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202 results for “Lake Tanganyika”
Figure 2 in Redescription of Mastacembelus ophidium Günther, 1893 (Synbranchiformes: Mastacembelidae) and description of a new spiny eel from Lake Tanganyika
Figure 2. (A) Histograms of total vertebrae number for all specimens examined. (B) Scatterplot of total vertebrae number against the localities for all examined specimens. Specimens were classified into 18 different localities arranged in a counterclockwise geographical order within the lake starting from Nyanza (Burundi), over the Democratic Republic of Congo and the Zambian coast, to Kigoma (Tanzania). Two localities (Burundi? and
Figure 9 in Redescription of Mastacembelus ophidium Günther, 1893 (Synbranchiformes: Mastacembelidae) and description of a new spiny eel from Lake Tanganyika
Figure 9. Geographical distribution of Mastacembelus polli sp. nov. based on the localities of the examined specimens. (.) Holotype, (.) paratypes and (.) specimens of M. polli sp. nov.
Figure 8 in Redescription of Mastacembelus ophidium Günther, 1893 (Synbranchiformes: Mastacembelidae) and description of a new spiny eel from Lake Tanganyika
Figure 8. Mastacembelus polli sp. nov., holotype, 143 mm TL, from ''Cap Kabeyeye, Lac Tanganyika'' (Zambia) (MRAC 78-25-P-41). (A) Lateral view. (B) Position of the posterior angle of lips to posterior nare and eye. Vertical line is perpendicular to a horizontal line parallel with upper surface of the head. (C) Detail of pectoral fin region. Upper tip of gill slit, dorsal edge of pectoral-fin base and ventral edge of pectoral-fin base connected by dashed lines.
Figs 268-281 in Oocystis lacustris CHOD. (Chlorophyta, Trebouxiophyceae) in Lake Tanganyika (Africa)
Figs 268-281: Solitary cells and colonies of Oocystis lacustris CHODAT from Lake Tanganyika after iodine staining. Scale bar – 5 μm.
Figs 245-267 in Oocystis lacustris CHOD. (Chlorophyta, Trebouxiophyceae) in Lake Tanganyika (Africa)
Figs 245-267: Four-celled colonies and autosporangia of Oocystis lacustris CHODAT from Lake Tanganyika. Scale bar – 10 μm.
Figs 175-188 in Oocystis lacustris CHOD. (Chlorophyta, Trebouxiophyceae) in Lake Tanganyika (Africa)
Figs 175-188: Two-celled colonies of Oocystis lacustris CHODAT from Lake Tanganyika. Scale bar – 5 μm.
Figs 208-244 in Oocystis lacustris CHOD. (Chlorophyta, Trebouxiophyceae) in Lake Tanganyika (Africa)
Figs 208-244: Four-celled colonies and autosporangia of Oocystis lacustris CHODAT from Lake Tanganyika. Scale bar – 10 μm.
Figs 189-200 in Oocystis lacustris CHOD. (Chlorophyta, Trebouxiophyceae) in Lake Tanganyika (Africa)
Figs 189-200: Colonies and autosporangia with 2, 3 and 4 cells of Oocystis lacustris CHODAT from Lake Tanganyika. Scale bar – 5 μm.
Figs 201-207 in Oocystis lacustris CHOD. (Chlorophyta, Trebouxiophyceae) in Lake Tanganyika (Africa)
Figs 201-207: Three-celled and compound colonies and autosporangia of Oocystis lacustris CHODAT from Lake Tanganyika. Scale bar – 10 μm.
Figs 133-174 in Oocystis lacustris CHOD. (Chlorophyta, Trebouxiophyceae) in Lake Tanganyika (Africa)
Figs 133-174: Two-celled colonies and autosporangia of Oocystis lacustris CHODAT from Lake Tanganyika. Scale bar – 10 μm.
Figs 113-132 in Oocystis lacustris CHOD. (Chlorophyta, Trebouxiophyceae) in Lake Tanganyika (Africa)
Figs 113-132: Solitary cells and autospores of Oocystis lacustris CHODAT from Lake Tanganyika. Scale bar – 10 μm.
Figure 6 in Adulthood and phylogenetic analysis in gastropods: character recognition and coding in shells of Lavigeria (Cerithioidea, Thiaridae) from Lake Tanganyika
Figure 6. Plots of length against PC1 for all eight species of Lavigeria studied with regressed lines and R2 values. Length values are log transformed.
