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714 results for “neotype designation”

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zenodo32/100

FIGURE 5 in Disentangling the Pelodiscus axenaria complex, with the description of a new Chinese species and neotype designation for P. axenaria (Zhou, Zhang & Fang, 1991)

FIGURE 5. One of the paratypes of Pelodiscus shipian sp. nov. (JNU 20210002, adult female, 88.2 mm CL) in life.

opennotspecifiedApr 2022View details →
zenodo32/100

New taxonomic position and neotype designation for the conoidean gastropod Pleurotoma patagonica d'Orbigny, 1841

<p>Neotype specimen (MACN-In43983) collected alive at Las Grutas, San Antonio Oeste, R&iacute;o Negro Province,<br> Argentina, in 8 m depth.</p>

opencc-by-4.0May 2022View details →
zenodo32/100

FIGURE 1a in Neotype designation, redescription, biology and distribution of Acanthopsyche alstoni Watt & Mann, 1903 (Lepidoptera: Psychidae) from India

FIGURE 1a: ♂ Neotype of Acanthopsyche alstoni currently at STC Thrissur India—magnified view of head and thorax; b: ♂Neotype of Acanthopsyche alstoni at STC Thrissur India—full body view.

opennotspecifiedJun 2022View details →
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FIGURE 4a in Neotype designation, redescription, biology and distribution of Acanthopsyche alstoni Watt & Mann, 1903 (Lepidoptera: Psychidae) from India

FIGURE 4a: ♂ Fore Wing venation, descaled, coloured in Fuchsine, mounted in alcohol; b: ♂ Hindwing Wing, descaled, coloured in Fuchsine, mounted in alcohol; 4c: Wing venation.

opennotspecifiedJun 2022View details →
zenodo32/100

Nesokia is sister to Bandicota and are nested in Rattus phylogenetically, making Rat- tus paraphyletic. Tarsomys, Limnomys, and Diplothrix are also phylogenetically in Rat- tus, and the clade is in need of focused re- vision at the generic level. Nesokia bunnui was originally described as a separate ge-nus, Erythronesokia, because it is morphologically very distinctive from N. indica. Type specimen was destroyed during the Iraq War, and a neotype was recently designated to replace it. Monotypic. Distribution. Tigris and Euphrates river valleys, SE Iraq. Descriptive notes. Head—body 230-260 mm, tail 205-270 mm, ear 18-21 mm, hindfoot 49-58 mm; weight 519 g. The Long-tailed Bandicoot Rat is larger than the Short-tailed Bandicoot Rat (N. indica). Pelage is soft and woolly, interspersed with harsher coarse hair and long black hairs near mid-back. Dorsum is fawn to ocherous red, washed with purple or chestnuton darker individuals. Hairs are basally slate-gray and distally rufous, occasionally with whitish or black tips. Muzzle is drab. Sides arefawn, with gray edge toward venter. Venteris whitish, extending onto cheeks where the same pattern from gray to fawn to dorsal pelage occurs. Feet are large and robust, being light brown and well-furred dorsally. Claws are amber on forefeet and dull brown on hindfeet; pollux is extremely small. Ears are moderately long and brownish, with no hair internally. Tail is ¢.82-104% of head-body length and deep brownish drab, interspersed with visible white hair. Skull is large and robust, similarly to the Short-tailed Bandicoot Rat. Habitat. Marsh and swamp land. Food and Feeding. No information. Breeding. No information. Activity patterns. The Long-tailed Bandicoot Rat is terrestrial, although it isfound in swampy and marshy areas and is probably amphibious. Movements, Home range and Social organization. No information. Status and Conservation. Classified as Endangered on The IUCN Red List. The Longtailed Bandicoot Rat is apparently rare and is known from very few specimens. Marsh and swamp habitats in which it is found were completely destroyed during the Iraq War by draining, war damage, and agricultural expansion. In recent years, flooding from Tigris and Euphrates rivers and high snow fall and melt haveresulted in partial restoration ofits native habitat, although restoration is not a complete. Populations are now probably highly fragmented. Bibliography. Al-Ansari et al. (2012), Al-Robaae & Felten (1990), Khajuria (1981), Krystufek et al. (2017), Musser & Carleton (2005), Richardson & Hussain (2006), Stuart (2008). in Muridae

