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227 results for “lake morphology”
FIGURES 73–78 in Morphological and molecular characterization of twenty-five new Diploneis species (Bacillariophyta) from Lake Tanganyika and its surrounding areas
FIGURES 73–78. Diploneis gigantea sp. nov., LM valve views, Lake Tanganyika. 74, 77. Specimens from Mutondwe Island. 73, 75, 76. Specimens from Kalambo Falls Lodge. 78. Specimen from Kalya Bay. Fig. 75. Holotype specimen. Scale bar = 10 μm.
Data and code for: "An open-source GIS approach to understanding dunefield morphologic variability at Kati Thanda (Lake Eyre), central Australia"
<p>Data and reproducabel code</p>
Data from: Genetic divergence in morphology-performance mapping between Misty Lake and inlet stickleback
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Data from: Testing for differences in rates of speciation, extinction, and morphological evolution in four tribes of cichlids endemic to Lake Tanganyika, East Africa
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Data from: A phylogenetic and morphologic context for the radiation of an endemic fauna in a long-lived lake: Corbulidae (Bivalvia; Myoida) in the Miocene Pebas Formation of western Amazonia
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Data from: Pleiotropic jaw morphology links the evolution of mechanical modularity and functional feeding convergence in Lake Malawi Cichlids
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Data from: Strong assortative mating by diet, color, size, and morphology but limited progress toward sympatric speciation in a classic example: Cameroon crater lake cichlids
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Data from: Quantitative genetic inheritance of morphological divergence in a lake-stream stickleback ecotype pair: implications for reproductive isolation
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Data from: Parallel and nonparallel ecological, morphological and genetic divergence in lake-stream stickleback from a single catchment
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Data from: Crater lake habitat predicts morphological diversity in adaptive radiations of cichlid fishes
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Data from: Eco-morphological differentiation in Lake Magadi tilapia, an extremophile cichlid fish living in hot, alkaline and hypersaline lakes in East Africa
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Data from: Increased accuracy of species lists developed for alpine lakes using morphology and cytochrome oxidase I for identification of specimens
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Data from: Ecological factors and morphological traits are associated with repeated genomic differentiation between lake and stream stickleback
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Data from: Punctuated changes in the morphology of an endemic diatom from Lake Titicaca
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Data from: Morphological stasis in an ongoing gastropod radiation from Lake Malawi
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Figure 4 from: Wang C, Wang H, Kuang X, Guo G (2021) Life stages and morphological variations of Limnocythere inopinata (Crustacea, Ostracoda) from Lake Jiang-Co (northern Tibet): a bioculture experiment. ZooKeys 1011: 25-40. https://doi.org/10.3897/zookeys.1011.56065
Figure 4 SEM photographs of L. inopinata describing carapace morphological features of different developmental stage. All the left valves are from indoor bioculture. The red parts of the instars A-6 to A-3 represent the marginal denticles.
Supplementary material 1 from: Wang C, Wang H, Kuang X, Guo G (2021) Life stages and morphological variations of Limnocythere inopinata (Crustacea, Ostracoda) from Lake Jiang-Co (northern Tibet): a bioculture experiment. ZooKeys 1011: 25-40. https://doi.org/10.3897/zookeys.1011.56065
Figure S1
Figure 5 from: Wang C, Wang H, Kuang X, Guo G (2021) Life stages and morphological variations of Limnocythere inopinata (Crustacea, Ostracoda) from Lake Jiang-Co (northern Tibet): a bioculture experiment. ZooKeys 1011: 25-40. https://doi.org/10.3897/zookeys.1011.56065
Figure 5 Appendage morphology of L. inopinata, adult female A antennule B antenna C mandible D maxilla E first thoracopod F second thoracopod G third thoracopod H uropodal rami.
Figure 3 from: Wang C, Wang H, Kuang X, Guo G (2021) Life stages and morphological variations of Limnocythere inopinata (Crustacea, Ostracoda) from Lake Jiang-Co (northern Tibet): a bioculture experiment. ZooKeys 1011: 25-40. https://doi.org/10.3897/zookeys.1011.56065
Figure 3 A Locations of Lake Jiang-Co and Lake Dali B scatter plot with mean value of KL of L. inopinata populations from A-8 stage to adult in Lake Jiang-Co and Lake Dali (Zhai et al. 2015). The rounded dot and triangle represent the growth ratio between adjacent instars C comparison between KL of L. inopinata populations from A-8 stage to adult in Lake Jiang-Co and Lake Dali (Zhai et al. 2015). The grey dotted lines suggest a growth ratio of 1.26, the value predicted by Brooks' rule.
Figure 2 from: Wang C, Wang H, Kuang X, Guo G (2021) Life stages and morphological variations of Limnocythere inopinata (Crustacea, Ostracoda) from Lake Jiang-Co (northern Tibet): a bioculture experiment. ZooKeys 1011: 25-40. https://doi.org/10.3897/zookeys.1011.56065
Figure 2 A Length versus height of left valves and microscope photographs of L. inopinata from A-8 stage to adult B Plot demonstrating the growth ratio elements KL and KH of L. inopinata from A-8 stage to adult. KL = Lm+1 / Lm, KH = Hm+1 / Hm, where KL and KH are growth ratios of mean length and height, Lm and Hm are respectively mean length and height at stage m, and Lm+1 and Hm+1 are respectively mean length and height at stage m+1. The black line suggests a growth ratio of 1.26, the value predicted by Brooks' rule. All individuals are from the indoor bioculture laboratory.
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Allen Brain Atlas
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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.