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Figure 12. Paracanthopoma cangussu, MZUSP 105899 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 12. Paracanthopoma cangussu, MZUSP 105899, CT scan images of head skeleton. (A) Lateral; (B) Dorsal; (C) Ventral. Specimen poorly calcified, some structures not properly shown.
Figure 10. Paracanthopoma alleynei, MZUSP 103052 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 10. Paracanthopoma alleynei, MZUSP 103052, CT scan images of head skeleton, (A) Lateral; (B) Dorsal; (C) Ventral.
Figure 11. Paracanthopoma cangussu, MZUSP 105899, 13.0 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 11. Paracanthopoma cangussu, MZUSP 105899, 13.0 mm SL, Brazil, Mato Grosso, Cocalinho, Corixão do Meio. (A) Lateral view of body; (B) Dorsal view of head; (C) ventral view of head.
Figure 33 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 33. Paracanthopoma saci, holotype, MZUSP 125624, 19.6 mm SL. Brazil, Mato Grosso do Sul, Alcinópolis, Rio Taquarizinho. (A) Lateral view of body; (B) Dorsal view of head; (C) ventral view of head.
Figure 9. Paracanthopoma alleynei, INPA 16555 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 9. Paracanthopoma alleynei, INPA 16555, SEM images of head. (A) Dorsal; (B) Ventral. Scale bar = 500 μm.
Figure 8. Paracanthopoma alleynei, MZUSP 103052, 21.6 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 8. Paracanthopoma alleynei, MZUSP 103052, 21.6 mm SL, Brazil, Roraima, Boa Vista, Maracá, Rio Branco. (A) Lateral view of body; (B) Dorsal view of head; (C) ventral view of head.
Figure 7. Paracanthopoma ahriman, holotype FMNH 105525 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 7. Paracanthopoma ahriman, holotype FMNH 105525, CT scan images of head skeleton, (A) Lateral; (B) Dorsal; (C) Ventral. Specimen poorly calcified, some structures not properly shown.
Figure 37 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 37. Paracanthopoma satanica, paratype, ANSP 178231, SEM images of head. (A) Dorsal; (B) Ventral. Scale bar = 500 μm.
Figure 6. Paracanthopoma ahriman, FMNH 147290 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 6. Paracanthopoma ahriman, FMNH 147290, SEM images of head. (A) Lateral; (B) Dorsal; (C) Ventral. Arrow indicates extended periodontodal fold between opercular and interopercular odontodophores. Scale bar = 500 μm.
Figure 5. Paracanthopoma ahriman, FMNH 105525 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 5. Paracanthopoma ahriman, FMNH 105525, holotype, 19.9 mm SL,Venezuela,T.F. Amazonas, Río Autana. (A) Lateral view of body; (B) Dorsal view of head; (C) Ventral view of head.
Figure 41 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 41. Paracanthopoma truculenta, holotype, MZUSP_30399, CT scan images of head skeleton, (A) Lateral; (B) Dorsal; (C) Ventral.
Figure 25 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 25. Paracanthopoma malevola, paratype, INPA 31566, SEM images of head. (A) Dorsal; (B) Ventral. Scale bar = 500 μm.
Figure 40 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 40. Paracanthopoma truculenta, paratype, MZUSP 30404, SEM images of head. (A) Lateral; (B) Dorsal; (C) Ventral. Scale bar = 500 μm.
Figure 27 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 27. Map of northern South America showing geographical distribution of Paracanthopoma irritans (dot) and Pc. malevola (triangle). Open symbols represent type localities. Some symbols may represent more than a single locality or lot of specimens.
Figure 3 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 3. Schematic representations of the head of species of Paracanthopoma in dorsal view. (A) Pc. ahriman; (B) Pc. alleynei; (C) Pc. cangussu; (D) Pc. capeta; (E) Pc. carrapata; (F) Pc. daemon; (G) Pc. irritans; (H) Pc. malevola; (I) Pc. parva; (J) Pc. saci; (K) Pc. satanica; (L) Pc. truculenta; (M) Pc. vampyra.
Figure 4 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 4. Comparative chart of jaws and anterior portion of head of Paracanthopoma species, cleared and stained specimens, ventral views: (A) Pc. ahriman FMNH 105525; (B) Pc. alleynei MZUSP 103052; (C) Pc. cangussu MZUSP 86250; (D) Pc. capeta MZUSP 29154; (E) Pc. daemon MZUSP 95597; (F) Pc. irritans INPA 20529; (G) Pc. malevola MCP 36217; (H) Pc. parva MZUSP 30400; (I) Pc. saci MZUSP 125626; (J) Pc. satanica MZUSP 100149; (K) Pc. truculenta MZUSP 30404; (L) Pc. vampyra MZUSP 100138. Scale bars = 500 μm. Pc. carrapata not shown.
Figure 1 in A taxonomic review of the vampire catfish genus Paracanthopoma Giltay, 1935 (Siluriformes, Trichomycteridae), with descriptions of nine new species and a revised diagnosis of the genus
Figure 1. Schematic Paracanthopoma showing homologous landmarks and derivative measurements. (A) Left lateral view of body; (B) Dorsal head view; (C) Ventral head view.
Data for: Defining the relationship between phylogeny, clinical manifestation and phenotype for Trichophyton mentagrophytes/interdigitale complex; a literature review and taxonomic recommendations
<p><span>This study looked for correlations between molecular identification, clinical manifestation and morphology for <em>Trichophyton interdigitale</em> and <em>T. mentagrophytes</em>. For this purpose, a total of 110 isolates were obtained from Czech patients with various clinical manifestations of dermatophytosis. Micro- and macromorphology and physiology were analysed, and the strains were characterized using multilocus sequence typing. Among the 12 measured/</span><span>scored phenotypic features, statistically significant differences between species were found only in growth rates at 37°C and in</span><span> the</span><span> production of spiral hyphae but none of these features was diagnostic. </span><span>Correlations were found between <em>T. interdigitale</em> and higher age of patients and between clinical manifestations such as tinea pedis or onychomychosis.</span><span> </span><span>The MLST approach showed that ITS genotyping of <em>T. mentagrophytes</em> isolates has limited practical benefits because of extensive gene flow between sublineages. Based on our results and previous studies, there are few taxonomic arguments for preserving both species' names. The species show a lack of monophyly and unique morphology. On the other hand, some genotypes are associated with predominant clinical </span><span>manifestations and sources</span><span> of infections</span><span>,</span><span> which keep those names alive. This practice is questionable because the use of both names confuses identification</span><span>,</span><span> leading to difficulty in comparing epidemiological studies. The current identification method using ITS genotyping is ambiguous for some isolates and is not user-friendly. Additionally, identification tools such as MALDI-TOF MS fail to distinguish these species. To avoid further confusion and simplify identification in practice, we recommend using the name <em>T. mentagrophytes</em> for the entire complex. When clear differentiation of populations corresponding to <em>T. interdigitale</em> and <em>T. indotineae</em> is possible based on molecular data, we recommend optionally using a variety rank:<em> T. mentagrophytes</em> var. <em>interdigitale</em> and <em>T. mentagrophytes</em> var. <em>indotineae</em>.</span></p>
Fig. 6 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 6. Strict consensus of equally parsimonious trees under implied weighting (k = 1–2 and 3).
Fig. 1 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 1. Pseudonannolene tricolor Brölemann, 1902 (IBSP 2031) in lateral view.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.