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125 results for “Menoponidae”
Fig. 1 in Bird Lice (Mallophaga, Philopteridae, Menoponidae) Of Domestic Pigeons On Specialized Pigeon Breeding Farms In Poltava
Fig. 1. Fam. Philopteridae: а — Columbicola columbae — general view; b — Companulotes compare — head;
Fig. 3 in Bird Lice (Mallophaga, Philopteridae, Menoponidae) Of Domestic Pigeons On Specialized Pigeon Breeding Farms In Poltava
Fig. 3. Fam. Menoponidae: a — Bonomiella columbae — general view; b — Hohorstiella lata— general view.
Fig. 9. A in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 9. A species delimitation of Bornean Myrsidea studied inferred from a partial sequence of the mitochondrial COI gene. Validation methods shown on Bayesian tree of hypothetical species. Colors represent unique partitions and correspond to operational taxonomic units (OTU) by various methods of species delimitation: morphological, Automatic Barcode Gap Discovery (ABGD), Generalized Mixed Yule Coalescent analyses (GMYC), and Poisson Tree Process analyses (PTP) respectively.
Fig. 10 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 10. Tanglegram of phylogenies of Bornean avian host (left) and associated Myrsidea lice (right) studied. Colored circles above nodes indicate cospeciation events recovered from Jane (they correspond to 83% of the solutions with p-value of 0.001). Arrow indicates a host switching event recovered by Jane. Red lines indicate significant host-parasite links estimated by the ParaFitLink1 test.
Fig. 7 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 7. Habitus. Myrsidea ramoni sp.n. A-B, holotype female (A), paratype male (B). Myrsidea victoriae sp.n. C-D, holotype female (C), paratype male (D).
Fig. 6 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 6. Habitus. Myrsidea carmenae sp.n. A-B, holotype female (A), paratype male (B). Myrsidea franciscae sp.n. C-D, holotype female (C), paratype male (D).
Fig. 8 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 8. Bayesian phylogeny of Bornean Myrsidea studied based on analysis of the mitochondrial cytochrome c oxidase subunit I (COI) and elongation factor-1α (EF- 1α) genes. Outgroup taxon was removed from this figure for readability. Hosts belong to family Pycnonotydae are indicated on the right.
Fig. 4 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 4. Myrsidea ramoni sp.n. A, dorso-ventral view of female thorax and abdomen; B, head shape; C, dorsal view of male abdomen; D, male metasternal plate and sternites I–II; E, male genital sac sclerite.
Fig. 3 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 3. Myrsidea franciscae sp.n. A, dorso-ventral view of female thorax and abdomen; B, head shape; C, male metasternal plate and sternites I–II; D, male genital sac sclerite.
Fig. 2 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 2. Myrsidea carmenae sp.n. A, dorso-ventral view of female thorax and abdomen; B, head shape; C, male metasternal plate and sternites I–II; D, male genital sac sclerites.
Fig. 5 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 5. Myrsidea victoriae sp.n. A–D, dorso-ventral view of female thorax and abdomen (A), head shape (B), male metasternal plate and sternites I–II (C), male genital sac sclerite (D); Myrsidea macronoi E, male genital sac sclerite.
Fig. 1 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 1. Map of sampling localities (black dots) in the Yayasan Sabah Forest Management Area, Malaysian Borneo.
Linked collectors and determiners for: Myrsidea Waterston (Phthiraptera: Menoponidae) from tanagers (Passeriformes: Thraupidae), with descriptions of 18 new species.
Natural history specimen data linked to collectors and determiners held within, "Myrsidea Waterston (Phthiraptera: Menoponidae) from tanagers (Passeriformes: Thraupidae), with descriptions of 18 new species". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/4ba9c308-cd35-450c-a20d-19ee31d92e89">https://bionomia.net/dataset/4ba9c308-cd35-450c-a20d-19ee31d92e89</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/4ba9c308-cd35-450c-a20d-19ee31d92e89">https://gbif.org/dataset/4ba9c308-cd35-450c-a20d-19ee31d92e89</a>. Formatted as a Frictionless Data package.
