potential phylogenetic significance of the number of functional abdominal spiracles in beetle pupae, with focus on Staphylinoidea (Coleoptera)
Figure 1. Hesperus rufipennis (Gravenhorst). Pupa (A) left lateral view, (B) dorsal view, (C) detail of functional abdominal spiracle 2, (D) detail of non-functional abdominal spiracle 6. Modified from Staniec (2004b: figs. 45, 46, 49, and 50, respectively), used with permission.
Figure 7. Macraspis morio Burmeister, 1844 in Description of the third instar larva and pupa of Macraspis morio Burmeister, 1844 (Coleoptera: Scarabaeidae: Rutelinae) from Southern Brazil
Figure 7. Macraspis morio Burmeister, 1844; third instar larva. Raster, rear view. AST = anal slit; PLD = palidia; VAL = ventral anal lobe; SPT = septula (in grey); Scale = 1 mm.
Figure 6. Macraspis morio Burmeister, 1844 in Description of the third instar larva and pupa of Macraspis morio Burmeister, 1844 (Coleoptera: Scarabaeidae: Rutelinae) from Southern Brazil
Figure 6. Macraspis morio Burmeister, 1844; third instar larva, maxilla and labium. (A) dorsal view; (B) ventral view. GLA = galea; HSC = hypopharyngeal sclerome; LGL = ligula; LPL = labial palpi; MLA = mala; MNT = mentum; PRM = prementum; SBM = submentum; UNC = uncus. Scale = 1 mm.
Figure 5. Macraspis morio Burmeister, 1844 in Description of the third instar larva and pupa of Macraspis morio Burmeister, 1844 (Coleoptera: Scarabaeidae: Rutelinae) from Southern Brazil
Figure 5. Macraspis morio Burmeister, 1844; third instar larva. (A) left mandible, ventral view; (B) right mandible, ventral view; (C) right mandible, dorsal view; (D) left mandible, dorsal view.BTA = brustia; CLX = calx; MLR = molar lobe; S1-S3 = incisor teeth; STA = stridulatory area; VSC = ventral setal comb. Scale = 1 mm.
Figure 4. Macraspis morio Burmeister, 1844 in Description of the third instar larva and pupa of Macraspis morio Burmeister, 1844 (Coleoptera: Scarabaeidae: Rutelinae) from Southern Brazil
Figure 4. Macraspis morio Burmeister, 1844; third instar larva. (A) labrum, dorsal view; (B) epipharynx, ventral view. ACP = acroparia; ALS = anterolabral setae; CTP = chaetoparia; DXT = dexiotorma; GMP = gymnoparia; HTL = haptolachus; HTM = haptomerum; LAP = left acanthoparia; LLS = laterolabral setae; LTM = laeotorma; MLS = mediolabral seta; PLS = posterolabral setae; PTM = pterotorma; RAP = right acanthoparia. Scale = 1 mm.
Figure 3. Macraspis morio Burmeister, 1844 in Description of the third instar larva and pupa of Macraspis morio Burmeister, 1844 (Coleoptera: Scarabaeidae: Rutelinae) from Southern Brazil
Figure 3. Macraspis morio Burmeister, 1844; third-instar larva, head, frontal view. AAS = anterofrontal angle setae; AES = anteroepicranial setae; ALS = anterolabral setae; DES = dorsoepicranial setae; ECS = externoclypeal setae; EES = externoepicranial setae; EFS = externofronal setae; LLS = laterolabral setae; MLS = mediolabral setae; PES = posteroepicranial setae;PFS = posterofrontal setae; PLS = posterolabral setae;SPT = dorsal sensorial spots; STM = stemma. Scale = 1 mm.
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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
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