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216 results for “Magna”
FIGURE 2 in A discussion of morphological differences within Claassenia qingzanga Xiang, Huo & Du, 2022 (Plecoptera: Perlidae) based on molecular data and a redescription of C. magna Wu, 1948
FIGURE 2. Claassenia magna Wu, 1948. Male head and pronotum, dorsal view.
FIGURE 4 in A discussion of morphological differences within Claassenia qingzanga Xiang, Huo & Du, 2022 (Plecoptera: Perlidae) based on molecular data and a redescription of C. magna Wu, 1948
FIGURE 4. Claassenia magna Wu, 1948. A. Aedeagus, dorsal view; B. Aedeagus, ventral view.
FIGURE 1 in A discussion of morphological differences within Claassenia qingzanga Xiang, Huo & Du, 2022 (Plecoptera: Perlidae) based on molecular data and a redescription of C. magna Wu, 1948
FIGURE 1. Claassenia magna Wu, 1948. Male adult, dorsal view.
FIGURE 7 in A discussion of morphological differences within Claassenia qingzanga Xiang, Huo & Du, 2022 (Plecoptera: Perlidae) based on molecular data and a redescription of C. magna Wu, 1948
FIGURE 7. Claassenia magna Wu, 1948. A. Egg and collar, lateral view; B. Egg, surface details.
FIG. 8. — Liotipoma magna n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)
FIG. 8. — Liotipoma magna n. sp., male shells: A-D, holotype (MNHN 24766, stn DS103), off W side Tutuba Island, Espiritu Santo, Vanuatu, 70-80 m, H 3.6, D 6.8 mm; E-H, Paratype (MNHN 24767, stn DS104), 80 m off W side Tutuba Island, Espiritu Santo, Vanuatu, H 3.4, D 5.3 mm. Scale bars: 1 mm.
Figure 2 from: Kainulainen K, Razafimandimbison SG (2015) Chapelieria magna, a new species of Rubiaceae from eastern Madagascar. PhytoKeys 44: 89-95. https://doi.org/10.3897/phytokeys.44.8513
Figure 2 - Chapelieria magna. A Leaf B Longitudinal section of corolla. C Stigma D Part of an inflorescence with flower buds and bracts E Longitudinal section of ovary and calyx F Fruit G Seed. Drawings from the holotype: Razafimandimbison et al. 1240, by Kent Kainulainen.
Figure 1 from: Kainulainen K, Razafimandimbison SG (2015) Chapelieria magna, a new species of Rubiaceae from eastern Madagascar. PhytoKeys 44: 89-95. https://doi.org/10.3897/phytokeys.44.8513
Figure 1 - Chapelieria magna. A Habit and habitat B Flowering branch. Note the apical calyptrate stipules (one leaf removed) C Flower buds, and fruits in longitudinal and transversal sections, on leaf (×1.5) D Fruits E Inflorescence on leaf (×1.5). Photographs by Kent Kainulainen.
Daphnia magna life history data for caged and uncaged individuals (lab and mesocosm)
<p>Life history studies are often conducted in a laboratory environment where it is easy to assay individual animals. However, factors such as temperature, photoperiod, and nutrition vary greatly between laboratory and field environments, making it difficult to compare results. Consequently, there is a need to study individual life histories in the field, but this is currently difficult in systems such as Daphnia where it is not possible to mark and track individual animals. Here, we present a proof of principle study showing that field cages are a reliable method for collecting individual-level life history data in Daphnia magna. As a first step, we compared the life history of paired animals reared outside and inside cages to test the hypothesis that cages allow free-flow of algal food resources. We then used a semi-natural mesocosm setting to compare the performance of individual field cages versus glass jars re-filled with mesocosm water each day. We found that cages did not inhibit food flow, and that differences in life histories between three clones detected in the jar assays were also detectable using the much less labour-intensive field cages. We conclude that field cages are a feasible approach for collecting individual-level life history data in systems such as Daphnia where individual animals cannot be marked and tracked.</p>
Magna Mitral - 23mm
ClinicalTrials.gov study NCT01312779. IPD Sharing: Not stated. Countries: 2. Publications: 0.
Magna® Mitral Pericardial Bioprostheses Post-Approval Study Protocol
ClinicalTrials.gov study NCT00853632. IPD Sharing: NO. Countries: 4. Publications: 0.
Parasite-mediated selection in a natural metapopulation of Daphnia magna
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Data from: Rapid evolution of antioxidant defense in a natural population of Daphnia magna
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Data from: The effects of natural and anthropogenic microparticles on individual fitness in Daphnia magna
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Data from: Resistance to a bacterial parasite in the Crustacean Daphnia magna shows Mendelian segregation with dominance
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Data from: Do microplastic particles affect Daphnia magna at the morphological, life history and molecular level?
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Data from: How clonal are clones? A quest for loss of heterozygosity during asexual reproduction in Daphnia magna
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Data from: Parasitism drives host genome evolution: insights from the Pasteuria ramosa - Daphnia magna system
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Genomic and acoustic differences separate Lilian’s Meadowlark (Sturnella magna lilianae) from Eastern (S. magna) and Western (S. neglecta) Meadowlarks
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Data from: An SNP-based second-generation genetic map of Daphnia magna and its application to QTL analysis of phenotypic traits
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Data from: Local adaptation of sex-induction in a facultative sexual crustacean: insights from QTL mapping and natural population of Daphnia magna
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