Figure 12 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)
Figure 12. Thoracic prosternal plates with marginal border (shaded), in (A) Colpocephalum, (B) Dennyus, (C) Myrsidea, (D) Eomenopon, (E) Chapinia, (F) Eidmanniella, (G) Colimenopon, (H) Ricinus, (I) Trochiloecetes, (J) Laemobothrion, (K) Paraheterodoxus, and (L) Therodoxus.
Figure 13 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)
Figure 13. Characters of the ventral thorax, in (A) Holomenopon, with mesosternal and metasternal plates, first coxa and third femur (f 3) (all shaded), (B) Therodoxus, with first coxa (c 1), mesosternal plate (mes p) and metasternal plate (met p) (shaded), and (C) Menacanthus, first coxa. (D–G): Ventral aspect of the third femur, in (D) Boopia, (E) Ricinus, (F) Machaerilaemus, and (G) Laemobothrion, showing large patch of microtrichia (with detail). (H–J): Metanotal legs of (H) outgroup taxon Liposcelis, (I) Comatomenopon, with euplantula of first tarsus (e 1) and submarginal tibial setal row (s) indicated, and (J) Paraheterodoxus.
Figure 11 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)
Figure 11. Characters of the dorsal thorax, in (A) Trochiliphagus, (B) Rediella, (C) Dennyus, with the thoracic segments, pronotum (p), mesonotum (ms) and metanotum (mt) and the first abdominal tergal segment (t 1) indicated. Postnotum (shaded) with postnotum (detail, with four setae) shown alongside part (C), (D) Odoriphila, (E) Therodoxus, showing metanotum fused with t 1 indicated by dashed line, and (F) Machaerilaemus, metanotum (detail).
Figure 15 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)
Figure 15. Characters of the dorsal and sternal abdomen with spiracles (shaded), in (A) Amyrsidea, with fifth sternite (st 5), sixth lateral plate (lp 6) and third tergite (t 3) (all shaded), (B) Psittacomenopon, tergites 4–6, (C) position of seta 'a', commonly found on tergites 1–2, (D) relationship between postspiracular seta 'c' and lateral seta 'b', (E) Meromenopon, fourth tergite, (F) Latumcephalum, fourth tergite, (G) Paraheterodoxus, third and fourth tergite, with t 4 indicated, (H) Ciconiphilus, third sternite and lateral plate, and (I) Pseudomenopon, lateral plates (lp) 2–4.
Figure 10 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)
Figure 10. Characters of the ventrolateral head with the antennal fossae (shaded), in (A) Somaphantus, (B) Numidicola, (C) Colimenopon, (D) Hohorstiella, and (E) Gruimenopon. (F) Laemobothrion with fringe-like temple sculpturing (detail). (G–K): setae at the anterior termination of the ventrolateral head margin, in (G) Ricinus, (H) Laemobothrion, (I) Trochiliphagus, (J) Chapinia, and (K) Plegadiphilus.
Figure 9 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)
Figure 9. Form of the antennae in (A) Rediella, with scape (s), pedicel (p) and flagellum (f) components defined, (B) Gruimenopon, (C) Hohorstiella, (D) Cuculiphilus, (E) Paraheterodoxus, (F) Laemobothrion, (G) Trochiliphagus, and (H) outgroup taxon Liposcelis, with segments 1–4 and 12–13 of antenna shown.
Figure 17 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)
Figure 17. Male genitalia with parameres (shaded), in (A) Chapinia, with basal apodome (b) indicated, (B) Plegadiphilus, (C) Colpocephalum, (D) Menopon, (E) Latumcephalum, showing mesosomal arch (m) (shaded), and (F) Ricinus.
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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.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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
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