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396 results for “Gulf of California”
FIGURE 3 in New species of Acoela (Acoelomorpha) from the Gulf of California
FIGURE 3. Haplogonaria amarilla sp. nov.; wholemount stained with Alexa488labeled phalloidin and viewed with confocal microscopy. A. Projection of ventral bodywall musculature. For explanation of muscle patterns see Hooge (2001). B. Focus on parenchymal musculature. Arrowheads mark ventral diagonal bodywall muscles. gp, common gonopore; m, mouth; sv, seminal vesicle.
FIGURE 2 in New species of Acoela (Acoelomorpha) from the Gulf of California
FIGURE 2. Haplogonaria amarilla sp. nov.; photomicrographs of living specimen. A. Dorsal view of whole specimen. B. View of anterior tip. C. View of posterior tip. e, egg; fg, frontal gland; rh, rhabdoid gland; sb, seminal bursa; st, statocyst; sv, seminal vesicle; t, testes.
FIGURE 6 in New species of Acoela (Acoelomorpha) from the Gulf of California
FIGURE 6. Isodiametra bajaensis sp. nov.; wholemount stained with Alexa488labeled phalloidin and viewed with confocal microscopy. A. Projection of musculature associated with reproductive organs including vaginal sphincter. B. Projection showing penis musculature inside seminal vesicle. bn, bursal nozzle; p, penis; sph, vaginal sphincter; sv, seminal vesicle.
FIGURE 5 in New species of Acoela (Acoelomorpha) from the Gulf of California
FIGURE 5. Isodiametra bajaensis sp. nov.; photomicrographs. A. Dorsal view of living specimen. B. Dorsal view of posterior. C. Sagittal histological section of posterior. bn, bursal nozzle; e, egg; gp, gonopore; gr, granules; gs, glandular secretions; p, penis; sb, seminal bursa; sp, sperm; sph, vaginal sphincter; sv, seminal vesicle.
FIGURE 3 in Morphological variation and sexual dimorphism in the California skate, Raja inornata Jordan and Gilbert, 1881 from the Gulf of California, Mexico
FIGURE 3. Relationship between the number of middorsal thorns (T) and total length. Males (Π), T =0.003 TL + MD MD 2.51; r2=0.16; females (), T =0.01 TL – 0.76; r2=0.32.
FIGURE 2 in Morphological variation and sexual dimorphism in the California skate, Raja inornata Jordan and Gilbert, 1881 from the Gulf of California, Mexico
FIGURE 2. Relationship between the number of orbital thorns (T) and total length. Males (Π), T =0.01 TL+3.75; O O r2=0.16; females (), T =0.02 TL+1.31; r2=0.64.
FIGURE 5 in Morphological variation and sexual dimorphism in the California skate, Raja inornata Jordan and Gilbert, 1881 from the Gulf of California, Mexico
FIGURE 5. Bi-plot of canonical scores for factors 1 and 2 from DA of female and male R. inornata and male R. cortezensis. Discriminant analysis based on 12 morphometric characters. (+) R. inornata-males; () R. inornata-females and (o) R. cortezensis-males. (read text for explaination).
FIGURE 4 in Morphological variation and sexual dimorphism in the California skate, Raja inornata Jordan and Gilbert, 1881 from the Gulf of California, Mexico
FIGURE 4. Photographs of male and female upper jaw teeth (symphysial teeth) of juveniles and adults of Raja inornata: (A) mature female, 570 mm LT; (B) juvenile female, 262 mm LT; (C) mature male, 500 LT and (D) juvenile male, 262 mm LT (photographs 25 X).
FIGURE 1 in Morphological variation and sexual dimorphism in the California skate, Raja inornata Jordan and Gilbert, 1881 from the Gulf of California, Mexico
FIGURE 1. Morphometric measurements made on R. inornata and R. cortezensis. (A) Dorsal and (B) ventral views (see table 1 for definitions)(Figure from McEachran & Notarbartolo di Sciara, 1995).
FIGURE 9 in Morphological reassessment and molecular assessment of Sargassum (Fucales: Phaeophyceae) species from the Gulf of California, Mexico
FIGURE 9. Maximum likelihood concatenated tree of Sargassum inferred from ITS2+cox1+cox3 sequences. Bootstrap values are indicated for ML/MP when over 50%. An asterisk indicates the type of each section, while two asterisks denote the type of each subgenus.
