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21.
Deborah R. Gordon 《Culture, medicine and psychiatry》1990,14(2):275-297
Individuals and societies embody illnesses in different ways, in part determined by the way a person knows and lives his or her diagnosis and prognosis. Based on research in Northern Italy, on the experiences and meanings of cancer and on the practice of nondisclosure of the diagnosis, we find nondisclosure reflects a world divided - life/death, good/bad, mind/body — with the unwanted converted to other. The strong association of cancer with death, suffering, and hopelessness in much of Italy, coupled with the tremendous power attributed to naming and sentencing makes nondisclosure a major mechanism for keeping the condemned in this social world, and keeping death, decay, and suffering in the other. It is the social reality that is dominant here, such that informing a patient of cancer can be tantamount to social death.
Résumé Les individus et les sociétés incorporent la maladie de façon différente, déterminée en partie de comment une personne connait et vit son diagnostic et prognostic. A partir de la recherche des experiences des significations du cancer et de la pratique de ne pas dire la diagnostic au Nord de l'Italie, on a remarqué que l'habitude de ne rien dire reflète un monde séparé entre la vie et la mort, entre le bon et le mal, entre l'esprit et le corps, de sorte que ce qui West pas voulu soit transfomé en l'autre. L'association forte du cancer à la mort, à la souffrance, au désespérance en toute l'Italie, unie au grand pouvoir donne au fait de dénommer et de donner une sentence, rend ne pas dire un méchanisme important pour garder le condamnd dans ce monde social et pour garder la mort, la décadence et la souffrance dans l'autre. C'est la réalité sociale qui est ici dominante, tel que le fait d'informer un patient de cancer soit comme une mort sociale.相似文献
22.
A new major histocompatibility complex class I b gene expressed in the mouse blastocyst and placenta
Susan L. Sipes Maxine V. Medaglia Deborah L. Stabley Craig S. DeBruyn Mark S. Alden Vicki Catenacci C. P. Landel 《Immunogenetics》1996,45(2):108-120
Because of the role major histocompatibility complex (MHC) class I b molecules may play during mouse embryonic development,
we thought it would be interesting to search for additional MHC class I b molecules that might be expressed in preimplantation
embryos, and in particular in the trophoblastic lineage. We therefore screened a mouse preimplantation blastocyst cDNA library
for MHC class I sequences. This search led to the identification and characterization of a new MHC class I b gene, blastocyst MHC. Sequences identical to the exons and 3′ untranslated region of this gene have been found in many laboratory mouse strains,
as well as in the related mouse species Mus spreciligus. The presence of this gene in mouse strains of different MHC class I haplotypes argues that blastocyst MHC is a unique, newly-described gene rather than a new allele of a previously described mouse MHC class I gene. Blastocyst MHC has the structure of an MHC class I b gene, with the six exons characteristic of T-region genes. It is linked to H2-D. The amino acid sequence encoded by this gene maintains all the features of a functional antigen-presentation domain. The
blastocyst MHC gene, like the human class I b gene HLA-G, is expressed at the blastocyst stage and in the placenta, and may be the mouse analog for HLA-G.
