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125 results for “Blind species”
Fig. 1 in A New Genus and Species of Blind Sleeper (Teleostei: Eleotridae) from Oaxaca, Mexico: First Obligate Cave Gobiiform in the Western Hemisphere
Fig. 1. Holotype of Caecieleotris morrisi, CNPE-IBUNAM 19073, 34.1 mm SL, sex undetermined, in lateral (A), dorsal (B), and ventral (C) views.
Fig. 3 in A New Genus and Species of Blind Sleeper (Teleostei: Eleotridae) from Oaxaca, Mexico: First Obligate Cave Gobiiform in the Western Hemisphere
Fig. 3. Pattern of sensory head papillae series on head of Caecieleotris morrisi, drawn from composite of UF 101173 (31.6 mm SL, paratype) and CNPE-IBUNAM 19073 (34.1 mm SL, holotype) in lateral (A), dorsal (B), and ventral (C) views. Dorsal fin omitted from (B). Scale bar = 5 mm.
Fig. 4 in A New Genus and Species of Blind Sleeper (Teleostei: Eleotridae) from Oaxaca, Mexico: First Obligate Cave Gobiiform in the Western Hemisphere
Fig. 4. Map of Presa Miguel Alemán and vicinity, Oaxaca, Mexico, type locality (vertical arrow) of Caecieleotris morrisi. Source: Wikimedia Commons (http://en.wikipedia.org/wiki/File:Papaloapanrivermap. png).
FIGURE 6 in Description of a new blind species of Heterokamaka (Crustacea: Amphipoda: Kamakidae) from Dianshan Lake, China
FIGURE 6. Heterokamaka lutensis sp. nov., female. A, antenna 1; B, antenna 2; C, gnathopod 1; D, dactylus of gnathopod 1; E, gnathopod 2; F, pereopod 3.
FIGURE 5 in Description of a new blind species of Heterokamaka (Crustacea: Amphipoda: Kamakidae) from Dianshan Lake, China
FIGURE 5. Heterokamaka lutensis sp. nov., holotype, male. A, pereopod 5; B, pereopod 6; C, pereopod 7; D, dactylus of pereopod 5; E, pleopod 1; F, pleopod 2; G, pleopod 3; H, uropod 1; I, urosomites and uropods (lateral view); J, telson and uropod 3 (dorsal view).
FIGURE 4 in Description of a new blind species of Heterokamaka (Crustacea: Amphipoda: Kamakidae) from Dianshan Lake, China
FIGURE 4. Heterokamaka lutensis sp. nov., holotype, male. A, gnathopod 1; B, carpus and propodus of gnathopod 1; C, gnathopod 2; D, pereopod 3; E, pereopod 4.
FIGURE 3 in Description of a new blind species of Heterokamaka (Crustacea: Amphipoda: Kamakidae) from Dianshan Lake, China
FIGURE 3. Heterokamaka lutensis sp. nov., holotype, male. A, antenna 1; B, antenna 2; C, upper lip; D, right mandible (medial view); E, left mandible; F, lower lip; G, maxilla 1; H, maxilla 2; I, maxilliped.
FIGURE 2 in Description of a new blind species of Heterokamaka (Crustacea: Amphipoda: Kamakidae) from Dianshan Lake, China
FIGURE 2. Heterokamaka lutensis sp. nov. A, holotype, male (IZCAS-I-A1044-1), 3.3 mm, right lateral view; B, allotype, female (IZCAS-I- A1044-2), 3.2 mm, right lateral view.
FIGURE 1 in Description of a new blind species of Heterokamaka (Crustacea: Amphipoda: Kamakidae) from Dianshan Lake, China
FIGURE 1. Distributions of Kamaka and Heterokamaka species. (1, Kamaka kuthae Derzhavin, 1923; 2, K. biwae Ueno, 1943; 3, K. derzhavini Gurjanova, 1951; 4, K. palmata Dang, 1968; 5, K. taditadi Thomas & Barnard, 1991; 6, K. littoralis Ren, 2006; 7, K. morinoi Ariyama, 2007; 8, K. excavata Ariyama, 2007; 9, K. silvana Myers, 2009; 10, Heterokamaka isahayae Ariyama, 2008; 11, Heterokamaka lutensis sp. nov.)