FIGURE 7 in Morphological reassessment and molecular assessment of Sargassum (Fucales: Phaeophyceae) species from the Gulf of California, Mexico
FIGURE 7. Maximum likelihood tree of Sargassum inferred from cox3 (ML/BPP/MP). Bootstrap values are indicated for ML when over 50%.
FIGURE 6 in Morphological reassessment and molecular assessment of Sargassum (Fucales: Phaeophyceae) species from the Gulf of California, Mexico
FIGURE 6. Maximum likelihood tree of Sargassum inferred from ITS2 (MP/BPP/ML). Bootstrap values are indicated for ML when over 50%. Black triangle indicates a collapsed branch with 21 ITS-2 sequences.
FIGURE 2 in Morphological reassessment and molecular assessment of Sargassum (Fucales: Phaeophyceae) species from the Gulf of California, Mexico
FIGURE 2. Morphology of Sargassum herporhizum and S. horridum. A. Habit of S. herporhizum. B. Bladders (arrow) at the base of a blade. C Habit of S. horridum. D. Bladders (arrow) at the base of a blade. E. Holdfast and thorns on basal branches. F. Receptacles. Scale bars = 1 cm.
FIGURE 1 in Morphological reassessment and molecular assessment of Sargassum (Fucales: Phaeophyceae) species from the Gulf of California, Mexico
FIGURE 1. Representative current beds of Sargassum in the Gulf of California. a. Sargassum ulixei. b. Sargassum herporhizum, S. johnstonii, S. horridum, S. lapazeanum. c. Sargassum horridum, S. lapazeanum. d. Sargassum sinicola.
FIGURE 8 in Morphological reassessment and molecular assessment of Sargassum (Fucales: Phaeophyceae) species from the Gulf of California, Mexico
FIGURE 8. Maximum likelihood tree of Sargassum inferred from cox1 (ML/BPP/MP). Bootstrap values are indicated for ML when over 50%.
FIGURE 4 in Morphological reassessment and molecular assessment of Sargassum (Fucales: Phaeophyceae) species from the Gulf of California, Mexico
FIGURE 4. Morphology of Sargassum ulixei sp. nov. A. Habit. B, C. Section of axial cells (a) and medullar cells (m). D. Holdfast. E. Sessile blades (arrow head), vesicles (arrow), and receptacles growing above the branch. F–H. Receptacles, zygote (z).
FIGURE 3 in Morphological reassessment and molecular assessment of Sargassum (Fucales: Phaeophyceae) species from the Gulf of California, Mexico
FIGURE 3. Morphology of Sargassum johnstonii, S. lapazeanum and S. sinicola. A. Habit of S. johnstonii. B, E. Blades (arrow) and vesicles (arrow heads) above the branch. D. Discoid holdfast and smooth branches. F. Habit of S. lapazeanum. G. Bladders (arrow) and blades growing in clusters. H. Discoid holdfast. I. Habit of S. sinicola. J. Leaves and vesicles (arrow) growing in clusters. Scale bars = 1 cm.
Figure 9 in Two new deep-sea species of Argestidae and Ameiridae (Copepoda: Harpacticoida) from the Eastern Mexican Pacific and Gulf of California, with proposal of a new genus of the family Argestidae
Figure 9. Argestigens celibis sp. n., male holotype. (a) left P1, anterior, with aberrant EXP3; (b) right P1 EXP3, anterior; (c) P2, anterior.
Figure 7 in Two new deep-sea species of Argestidae and Ameiridae (Copepoda: Harpacticoida) from the Eastern Mexican Pacific and Gulf of California, with proposal of a new genus of the family Argestidae
Figure 7. Argestigens celibis sp. n., male holotype. (a) habitus, dorsal; (b) urosome, ventral, P5- bearing somite omitted; (c) urosome, lateral.
Figure 5 in Two new deep-sea species of Argestidae and Ameiridae (Copepoda: Harpacticoida) from the Eastern Mexican Pacific and Gulf of California, with proposal of a new genus of the family Argestidae
Figure 5. Argestes analongises sp. n., female holotype. (a) P3, anterior; (b) P4, anterior; (c) P4 EXP3.
ScienceDex guides
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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.