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FIGURES 7–8 in Notation of primary setae and pores on larvae of Dytiscinae (Coleoptera: Dytiscidae), with phylogenetic considerations

FIGURES 7–8. Distribution of ancestral setae and pores on dorsal surface of head capsule of first instar of selected species of Dytiscinae; (7) Dytiscus harrisii; (8) Hyderodes shuckardi; EB, egg bursters, FR, frontoclypeus; LC, lamellae clypeales; PA, parietale; numbers and lowercase letters refer to primary setae and pores, respectively (see Table 2 for list of setae and pores).

opennotspecifiedOct 2011View details →
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FIGURE 3. Seta 16 in Phylogenetic relationships of Culex (Culex) species (Diptera, Culicidae) from Argentina based on morphological characters

FIGURE 3. Seta 16 of head of fourth-instar larvae of Culex (Culex). A: Culex (Culex) brethesi Dyar; B: Culex (Culex) cuyanus Duret. Vm = ventromentum; 16,17–C = head setae.

opennotspecifiedMay 2013View details →
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FIGURES 23–28 in The species of Grammostola (Araneae: Theraphosidae) from Central Argentina: taxonomy, distribution, and surface ultrastructure of coxal setae

FIGURES 23–28. Grammostola burzaquensis, holotype male (MLP 105) (23), female paratype (24), G. doeringi, allotype female (MACN 151) (25), G. vachoni, holotype male (MACN 7152) (26, 28), female (LZI 15) (27). 23. Tibial apophyses of males. 24. Spermathecae of females. 25. Spermathecae of females. 26. Tibial apophyses of males. 27. Spermathecae of females. 28. Retrolateral face of maxilla. Scale bars = 1.25mm for 23; 3.25mm for 26; 2mm for 28; all others 1mm. Illustrations of 24, 25, 27 by Ferretti,N.

opennotspecifiedApr 2011View details →
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FIGURES 17–22 in The species of Grammostola (Araneae: Theraphosidae) from Central Argentina: taxonomy, distribution, and surface ultrastructure of coxal setae

FIGURES 17–22. Grammostola vachoni, holotype male (MACN 7152) (17, 21), G. doeringi, neotype male (MACN 153) (18), G. schulzei, holotype female (SMF 37537) (19, 22), G. burzaquensis, holotype male (MLP 105) (20). 17. Retrolateral face of coxa I, arrows indicate the groups of spiniform setae. 18. Prolateral face of coxa I. 19. Prolateral face of coxa I. 20. Prolateral face of coxa I. 21. Prolateral face of coxa I. 22. Retrolateral face of maxilla. Scale bars = 3.5mm for 17, 18, 21; 3mm for 20, 22; 3.8mm for 19.

opennotspecifiedApr 2011View details →
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FIGURE 3 in The species of Grammostola (Araneae: Theraphosidae) from Central Argentina: taxonomy, distribution, and surface ultrastructure of coxal setae

FIGURE 3. Live habitus of adult female G. vachoni from Sierra de la Ventana, Buenos Aires, Argentina. Scalebar: 12 mm. Photo: Pompozzi, G.

opennotspecifiedApr 2011View details →
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FIGURE 2 in The species of Grammostola (Araneae: Theraphosidae) from Central Argentina: taxonomy, distribution, and surface ultrastructure of coxal setae

FIGURE 2. Live habitus of adult female G. doeringi from Bahía Blanca, Buenos Aires, Argentina. Scalebar: 12 mm. Photo: Pompozzi, G.

opennotspecifiedApr 2011View details →
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FIGURES 4–10 in The species of Grammostola (Araneae: Theraphosidae) from Central Argentina: taxonomy, distribution, and surface ultrastructure of coxal setae

FIGURES 4–10. Grammostola vachoni (4–7, 10), Grammostola burzaquensis (8, 9). 4. Prolateral face of coxa I. 5. Basal portion of long spiniform setae. 6. General morphology of long spiniform setae. A = Apical, C = Central, B = Basal. 7. Detail of plumose setae (P). 8. Detail of basal portion of regular setae. 9. Detail of apical portion of regular setae. Note: short barbs.

opennotspecifiedApr 2011View details →
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FIGURE 5. Difference between palp tarsus setae. Opilioacarus brignolii n in A new species of Opilioacarus With, 1902 (Acari: Opilioacaridae) from Italy, and a new diagnosis of the genus

FIGURE 5. Difference between palp tarsus setae. Opilioacarus brignolii n. sp. (A) d1 foliate and (B) d2 pectinate; foliate d types of (C) Phalangiacarus brosseti, (D) Neocarus nohbecanus, (E) Neocarus orghidani, (F) Caribeacarus armasi, (G) Neocarus coronatus, (H) Salfacarus mahafaliensis and (I) an undescribed Australian genus.

opennotspecifiedOct 2018View details →
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Figure 10 in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 10. Mayazomus estor comb. nov. holotype male. Chelicera (A–C): A, mesal view. B, fixed finger. C, moveable finger. Paratype female. Spermathecae: D, dorsal view. Scale bars = 0.05 mm.

opennotspecifiedNov 2015View details →
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Figure 8 in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 8. Mayazomus estor comb. nov. Paratype male. Habitus: A, dorsal view. Paratype female. Habitus: B, dorsal view. Scale bar = 1 mm.

opennotspecifiedNov 2015View details →
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Figure 11 in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 11. Homoplasy statistics: retention indexes (crosses) and consistency indexes (circles) for informative discrete and continuous characters (see Material and methods) from analysis with equal weights.

