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Figure 1. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 1. Dolichovespula stigma Lee, 1986. (a–e) Queen (♀q): (a) Habitus (from Shaanxi), dorsal view; (b) ibid, Ningxia; (c) ibid, Hubei; (d) habitus (from Shaanxi), lateral view; (e) head, anterior view. (f, g) Worker (♀w): (f) Habitus, lateral view; (g) head, anterior view.
Figure 4. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 4. Dolichovespula stigma Lee, 1986. (a, b) Nest from Xunyangba; (c, d) nest from Niubeiliang; (e) combs of nest; (f) three layers of the combs from nest of Niubeiliang; (g) ibid, from Xunyangba.
Figure 2. Dolichovespula stigma Lee, 1986 in Nest structure and all stages of the long-cheeked yellow jacket Dolichovespula stigma Lee (Hymenoptera: Vespidae), with a new synonym
Figure 2. Dolichovespula stigma Lee, 1986. (a–c) Worker (♀w), dorsal view, showing variation of colour pattern; (d–f) male (♂), dorsal view, showing variation of colour pattern; (g) metasomal terminal segments of ♂, lateral view; (h) ibid, dorsal view; (i) ibid, ventral view.
Figure 2. Maximum likelihood tree showing relationships among mitochondrial 16S in On the systematics, distribution and conservation status of Ichthyophis longicephalus Pillai, 1986 (Amphibia: Gymnophiona: Ichthyophiidae)
Figure 2. Maximum likelihood tree showing relationships among mitochondrial 16S ribosomal RNA haplotypes for Ichthyophis from Sri Lanka (I. glutinosus, I. orthoplicatus) and the Western Ghats of peninsular India (other species). Numbers at nodes indicate bootstrap support. Scale bar in substitutions per site. For I. longicephalus, voucher numbers are given; for other species GenBank accession numbers.
Figure 1 in On the systematics, distribution and conservation status of Ichthyophis longicephalus Pillai, 1986 (Amphibia: Gymnophiona: Ichthyophiidae)
Figure 1. Map of southwestern peninsular India (the whole of the state of Kerala showing district boundaries plus the western edge of Tamil Nadu and southern edge of Karnataka) showing localities (numbered circles) mentioned in text: 1: Aralam Wildlife Sanctuary; 2: Thirunelli; 3: Kalarikkal; 4: Silent Valley National Park; 5: Kalakkad. Localities 1–4 are for Ichthyophis
Figure 3 in On the systematics, distribution and conservation status of Ichthyophis longicephalus Pillai, 1986 (Amphibia: Gymnophiona: Ichthyophiidae)
Figure 3. (A) Holotype of Ichthyophis longicephalus, photographed in 2010. (B) dorsal view of head of Ichthyophis sp. ZSIM VAG-11 (male, snout tip to first nuchal groove, ST-NG1 = 10.5 mm). (C–E) Dorsal views of heads of new I. longicephalus specimens, standardized to same head length as part B. (C) BNHS 5542 (male, ST-NG1 = 12.8 mm). (D) BMNH 2008.636 (female, ST-NG1 = 12.8 mm); (E) ZSI/WGRC/V/A/854 (female, ST-NG1 = 10.9 mm).
Figure 4 in On the systematics, distribution and conservation status of Ichthyophis longicephalus Pillai, 1986 (Amphibia: Gymnophiona: Ichthyophiidae)
Figure 4. Photographs of some of the new (2009–2010) specimens of Ichthyophis longicephalus in life. (A) BNHS 5565 from Kalarikkal. (B) ZSI/WGRC/V/A/856 from Kalarikkal. (C) from Aralam (specimen either BNHS 5542 or ZSI/WGRC/V/A/854.
Figure 5 in On the systematics, distribution and conservation status of Ichthyophis longicephalus Pillai, 1986 (Amphibia: Gymnophiona: Ichthyophiidae)
Figure 5. Ichthyophis longicephalus, an adult male specimen (BNHS 5542) from among the newly collected material. Scales in mm.
FIGURE 1 in 1986 Redux: New genera of anoles (Squamata: Dactyloidae) are unwarranted
FIGURE 1. Alternative valid generic designations among anoles, assuming the molecular tree of Nicholson et al. (2012: Fig. 4).
FIG. 9 in Di€erentiation of Gyrodactylus bullatarudis Turnbull, 1956 and G. rasini Lucky, 1973 (Monogenea) with reassignment of Gyrodactylus bullatarudis Turnbull, 1956 sensu Harris (1986) to G. rasini
FIG. 9. Hamuli, bars and marginal hooks from: (A) G. bullatarudis sensu Harris (1986) from a Xiphophorus hybrid (Harris, 1986; BM (NH) 1985.3.15); (B) G. rasini from X. helleri (Lucky, 1973; specimen from the Veterinary High School, Bruno); and (C) G. bullatarudis collected from P. reticulata in Trinidad (Harris and Lyles, 1992; BM (NH) 1992.4.21.4 ±6). (D) marginal hooks from paratype specimens of G. bullatarudis from P. reticulata (Turnbull, 1956; US National Museum, 038154.0 0).
