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Figure 1 in A new species of the genus Mawsonascaris Sprent, 1990 (Nematoda: Ascaridida) from Glaucostegus granulatus (Cuvier) (Rajiformes: Rhinobatidae) in the Taiwan Strait, with remarks on the systematic status of Raphidascaroides myliobatum Yin & Zhang, 1983
Figure 1. Mawsonascaris zhoui sp. nov. (A) Anterior part of female body, lateral view; (B) cephalic extremity of female, dorsal view; (C) cephalic extremity of female, lateral view; (D) cephalic extremity of female, ventral view; (E) caudal region of male, lateral view;
Figure 3 in A new species of the genus Mawsonascaris Sprent, 1990 (Nematoda: Ascaridida) from Glaucostegus granulatus (Cuvier) (Rajiformes: Rhinobatidae) in the Taiwan Strait, with remarks on the systematic status of Raphidascaroides myliobatum Yin & Zhang, 1983
Figure 3. Scanning electron micrographs of Mawsonascaris zhoui sp. nov. (A) Cephalic extremity of female, lateral view; (B) dentigerous ridges of lips of female, apical view; (C) dentigerous ridges of lips of male (arrow), lateral view; (D) posterior end of female, ventral view (arrows – phasmids); (E) posterior end of female, lateral view (arrow – phasmid); (F) longitudinal stockade-like ornamentation of cuticle of female; (G) phasmid of female; (H) precloacal papilla and longitudinal stockade-like ornamentation of cuticle of male; (I) median precloacal volcaniform papilla.
Figure 2 in A new species of the genus Mawsonascaris Sprent, 1990 (Nematoda: Ascaridida) from Glaucostegus granulatus (Cuvier) (Rajiformes: Rhinobatidae) in the Taiwan Strait, with remarks on the systematic status of Raphidascaroides myliobatum Yin & Zhang, 1983
Figure 2. Scanning electron micrographs of Mawsonascaris zhoui sp. nov. (A) Cephalic extremity of male, apical view; (B) cephalic extremity of male, lateral view; (C) cephalic extremity of male, subventral view; (D) ventrolateral lip; (E) dorsal lip; (F) apical part of ventrolateral lip, showing obtusely triangular medioapical notch; (G) caudal region of male, ventral view (arrow – median precloacal volcaniform papilla); (H) caudal region of male, lateral view (arrows – postanal papillae); (I) caudal region of male, lateral view (arrow – paranal double papillae).
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 3 in Review of the systematic status of Sceloporus arenicolus Degenhardt and Jones, 1972 with an estimate of divergence time
FIGURE 3. Consensus tree from Bayesian phylogenetic analysis. Bayesian posterior probabilities (PP) and ML bootstrap support (BS) are noted at nodes with high support (> 95% PP and 75 BS) and at basal nodes. Nodal support of PP = 1 and BS = 100 are indicated with a solid circle at the branch. Shaded symbols correspond to collection localities on Figure 1.
FIGURE 2. Minimum spanning haplotype networks for all S in Review of the systematic status of Sceloporus arenicolus Degenhardt and Jones, 1972 with an estimate of divergence time
FIGURE 2. Minimum spanning haplotype networks for all S. graciosus group samples sequenced at each of three nuclear loci. Size of each circle corresponds to the frequency of that haplotype. Shading corresponds to clade membership in Figure 3.
FIGURE 1 in Review of the systematic status of Sceloporus arenicolus Degenhardt and Jones, 1972 with an estimate of divergence time
FIGURE 1. Collection localities for samples from the Sceloporus graciosus group included in this study. Colored symbols correspond to clade membership on Figure 3; three individuals for which we only have sequence data at R35 are indicated with stars. Putative species and subspecies boundaries are shaded for the members of the Sceloporus graciosus group. Sceloporus graciosus graciosus: dark gray distribution, S. g. gracilis: light gray distribution, S. g. vandenburgianus: brown distribution, and S. arenicolus: black distribution.
FIGURE 4 in A new species of deepwater tilefish (Percoidea: Branchiostegidae) from the Philippines, with a brief discussion of the status of tilefish systematics
FIGURE 4. Dorsal head view, predorsal ridge of thawed specimen of B. saitoi (holotype); photo by first author.
FIGURE 5 in A new species of deepwater tilefish (Percoidea: Branchiostegidae) from the Philippines, with a brief discussion of the status of tilefish systematics
FIGURE 5. Freshly preserved colouration of the tail of B. saitoi, 329 mm SL (holotype) photo by the second author.
FIGURE 1 in A new species of deepwater tilefish (Percoidea: Branchiostegidae) from the Philippines, with a brief discussion of the status of tilefish systematics
FIGURE 1. Fresh colouration of 329 mm SL (holotype, MUFS 36081) specimen of B. saitoi caught by hook and line, 14 May 2011, Batangas, Laiya, Philippines; photo by J. Saito.
FIGURE 6 in Systematic status of Fejervarya (( Amphibia, Anura, Dicroglossidae) from South and SE Asia with the description of a new species from the Western Ghats of Peninsular India
FIGURE 6. Multivariate Principal Component Analysis scatter plot (20 morphometric characters marked as * in Table 1 transformed to their ratio to SVL) for Fejervarya gomantaki sp. nov., F. sahyadris and F. chilapata (a) for male individuals; (b) for female individuals.
FIGURE 2. Maximum Likelihood tree for 33 in Systematic status of Fejervarya (( Amphibia, Anura, Dicroglossidae) from South and SE Asia with the description of a new species from the Western Ghats of Peninsular India
FIGURE 2. Maximum Likelihood tree for 33 dicroglossid taxa based on 6879 bp of mitochondrial (16S and 12S) and nuclear genes (BDNF, Rhod, Tyr, RAG-1, RAG-2, NCX1, and CXCR4).
FIGURE 1 in Systematic status of Fejervarya (( Amphibia, Anura, Dicroglossidae) from South and SE Asia with the description of a new species from the Western Ghats of Peninsular India
FIGURE 1. Study localities for the species of small sized Fejervarya with rictal glands in the Western Ghats
The impact of smoking status on the efficacy of inhaled corticosteroids in chronic obstructive pulmonary disease: a systematic review
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Data from: Systemic thyroid hormone status during levothyroxine therapy in hypothyroidism: a systematic review and meta-analysis
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Fig. 4 in Species or population? Systematic status of Vieja coatlicue (Teleostei: Cichlidae)
Fig. 4. Dorsal-fin origin relative to operculum in Vieja coatlicue (top; UMMZ 178548) and Vieja zonata (bottom; FMNH 3776 (holotype), UMMZ 184746), illustrating variability within and between species. Scale bar equals 1cm.
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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
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.