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FIGURE 5 in Description of free-living marine nematodes found in the intestine of fishes from the Brazilian coast
FIGURE 5. Trissonchulus latus (Wieser, 1953) Inglis 1961. A: Entire male. B: Entire female. C: Stoma. D: Amphid. E: Neck. F, G: Male posterior end (lateral and ventral views, respectively). H: Female posterior end.
Figure 31. Energy dispersive X in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figure 31. Energy dispersive X-ray spectrum of a gallium cut trunk spine of a Rhadinorhynchus hiansi specimen showing high levels of sulfur. The x-ray data are the elemental analysis of the center of the spine; see boldfaced numbers in Table V. Insert: SEM of a lateral longitudinal cut spine.
Figures 17–22 in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figures 17–22. SEM of specimens from Sarda orientalis collected off the southern Pacific coast of Vietnam at Nha Trang. (17) Posterior proboscis hooks are longest and in a perfect ring. (18) Sensory pore just posterior to basal hooks. (19) Anterior trunk of a male specimen showing anterior rings of spines and posterior ventral and lateral spines characteristic of this species. (20) A higher magnification of a trunk spine. (21) A gallium cut spine showing a middle dense core and a think spongy outer layer under the cuticle. (22) An example of micropores in the middle of trunk.
Figure 33 in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figure 33. Maximum likelihood (ML) phylogram reconstructed using newly generated cox1 sequences for Rhadinorhynchus hiansi and retrieved sequences from GenBank for the closest-related sequences. Outgroup: Rotaria rotatoria. Nodal support from maximum likelihood (ML) and BI analyses are indicated as ML/BI. Bootstrap values lower than 70 and posterior probability values lower than 0.9 are omitted. The scale bar indicates the expected number of substitutions per site.
Figure 32 in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figure 32. Bayesian inference (BI) phylogram reconstructed using newly generated 18S rDNA sequences for Rhadinorhynchus hiansi and retrieved sequences from GenBank for the closest-related sequences. Outgroup: Rotaria rotatoria. Nodal support from maximum likelihood (ML) and BI analyses are indicated as ML/BI. Bootstrap values lower than 70 and posterior probability values lower than 0.9 are omitted. The scale bar indicates the expected number of substitutions per site.
Figure 29. Energy dispersive X in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figure 29. Energy dispersive X-ray spectrum of the base center of a gallium cut large anterior hook of a Rhadinorhynchus hiansi specimen showing high levels of calcium and phosphorus. The x-ray data are the elemental analysis of the hook base (see boldfaced figures in Table III). Insert: SEM of a cross and lateral longitudinal gallium cut hook.
Figure 30. Energy dispersive X in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figure 30. Energy dispersive X-ray spectrum of the tip of a gallium cut small base hook of a Rhadinorhynchus hiansi specimen showing high levels of sulfur. The x-ray data are the elemental analysis of the hook tip (see boldfaced figures in Table IV). Insert: SEM of a cross and lateral longitudinal gallium cut hook.
Figures 23–28 in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figures 23–28. SEM of specimens from Sarda orientalis collected off the southern Pacific coast of Vietnam at Nha Trang. (23) Rounded posterior end of a female specimen showing the sub-ventral position of gonopore appearing as a lateral slit. (24) Eggs with rounded poles and prominent coarse surface. (25) The posterior end of a male specimen showing the terminal position of an invaginated bursa. (26) A lateral view of terminal bursa. (27) A face view of the thick bursa showing the distribution of sensory structures in an outer ring of clusters and inner rings of single units. (28) Higher magnification of a sensory cluster from the outer ring showing its organization and the elevated dome-shaped center of each unit. The organization of sensory structures of the bursa is species specific and is a useful diagnostic tool for species recognition.
Figures 1–11 in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figures 1–11. Line drawings of whole mounted specimens of Rhadinorhynchus hiansi from Sarda orientalis collected off the southern Pacific coast of Vietnam at Nha Trang. (1) A young male specimen. (2) A young female specimen. (3) Detail of the reproductive system of the male specimen in Figure 1. (4) A posterior trunk spine. (5) The proboscis of a male specimen. (6, 7) Profiles of selected dorsal (6) and ventral (7) proboscis hooks from Figure 5 showing 5 types of hooks. Hook no. 1 (apical), no. 3 (largest), no. 15 (smaller mid-proboscis hook), no. 40 (larger hooks near posterior end), basal crown (longest). (8) Reproductive system of an 11 mm long female showing long uterus and the attachment of the simple uterine bell to the ventral wall of the trunk. (9) A larger magnification of the uterine bell. (10) Larger magnification of the vagina. (11) An egg.
