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14 results for “Microstoma”
Fig. 2 in Rodentolepis microstoma isolated from different species of Sigmodontinae rodents (Rodentia: Cricetidae) in the Cuenca del Plata, Argentina: Morphological aspects and molecular characterization
Fig. 2. Scanning electron micrographs of Rodentolepis microstoma: (A) scolex with invaginated rostellum, lateral view; (B) scolex with invaginated rostellum, apical view; (C) acicular filitriches (mature proglottids). Histological section of Rodentolepis microstoma: (D) testes (t), ovary (o), external seminal vesicle (esv), cirrus sac (cs) and cirrus (c) in mature proglottid.
Fig. 5 in Rodentolepis microstoma isolated from different species of Sigmodontinae rodents (Rodentia: Cricetidae) in the Cuenca del Plata, Argentina: Morphological aspects and molecular characterization
Fig. 5. Phylogenetic tree of Rodentolepis spp. (Hymenolepididae: Cestoda) based on concatenated cox1 mitochondrial and ITS1 ribosomal DNA. Phylogenetic tree inferred using Bayesian method. Maximum Likelihood bootstrap values of clades are listed first, followed by Bayesian Posterior Probabilities respectively, for clade frequencies exceeding 65%.
Fig. 4 in Rodentolepis microstoma isolated from different species of Sigmodontinae rodents (Rodentia: Cricetidae) in the Cuenca del Plata, Argentina: Morphological aspects and molecular characterization
Fig. 4. Phylogenetic tree of Rodentolepis spp. (Hymenolepididae: Cestoda) based on cox1 mitochondrial DNA. Phylogenetic tree inferred using Bayesian method. Maximum Likelihood bootstrap values of clades are listed first, followed by Bayesian Posterior Probabilities respectively, for clade frequencies exceeding 65%.
Fig. 1 in Rodentolepis microstoma isolated from different species of Sigmodontinae rodents (Rodentia: Cricetidae) in the Cuenca del Plata, Argentina: Morphological aspects and molecular characterization
Fig. 1. Morphological features of Rodentolepis microstoma: (A, D, G, J) scolex and rostellar hooks; (B, E, H, K) mature proglottids; (C, F, I, L) egg from different host species, (A–C) Akodon; (D–F) Necromys; (G–I) Thaptomys; (J–L) Oxymycterus.
Fig. 3 in Rodentolepis microstoma isolated from different species of Sigmodontinae rodents (Rodentia: Cricetidae) in the Cuenca del Plata, Argentina: Morphological aspects and molecular characterization
Fig. 3. Phylogenetic tree of Rodentolepis spp. (Hymenolepididae: Cestoda) based on ITS1 mitochondrial DNA. Phylogenetic tree inferred using Bayesian method. Maximum Likelihood bootstrap values of clades are listed first, followed by Bayesian Posterior Probabilities respectively, for clade frequencies exceeding 65%.
Fig. 1 in Scientific Note Pimelodus microstoma Steindachner, 1877, a valid species of pimelodid catfish (Siluriformes: Pimelodidae) from the upper rio Paraná drainage
Fig. 1. Principal components analysis on covariance matrix of log-transformed measurements of Pimelodus microstoma from the upper Paraná (inverted triangles), syntypes of Pimelodus microstoma (dots), and Pimelodus blochii species-group (squares).
Figure 2 in Report on Sicklefin weasel shark Hemigaleus microstoma (Bleeker, 1852) (Carcharhiniformes: Hemigaleidae) from the Andaman Islands, Indian EEZ with DNA barcodes
Figure 2. Hemigaleus microstoma, ZSI/ANRC-12963, 610 mm TL female.
Figure 1 in Report on Sicklefin weasel shark Hemigaleus microstoma (Bleeker, 1852) (Carcharhiniformes: Hemigaleidae) from the Andaman Islands, Indian EEZ with DNA barcodes
Figure 1. Map of the location where specimens of Hemigaleus microstoma were collected.
Fig. 3. Pimelodus microstoma, MZUSP 23204 in Scientific Note Pimelodus microstoma Steindachner, 1877, a valid species of pimelodid catfish (Siluriformes: Pimelodidae) from the upper rio Paraná drainage
Fig. 3. Pimelodus microstoma, MZUSP 23204, Jupiá dam, upper rio Paraná, 120.0 mm SL.
FIGURE 4 in Description of a new species of Microstoma (Pisces, Microstomatidae) from the southwestern Pacific Ocean
FIGURE 4. Comparison of selected morphometric characters in Microstoma australis and M. microstoma. (a) dorsal fin length. (b) predorsal distance. (c) distance between pelvic-fin insertion and anal-fin origin.
FIGURE 3 in Description of a new species of Microstoma (Pisces, Microstomatidae) from the southwestern Pacific Ocean
FIGURE 3. Examples of allometric growth in morphometric characters of Microstoma australis. (a) body depth at pectoral-fin base. (b) caudal peduncle depth and length.
FIGURE 2 in Description of a new species of Microstoma (Pisces, Microstomatidae) from the southwestern Pacific Ocean
FIGURE 2. Map of the southwestern Pacific Ocean with collection sites of Microstoma australis. The circle with the cross represents the holotype.
FIGURE 1 in Description of a new species of Microstoma (Pisces, Microstomatidae) from the southwestern Pacific Ocean
FIGURE 1. Images of Microstoma australis AMS I.27328-002, holotype, 140.5 mm, off Cape Hawke, NSW: (a) fresh specimen (K. Graham, NSW Fisheries), (b) preserved specimen (O. Gon), and (c) radiograph (S. Reader, AMS); and positive radiographs of (d) Microstoma microstoma MCZ 61960, 103.7 mm, Western Atlantic (A. Williston, MCZ), and (e) Microstoma sp. CAS 38796, 43 mm, California (J. Fong, CAS).
Figure 3 in Report on Sicklefin weasel shark Hemigaleus microstoma (Bleeker, 1852) (Carcharhiniformes: Hemigaleidae) from the Andaman Islands, Indian EEZ with DNA barcodes
Figure 3. Hemigaleus microstoma ventral view of the head, 610 mm TL female.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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
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.