Figure 3 in Adulthood and phylogenetic analysis in gastropods: character recognition and coding in shells of Lavigeria (Cerithioidea, Thiaridae) from Lake Tanganyika
Figure 3. Character state APPL. An adult specimen of L. n. sp. X (left) and a juvenile (right). Notice the perimetric, wrinkle-like, lines on the front surface of the apertural lip of the adult. Scale bar = 0.2 cm.
Figure 7 in Adulthood and phylogenetic analysis in gastropods: character recognition and coding in shells of Lavigeria (Cerithioidea, Thiaridae) from Lake Tanganyika
Figure 7. Fifty per cent majority-rule consensus trees of five, nine, ten and 31 trees (from top to bottom, respectively) from four matrices. Matrices are coding the data of Table 1. See Analysis for explanation of the matrices. Tree and character statistics are given in Table 3. Optimality criterion: maximum parsimony, exhaustive search. All characters binary, of equal weight and unordered. Numbers indicate percentage of topologies that include the respective branches.
Figure 5 in Adulthood and phylogenetic analysis in gastropods: character recognition and coding in shells of Lavigeria (Cerithioidea, Thiaridae) from Lake Tanganyika
Figure 5. Character states DFST, AXRB and UEPW. Adult specimens of (A) L. n. sp. W, (B) L. n. sp. F, (C) L. n. sp. K, (D) L. n. sp. J showing the aperture in side view and (E) an apertural view of an adult L. n. sp. W. In A-D the trajectory of the suture tends to deviate downwards in comparison to the trajectory of the spiral cord of the previous whorl immediately above the suture (DFST). A and D also show the loss of, or irregularities in the appearance of axial sculpture (AXRB). In E, arrowheads show the undulations formed at the edge of the parietal side of the aperture (UEPW). Scale bar = 0.2 cm.
Figure 2 in Adulthood and phylogenetic analysis in gastropods: character recognition and coding in shells of Lavigeria (Cerithioidea, Thiaridae) from Lake Tanganyika
Figure 2. Character states WGPW and APLT. An adult specimen of L. n. sp. A (left) and a juvenile (right). The adult shows a thickened (APLT) and opaque (WGPW) inner surface of the apertural lip in comparison to the juvenile. Scale bar = 0.2 cm.
Figure 1 in Adulthood and phylogenetic analysis in gastropods: character recognition and coding in shells of Lavigeria (Cerithioidea, Thiaridae) from Lake Tanganyika
Figure 1. Eight species used in this study, apertural and side views of adult specimens. (A) Lavigeria new species N. (B) L. n. sp. F. (C) L. n. sp. J. (D) L. n. sp. X. (E) L. n. sp. K. (F) L. n. sp. W. (G) L. n. sp. A. (H) L. n. sp. U. C-H all belong to the same clade. A and B belong to different clades within the genus. Scale bar = 0.2 cm.
Figure 4 in Adulthood and phylogenetic analysis in gastropods: character recognition and coding in shells of Lavigeria (Cerithioidea, Thiaridae) from Lake Tanganyika
Figure 4. Character state APDT. An adult specimen of L. n. sp. J (left) and a juvenile on the right. Notice in the adult how the parietal side of the apertural lip is completely detached from the previous whorl and a false umbilicus has developed. Scale bar = 0.2 cm.
Figure 4 in An extraordinary shift in life habit within a genus of cyclopid copepods in Lake Tanganyika
Figure 4. Eucyclops bathanalicola sp. nov. paratype female. A, antenna; B, vestigial maxilliped; C, left leg 3 and intercoxal sclerite, anterior; D, Left leg 4 and intercoxal sclerite, anterior. Scale bars: A, 100 µm, B–D, 50 µm.
Figure 1 in An extraordinary shift in life habit within a genus of cyclopid copepods in Lake Tanganyika
Figure 1. Position of Eucyclops bathanalicola sp. nov. within the mantle cavity of its host, Bathanalia straeleni. Scale bar, 1 mm. Abbreviations: ct, ctenidium; dg, digestive gland; f, foot; hgl, hypobranchial gland; int, intestine; kd, kidney; os, osphradium; ov, ovary; ovi, pallial oviduct; per, pericardium; sto, stomach; t, cephalic tentacle.
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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.