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32 results for “feminisms”
Fig. 5 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 5. Relationship between temperature and sex ratio. The red dotted line denotes the pivotal temperature according to the TSD software and calibrated with histology of gonads from dead Hawksbill hatchlings.
Fig. 3 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 3. Hatching success of Eretmochelys imbricata on the beaches of Chenkan, Punta Xen, and Celestún, Yucatán Peninsula (Mexico).
Fig. 2 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 2. (a) Incubation temperatures of Eretmochelys imbricata, during the TSP, on the beaches of Chenkan, Punta Xen, and Celestún, during two incubation periods (June–July and August–September). The dotted line indicates the pivotal temperature. (b) Percentages of females in the monitored nests on the nesting beaches of the western Yucatán Peninsula (Mexico). The red asterisks show where the differences were significant (p <0.05) among nests, by beach.
Fig. 1 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 1. Geographical locations of the monitored nests of Eretmochelys imbricata, as well as the beaches studied and their images. 1) Celestún, 2) Punta Xen, and 3) Chenkan.
Fig. 4 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 4. Representative histology sections of gonads from dead Hawksbill hatchlings in the monitored nests. (a) Testis (100 µm), (b) Ovary (100 µm), (c) Testis (20 µm), (d) Müllerian ducts of male (20 µm), (e) Ovary (20 µm), (f) Müllerian ducts of female (20 µm). The dotted areas in (a) and (b) indicate the sites of the higher magnifications shown in (c) and (e), where the dotted line indicates the cortex, M indicates the medulla region, and C indicates the cortex region.
Supplemental material for the paper "Genotype-phenotype correlation, clinical presentation, and feminizing surgery in children with congenital adrenal hyperplasia - a nationwide study"
<p>This dataset provides documentation for the translation between historical nomenclature for variants in the CYP21A2 gene to the Human genome variation society nomenclature. </p> <p>Furthermore, it provides data on all Danish CYP21A2 variants included in the study and the translation into genotype groups: Null, A, B, C, and D. </p>
Data from: Wolbachia-induced meiotic drive and feminization is associated with an independent occurrence of selective mitochondrial sweep in a butterfly
Maternally inherited Wolbachia endosymbionts manipulate arthropod reproduction in various ways. In the butterfly Eurema mandarina, a cytoplasmic incompatibility-inducing Wolbachia strain wCI and the associated mtDNA haplotypes are known to originate from the sister species Eurema hecabe, which offered a good case study for microbe-mediated hybrid introgression. Besides wCI, some females with the Z0 karyotype harbour a distinct Wolbachia strain wFem, which causes all-female production by meiotic drive and feminization. We report that a considerable proportion of E. mandarina females (65.7%) were infected with both wCI and wFem (CF) on Tanegashima Island. While females singly infected with wCI (C) produced offspring at a 1 : 1 sex ratio, CF females produced only females. Although Z-linked sequence polymorphism showed no signs of divergence between C and CF females, mtDNA split into two discrete clades; one consisted of C females and the other CF females, both of which formed a clade with E. hecabe but not with uninfected E. mandarina. This suggests that CF matrilines also, but independently, experienced a selective sweep after hybrid introgression from E. hecabe. Distinct evolutionary forces were suggested to have caused C and CF matrilines to diverge, which would be irreversible because of the particular phenotype of wFem.
Study to Determine Interaction Between the Use of Feminizing Hormone Therapy and Antiretroviral Agents Concomitantly Among Transgender Women
ClinicalTrials.gov study NCT03620734. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Assessment of Drug-drug Interactions Between Feminizing Hormone Therapy and Emtricitabine/Tenofovir Alafenamide Concomitantly for Pre-exposure Prophylaxis Among Transgender Women
ClinicalTrials.gov study NCT04590417. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Data from: Feminizing Wolbachia endosymbiont disrupts maternal sex chromosome inheritance in a butterfly species
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Data from: Wolbachia-induced meiotic drive and feminization is associated with an independent occurrence of selective mitochondrial sweep in a butterfly
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Data from: Environmental levels of oestrogenic and antiandrogenic compounds feminize digit ratios in male rats and their unexposed male progeny
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Data from: Sex-antagonistic genes, XY recombination, and feminized Y chromosomes
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an instrumental role in the arrest of XY recombination and ensuing Y-chromosome degeneration. Although this model might account for the highly differentiated sex chromosomes of birds and mammals, it does not fit the situation of many lineages of fish, amphibians or non-avian reptiles, where sex chromosomes are maintained homomorphic through occasional XY recombination and/or high turnover rates. Such situations call for alternative explanatory frameworks. A crucial issue at stake is the effect of XY recombination on the dynamics of SA genes and deleterious mutations. Using individual-based simulations, we show that a complete arrest of XY recombination actually benefits females, not males. Male fitness is maximized at different XY-recombination rates depending on SA selection, but never at zero XY recombination. This should consistently favor some level of XY recombination, which in turn generates a recombination load at sex-linked SA genes. Hill-Robertson interferences with deleterious mutations also impede the differentiation of sex-linked SA genes, to the point that males may actually fix feminized phenotypes when SA selection and XY recombination are low. We argue that sex chromosomes might not be a good localization for SA genes, and sex conflicts seem better solved through the differential expression of autosomal genes.
