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134 results for “297”
MS Kathmandu NAK 5-333 (297-398)
<p>Images of a Sanskrit manuscript.</p>
FIGURES 297–304 in Review of the subtribe Gyrophaenina Kraatz, 1856 (Coleoptera: Staphylinidae: Aleocharinae: Homalotini) of Kunashir Island, with notes on species of Far Eastern Russia
FIGURES 297–304. Distribution of Gyrophaena in Eastern Siberia and Far Eastern Russia: 297—G. (s.str.) sp., 298—G. (s.str.) fusicornis, 299—G. (s.str.) joyi, 300—G. (s.str.) obsoleta, 301—G. (s.str.) orientalis, 302—G. (s.str.) pasniki, 303—G. (s.str.) permixta, 304—G. (s.str.) poweri.
FIGURES 292–301. Pinodytes capizzii. 292. Male right antenna, dorsal. 293. Male right protibia and protarsus. 294. Male right mesotibia. 295. Male right metafemur and metatibia. 296. Aedeagus, lateral. 297. Aedeagus, dorsal. 298 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURES 292–301. Pinodytes capizzii. 292. Male right antenna, dorsal. 293. Male right protibia and protarsus. 294. Male right mesotibia. 295. Male right metafemur and metatibia. 296. Aedeagus, lateral. 297. Aedeagus, dorsal. 298. Variation in apex of aedeagus, dorsal (Lane Co., Oregon). 299. Variation in apex of aedeagus, dorsal (Columbia Co., Oregon). 300. Spermatheca. 301. Mesoventrite, lateral. Scale bar = 0.1 mm (Fig. 300), 0.3 mm (Figs. 292–299, 301).
FIGURES 290–297. 290–293 in Systematics and biogeography of the spider genus Mallinella Strand, 1906, with descriptions of new species and new genera from Southeast Asia (Araneae, Zodariidae) 3369
FIGURES 290–297. 290–293. Mallinella abnormis sp. nov., holotype. 294–297. M. linguiformis sp. nov., holotype. 290. Male palp, ventral. 291. Conductor and TA, prolateral. 292. TA, retrolateral. 293. Apex of embolus, prolateral. 294. Internal genitalia, dorsal. 295. Left spermatheca, anterior. 296. Right spermatheca, lateral. 297. Ditto, posterior.
FIGURES 297–304 in <strong>Phylogeny and revision of <em>Messatoporus</em> Cushman (Hymenoptera, Ichneumonidae, Cryptinae), with descriptions of sixty five new species</strong>
FIGURES 297–304. Distribution maps for species of Messatoporus. 297, M. antennator 298, M. apertus. 299, M. apiopharkis. 300, M. arcuatus. 301, M. argentinus. 302, M. atlanticus. 303, M. atrifoveus. 304, M. aurantius.
FIGURES 296–299. Neopleurophora phallus. 296–297. N in Taxonomic revision of the genus Neopleurophora Brown (Diptera: Phoridae), with the description of thirty seven new species
FIGURES 296–299. Neopleurophora phallus. 296–297. N. balbii, dorsal and left lateral view respectively; 298–299. N. cauca, dorsal and left lateral view respectively.
FIGURES 297–304 in Revision of New World Leptocera Olivier (Diptera, Sphaeroceridae)
FIGURES 297–304. Aedeagal complex and subepandrial sclerite of Leptocera plax group. Leptocera plax sp.n. (Ecuador): (297) subepandrial sclerite and posterior section of surstylus, posterior; (298) aedeagal complex, lateral; (299) ditto, dorsal; (300) ditto, posterior; (301) ditto, anterior. Leptocera tapanti sp.n. (Costa Rica), aedeagal complex: (302) lateral; (303) dorsal; (304) anterior. bcp—basal connection between postgonites, bp—basiphallus, dp—distiphallus, ea—ejaculatory apodeme, pa—phallapodeme, pg—postgonites, pss—posterior section of surstylus, se—subepandrial sclerite.
FIGURES 288–297 in A taxonomic monograph of the Middle American leaf-litter inhabiting weevil genus Theognete Champion (Coleoptera: Curculionidae; Molytinae; Lymantini) 2458
FIGURES 288–297. Habitus, dorsal view, Theognete hesmos species group. 288. T. hesmos. 289. T. michaudi. 290. T. cristata. 291. T. lakarms. 292. T. harbini. 293. T. draco. 294. T. tomneyeae. 295. T. reprela. 296. T. minuta. 297. T. grimblyae.
FIGURES 297–302 in World reclassification of the Gonatocerus group of genera (Hymenoptera: Mymaridae)
FIGURES 297–302. Yoshimotoana masneri, head: 297, anterior; 298, dorsal; 299, lateral; 300, posterior; 301, ventral; 302, mouthparts. Scale bars = 100 Μm.
finals_2022_297
Log and boot files of game 297
FIGURES 297–307 in A review of the jumping plant-lice (Hemiptera: Psylloidea) of the Canary Islands, with descriptions of two new genera and sixteen new species
FIGURES 297–307. (297–300) Percyella benahorita galls. (301) Percyella canari gall. (302–305) Percyella gomerita galls. (305) Anthocoris salicis. (307) Pseudococcidae sp.
