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Fig 21. Primary types. A–F in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig 21. Primary types. A–F. Lectotypes (dorsal, labels). A–B. Ulomenes hypocrita Blanchard, 1850. C–D. Gastrohoplus mirabilis Moser, 1921. E–F. Schizochelus flavescens Blanchard, 1850. G–K. Syntype of Hercitis pygmaea Burmeister, 1855 (by Holger Dombrow). G. Dorsal. H. Lateral. I. Frontal. J. Posterior. K. Labels. Scale bars: A, C, E = 2 mm; G–J without scale (specimen about 4–4.2 mm according to original description).

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Fig 19 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig 19. Lectotypes (dorsal, labels). A–B. Mallotarsus spadiceus Blanchard, 1850. C–D. Manodactylus gaujoni Moser, 1919. E–F. Manopus biguttatus Conte de Castelnau, 1840. G–H. Oedichira pachydactyla Burmeister, 1855. I–J. Amphicrania ursina Burmeister, 1855. K–L. Pectinosoma elongata Arrow, 1913. M–N. Aulanota sulcipennis Moser, 1924. O–P. Melolontha rufipennis Fabricius, 1801. Scale bars = 2 mm.

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Fig 20 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig 20. Lectotypes (dorsal, labels). A–B. Pachycerus castaneipennis Guérin-Méneville, 1831. C–D. Anomalochilus singularis Blanchard, 1850. E–F. Demodema fallax Blanchard, 1850. G–H. Plectris tomentosa LePeletier de Saint-Fargeau & Audinet-Serville, 1828. I–J. Gama grandicornis Blanchard, 1850. K–L. Pachylotoma viridis Blanchard, 1850. M–N. Serica marmorea Guérin-Méneville, 1831. O–P. Rhinaspoides aeneofusca Moser, 1919. Scale bars = 2 mm.

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Fig 17 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig 17. Lectotypes (dorsal, labels). A–B. Agaocnemis pruina Moser, 1918. C–D. Corminus canescens Burmeister, 1855. E–F. Anomalonyx uruguayensis Moser, 1921. G–H. Barybas nana Blanchard, 1850. I–J. Ctilocephala pelluscens Burmeister, 1855. K–L. Pseudohercitis viridiaenea Moser, 1921. M–N. Barybas volvulus Burmeister, 1855. O–P. Calodactylus tibialis Blanchard, 1850. Scale bars = 2 mm.

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Fig. 14. A, D in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 14. A, D. Male habitus, lateral (without some appendages). B–C, F–G. Female abdomen detail (lateral, posterior). E. Male abdomen detail, ventral. H–I. Aedeagus (lateral, parameres apex). A–C. Ancistrosoma klugii Curtis, 1835. D–I. Pectinosoma elongata Arrow, 1913.

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Fig. 16. Schizochelus Blanchard, 1850. A–C. Male abdomen, lateroventral. D. Female abdomen, lateral. E–F in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 16. Schizochelus Blanchard, 1850. A–C. Male abdomen, lateroventral. D. Female abdomen, lateral. E–F. Aedeagus (lateral, parameres apex). G–L. Protibia−tarsus (male, female) (with detail of tarsus: I = dorsal view; K = ventral view). A, E−H. Schizochelus flavescens Blanchard, 1850. B, I–J. Schizochelus bicoloripes Blanchard, 1850. C–D, K–L. Schizochelus mirabilis (Moser, 1921) comb. nov. Scale bars = 1 mm.

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Fig 18 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig 18. Lectotypes (dorsal, labels). A–B. Ceraspis pruinosa LePeletier de Saint-Fargeau & Audinet- Serville, 1828. C–D. Ceratolontha venezuelae Arrow, 1948. E–F. Chariodactylus chacoensis Moser, 1919. G–H. Philochlaenia virescens Blanchard, 1842. I–J. Clavipalpus dejeani Laporte, 1832. K–L. Ctenotis obesa Burmeister, 1855. M–N. Euryaspis gaudichaudii Blanchard, 1850. O–P. Faula cornuta Blanchard, 1850. Scale bars = 2 mm.

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Fig. 11 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 11. ♂♂. A−C. Head–prothorax dorsal, tarsus rotated laterally to apex. D−G. Aedeagus (lateral, parameres apex). H. Head−prothorax, ventral. A, D−E. Chariodactylus chacoensis Moser, 1919. B, F−H. Manodactylus gaujoni Moser, 1919. C. Macrodactylus pumilio Burmeister, 1855. Scale bars = 1 mm.

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Fig. 10. A−B, D−F in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 10. A−B, D−F. Head−pronotum, dorsal. C. Head−prothorax, lateroventral. G. Metatibia, internal. A. ♀. B−G. ♂. H−K. Aedeagus (lateral, parameres apex). A−C, H−I. Ceratolontha venezuelae Arrow, 1948. D. Rhinaspis aenea Billberg, 1820. E. Rhinaspis ohausi Moser, 1921. F−G, J−K. Rhinaspis aeneofusca Moser, 1919. Scale bars = 1 mm.

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Fig. 8. A−E. Pronotum−scutellum contact. F. Protibia. A. Ancistrosoma klugii Curtis, 1835. B. Chariodema virescens Blanchard, 1842. C in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 8. A−E. Pronotum−scutellum contact. F. Protibia. A. Ancistrosoma klugii Curtis, 1835. B. Chariodema virescens Blanchard, 1842. C. Ceraspis bivulnerata (Germar, 1824). D. Faula cornuta Blanchard, 1850. E−F. Manopus biguttata Conte de Castelnau, 1840. Scale bars = 1 mm.