FIGURE 7 in Description of a new blind species of Heterokamaka (Crustacea: Amphipoda: Kamakidae) from Dianshan Lake, China
FIGURE 7. Heterokamaka lutensis sp. nov., female. A, pereopod 4; B, pereopod 5; C, oostegite of gnathopod 2; D, oostegite of pereopod 3; E, oostegite of pereopod 4; F, oostegite of pereopod 5.
FIGURES 5–7 in Blind life in the Baltic amber forests: description of an eyeless species of the ground beetle genus Trechus Clairville, 1806 (Coleoptera: Carabidae: Trechini)
FIGURES 5–7. Trechus eoanophthalmus sp.n., holotype. Fig. 5, left elytron (the insertions of the setae are marked by white circles). Fig. 6, left foreleg and middle leg, dorsal view. Fig. 7, general view of the fossil with contours of the amber piece. Abbreviation: ptg= protibial dorsolateral groove.
FIGURES 3–4 in Blind life in the Baltic amber forests: description of an eyeless species of the ground beetle genus Trechus Clairville, 1806 (Coleoptera: Carabidae: Trechini)
FIGURES 3–4. Trechus eoanophthalmus sp.n., holotype. Fig. 3, head (view at an angle from right above), showing markedly transverse micro-meshes on frons, and moderately transverse meshes on neck. For better visualization, the outline of the right mandible is indicated by a dotted line. Fig. 4, head and pronotum, left lateral aspect. Abbreviations: fti = frontal transverse impression; lbp = labial palpus; md = mandible; mx = maxilla; mxp = maxillary palpus; pbs = pronotal basolateral seta; pls = pronotal lateral seta; sos = supraorbital setae.
FIGURES 1–2 in Blind life in the Baltic amber forests: description of an eyeless species of the ground beetle genus Trechus Clairville, 1806 (Coleoptera: Carabidae: Trechini)
FIGURES 1–2. Trechus eoanophthalmus sp.n., holotype. Fig. 1, left lateral aspect. Fig. 2, right lateral aspect.
FIGURE 13 in Blind life in the Baltic amber forests: description of an eyeless species of the ground beetle genus Trechus Clairville, 1806 (Coleoptera: Carabidae: Trechini)
FIGURE 13. Trechus eoanophthalmus sp. n., reconstruction of the external shape in dorsal view. Since the labrum is only hardly visible in the fossil specimen, the assumed shape is indicated by a dotted line.
FIGURES 8–12 in Blind life in the Baltic amber forests: description of an eyeless species of the ground beetle genus Trechus Clairville, 1806 (Coleoptera: Carabidae: Trechini)
FIGURES 8–12. Trechus eoanophthalmus sp.n., holotype; MicroCT images. Fig. 8, negative imprint of head, dorsal view. Fig. 9, negative imprint of elytra and pronotum, dorsal view, and deformed right elytron and abdominal tergites in the cavity of the inclusion. Fig. 10, negative imprint of the inclusion with deformed remains of the beetle body in the cavity of the inclusion, left lateral view. Fig. 11, same, ventral view. Fig. 12, apical portion of elytra (negative imprint), caudal view (the insertions of the setae of the apical triangle are marked by white circles). Abbreviations: as-p = abdominal sternites (deformed positive); at-p = abdominal tergites (deformed positive); cl-p = clypeus (deformed positive); el-p = right elytron (deformed positive); fti = frontal transverse impression; rs = recurrent stria.
FIG. 10 in Description of a New Blind and Rare Species of Xyliphius (Siluriformes: Aspredinidae) from the Amazon Basin Using High-Resolution Computed Tomography
FIG. 10. Distributions of valid species of Xyliphius based on museum specimens and literature accounts (Alonso de Arámburu and Arámburu, 1962; Orcés, 1962; Taphorn and Marrero, 1993; Maldonado-Ocampo et al., 2005; Figueiredo and Britto, 2010; Ohara and Zuanon, 2013). Black triangles ¼ X. kryptos; white triangles ¼ X. magdalenae; white circles ¼ X. melanopterus; black circles ¼ X. lepturus; star ¼ X. sofiae; black squares ¼ X. barbatus; white diamonds ¼ X. anachoretes; circles half black, half white mark localities where X. melanopterus and X. lepturus were collected together.
