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325 results for “Neuropterida”
Figure 16 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 16 First of two OUMNH adult syntypes of Ascalaphusmacleayanus Guilding, 1823 (NEUR0047-01, sex undetermined).
Figure 19 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 19 OUMNH syntype of Ascalaphus (Haploglenius) obscurus Westwood, 1847 (NEUR0073, sex undetermined).
Figure 21 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 21 Second of three OUMNH syntypes for Ascalaphus (Ogcogaster) segmentator Westwood, 1847 (NEUR0048-02, probably male).
Figure 22 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 22 Third of three OUMNH syntypes for Ascalaphus (Ogcogaster) segmentator Westwood, 1847 (NEUR0048-03, probably female).
Figure 108 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 108 Second of two OUMNH syntypes for Pterocrocestoreyi Withycombe, 1923 (NEUR0035-02, female).
Figure 12 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 12 Lectotype (present designation) of Colobopterusdissimilis McLachlan, 1871 (NEUR0045-01, male).
Figure 1 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 1 OUMNH paralectotype of Corydalusarmatus Hagen, 1861 (NEUR0080, male). Earlier, erroneously identified as Hemerobiuscornutus Linnaeus, 1758.
Figure 2 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 2 First of two OUMNH paralectotypes for Nevromusinfectus McLachlan, 1869 (NEUR0041-01, male).
Figure 11 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 11 OUMNH syntype of Ascalaphus (Ogcogaster) dentifer Westwood, 1847 (NEUR0049, sex undetermined).
Figure 20 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 20 First of three OUMNH syntypes for Ascalaphus (Ogcogaster) segmentator Westwood, 1847 (NEUR0048-01, probably male).
Figure 15 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 15 a, b, c Three historical OUMNH specimens of Ascalaphuslongus Walker, 1853, probably all female d the head label that rests above all three specimens.
Figure 6 from: Duelli P, Wermelinger B, Moretti M, Obrist MK (2019) Fire and windthrow in forests: Winners and losers in Neuropterida and Mecoptera. Alpine Entomology 3: 39-50. https://doi.org/10.3897/alpento.3.30868
Figure 6 Combi trap in an intensely disturbed forest plot in Ticino (Forest fire I) after several forest fires within the previous 40 years. In spring the chestnut regrowth (here without old trees) is still without leaves. Photo: WSL.
Figure 5 from: Duelli P, Wermelinger B, Moretti M, Obrist MK (2019) Fire and windthrow in forests: Winners and losers in Neuropterida and Mecoptera. Alpine Entomology 3: 39-50. https://doi.org/10.3897/alpento.3.30868
Figure 5 Cleared windthrow plot in mixed forest near Messen, two years after storm Lothar (Windthrow II). Photo: WSL.
Figure 2 from: Duelli P, Wermelinger B, Moretti M, Obrist MK (2019) Fire and windthrow in forests: Winners and losers in Neuropterida and Mecoptera. Alpine Entomology 3: 39-50. https://doi.org/10.3897/alpento.3.30868
Figure 2 Combi trap (a combination of a flight interception trap and a yellow funnel trap) in an uncleared windthrow plot (Windthrow II) near Habsburg after storm Lothar. Photo: WSL.
Figure 4 from: Duelli P, Wermelinger B, Moretti M, Obrist MK (2019) Fire and windthrow in forests: Winners and losers in Neuropterida and Mecoptera. Alpine Entomology 3: 39-50. https://doi.org/10.3897/alpento.3.30868
Figure 4 Cleared windthrow plot above Schwanden three years after storm Vivian (Windthrow I). Photo: WSL.
Figure 1 from: Duelli P, Wermelinger B, Moretti M, Obrist MK (2019) Fire and windthrow in forests: Winners and losers in Neuropterida and Mecoptera. Alpine Entomology 3: 39-50. https://doi.org/10.3897/alpento.3.30868
Figure 1 Window interception trap and yellow bucket trap in an uncleared windthrow plot (Windthrow I) above Schwanden after storm Vivian. Photo: WSL.
Figure 8 from: Duelli P, Wermelinger B, Moretti M, Obrist MK (2019) Fire and windthrow in forests: Winners and losers in Neuropterida and Mecoptera. Alpine Entomology 3: 39-50. https://doi.org/10.3897/alpento.3.30868
Figure 8 Two years after the massive fire above Leuk the whole area was covered with a carpet of colorful vegetation. Photo: WSL.
Figure 7 from: Duelli P, Wermelinger B, Moretti M, Obrist MK (2019) Fire and windthrow in forests: Winners and losers in Neuropterida and Mecoptera. Alpine Entomology 3: 39-50. https://doi.org/10.3897/alpento.3.30868
Figure 7 Combi trap in the center of the large burned area above Leuk, a few months after the fire (Forest fire II). Photo: WSL.
FIGURE 1 in Neuropterida (Insecta: Megaloptera, Raphidioptera, Neuroptera) of Pakistan: a catalogue and faunistic review
FIGURE 1. Outline map of Pakistan (original map based on ArcGis 10.2 boundary files).
Figure 2 in Extinct Neuropterida of Brazil (Insecta: Neuroptera, Megaloptera, Raphidioptera)
Figure 2 Examples of Neuroptera fossil from Crato Formation. a) Holotype of Limaia conspicua Martins-Neto & Vulcano, 1989a (Chrysopidae: Limaiinae); b) Holotype of Makarkinia irmae Machado, Freitas & Ribeiro,2021 (Kalligrammatidae: Kalligrammatinae); c) Holotype ofKarenina breviptera Martins-Neto, 1997 (Mesochrysopidae:Allopterinae); d) Holotype of Cratoneura longissima Martins-Neto, 1992b (Myrmeleontidae: Araripeneurinae); e) Holotype of Diegopteryx raptoria Martins-Neto in Martins-Neto & Rodrigues, 2010 (Myrmeleontidae: Araripeneurinae); f) Holotype of Neurastenyx conani Martins-Neto in Martins-Neto & Rodrigues, 2010 (= Baisopardus conani) (Palaeoleontidae); g) Holotype of Blittersdorffta volkheimeri Martins-Neto & Vulcano, 1989c (Myrmeleontidae: Pseudonymphinae); h) Holotype of Palaeoleon araripensis Martins-Neto, 1992b (= Baisopardus araripensis) (Palaeoleontidae);i) Holotype of Paraneurastenyx ascalaphyx Martins-Neto, 1998 (Palaeoleontidae);j) Holotype of Pulchroptilonia espatifata MartinsNeto, 1997 (Psychopsidae).
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
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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
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.