507 resultados para Haraway, Donna


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This presentation was offered as part of the CUNY Library Assessment Conference, Reinventing Libraries: Reinventing Assessment, held at the City University of New York in June 2014.

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Vol. 7; Sept. 1988; 109 p. b&w, color photographs TOC: Life at LaGuardia…2 / Activities and Events…17 / Faculty and Staff…33 / Activities at LaGuardia…49 / Graduation…71 Yearbook Committee Credits: Faculty Advisor, Vincent Banrey; Project Director, Catherine Whan; Editors: Alexandra Gomez, Juan Jimenez, GloryAnn Torres; Asst. Editor, Kenny Rosa; LAYOUT: Vincent Banrey, Marino "Tito" Cabrera, Shirley Chance, George Condors, Milton Ferreira, Maria Flores, Alexandra Gomez, Ana Lisa Gonzalez, Bernadette Henry, Juan Jimenez, Alejandro Meneses, Richard Provost, Kenny Rosa, Maria Sanchez, GloryAnn Torres, Catherine Whan, Alan O. Young; PHOTOGRAPHY: Peter Abbate, Sandra Acres, Young Baek Choi, Randy Fader Smith, Milton Ferriera, Alexandra Gomez, Juan Jimenez, Seymour Lerman, Chuck Lindsey, Victoria Pamias, Richard Provost, Alan Scribner, Frank Tocco, GloryAnn Torres, Catherine Whan. ART: Jose Marti (Cover Design and Division Pages); Martin Carrichner, Jose Marti (Endsheet Design), Arnold Escalera, Jacqui Fernandez, Richard Massey, Alejandro Meneses; WRITING: Anthony Archer, Alexandra Bastidas, Joie Fadde, Alexandra Gomez, Ana Lisa Gonzalez, Doreen Hansen, Bernadette Henry, Sarah Hudson, Juan Jimenez, Donna Libert, Cathy Passiglia, Jody Pincus, Richard Provost, Kenny Rosa, Maria Sanchez, Alan Scribner, Christiana Sommerville, GloryAnn Torres, Catherine Whan, Alan O. Young; SPECIAL THANKS: Blanca Arbito, Classic Studios, Edward Hollins, Umoja Kwanguvu, Kelly Johnson and the LaGuardia Archives, Andrew Saluga and Recreation Staff, Ted Schiffman of Taylor Publishing.

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To understand the biology and evolution of ruminants, the cattle genome was sequenced to about sevenfold coverage. The cattle genome contains a minimum of 22,000 genes, with a core set of 14,345 orthologs shared among seven mammalian species of which 1217 are absent or undetected in noneutherian (marsupial or monotreme) genomes. Cattle-specific evolutionary breakpoint regions in chromosomes have a higher density of segmental duplications, enrichment of repetitive elements, and species-specific variations in genes associated with lactation and immune responsiveness. Genes involved in metabolism are generally highly conserved, although five metabolic genes are deleted or extensively diverged from their human orthologs. The cattle genome sequence thus provides a resource for understanding mammalian evolution and accelerating livestock genetic improvement for milk and meat production.

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The imprints of domestication and breed development on the genomes of livestock likely differ from those of companion animals. A deep draft sequence assembly of shotgun reads from a single Hereford female and comparative sequences sampled from six additional breeds were used to develop probes to interrogate 37,470 single-nucleotide polymorphisms (SNPs) in 497 cattle from 19 geographically and biologically diverse breeds. These data show that cattle have undergone a rapid recent decrease in effective population size from a very large ancestral population, possibly due to bottlenecks associated with domestication, selection, and breed formation. Domestication and artificial selection appear to have left detectable signatures of selection within the cattle genome, yet the current levels of diversity within breeds are at least as great as exists within humans.

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Despite recent advances, patients with malignant brain tumors still have a poor prognosis. Glioblastoma (WHO grade 4 astrocytoma), the most malignant brain tumor, represents 50% of all astrocytomas, with a median survival rate of <1 year. It is, therefore, extremely important to search for new diagnostic and therapeutic approaches for patients with glioblastoma. This study describes the application of superparamagnetic nano-particles of iron oxide, as well as monoclonal antibodies, of immunophenotypic significance, conjoined to quantum dots for the ultrastructural assessment of glioblastoma cells. For this proposal, an immunophenotypic study by flow cytometry was carried out, followed by transmission electron microscopy analysis. The process of tumor cell labeling using nanoparticles can successfully contribute to the identification of tumorigenic cells and consequently for better understanding of glioblastoma genesis and recurrence. In addition, this method may help further studies in tumor imaging, diagnosis, and prognostic markers detection.