Figures 12–16 in Morphological And Molecular Description Of Rhadinorhynchus Hiansi Soota And Bhattacharya, 1981 (Acanthocephala: Rhadinorhynchidae) From Marine Fish Off The Pacific Coast Of Vietnam
Figures 12–16. SEM of specimens from Sarda orientalis collected off the southern Pacific coast of Vietnam at Nha Trang. (12) A fully extended proboscis of a male specimen. (13) An apical view of the proboscis of specimen in Figure 12 showing the smaller apical hooks and the arrangement of hook rows. (14) A gallium cut hook showing the thin cortical layer and the dense prominent core. (15) A view of hooks at mid-proboscis showing their shape, external texture, and orientation. (16) A higher magnification of a hook showing detail of its external striations. All hooks are striated.
Data from: Dispersal of a near-shore marine fish connects marine reserves and adjacent fished areas along an open coast
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Data from: Anatomy of a cline: dissecting anti-predatory adaptations in a marine gastropod along the U.S. Atlantic coast
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Data from: Nuclear markers reveal a complex introgression pattern among marine turtle species on the Brazilian coast
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Data from: Acknowledging differences: number, characteristics, and distribution of marine benthic communities along Taiwan coast
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Size fractionation of total Chl a larger and smaller than 8 μm data generated by Mike Mullin of the Marine Life Research Group, aboard CalCOFI (California Cooperative Oceanic Fisheries Investigations) cruises of the coast of California, January 1994 - October 1996.
Based on twelve quarterly cruises over three years, the relative importance and absolute biomass of phytoplankton retained on an 8 mu m-pore membrane filter increased as the depth of the nitricline decreased, even though biomass of macrozooplankton (potential grazers) also increased as the nitricline shoaled. The relative importance of greater than or equal to 8 mu m cells was inversely related to a proxy for their biomass-specific mortality (biomass of macrozooplankton/biomass of greater than or equal to 8 mu m cells), as was their "residual" biomass not predicted from the nitricline depth
At-sea seabird censuses. Data on the species encountered (including marine mammals), their abundance, distribution and behavior. Data collected aboard cruises off the coast of the Western Antarctic Penninsula, 1993 - 2018.
The objectives of the LTER seabird component during the 92-93 season cruises were similar. These objectives included 1) determining the pelagic abundance and distribution of Adelie Penguins, 2) examining how the physical and biological characteristics of the marine environment influence these parameters and, 3) using these data to identify foraging areas that may be important to Adelie populations being studied as part of land-based work at Palmer Station. Secondary objectives included documenting the abundance and distribution of other seabirds and marine mammals within the LTER study area. The focus of the January cruise was the nearshore foraging habitat,which required sampling at smaller scales. All seabird censuses were thus conducted within approximately 100 kms of Palmer Station while traversing a sampling grid with stations at 10km intervals. The first two days (18-20 January) of this cruise were spent covering the selected grid as rapidly as possible resulting in 45 transects spaced at 45-60 minute intervals. There were no stops at the 10km stations during this Fast Grid phase. Upon completion of the Fast Grid, a force 12 gale suspended data collection for 24 hours. From January 22-25 the grid direction was reversed and the grid repeated. During this Slow Grid phase, 2-M net tows were done at 10km intervals and BOPS and 1-M and 2-M net tows every 20 km. All seabird censuses during the cruise were done using the procedures outlined in the previous paragraph.
At-sea seabird censuses. Data on the species encountered (including marine mammals), their abundance, distribution and behavior. Data collected aboard cruises off the coast of the Western Antarctic Penninsula, 1993, 1999 and 2001.
