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501 results for “1942”
FIGURE 3 in Filling a geographic gap: a new species of genus Lacronia Strand, 1942 (Opiliones, Gonyleptidae) from southern Brazil
FIGURE 3. Lacronia utaru sp. nov., ♂ holotype (MHNCI). A: habitus, dorsal view. B: ventral view. C: lateral view. D: posterior view. E: Fe–Ta IV, prolateral view (left leg) and retrolateral view (right leg). Scale bars = 1 mm.
FIGURE 4 in Filling a geographic gap: a new species of genus Lacronia Strand, 1942 (Opiliones, Gonyleptidae) from southern Brazil
FIGURE 4. Lacronia utaru sp. nov., ♂ holotype (MHNCI). A: dorsal scutum, chelicerae, trochanters and coxae IV, dorsal view. B: dorsal scutum, lateral view. C: ocularium, anterior view. D: right Fe–Ti III, retrolateral view. E: armature of mesotergal area III, posterior view. F: detail of the prodorsal apophysis of coxa IV, posterior view. G–J: right Tr–Ti IV, G: dorsal view. H: prolateral view. I: ventral view. J: retrolateral view. K: right Mt–Ta IV, retrolateral view. Scale bars = 1 mm.
FIGURE 1 in Filling a geographic gap: a new species of genus Lacronia Strand, 1942 (Opiliones, Gonyleptidae) from southern Brazil
FIGURE 1. Southeastern and South Brazil, showing distribution of the eight species of Lacronia. The area shaded in dark green displays the Atlantic Province, as defined by Morrone et al. (2022). Inset: Location of the represented sector in South America.
FIGURE 5 in Filling a geographic gap: a new species of genus Lacronia Strand, 1942 (Opiliones, Gonyleptidae) from southern Brazil
FIGURE 5. Lacronia utaru sp. nov., ♂ holotype (MHNCI), genitalia, distal part. A: dorsal view. B: lateral view. Scale bars: 100 μm. Letters A to E represent the AE11 macrosetae scheme (Kury & Villarreal 2015, Kury & Machado 2021).
FIGURE 6 in Filling a geographic gap: a new species of genus Lacronia Strand, 1942 (Opiliones, Gonyleptidae) from southern Brazil
FIGURE 6. Schematic representation of males' DS, showing the two main sets of colored tubercles in the 'not areolated Lacronia'. The red rectangle indicates the area of the central set, and the blue rectangles indicate the AS lateral sets. A: Lacronia serripes Mello-Leitão, ♂ (MZSP 14342). B: Lacronia utaru sp. nov., ♂ holotype (MHNCI). Scale bars = 2 mm.
FIGURE 2 in Filling a geographic gap: a new species of genus Lacronia Strand, 1942 (Opiliones, Gonyleptidae) from southern Brazil
FIGURE 2. Habitus in vivo of Lacronia utaru sp. nov., ♂ paratype (MNRJ 3697), from Brazil, Paraná, Paranaguá, Estação Ecológica do Guaraguaçu. A: dorsal view. B: fronto-dorsal view. C: posterior view. D: dorso-posterior view. E: ventral view. Photographs by Adriano Kury.
FIGURE 4A−4J. Rhyacophila kuranishii new species. 4A−4G in Redescription of Rhyacophila yukii Tsuda 1942 and description of three new Rhyacophila species from Japan (Trichoptera: Rhyacophilidae)
FIGURE 4A−4J. Rhyacophila kuranishii new species. 4A−4G, male genitalia: 4A, left lateral; 4B, dorsal; 4C, ventral; 4D, segment IX and anal preanal appendages, dorsal; 4E, segment IX and preanal appendages, caudal; 4F, left paramere, left lateral, inset; 4G, apex of aedeagus, left lateral, inset. 4H−4J, female genitalia: 4H, segments VI−XI, left lateral; 4I, vaginal apparatus, ventral; 4J, vaginal apparatus, left lateral. Abbreviations: a.b. = apical band; aed. = aedeagus; a.i.a = apical segment of an inferior appendage (paired); a.s. = anal sclerite (paired); ap.r.VIII = apodemal rod from segment VIII (paired); ap.r.XI = apodemal rod from segment XI (paired); b.i.a. = basal segment of an inferior appendage (paired); c. = cercus (paired); par. = paramere; p.pr = posterior process of vaginal apparatus; pr.a. = preanal appendage (paired); pr.sp. = processus spermathecae of vaginal apparatus.