opennotspecifiedNov 2015View details →
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Figure 5. Preferred single tree resulting from the analysis under implied weights with concavity constant k in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 5. Preferred single tree resulting from the analysis under implied weights with concavity constant k = 100. Clade support is indicated above (Bremer support values) and below [symmetric resampling values; only significant values (over 50%) are presented] branches. Sensitivity plots ('Navajo rugs') indicate the recovery of the nodes in the analysis under implied weights with different values of k (black squares indicate monophyly; white squares indicate nonmonophyly).

opennotspecifiedNov 2015View details →
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Figure 7 in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 7. Strict consensus tree of five most parsimonious trees obtained by excluding continuous characters from the analysis with equal weights. The tree shows the poor resolution of the relationships inside Mayazomus and the inclusion of Hansenochrus as the sister group of Rowlandius, demonstrating the importance of continuous characters for phylogenetic studies in Mayazomus.

opennotspecifiedNov 2015View details →
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Figure 6. Preferred single tree resulting from analyses under implied weights with concavity constant k in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 6. Preferred single tree resulting from analyses under implied weights with concavity constant k = 100, 60, and 30, and equivalent to one of the most parsimonious trees recovered in the analysis with equal weights and continuous characters. Images on the tree represent the morphological congruence of the clades with the structures pictured (pedipalps and spermathecae). The genus Mayazomus is clearly separated from Rowlandius by the presence of robust pedipalps and trochanters with apical process; the clade (Mayazomus yaax + Mayazomus estor) is supported by the rounded distal margin of the pedipalp femur; the clade (Mayazomus loobil + Mayazomus infernalis) is supported by the presence of a patella curved in a 'U'-shape; and spermathecae with lobes slender and subequal in length; the clade (Mayazomus aluxe + Mayazomus kaamuul) is supported by setae Fv1 and Fv2 located distally and projected, with spermathecal lateral lobes reduced and wider than medial lobes.

opennotspecifiedNov 2015View details →
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Figure 3 in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 3. Relative position of cheliceral group three (G3) setae. A, seta 4 basally; B, seta 2 and 4 basally; C, seta 3 distally.

opennotspecifiedNov 2015View details →
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Figure 1 in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 1. Mayazomus infernalis. Measurements used to generate the morphometric ratios used as continuous characters in the phylogenetic analyses. A, propeltidium; B, male flagellum; C, male pedipalp. Abbreviations: Lpro, length of propeltidium; Ltro, length of trochanter; Lfe, length of femur; Lpat, length of patella; Ltib, length of tibia; Htro, height of trochanter; Hfe, height of femur; Hpat, height of patella; Htib, height of tibia; WB, width at the base of the bulb; WDl1, width at the level of seta Dl1; WDl3, width at the base of seta Dl3; B, bulb of flagellum; P, pedicel of flagellum; Lf, length of flagellum.

opennotspecifiedNov 2015View details →
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Figure 2 in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 2. Position and nomenclature of pedipalp setae. Mayazomus infernalis, A, femur; B, patella–tibia. Stenochrus pecki, C, femur; D, patella–tibia. Hubbardia pentapeltis, E, femur; F, patella–tibia. Abbreviations: Fe, Femur ectal; Fv, Femur ventral; Fd, Femur dorsal; Fvr, Femur ventral row; Fm, Femur median; Pe, Patella ectal; Pm, Patella mesal; Ter, Tibial ectal row; Tmr, Tibial medial row; Tir, Tibial internal row.

opennotspecifiedNov 2015View details →
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Figure 4 in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 4. Strict consensus tree resulting from the two most parsimonious trees obtained from the analysis under equal weights with continuous characters included (length = 415.88, consistency index = 0.42, retention index = 0.54). Apomorphies are plotted on branches. Black squares indicate synapomorphies; white squares indicate homoplastic state characters (parallelism and reversals) according to the character sampling. Numbers above branches indicate character number; those beneath the branch indicate the character state. *, junior synonym; genus included within Mayazomus.

opennotspecifiedNov 2015View details →
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Figure 9. Mayazomus estor comb. nov. Holotype homeomorphic male. A, pedipalp ectal view. Female. B in Systematics of the genus Mayazomus (Arachnida: Schizomida): the relevance of using continuous characters and pedipalp setae patterns to schizomid phylogenetics

Figure 9. Mayazomus estor comb. nov. Holotype homeomorphic male. A, pedipalp ectal view. Female. B, pedipalp ectal view. Paratype heteromorphic male. Pedipalp (C, D): C, ectal view. D, mesal view. Holotype male flagellum (E–G): E, dorsal view. F, ventral view. G, lateral view. Abbreviations: Fe, femur ectal; Fv, femur ventral; AP, apical process; Dm, dorsal median; Dl, dorsal lateral; Vm, ventral median; Vl, ventral lateral. Scale bars = 0.2 mm.

opennotspecifiedNov 2015View details →
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FIGURE 1. Kynotus alaotranus Michaelsen, 1907, penial seta. A in New and little known earthworm species from Central Madagascar (Oligochaeta: Kynotidae)

FIGURE 1. Kynotus alaotranus Michaelsen, 1907, penial seta. A. Tip of the seta. B. Ornamentation. FIGURE 2. Kynotus michaelseni Rosa, 1892, penial seta. A. Tip of the seta. B. Ornamentation.

opennotspecifiedDec 2012View details →

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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.

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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.

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Last verified 2026-04-29Open record