FIGURES 294–297 in Genera of Tischeriidae (Lepidoptera): a review of the global fauna, with descriptions of new taxa
FIGURES 294–297. Details of female genitalia of Rytietia spp. 294, 296, 297, R. uncinata Diškus, Xu & Dai, sp. nov., northern Vietnam, paratype, genitalia slide no. AD1012 (MfN); 295, R. chongyiensis Xu & Dai, sp. nov., China, paratype, genitalia slide no. LIU0097, apophyses (GNU)
Figs 289‒297 in Comparative genitalic morphology in ten genera of thread-legged bugs of the tribe Metapterini, and its phylogenetic importance (Hemiptera: Heteroptera: Reduviidae)
Figs 289‒297. Phallus: 289‒291 ‒ dorsal view; 292‒294 ‒ lateral view; 295‒297 ‒ caudal view. 289, 292, 295 ‒ Bergemesa brachmanni (Berg, 1884); 290, 293, 296 ‒ Gardena faustina McAtee & Malloch, 1925; 291, 294, 297 ‒ Tagalis seminigra Champion, 1899. Scale bar: 0.5 mm.
Supplementary material 1 from: Li S, Peng C, Yuan R, Tian C (2023) Morphological and phylogenetic analyses reveal three new species of Apiospora in China. MycoKeys 99: 297-317. https://doi.org/10.3897/mycokeys.99.108384
Isolates and GenBank accession numbers used in the phylogenetic analyses
Supplementary material 1 from: Collado GA, Flores N, Vidal MA, Torres-Díaz C, Valladares MA (2023) Distribution, conservation assessment and management perspectives of Chilean micro-snails of the family Charopidae. Nature Conservation 53: 297-317. https://doi.org/10.3897/natureconservation.53.100631
List of geographical coordinates and threats affecting species
Supplementary material 3 from: Collado GA, Flores N, Vidal MA, Torres-Díaz C, Valladares MA (2023) Distribution, conservation assessment and management perspectives of Chilean micro-snails of the family Charopidae. Nature Conservation 53: 297-317. https://doi.org/10.3897/natureconservation.53.100631
Species distribution models
Supplementary material 2 from: Collado GA, Flores N, Vidal MA, Torres-Díaz C, Valladares MA (2023) Distribution, conservation assessment and management perspectives of Chilean micro-snails of the family Charopidae. Nature Conservation 53: 297-317. https://doi.org/10.3897/natureconservation.53.100631
NatureServe assessment
Figure 1 from: Babcock LE (2024) Nomenclatural history of Megalonyx Jefferson, 1799 (Mammalia, Xenarthra, Pilosa, Megalonychidae). ZooKeys 1195: 297-308. https://doi.org/10.3897/zookeys.1195.117999
Figure 1 Megalonyx jeffersonii (Desmarest, 1822), bones of the holotype, left manus (see Daeschler in Thomson 2011a), reproduced from Wistar (1799: pl. 2, with modification), deposited in the Academy of Natural Sciences of Drexel University, Philadelphia, Pennsylvania (ANSP 12507); Quaternary (Pleistocene), probably from Haynes Cave, Monroe County, West Virginia (fideGrady 1997), USA. Wistar's numbers refer to: 1, 5, metacarpals; 2, 3, phalanges; 4, unguals (claw cores). In the articulated digit at top of figure, the second phalanx (middle bone in the figure) is illustrated upside-down. For scale: the longest ungual, upper right, juxtaposed with other bones of the digit, is 17 cm long.
Figure 2 from: Babcock LE (2024) Nomenclatural history of Megalonyx Jefferson, 1799 (Mammalia, Xenarthra, Pilosa, Megalonychidae). ZooKeys 1195: 297-308. https://doi.org/10.3897/zookeys.1195.117999
Figure 2 Megalonyx jeffersonii (Desmarest, 1822), reconstructed skeleton described by Orton (1891a, 1891b), Claypole (1891), and McDonald et al. (2015), from unconsolidated Quaternary sediment, Millersburg, Ohio, USA; mounted in 1896 by Ward's Natural Science Establishment for public display in the Orton Geological Museum of The Ohio State University (OSU 15758; see Babcock et al. 2023). The skull is a cast of a specimen illustrated by Leidy (1855: pls I–III, V), with three teeth inserted from the Millersburg megalonyx. As mounted, the skeleton stands 2.1 m tall.
Figure 3 from: Starr CK, Jacobson RS, Overal WL (2024) Justin Schmidt's originality. Journal of Hymenoptera Research 97: 297-306. https://doi.org/10.3897/jhr.97.121387
Figure 3 Diagrammatic representation of the scope of J.O Schmidt's research program. Further explanation in text. Graph by Nova Y. Starr.
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International Brain Laboratory public data
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OpenNeuro
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