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Figure 69a in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figure 69a illustrates my hypothesis of the phylogenetic relationships of the taxa included in this work. The WINCLADA and NONA computer analysis produced a tree with the following indices: L 21, Ci 85, Ri 87. The presence of an acute pronotal tubercle and
Figs 67-68 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 67-68: Elytral surface and elytral asetiferous puncture. (67) Elytral surface. (68) Elytral asetiferous puncture.
Figs 44-56 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 44-56: Various organs. 44-52 Pronota. (44) Silvanoclerus beechi. (45) Labasiella bimaculate. (46) L. boyaca. (47) L. Cochabamba. (48) L. mcclarini. (49) L. eugeniae. (50) L. robles. (51) L. solervicensi. (52) L. transversalis. 53-54 Heads. (53) Inconnexus lunarus. (54) Silvanoclerus dilatus. 54A-54B Generalized shape of the last maxillary palpomeres. (54A) Securiform. (54B) subsecuriform. 55-56 Mesodermal reproductive organs of Amphelissus meieri. (55) Female. (56) Male.
Figs 28-43 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 28-43: Pronota. (28) Amphelissus goniodus. (29) A. meieri. (30) Inconnexus lunarus. (31) Labasiella lata. (32) L. labaticollis. (33) L. machupicchu. (34) L. santa. (35) L. stangei. (36) L. tucumanensis. (37) L. varipennis. (38) Pelmatus barri. (39) P. bicolor. (40) Macilentus micidus. (41) Oncochelyna barrigai. (42) O. tuberculate. (43) Silvanoclerus dilatus.
Fig. 1 in Acanthocephalans of the nominotypical subgenus of Plagiorhynchus (Plagiorhynchidae) from charadriiform birds in the collection of the Natural History Museum, London, with a key to the species of the subgenus
Fig. 1. Plagiorhynchus (Plagiorhynchus) crassicollis (Villot, 1875). A-D (material from Dorset): A. Male, general view. B. Male, anterior end of trunk. C. Male, longitudinal row of hooks (lateral view). D. Eggs. E-G (material from unknown locality, in Great Britain): E. Male, general view. F. Male, anterior end of trunk. G. Male, longitudinal row of hooks (lateral view). Scale-bars: A, E, 1.0 mm; B, F, 0.2 mm; C, D, G, 0.1 mm.
Fig. 8. General Charipinae features. A in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 8. General Charipinae features. A. Closed radial cell (Alloxysta brevis). B. Partially open radial cell (A. macrophadna). C. Open radial cell (A. medinae). D. Pronotal carinae absent (A. brevis). E. Pronotal carinae present (A. citripes). F. Propodeal carinae absent (A. victrix). G. Propodeal carinae present (A. castanea).
Fig. 7. Alloxysta semiaperta Fergusson, 1986. A. Fore wing. B in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 7. Alloxysta semiaperta Fergusson, 1986. A. Fore wing. B. Fore wing radial cell (arrow indicates that the radial cell is partially open). C. Antenna, ♂. D. Antenna, ♀. E. Propodeum. F. Lateral habitus, ♀. G. Pronotum (arrow indicates presence of pronotal carinae).
Fig. 6 in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 6. Alloxysta pleuralis (Cameron, 1879). A. Fore wing. B. Pronotum (arrows indicate pronotal carinae). C. Antenna, ♂. D. Antenna, ♀. E. Propodeum.
Fig. 3 in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 3. Alloxysta crassa (Cameron, 1889). A. Fore wing. B. Antenna, ♀. C. Fore wing radial cell (arrow illustrates that the radial cell is completely open). D. Pronotum. E. Lateral habitus, ♀. F. Propodeum.
Fig. 4 in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 4. Alloxysta mullensis (Cameron, 1883). A. Fore wing. B. Fore wing radial cell. C. Pronotum. D. Propodeum. E. Antenna, ♀. F. Lateral habitus, ♀.
Fig. 5 in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 5. Alloxysta piceomaculata (Cameron, 1883). A. Fore wing. B. Fore wing radial cell. C. Propodeum. D. Antenna, ♀. E. Lateral habitus, ♀. F. Pronotum.
Fig. 1. Alloxysta abdera Fergusson, 1986. A. Fore wing. B in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 1. Alloxysta abdera Fergusson, 1986. A. Fore wing. B. Pronotum (arrows indicate pronotal carinae). C. Antenna, ♀. D. Antenna, ♂ (arrow shows curved F2). E. Propodeum. F. Fore wing radial cell (arrow indicates that the radial cell is completely open). G. Lateral habitus, ♀.
Fig. 2 in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 2. Alloxysta basimacula (Cameron, 1886). A. Fore wing. B. Fore wing radial cell (arrow indicates that the radial cell is completely open). C. Pronotum. D. Antenna, ♀. E. Propodeum. F. Lateral habitus, ♀.
Figs 14–19 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 14–19. Close up of parts of female genitalia of Fidia kanaraensis (Jacoby, 1895) comb. nov. 14. Bursa copulatrix. 15. Ovipositor. 16. Spermatheca. 17. Eighth tergite. 18. Holotype labels. 19. Paratype labels. Abbreviations: Cox = coxite; Par = paraproct; Prg = proctiger; Val = valvifer.
Fig 13 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Fig 13. Female genitalia of Fidia kanaraensis (Jacoby, 1895) comb. nov. along with line diagram. Abbreviations: BC = bursa copulatrix; CoG = collateral gland; ET = eighth tergite; MdO = median oviduct; Ovi = ovipositor; SpC = spermathecal capsule; SpD = spermathecal duct; SpG = spermathecal gland; Vg = vagina.
Figs 6–9 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 6–9. Male genitalia of Fidia kanaraensis (Jacoby, 1895) comb. nov. 6. Aedeagus, dorsal view. 7. Aedeagus, lateral view. 8. Tergite VIII, sternite VIII & IX. 9. Tegmen.
Figs 1–5 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 1–5. Fidia kanaraensis (Jacoby, 1895) comb. nov. 1. Dorsal view of habitus after removing powdery encrustation. 2. Dorsal view of habitus with powdery encrustation. 3. Ventral view of habitus. 4. Lateral view of habitus. 5. Head.
Figs 20–26 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 20–26. Biology and ecology of Fidia kanaraensis (Jacoby, 1895) comb. nov. 20. Eggs covered with excreta. 21. Naked eggs. 22. First instar grub, lateral view. 24. First instar grub, ventral view. 23. Damage on mango root. 25. Adult beetle on mango leaves. 26. Damage on cashew leaves.
Natural history specimens collected and/or identified and deposited.
Natural history specimen data collected and/or identified by Rainer, Heimo, <a href="https://orcid.org/0000-0002-5963-349X">https://orcid.org/0000-0002-5963-349X</a>. Claims were made on Bloodhound, <a href="http://bloodhound-tracker.net">https://bloodhound-tracker.net</a> using specimen data from the Global Biodiversity Information Facility, <a href="https://gbif.org">https://gbif.org</a>.
Figure 3 in Aspects of natural history in a sand boa, Eryx muelleri (Erycidae) from arid savannahs in Burkina Faso, Togo, and Nigeria (West Africa)
Figure 3. Relationships between (a) Snout-Vent-Length (SLV) and Tail Length (TL), and between (b) SVL and Head Length (HL) in Eryx muelleri. Specimens from Togo, Burkina Faso and Nigeria were pooled.
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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
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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