FIG. 8 in Di€erentiation of Gyrodactylus bullatarudis Turnbull, 1956 and G. rasini Lucky, 1973 (Monogenea) with reassignment of Gyrodactylus bullatarudis Turnbull, 1956 sensu Harris (1986) to G. rasini
FIG. 8. (A±C) Cirrus armature of G. bullatarudis from P. reticulata ®xed and mounted in ammonium picrate±glycerin, viewed with a phase contrast microscope and drawn with the aid of a camera lucida.
FIG. 7 in Di€erentiation of Gyrodactylus bullatarudis Turnbull, 1956 and G. rasini Lucky, 1973 (Monogenea) with reassignment of Gyrodactylus bullatarudis Turnbull, 1956 sensu Harris (1986) to G. rasini
FIG. 7. Marginal hook of a G. bullatarudis detached from a P. reticulata. Note the absence of curvature near the point (arrowed). (1 marker = 1 mm).
FIG. 4 in Di€erentiation of Gyrodactylus bullatarudis Turnbull, 1956 and G. rasini Lucky, 1973 (Monogenea) with reassignment of Gyrodactylus bullatarudis Turnbull, 1956 sensu Harris (1986) to G. rasini
FIG. 4. (A±C) Cirrus armature of G. rasini from Xiphophorus hybrids ®xed and mounted in ammonium picrate±glycerin, viewed with a phase contrast microscope and drawn with the aid of a camera lucida.
FIG. 1 in Di€erentiation of Gyrodactylus bullatarudis Turnbull, 1956 and G. rasini Lucky, 1973 (Monogenea) with reassignment of Gyrodactylus bullatarudis Turnbull, 1956 sensu Harris (1986) to G. rasini
FIG. 1. Attachment hooks and bars of G. rasini from a Xiphophorus hybrid. Note the longer ventral bar processes and di€ erent marginal hook sickle morphology in comparison to ®gure 6.
FIG. 3 in Di€erentiation of Gyrodactylus bullatarudis Turnbull, 1956 and G. rasini Lucky, 1973 (Monogenea) with reassignment of Gyrodactylus bullatarudis Turnbull, 1956 sensu Harris (1986) to G. rasini
FIG. 3. Schematic representations of the large cirrus spines of: (A) G. rasini from Xiphophoru s hybrids; and (B) that of G. bullatarudis from P. reticulata. The three-dimensional curvature of these structures is not shown. The main di€erence between the two species is that each side of the base of the large cirrus spine of G. bullatarudis appears to join to form a ring whereas those of the large spine of G. rasini diverge and do not appear to join.
FIG. 2 in Di€erentiation of Gyrodactylus bullatarudis Turnbull, 1956 and G. rasini Lucky, 1973 (Monogenea) with reassignment of Gyrodactylus bullatarudis Turnbull, 1956 sensu Harris (1986) to G. rasini
FIG. 2. Marginal hook of a G. rasini detached from a Xiphophorus hybrid. Note the pronounced curvature (arrowed) near the point of the sickle. (1 marker= 1 mm).
FIG. 16. Parafontaria crenata Shinohara, 1986 in Revision of the millipede genus Parafontaria VerhoeV, 1936 (Diplopoda, Xystodesmidae)
FIG. 16. Parafontaria crenata Shinohara, 1986, left paranota of 6th segment, dorsal views. (A) Female paratype. (B) Female from Honzaka-tôge Pass, Toyohashi-shi, Aichi Prefecture.
FIGURE 1 in The tadpole of the hylodid frog Hylodes charadranaetes Heyer and Cocroft, 1986
FIGURE 1. Tadpole of Hylodes charadranaetes and internal oral morphology, stage 26 of Gosner (1960), from Theodoro de Oliveira, municipality of Nova Friburgo, State of Rio de Janeiro, Brazil: (A) oral disc (scale 1 mm), (B) lateral, (C) dorsal and (D) ventral views (scale 10 mm), (E) buccal floor and (F) roof (scale 1 mm).
FIGURE 5 in Nyxis rostrocularis, a new genus and species of Paranannopinae Por, 1986 (Copepoda, Harpacticoida) from the Southern Atlantic deep sea
FIGURE 5. Nyxis rostrocularis gen. nov., sp. nov., A, female P5, scale bar = 30 µm; B, maxilliped, scale bar = 20 µm; C, mandible, small arrow indicates aesthetasc, scale bar = 20 µm.
FIGURE 4 in Nyxis rostrocularis, a new genus and species of Paranannopinae Por, 1986 (Copepoda, Harpacticoida) from the Southern Atlantic deep sea
FIGURE 4. Nyxis rostrocularis gen. nov., sp. nov., A, female urosome and genital field from ventral view, scale bar = 50 µm; B, P1, scale bar = 30 µm.
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International Brain Laboratory public data
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OpenNeuro
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