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Fig. 2 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 2. ♂♂. A–D. Head–prothorax dorsal, tarsus rotated laterally to apex. E–G. Metatibia. H–I. Aedeagus (lateral, parameres apex). A, E. Agaocnemis pruina Moser, 1918. B, F, H–I. Byrasba volvula (Burmeister, 1855). C, G. Hamatoplectris caracana Frey, 1969. D. Hieritis macrocera Burmeister, 1855. Scale bars = 1 mm.

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Fig. 5. Barybas Blanchard, 1850. A–B in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 5. Barybas Blanchard, 1850. A–B. Head–prothorax dorsal, tarsus rotated laterally to apex. C–H. Male head (lateral, frontal), line = prothorax limit. I–J. Aedeagus (lateral, parameres apex). A, C–D. Barybas nana Blanchard, 1850. B, G–J. Barybas viridiaenea Moser, 1921. E–F. Barybas pellucens Burmeister, 1855. Scale bars = 1 mm.

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Fig. 7. Calodactylus tibialis Blanchard, 1850. A in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 7. Calodactylus tibialis Blanchard, 1850. A. Male habitus, lateral (without some appendages). B. Male abdomen lateroventral detail. C–D. Aedeagus (lateral, parameres apex). E. Metatibia. Scale bars = 1 mm.

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Fig. 6 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 6. ♂♂. A–D. Head (dorsal, ventral). E–F. Aedeagus (lateral, parameres apex). G–H. Mesoalinotum. A–B, E–F. Clavipalpus dejeani Laporte, 1832. C–D. Paulosawaya ursina (Blanchard, 1850) comb. nov. G. Barybas nana Blanchard, 1850. H. Macrodactylus pumilio Burmeister, 1855. a = scutum transverse carina; b = scutum–scutellum limit angulate. Scale bars = 1 mm.

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Fig. 3. Alvarinus canescens Burmeister, 1855 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 3. Alvarinus canescens Burmeister, 1855, ♂. A. Habitus, lateral (without some appendages). B. Head–prothorax dorsal, tarsus rotated laterally to apex. C. Metafemur. D–E. Aedeagus (lateral, parameres apex). Scale bars = 1 mm.

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Fig. 4. A–C. Male metatarsus. D. Female metatarsus. E–H in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 4. A–C. Male metatarsus. D. Female metatarsus. E–H. Aedeagus (lateral, parameres apex). I–J. Antenna (♂, ♀). A. Plectris tomentosa LePeletier de Saint-Fargeau & Audinet-Serville, 1828. B, E–F. Anomonyx uruguayensis Moser, 1921. C–D, G–J. Oedichira pachydactyla Burmeister, 1855. Scale bars = 1 mm.

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An updated generic classification of Cenozoic pleurotomariid gastropods, with new records from the Oligocene and Early Miocene of India

<p>Although taxonomically distinct, the Cenozoic pleurotomariids are the bottlenecked remnants of the Mesozoic members of the family in terms of morphology, with only conical forms surviving the end-Cretaceous mass extinction. Here, we propose an updated classification scheme for the Cenozoic representatives of this group, based on data from the entire Cenozoic pleurotomariid fossil record. We consider all conventional as well as several new characters so that this scheme can readily help to distinguish Cenozoic pleurotomariid genera. Following the new classification scheme, a revision of the generic status of Cenozoic species previously assigned to '<i>Pleurotomaria</i>' Defrance, 1826 is presented. Only a few Cenozoic pleurotomariid gastropods have been reported from the Indian subcontinent. Here we report four species from the Oligocene of the Kutch Basin and the Early Miocene (Burdigalian) of the Dwarka Basin of Gujarat, western India, of which two are described as new: <i>Perotrochus bermotiensis</i> n. sp. in the genus <i>Perotrochus</i> Fischer, 1885, and <i>Entemnotrochus kathiawarensis</i> n. sp., <em>Entemnotrochus </em>cf. <i>bianconii</i>, and <i>Entemnotrochus</i>? sp. 1 in the genus <i>Entemnotrochus</i> Fischer, 1885.</p>

opencc-zeroDec 2020View details →
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FIG. 10. Strophocaulon unitum, Fawcett 641 in A Generic Classification of the Thelypteridaceae

FIG. 10. Strophocaulon unitum, Fawcett 641 (VT), A. pinna lobes, abaxial view. B. rhizome. C. laminar apex.

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FIG. 9. Steiropteris deltoidea, Fawcett 464 in A Generic Classification of the Thelypteridaceae

FIG. 9. Steiropteris deltoidea, Fawcett 464 (VT) A. habit. B. pinna lobes, adaxial view.C. Mesophlebion sp., Karger 1796 (VT), pinna lobes, abaxial view.

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FIG. 6. A. Plesioneuron hopeanum, Fawcett 613 in A Generic Classification of the Thelypteridaceae

FIG. 6. A. Plesioneuron hopeanum, Fawcett 613 (VT), pinna lobes, adaxial view. Amauropelta (subg. Nibaa) noveboracensis, Fawcett 567 (MICH, VT), B. pinna-lobes, adaxial view.C. habit. D. Thelypteris palustris, Fawcett 569 (VT), pinna lobes abaxial view.

opencc-by-4.0Dec 2021View details →

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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.

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Last verified 2026-04-29Open record