Nesokia is sister to Bandicota and are nested in Rattus phylogenetically, making Rat- tus paraphyletic. Tarsomys, Limnomys, and Diplothrix are also phylogenetically in Rat- tus, and the clade is in need of focused re- vision at the generic level. Nesokia bunnui was originally described as a separate ge-nus, Erythronesokia, because it is morphologically very distinctive from N. indica. Type specimen was destroyed during the Iraq War, and a neotype was recently designated to replace it. Monotypic. Distribution. Tigris and Euphrates river valleys, SE Iraq. Descriptive notes. Head—body 230-260 mm, tail 205-270 mm, ear 18-21 mm, hindfoot 49-58 mm; weight 519 g. The Long-tailed Bandicoot Rat is larger than the Short-tailed Bandicoot Rat (N. indica). Pelage is soft and woolly, interspersed with harsher coarse hair and long black hairs near mid-back. Dorsum is fawn to ocherous red, washed with purple or chestnuton darker individuals. Hairs are basally slate-gray and distally rufous, occasionally with whitish or black tips. Muzzle is drab. Sides arefawn, with gray edge toward venter. Venteris whitish, extending onto cheeks where the same pattern from gray to fawn to dorsal pelage occurs. Feet are large and robust, being light brown and well-furred dorsally. Claws are amber on forefeet and dull brown on hindfeet; pollux is extremely small. Ears are moderately long and brownish, with no hair internally. Tail is ¢.82-104% of head-body length and deep brownish drab, interspersed with visible white hair. Skull is large and robust, similarly to the Short-tailed Bandicoot Rat. Habitat. Marsh and swamp land. Food and Feeding. No information. Breeding. No information. Activity patterns. The Long-tailed Bandicoot Rat is terrestrial, although it isfound in swampy and marshy areas and is probably amphibious. Movements, Home range and Social organization. No information. Status and Conservation. Classified as Endangered on The IUCN Red List. The Longtailed Bandicoot Rat is apparently rare and is known from very few specimens. Marsh and swamp habitats in which it is found were completely destroyed during the Iraq War by draining, war damage, and agricultural expansion. In recent years, flooding from Tigris and Euphrates rivers and high snow fall and melt haveresulted in partial restoration ofits native habitat, although restoration is not a complete. Populations are now probably highly fragmented. Bibliography. Al-Ansari et al. (2012), Al-Robaae &amp; Felten (1990), Khajuria (1981), Krystufek et al. (2017), Musser &amp; Carleton (2005), Richardson &amp; Hussain (2006), Stuart (2008).

opennotspecifiedNov 2017View details →
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FIGURES 9–13. Hercinothrips splendens n in A key to species of Hercinothrips, with one new species, and a neotype designation for H. trilineatus (Priesner)

FIGURES 9–13. Hercinothrips splendens n.sp. (9) Tergites IX–X; (10) Metanotum; (11) Fore wing; (12) Leaf feeding damage on Aloe sp. caused by H. aethiopiae in Holland; (13) Aloe plants attacked by H. splendens in greenhouse in Holland.

opennotspecifiedJul 2022View details →
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FIGURES 14–23 in A key to species of Hercinothrips, with one new species, and a neotype designation for H. trilineatus (Priesner)