FIGURE 3A−3L. Rhyacophila kobayashii new species. 3A−3F in Redescription of Rhyacophila yukii Tsuda 1942 and description of three new Rhyacophila species from Japan (Trichoptera: Rhyacophilidae)
FIGURE 3A−3L. Rhyacophila kobayashii new species. 3A−3F, male genitalia: 3A, left lateral; 3B, dorsal; 3C, caudal; 3D, phallic apparatus, left lateral; 3E, inferior appendages, ventral; 3F, ventral lobe of aedeagus, dorsal. 3G−3J, female genitalia: 3G, segments VI−VIII, left lateral, with segments IX, X, and XI retracted into the segments VII and VIII; 3H, segments VI−XI, left lateral; 3I, vaginal apparatus, ventral; 3J, vaginal apparatus, left lateral. 3K−3L, male genitalia: 3K, left lateral, by Kobayashi (1971a) labelled as "R. kisoensis"; 3L, dorsal, by Kobayashi (1971a) labelled as "R. kisoensis." Abbreviations: a.b. = apical band; aed. = aedeagus; a.i.a = apical segment of an inferior appendage (paired); b.i.a. = basal segment of an inferior appendage (paired); ap.r.VIII = apodemal rod from segment VIII (paired); ap.r.XI = apodemal rod from segment XI (paired); c. = cercus (paired); d.b.a.= dorsal branch of aedeagus; pht. = phallotheca; p.pr = posterior process of vaginal apparatus; pr.sp. = processus spermathecae of vaginal apparatus; v.b.a. = ventral branch of aedeagus; v.l.a. = ventral lobe of aedeagus.
FIGURES 2A−2L. Rhyacophila hattorii new species. 2A−2F in Redescription of Rhyacophila yukii Tsuda 1942 and description of three new Rhyacophila species from Japan (Trichoptera: Rhyacophilidae)
FIGURES 2A−2L. Rhyacophila hattorii new species. 2A−2F, male genitalia: 2A, left lateral; 2B, dorsal; 2C, caudal; 2D, phal- lic apparatus, left lateral; 2E, ventral lobe of aedeagus, dorsal; 2F, inferior appendages, ventral. 2G−2J, female genitalia: 2G, segments VII and VIII, left lateral, with segments IX, X, and XI retracted into segments VII and VIII; 2H, segments VII−XI, left lateral; 2I, vaginal apparatus, ventral; 2J, vaginal apparatus, left lateral. 2K−2L, male genitalia by Schmid: 2K, left lateral, by Schmid (1970) and labelled as "R. yukii"; 2L, dorsal, by Schmid (1970) and labelled as "R. yukii". Abbreviations: a.b. = apical band; aed. = aedeagus; a.i.a = apical segment of an inferior appendage (paired); ap.r.VIII = apodemal rod from segment VIII (paired); ap.r.XI = apodemal rod from segment XI (paired); b.i.a. = basal segment of an inferior appendage (paired); c. = cercus (paired); pht. = phallotheca; p.pr = posterior process of vaginal apparatus; pr.sp. = processus spermathecae of vaginal apparatus; v.b.a. = ventral branch of aedeagus; v.l.a. = ventral lobe of aedeagus.
FIGURES 1A−1I. Rhyacophila yukii Tsuda 1942 in Redescription of Rhyacophila yukii Tsuda 1942 and description of three new Rhyacophila species from Japan (Trichoptera: Rhyacophilidae)
FIGURES 1A−1I. Rhyacophila yukii Tsuda 1942, male genitalia (1A−1I): 1A, left lateral; 1B, segment X, dorsal; 1C, segment X, caudal (variation from same locality); 1D, ventral lobe of aedeagus, dorsal; 1E, segment IX and inferior appendages, ventral; 1F, phallic apparatus, left lateral; 1G, caudal; 1H, left lateral, by Tsuda (1942); 1I, dorsal, by Tsuda (1942). Abbreviations: a.b. = apical band; aed. = aedeagus; a.i.a. = apical segment of an inferior appendage (paired); b.i.a. = basal segment of an inferior appendage (paired); d.b.a.= dorsal branch of aedeagus; pht. = phallotheca; v.b.a. = ventral branch of aedeagus; v.l.a. = ventral lobe of aedeagus.
FIGURE 4 in Description of the first juvenile of Aegla franca Schmitt, 1942 (Crustacea, Decapoda, Aeglidae)
FIGURE 4. First juvenile of Aegla franca Schmitt, 1942. A, second maxilliped; B, third maxilliped; C, first pereopod (cheliped).
FIGURE 5 in Description of the first juvenile of Aegla franca Schmitt, 1942 (Crustacea, Decapoda, Aeglidae)
FIGURE 5. First juvenile of Aegla franca Schmitt, 1942. A, second pereopod; B, fifth pereopod; C, telson and uropods (tail fan).
FIGURE 3 in Description of the first juvenile of Aegla franca Schmitt, 1942 (Crustacea, Decapoda, Aeglidae)
FIGURE 3. First juvenile of Aegla franca Schmitt, 1942. A, maxillule; B, maxilla; C, first maxilliped.