The objectives of the LTER seabird component during the 92-93 season cruises were similar. These objectives included 1) determining the pelagic abundance and distribution of Adelie Penguins, 2) examining how the physical and biological characteristics of the marine environment influence these parameters and, 3) using these data to identify foraging areas that may be important to Adelie populations being studied as part of land-based work at Palmer Station. Secondary objectives included documenting the abundance and distribution of other seabirds and marine mammals within the LTER study area. The focus of the January cruise was the nearshore foraging habitat,which required sampling at smaller scales. All seabird censuses were thus conducted within approximately 100 kms of Palmer Station while traversing a sampling grid with stations at 10km intervals. The first two days (18-20 January) of this cruise were spent covering the selected grid as rapidly as possible resulting in 45 transects spaced at 45-60 minute intervals. There were no stops at the 10km stations during this Fast Grid phase. Upon completion of the Fast Grid, a force 12 gale suspended data collection for 24 hours. From January 22-25 the grid direction was reversed and the grid repeated. During this Slow Grid phase, 2-M net tows were done at 10km intervals and BOPS and 1-M and 2-M net tows every 20 km. All seabird censusesduring the cruise were done using the procedures outlined in theprevious paragraph.
At-sea seabird censuses. Data on the species encountered (including marine mammals), their abundance, distribution and behavior. Data collected aboard cruises off the coast of the Western Antarctic Penninsula, 1993 - 2018.
The objectives of the LTER seabird component during the 92-93 season cruises were similar. These objectives included 1) determining the pelagic abundance and distribution of Adelie Penguins, 2) examining how the physical and biological characteristics of the marine environment influence these parameters and, 3) using these data to identify foraging areas that may be important to Adelie populations being studied as part of land-based work at Palmer Station. Secondary objectives included documenting the abundance and distribution of other seabirds and marine mammals within the LTER study area. The focus of the January cruise was the nearshore foraging habitat, which required sampling at smaller scales. All seabird censuses were thus conducted within approximately 100 kms of Palmer Station while traversing a sampling grid with stations at 10km intervals. The first two days (18-20 January) of this cruise were spent covering the selected grid as rapidly as possible resulting in 45 transects spaced at 45-60 minute intervals. There were no stops at the 10km stations during this Fast Grid phase. Upon completion of the Fast Grid, a force 12 gale suspended data collection for 24 hours. From January 22-25 the grid direction was reversed and the grid repeated. During this Slow Grid phase, 2-M net tows were done at 10km intervals and BOPS and 1-M and 2-M net tows every 20 km. All seabird censuses during the cruise were done using the procedures outlined in the previous paragraph. Seventy-two 30-minute transects and 15 station censuses were completed during the January cruise. Athough seabirds were widely distributed throughout the study area, the highest densities and greatest biomass occurred consistently within 2-5 km of Anvers Island and several major island groups to the south and west near the Antarctic Peninsula. Adelie Penguins were the dominant component of this seabird assemblage in terms of both abundance and biomass. South Polar Skuas ranked second and Black-browed Al
At-sea seabird censuses. Data on the species encountered (including marine mammals), their abundance, distribution and behavior. Data collected aboard cruises off the coast of the Western Antarctic Penninsula, 1993, 1999 and 2001.
The objectives of the LTER seabird component during the 92-93 season cruises were similar. These objectives included 1) determining the pelagic abundance and distribution of Adelie Penguins, 2) examining how the physical and biological characteristics of the marine environment influence these parameters and, 3) using these data to identify foraging areas that may be important to Adelie populations being studied as part of land-based work at Palmer Station. Secondary objectives included documenting the abundance and distribution of other seabirds and marine mammals within the LTER study area. The focus of the January cruise was the nearshore foraging habitat,which required sampling at smaller scales. All seabird censuses were thus conducted within approximately 100 kms of Palmer Station while traversing a sampling grid with stations at 10km intervals. The first two days (18-20 January) of this cruise were spent covering the selected grid as rapidly as possible resulting in 45 transects spaced at 45-60 minute intervals. There were no stops at the 10km stations during this Fast Grid phase. Upon completion of the Fast Grid, a force 12 gale suspended data collection for 24 hours. From January 22-25 the grid direction was reversed and the grid repeated. During this Slow Grid phase, 2-M net tows were done at 10km intervals and BOPS and 1-M and 2-M net tows every 20 km. All seabird censusesduring the cruise were done using the procedures outlined in theprevious paragraph.
Marine terraces of the last interglacial period along the Pacific coast of South America (1°N-40°S)
<p>This database comprises ~2,000 measurements of last interglacial marine terrace elevations along ~5,000 km of the western South American coast from northern Ecuador to south-central Chile (1°N-40°S). We used quantitatively replicable approaches constrained by previously published terrace-age estimates. Uncertainties were estimated on the basis of measurement errors and the distance from these referencing points.</p>
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.