FIGURES 14–23. Hercinothrips species. (14) H. jansei pronotum; (15) H. dimidiatus pronotum; (16) H. aethiopiae microtrichia comb VIII; (17) H. tenuis hind tibia; (18) H. splendens tibia; (19) H. brunneus microtrichia comb VIII; (20) H. trilineatus wing; (21) H. trilineatus tibia; (22) H. trilineatus metanotum; (23) H. splendens metanotum

opennotspecifiedJul 2022View details →
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FIGURES 1–8. Hercinothrips splendens n in A key to species of Hercinothrips, with one new species, and a neotype designation for H. trilineatus (Priesner)

FIGURES 1–8. Hercinothrips splendens n.sp. (1) Habitus female; (2) Head; (3) Pronotum; (4) Head and Pronotum; (5) Tergite I; (6) Tergite II; (7–8) Antennal segments III–VIII.

opennotspecifiedJul 2022View details →
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FIG. 1 in Canadaphis mordvilkoi, Kononova 1976 (Hemiptera: Sternorrhyncha: Canadaphididae)-redescription and neotype designation

FIG. 1 New specimen of Canadaphis mordvilkoi; a—ventral side of the body; b—dorsal side of the body.

opennotspecifiedSep 2022View details →
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FIGURE 10 in Neotype designation for Plangia graminea (Serville, 1838) and two new Plangia species from Tanzania, East Africa (Orthoptera: Tettigoniidae: Phaneropterinae)

FIGURE 10. Morphological details of female Plangia variacantans n. sp. A. Lateral view on ovipositor. Scale bar 2 mm B. Subgenital plate. Scale bar 1 mm.

opennotspecifiedSep 2017View details →
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FIGURE 9 in Neotype designation for Plangia graminea (Serville, 1838) and two new Plangia species from Tanzania, East Africa (Orthoptera: Tettigoniidae: Phaneropterinae)

FIGURE 9. Morphological details of male Plangia variacantans n. sp. A. Lateral and semilateral (B) view on abdominal apex. Scale bar 2 mm C. Subgenital plate. Scale bar 2 mm D. Stridulatory file on underside of left tegmen. Scale bar 500 µm.

opennotspecifiedSep 2017View details →
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FIGURE 4 in Neotype designation for Plangia graminea (Serville, 1838) and two new Plangia species from Tanzania, East Africa (Orthoptera: Tettigoniidae: Phaneropterinae)

FIGURE 4. Plangia graminea female, in spirit, NM Vienna. South Africa, M. C. Holub, det. Krss. A. Lateral view on ovipositor B. Subgenital plate.

opennotspecifiedSep 2017View details →
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FIGURE 2 in Neotype designation for Plangia graminea (Serville, 1838) and two new Plangia species from Tanzania, East Africa (Orthoptera: Tettigoniidae: Phaneropterinae)

FIGURE 2. Morphological details of male Plangia graminea. A–C. Neotype male A. Abdominal apex, dorsal view B. Subgenital plate C. Ventral view on right fore femur D. Plangia graminea, subgenital plate, male, South Africa, Cape region, Capetown, coll. Stevens, det. Brunner v. Wattenwyl 1929.

opennotspecifiedSep 2017View details →
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FIGURE 3 in Designation of a neotype for Parastacus nicoleti (Philippi, 1882) (Crustacea: Decapoda: Parastacidae)

FIGURE 3. Parastacus nicoleti (Philippi, 1882), A—epistome (UFRGS 2405); B—thoracic sternites and gonopores UFRGS 2405); C—thoracomere 8, caudal view (UFRGS 2405); D—antennal scale lateral view (UFRGS 2405); E—mandible (UFRGS 2405); F—third maxilliped ventral view (UFRGS 2405); G—third maxilliped dorsal view (UFRGS 2405); H—first pereiopod lateral view (UFRGS 2405); I—first pereiopod dorsal view (UFRGS 2405); J—second pereiopod lateral view (UFRGS 2405). Scale bars: A, C—2.5 mm; B, I—5 mm; D, E—2 mm; F, G—5 mm; H, J– 1 cm.