Received: 31 May 1996 / Revised: 19 August 1996 相似文献
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Michael Dean J. Claiborne Stephens Cheryl Winkler Deborah A. Lomb Mark Ramsburg Raleigh Boaze Claudia Stewart Lauren Charbonneau David Goldman Bernard J. Albaugh James J. Goedert R. Palmer Beasley Lu-Yu Hwang Susan Buchbinder Michael Weedon Patricia A. Johnson Mary Eichelberger Stephen J. O'Brien 《American journal of human genetics》1994,55(4):788-808
A panel of 257 RFLP loci was selected on the basis of high heterozygosity in Caucasian DNA surveys and equivalent spacing throughout the human genome. Probes from each locus were used in a Southern blot survey of allele frequency distribution for four human ethnic groups: Caucasian, African American, Asian (Chinese), and American Indian (Cheyenne). Nearly all RFLP loci were polymorphic in each group, albeit with a broad range of differing allele frequencies (δ). The distribution of frequency differences (δ values) was used for three purposes: (1) to provide estimates for genetic distance (differentiation) among these ethnic groups, (2) to revisit with a large data set the proportion of human genetic variation attributable to differentiation within ethnic groups, and (3) to identify loci with high δ values between recently admixed populations of use in mapping by admixture linkage disequilibrium (MALD). Although most markers display significant allele frequency differences between ethnic groups, the overall genetic distances between ethnic groups were small (.066–.098), and <10% of the measured overall molecular genetic diversity in these human samples can be attributed to “racial” differentiation. The median δ values for pairwise comparisons between groups fell between .15 and .20, permitting identification of highly informative RFLP loci for MALD disease association studies. 相似文献
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David Crews Judith M. Bergeron James J. Bull Deborah Flores Alan Tousignant James K. Skipper Thane Wibbels 《Genesis (New York, N.Y. : 2000)》1994,15(3):297-312
In many egg-laying reptiles, the incubation temperature of the egg determines the sex of the offspring, a process known as temperature-dependent sex determination (TSD). In TSD sex determination is an “all or none” process and intersexes are rarely formed. How is the external signal of temperature transduced into a genetic signal that determines gonadal sex and channels sexual development? Studies with the red-eared slider turtle have focused on the physiological, biochemical, and molecular cascades initiated by the temperature signal. Both male and female development are active processes—rather than the crganized/default system characteristic of vertebrates with genotypic sex determination—that require simultaneous activation and suppression of testis- and ovary-determining cascades for normal sex determination. It appears that temperature accomplishes this end by acting on genes encoaing for steroidogenic enzymes and steroid hormone receptors and modifying the endocrine microenvironment in the embryo. The temperature experienced in development also has long-term functional outcomes in addition to sex determination. Research with the leopard gecko indicates that incubation temperature as well as steroid hormones serve as organizers in shaping the adult phenotype, with temperature modulating sex hormone action in sexual differentiation. Finally, practical applications of this research have emerged for the conservation and restoration of endangered egg-laying reptiles as well as the embryonic development of reptiles as biomarkers to monitor the estrogenic effects of common environmental contaminants. © 1994 Wiley-Liss, Inc. 相似文献
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Deborah Ann Roach 《Genetica》1993,91(1-3):53-64
Senescence is a decline in age-specific survival and reproduction with advancing age. Studies of evolutionary plant senescence are designed to explain this decline in life history components within the context of natural selection. A review of studies of plant demography reveals senescent declines in both annual and perennial plants, but also suggests that there are some plant species which may not be expected to show senescence. Thus, future comparative studies of closely related species, with and without senescence, should be possible. The assumptions of the major evolutionary theories of senescence are evaluated for their validity with respect to plants. Different plant species violate one or more of the assumptions of the theories, yet the consequences of violating these assumptions have never been investigated. Whereas, to date, evolutionary senescence has been studied only indirectly in plants, it is concluded that plants provide good experimental systems for clarifying our understanding of senescence in natural populations. 相似文献
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Maura Francolini Marialuisa Lavitrano Carla Lora Lamia Deborah French Luigi Frati Franco Cotelli Corrado Spadafora 《Molecular reproduction and development》1993,34(2):133-139
Mature sperm cells have the spontaneous capacity to take up exogenous DNA. Such DNA specifically interacts with the subacrosomal segment of the sperm head corresponding to the nuclear area. Part of the sperm-bound foreign DNA is further internalized into nuclei. Using end-labelled plasmid DNA we have found that 15–22% of the total sperm bound DNA is associated with nuclei as determined on isolated nuclei. On the basis of autoradiographic analysis, nuclear permeability to exogenous DNA seems to be a wide phenomenon involving the majority of the sperm nuclei. In fact, the foreign DNA, incubated with sperm cells for different lengths of time, is found in 45% (10 min) to 65% (2 hr) of the sperm nuclei. Ultrastructural autoradiography on thin sections of mammalian spermatozoa, preincubated with end-labelled plasmid DNA, shows that the exogenous DNA is internalized into the nucleus. This conclusion is further supported by ultrastructural autoradiographic analysis on thin sections of nuclei isolated from spermatozoa preincubated with end-labelled DNA. © 1993 Wiley-Liss, Inc. 相似文献
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