Motivating a Dialogue between Andean Past Studies, Decolonial Feminisms and Indigenous Women's Leadership
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"Main Ideas of 'Data Feminism' and Their Connections from "Data Feminism" by Catherine D'Ignazio and Lauren F. Klein (2023)
<p>The generated graph is a visual representation of the main ideas and principles from the book "Data Feminism" by Catherine D'Ignazio and Lauren F. Klein, supplemented with additional insights from feminist AI ethics. The graph consists of a structured table that outlines key concepts, their descriptions, and their connections to broader themes in data science and AI.</p> <p><strong>Title:</strong> The title at the top of the graph reads "Main Ideas of 'Data Feminism' and Their Connections," emphasizing the comprehensive nature of the ideas presented.</p> <p><strong>Table Content:</strong></p> <ul> <li><strong>Main Idea</strong>: This column lists the core principles of "Data Feminism," such as "Examine Power," "Challenge Power," "Elevate Emotion and Embodiment," "Rethink Binaries and Hierarchies," "Embrace Pluralism," "Consider Context," "Make Labor Visible," "Environmental Impact," and "Consent."</li> <li><strong>Description</strong>: Each main idea is accompanied by a concise description that explains the principle in more detail. For example, "Examine Power" is described as "Analyze power dynamics within data science."</li> <li><strong>Connection</strong>: This column provides context on how each principle connects to broader themes and practices in data science and AI. For instance, "Examine Power" is linked to the idea that "Power influences data collection and interpretation."</li> </ul> <p><strong>Caption:</strong> At the bottom of the graph, a caption provides the sources for the information presented, citing both "Data Feminism" and the authors' subsequent paper "Data Feminism for AI."</p> <p><strong>Visual Design:</strong> The table is neatly arranged with three rows: the title, the main table content, and the caption. The layout is designed to be clear and easy to read, with a focus on conveying the relationships between the principles of "Data Feminism" and their practical applications in AI.</p> <p><strong>Purpose:</strong> The graph serves as a visual summary, making it easier for readers to understand and recall the core ideas of "Data Feminism" and how they can be applied to create more equitable and socially responsible AI technologies.</p> <p>This graph is an addition to the paper, providing a concise and visually appealing overview of the book's main concepts and their relevance to feminist AI ethics.</p> <p>D'ignazio, C., & Klein, L. F. (2023). <em>Data feminism</em>. MIT press.</p> <p>Klein, L., & D'Ignazio, C. (2024, June). Data Feminism for AI. In <em>The 2024 ACM Conference on Fairness, Accountability, and Transparency</em> (pp. 100-112).</p> <p> </p>
Evaluation of Outcomes of Feminizing Genitoplasty in Children With Disorders of Sex Development
ClinicalTrials.gov study NCT04195490. IPD Sharing: Not stated. Countries: 0. Publications: 8.
Data from: Sex-antagonistic genes, XY recombination, and feminized Y chromosomes
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Feminized behavior and gene expression in the BNST/POA in a novel mouse model of Klinefelter Syndrome
GEO Series GSE48783. Mus musculus. 31 samples. Type: Expression profiling by array.
Feminized behavior and gene expression in the striatum in a novel mouse model of Klinefelter Syndrome
GEO Series GSE48784. Mus musculus. 38 samples. Type: Expression profiling by array.
Maternal exposure to ozone during implantation promotes a feminized transcriptomic profile in the male adolescent liver
GEO Series GSE285988. Rattus norvegicus. 23 samples. Type: Expression profiling by high throughput sequencing.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.