FIGURE 6 in Description of the first juvenile of Aegla franca Schmitt, 1942 (Crustacea, Decapoda, Aeglidae)
FIGURE 6. First juvenile of Aegla franca Schmitt, 1942. A, aesthetascs (A) on mesial and distal segments of the antennular dorsal flagellum; pores (arrows) on the dorsal and ventral flagella (bar = 60.51 µm); B, pores (arrows) on distal segments of the antennal flagellum (bar = 77 µm); C, Magnified view of an antennular pore (bar = 1.67 µm); D Scale setae with subterminal pore (arrowhead) and scaly outgrowths (arrow) on the upper lobe of the distal endite of the maxilla (bar = 5.08 µm); E, denticulate setae (III) and sword setae (IV) of the propodus of the third maxilliped (bar = 50.85 µm); F, ischium with corneous tubercles (CT) forming the crista dentata and the ventral spiniform projection (S) (bar = 25.42 µm); G, distal half of movable and fixed fingers of cheliped showing serially arranged denticles (DT) and apical spine (S) (bar = 52.97 µm); H, minute chela of the fifth pereopod (bar = 25.48 µm); I, detailed of the apical serrate setae from the minute chela of the fifth pereopod (bar = 5.67 µm).
FIGURES 9–16. Newportia sabina holotype. 9 in The centipede genus Newportia Gervais, 1847, in Mexico: description of a new troglomorphic species; redescription of N. sabina Chamberlin, 1942; revival of N. azteca Humbert & Saussure, 1869; and a summary of the fauna (Scolopendromorpha: Scolopocryptopidae: Newportiinae)
FIGURES 9–16. Newportia sabina holotype. 9, cephalic plate, basal antennomeres, and 1st tergite, dorsal view. 10, coxosternum and forcipules, ventral view. 11, tergites 7 & 8, dorsal view. 12, sternites 12 & 13, ventral view. 13, ultimate sternite and coxopleurae, ventral view. 14, right coxopleura, lateral view. 15, prefemur of right ultimate leg, ventral view. 16, femur of right ultimate leg, ventral view.
FIGURES 1–8. Newportia troglobia holotype. 1 in The centipede genus Newportia Gervais, 1847, in Mexico: description of a new troglomorphic species; redescription of N. sabina Chamberlin, 1942; revival of N. azteca Humbert & Saussure, 1869; and a summary of the fauna (Scolopendromorpha: Scolopocryptopidae: Newportiinae)
FIGURES 1–8. Newportia troglobia holotype. 1, cephalic plate, basal antennomeres, and 1st tergite, dorsal view. 2, coxosternum and forcipules, ventral view. 3, tergites 7 & 8, dorsal view. 4, sternites 12 & 13, ventral view. 5, ultimate sternite and coxopleurae, ventral view. 6, right coxopleura, lateral view. 7, prefemur of right ultimate leg, ventral view. 8, femur of right ultimate leg, ventral view.
FIGURE 17 in The centipede genus Newportia Gervais, 1847, in Mexico: description of a new troglomorphic species; redescription of N. sabina Chamberlin, 1942; revival of N. azteca Humbert & Saussure, 1869; and a summary of the fauna (Scolopendromorpha: Scolopocryptopidae: Newportiinae)
FIGURE 17. Occurrences of species of Newportia in Mexico; some symbols represent more than one locality. Star in dot, N. troglobia; open star, N. sabina; upright triangles, N. stolli; open square, N. spinipes; dots, N. oreina; solid square, N. pelaezi; circles, N. atoyaca; inverted triangles, N. morela. The asterisk marks the location of Córdoba, Veracruz, the type locality of both N. mexicana and N. azteca; the question mark indicates the unspecified "cotype locality" of N. oreina from Guerrero, which we consider questionable. The solid star denotes the type and only known locality of Ectonocryptops kraepelini.
Figure 3 in Potential geographic distribution niche modeling based on bioclimatic variables of three species of Temnomastax Rehn and Rehn, 1942 (Orthoptera: Eumastacidae)
Figure 3. Potential geographic distribution predicted by DOMAIN model to Temnomastax ricardoi Descamps, 1973 (blue), and Temnomastax tigris (Burr, 1899) (green). Darkest regions represent higher probabilities of occurrence than clearest regions. (■) Temnomastax ricardoi Descamps, 1973 records; (▲) Temnomastax tigris (Burr, 1899) records.
Figure 2 in Potential geographic distribution niche modeling based on bioclimatic variables of three species of Temnomastax Rehn and Rehn, 1942 (Orthoptera: Eumastacidae)
Figure 2. Potential geographic distribution predicted by DOMAIN model to Temnomastax hamus Rehn and Rehn, 1942 (green). Darkest regions represent higher probabilities of occurrence than clearest regions. On the left is marked the Andes in red, orange and yellow. (●) species records.
Figure 1 in Potential geographic distribution niche modeling based on bioclimatic variables of three species of Temnomastax Rehn and Rehn, 1942 (Orthoptera: Eumastacidae)
Figure 1. Male specimens of some studied species. (a) Temnomastax hamus Rehn and Rehn, 1942 from Minas Gerais, Brazil; (b) Temnomastax ricardoi Descamps, 1973 and (c) Temnomastax tigris (Burr, 1899) from Mato Grosso do Sul, Brazil (photos used with permission of the authors: Marcos Cesar Campis (a) and Paulo Robson de Souza (c).
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OpenNeuro
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