FIG. 7 in Description of a New Blind and Rare Species of Xyliphius (Siluriformes: Aspredinidae) from the Amazon Basin Using High-Resolution Computed Tomography
FIG. 7. HRXCT model of suspensorium plus lower jaw (A) and hyoid arch (B–C) of Xyliphius sofiae, ANSP 182322, 44.1 mm SL. ach: anterior ceratohyal; ang: anguloarticular; br: branchiostegal rays; den: dentary; en: endopterygoid; hyo: hyomandibula; ih: interhyal; iop: interopercle; mc: mandibular canal tubules; met: metapterygoid; op: opercle; pch: posterior ceratohyal; pop: preopercle; qu: quadrate; ret: retroarticular; sup: suprapreopercle; uh: urohyal; vh: ventral hypohyal. Scale bar ¼ 2 mm.
FIG. 4 in Description of a New Blind and Rare Species of Xyliphius (Siluriformes: Aspredinidae) from the Amazon Basin Using High-Resolution Computed Tomography
FIG. 4. HRXCT model of skull and anterior body of Xyliphius sofiae, ANSP 182322, holotype, 44.1 mm SL. (A) Dorsal view. (B) Lateral view of left side. ang: anguloarticular; at: antorbital tubule; br: branchiostegal rays; cl: cleithrum; co: scapulocoracoid; cv: complex vertebrae; den: dentary; en: endopterygoid; epo: epioccipital; ex: extrascapular; fr: frontal; hyo: hyomandibula; ih: interhyal; io1: infraorbital 1; iop: interopercle; iot: infraorbital tubules; lal: lateral line tubules; let: lateral ethmoid; mc: mandibular canal tubules; mes: mesethmoid; met: metapterygoid; mnp: middle nuchal plate; mx: maxilla; na: nasal; op: opercle; pal: autopalatine; pch: posterior ceratohyal; pfr: pectoral-fin rays; pmx: premaxilla; po: preopercle; ps: pectoral-fin spine; pto: pterotic; pv5: parapophysis of vertebra five; qu: quadrate; rad: pectoral-fin radial; rb6: rib six; ret: retroarticular; sc: posttemporal-supracleithrum; soc: supraoccipital; spo: sphenotic; sup: suprapreopercle; v6: vertebrae six. Scale bar ¼ 2 mm.
FIG. 3 in Description of a New Blind and Rare Species of Xyliphius (Siluriformes: Aspredinidae) from the Amazon Basin Using High-Resolution Computed Tomography
FIG. 3. Ventral view of head. (A) Xyliphius sofiae, ANSP 182322, holotype, 44.1 mm SL. (B) X. melanopterus, FMNH 99495, 120.4 mm SL. (C) X. lepturus, ANSP 128941, 94.5 mm SL. (D) X. barbatus, MLP 6798, 92.0 mm SL. Photos by M. Sabaj.
FIG. 8 in Description of a New Blind and Rare Species of Xyliphius (Siluriformes: Aspredinidae) from the Amazon Basin Using High-Resolution Computed Tomography
FIG. 8. HRXCT model of branchial arches (A–B, left side, dorsal view, anterior up), and 5th ceratobranchial of cleared and stained specimens (left side, dorsal view, anterior up). (A) Xyliphius sofiae, ANSP 182322, holotype, 44.1 mm SL (scale bar ¼ 2 mm). (B) Unobscured dorsal view of 5th ceratobranchial in ANSP 182322 (scale bar ¼ 1 mm). (C) Xyliphius lepturus, FMNH 99488, 72.1 mm SL (scale bar ¼ 1 mm). (D) Xyliphius melanopterus, FMNH 99493, 81.9 mm SL (scale bar ¼ 1 mm). bb: basibranchial; cb: ceratobranchial; cb5: ceratobranchial five; eb: epibranchial; hb: hypobranchial; pb: pharyngobranchial; tp: tooth patch.
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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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