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789 results for “Psocoptera”
FIGURES 158–163. Triplocania guane n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 158–163. Triplocania guane n. sp. Female. 158. Forewing. 159. Hindwing. 160. Front view of head. 161. Subgenital plate. 162. Ninth sternum and left gonapophyses. 163. Epiproct and right paraproct. Scales in mm.
FIGURES 93–98. Triplocania cantatis n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 93–98. Triplocania cantatis n. sp. Male. 93. Forewing. 94. Hindwing. 95. Front view of head. 96. Hypandrium. 97. Left paraproct and epiproct. 98. Phallosome. Scales in mm.
FIGURES 69–74. Triplocania bubuae n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 69–74. Triplocania bubuae n. sp. Male. 69. Forewing. 70. Hindwing. 71. Front view of head. 72. Paraprocts and epiproct. 73. Hypandrium. 74. Phallosome. Scales in mm.
FIGURES 57–62. Triplocania bicornuta n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 57–62. Triplocania bicornuta n. sp. Male. 57. Forewing. 58. Hindwing. 59. Front view of head. 60. Paraprocts and epiproct. 61. Hypandrium. 62. Phallosome. Scales in mm.
FIGURES 87–92. Triplocania camentsa n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 87–92. Triplocania camentsa n. sp. Male. 87. Forewing. 88. Hindwing. 89. Front view of head. 90. Paraprocts and epiproct. 91. Hypandrium. 92. Phallosome. Scales in mm.
FIGURES 45–50. Triplocania awa n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 45–50. Triplocania awa n. sp. Male. 45. Forewing. 46. Hindwing. 47. Front view of head. 48. Hypandrium. 49. Right paraproct and epiproct. 50. Phallosome. Scales in mm.
FIGURES 39–44. Triplocania asisensis n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 39–44. Triplocania asisensis n. sp. Male. 39. Forewing. 40. Hindwing. 41. Front view of head. 42. Paraprocts and epiproct. 43. Hypandrium. 44. Phallosome. Scales in mm.
FIGURES 33–38. Triplocania arhuaca n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 33–38. Triplocania arhuaca n. sp. Female. 33. Forewing. 34. Hindwing. 35. Front view of head. 36. Paraprocts and epiproct. 37. Subgenital plate. 38. Ninth sternum and left gonapophyses. Scales in mm.
FIGURES 212–217. Triplocania lithophila n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 212–217. Triplocania lithophila n. sp. Female. 212. Forewing. 213. Hindwing. 214. Front view of head. 215. Paraprocts and epiproct. 216. Subgenital plate. 217. Ninth sternum and left gonapophyses. Scales in mm.
FIGURES 9–14. Triplocania anchicayaensis n in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 9–14. Triplocania anchicayaensis n. sp. Male. 9. Forewing. 10. Hindwing. 11. Front view of head. 12. Paraprocts and epiproct. 13. Hypandrium. 14. Phallosome. Scales in mm.
FIGURE 3 in A new species of embidopsocine barklouse in Langhian amber from Zhangpu, China (Psocoptera: Liposcelididae)
FIGURE 3. Photographic details of holotype female of Belaphotroctes grimaldii sp. nov. (NIGP200508); scale bars = 0.25 mm. A, Head and pronotum, dorsal view. B, Head and pronotum, ventral view (P4 = maxillary palpomere IV). C, Apical abdominal sterna.
FIGURE 4 in A new species of embidopsocine barklouse in Langhian amber from Zhangpu, China (Psocoptera: Liposcelididae)
FIGURE 4. Wing venation of Belaphotroctes grimaldii sp. nov. (NIGP200508), forewing above, hind wing below. Scale bar = 1 mm.
of central in) KCC (Cave Chakan Khao and) KWC ( Cave] Wongkot Acari and, Khao Dermaptera at 2016, September Isoptera, to 2015 Plecoptera, October Psocoptera during, traps Blattodae, suction Odonata in, collected Trichoptera insects, of Orthoptera mass include dry Percent Others [ .. 2. Thailand ABLE T in The wrinkle-lipped free-tailed bat (Chaerephon plicatus Buchannan, 1800) feeds mainly on brown planthoppers in rice fields of central Thailand
of central in) KCC (Cave Chakan Khao and) KWC ( Cave] Wongkot Acari and, Khao Dermaptera at 2016, September Isoptera, to 2015 Plecoptera, October Psocoptera during, traps Blattodae, suction Odonata in, collected Trichoptera insects, of Orthoptera mass include dry Percent Others [ .. 2. Thailand ABLE T
Fig. 1 in New Psocoptera (Hexapoda, Insecta) records from Belarus
Fig. 1. General view of a female Liposcelis pearmani from Belarus (collected on 10.10.2019, Gomel city, Auerbaha Str., in entomological collection, 52°25'49"N, 30°59'12"E, 139 a.s.l.). Photo: D. Georgiev, light microscope, 10x.
FIGURE 29 in Brasineura Silva-Neto & García Aldrete (Psocodea, 'Psocoptera', Ptiloneuridae) new species, new records and variation in the wing venations
FIGURE 29. Distribution of the Brasineura species.
Data from: Elevated genetic diversity of mitochondrial genes in asexual populations of bark lice ("Psocoptera": Echmepteryx hageni)
Asexual reproduction is commonly thought to be associated with low genetic diversity in animals. Echmepteryx hageni (Insecta: "Psocoptera") is one of several psocopteran species that are primarily parthenogenetic, but also exists in small, isolated sexual populations. We used mitochondrial DNA sequences to investigate the population history and genealogical relationships between the sexual and asexual forms of this species. The asexual population of E. hageni exhibits extremely high mitochondrial haplotype diversity (H = 0.98), whereas the sexual forms had significantly lower haplotypic diversity (H = 0.25, after correcting for sample size). This diversity in asexuals represents one the greatest genetic diversities reported for asexual animals in the literature. Nucleotide diversities were also higher in asexual compared to sexual populations (π = 0.0071 vs. 0.00027). Compared to other reported estimates of π in insects, asexual nucleotide diversity is high, but not remarkably elevated. Three hypotheses might explain the elevated genetic diversity of asexual populations: 1) larger effective population size, 2) greater mutation rate, or 3) possible recent origin of sexuals. In addition, phylogeographic analysis revealed little geographic structure among asexual E. hageni, although specimens from the upper Midwest form a single clade and are genetically differentiated. The mismatch distribution and neutrality tests indicate a historical population size increase, possibly associated with expansion from glacial refugia.
FIGURE 19 in The genus Sigmatoneura Enderlein (Psocoptera: Psocidae), with two new species from China
FIGURE 19. Distribution of Sigmatoneura in China.
FIGURE 12 in Symbiopsocus Li (Psocoptera: Psocidae), with a new species from China
FIGURE 12. Distribution of Symbiopsocus in China.
FIGURE 14. Elaphopsocoides lahonduraensis n in Elaphopsocoides, a new genus of Psocidae (Psocodea:´Psocoptera´) from Valle del Cauca, Colombia
FIGURE 14. Elaphopsocoides lahonduraensis n. sp. Male. Lateral view. Scale in mm.
FIGURE 55 in The genus Elaphopsocus Roesler (Psocodea:`Psocoptera´: Psocidae) with six new species from Brazil and Colombia
FIGURE 55. Geographic distribution of Elaphopsocus spp.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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