opennotspecifiedOct 2017View details →
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FIGURE 1 in Designation of a neotype for Parastacus nicoleti (Philippi, 1882) (Crustacea: Decapoda: Parastacidae)

FIGURE 1. Parastacus nicoleti (Philippi, 1882), neotype and other specimens: A—specimens from type locality identified by Bahamonde (1958) from the lot MNHNCL/CRU 2211, white arrow indicates the specimen selected as the neotype; B—male neotype (MNHNCL DEC–15001). Foto A by Felipe B. Ribeiro and B by Jorge Pérez-Schulteiss. Scale bars: A—2 cm; B—1 cm.

opennotspecifiedOct 2017View details →
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FIGURE 2 in Designation of a neotype for Parastacus nicoleti (Philippi, 1882) (Crustacea: Decapoda: Parastacidae)

FIGURE 2. Parastacus nicoleti (Philippi, 1882), A—habitus dorsal view (UFRGS 2405); B—cephalon dorsal view (UFRGS 2405); C—cephalon lateral view (UFRGS 2405); D—first and second male abdominal pleura (UFRGS 2405); E—tailfan (UFRGS 2405). Scale bars: A, E—1 cm; B, C, D—5 mm. Black arrow indicates the groove in the S2 pleura.

opennotspecifiedOct 2017View details →
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FIGURE 3 in Redescription and designation of a neotype for Ophiothrix angulata (Say, 1825) (Echinodermata: Ophiuroidea: Ophiotrichidae)

FIGURE 3. VariationS found in O. angulata: (A) Circular diSc (USMN 23739); (B) Ventral arm plateS in juvenileS; (C) DorSal arm plateS in juvenileS. Scale barS: A–C = 1 mm.

opennotspecifiedNov 2017View details →
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FIGURE 1 in Redescription and designation of a neotype for Ophiothrix angulata (Say, 1825) (Echinodermata: Ophiuroidea: Ophiotrichidae)

FIGURE 1. Morphological characterS of Ophiothrix angulata (neotype USNM E 33764, SEM imageS USMN 24338): (A) DorSal view of diSc; (B) Bifid SpineS; (C) Trifid SpineS; (D) Radial ShieldS covered by SpineS; (E) Ventral view of diSc; (F), DorSal arm plateS; (G) Ventral arm plate; (H) Lateral arm plate proximal; (I) Lateral arm plate diStal. Scale barS: A, D–F = 1 mm; B-C = 20 µm; G = 500 µm; H = 200 µm; I = 1mm.

opennotspecifiedNov 2017View details →
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FIGURE 2 in Redescription and designation of a neotype for Ophiothrix angulata (Say, 1825) (Echinodermata: Ophiuroidea: Ophiotrichidae)

FIGURE 2. SEM photographS of vertebra and arm SpineS of Ophiothrix angulata (USMN 24338): (A–D) Vertebrae: (A) Proximal aSpect; (B) DiStal aSpect; (C) Ventral aSpect; (D) DorSal aSpect. (E) Arm Spine. Scale barS: A–C = 200 µm; D = 100 µm; E = 500 µm.

opennotspecifiedNov 2017View details →
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PLATE 2 in Taxonomic status of Chrysophanus phoenicurus transcaucasicus Miller, 1923 (Lepidoptera, Lycaenidae), with the designation of a neotype

PLATE 2. Athamanthia spp., male genitalia, lateral view: 1—A. transcaucasica (Miller, 1923), stat. nov., neotype (ZMMU); 2—A. phoenicurus (Lederer, 1870), Turkmenistan, W Kopet Dagh Mts., Aydere gorge, 13.VI.1985, A.L. Devyatkin leg. (AKM). Letters indicate on diagnostic characters (see Diagnosis part): a—shape of uncus; b—shape of distal end of valva; c—shape of aedeagus; dshape and size of conutus.

opennotspecifiedNov 2017View details →

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Last verified 2026-04-30Open record

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DANDI Archive for NWB datasets

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dandi-nwb
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Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record