962 resultados para Kevin Kieran Award


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Obverse: Canada state emblem, a maple leaf, within the leaf there is a group of trees. Reverse: The area abounds in tree tops, all of them bending toward the center of the medal.

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"Each night the men look so surprised I change my sex before their eyes Tell me if you can What makes a man a man" - Charles Aznavour, ‘What makes a man a man (Comme ils disent)’. In (the few) Western jurisdictions in which marriage remains a forensic artefact constructed on the basis of a man|woman binary, the anatomical and heteronormative assumptions which underlie the construction of marriage remain as artificial constructs which do not map well (if indeed at all) to current social, or even medical, approaches to gender. In Re Kevin (Validity of Marriage of Transsexual) [2001] FamCA 1074, Justice Chisolm sought to recast the forensic ascription of sex against a broader set of criteria, expanding the range of sexually dimorphic anatomy used to determine sex for the purposes of marriage in Australia and incorporating observations of psycho-social gender-differentiation as factors relevant to the ultimate question for the Court — ‘What makes a man a man?’ Yet neither expansion is unproblematic. This article explores this fundamental forensic question against the background of Aznavour’s ‘Comme ils dissent’, in which the persona of un(e) stripteaseuse travesti struggles to answer precisely the same question. It concludes that Re Kevin might offer no more sophisticated an analysis of the lived reality of trans than Aznavour’s ecdysiast fag — not trans, but un travesti: "I shop and cook and sew a bit Though mum does too, I must admit I do it better."

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Tutkielman tehtävänä on selvittää, mitä Kevin Vanhoozer tarkoittaa kommunikatiivisella teismillä. Tutkielman tärkein lähde on Kevin Vanhoozerin teos Remythologizing Theology, jossa hän esittelee kommunikatiivista teismiä. Kommunikatiivinen teismi liittyy yhteen Vanhoozerin kehittämän remytologisaation metodin kanssa, joka kehittelee eteenpäin hänen aikaisemman tuotantonsa hermeneuttisia teemoja. Tutkielmassa esitellään Vanhoozerin puheaktiteoriapohjaista käsitystä kommunikaatiosta ja jumalallisesta draamasta osana hänen kommunikatiivista teismiään, sekä tarkastellaan Vanhoozerin hermeneutiikkaa, joka on kommunikatiivisen teismin taustalla. Kommunikatiivinen teismi käsittelee Jumalan kommunikaatiota ja hänen olemustaan tämän kommunikaation perusteella. Kommunikatiivinen teismi tarkastelee Jumalan kommunikaatiota Raamatussa ja sitä, miten kommunikaatio ilmenee sekä Kolminaisuuden sisällä että Jumalan ja ihmisten välillä. Jumalan kommunikaation sisältönä on kommunikatiivisen teismin mukaan valo, rakkaus ja elämä eri tavoin. Jumalan ja maailman suhdetta tarkastellaan kirjailija-metaforan kautta: Jumala on maailman kirjailija, maailma hänen teoksensa ja ihmiset sen sankareita.

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Orthopedic tissue engineering requires biomaterials with robust mechanics as well as adequate porosity and permeability to support cell motility, proliferation, and new extracellular matrix (ECM) synthesis. While collagen-glycosaminoglycan (CG) scaffolds have been developed for a range of tissue engineering applications, they exhibit poor mechanical properties. Building on previous work in our lab that described composite CG biomaterials containing a porous scaffold core and nonporous CG membrane shell inspired by mechanically efficient core-shell composites in nature, this study explores an approach to improve cellular infiltration and metabolic health within these core-shell composites. We use indentation analyses to demonstrate that CG membranes, while less permeable than porous CG scaffolds, show similar permeability to dense materials such as small intestine submucosa (SIS). We also describe a simple method to fabricate CG membranes with organized arrays of microscale perforations. We demonstrate that perforated membranes support improved tenocyte migration into CG scaffolds, and that migration is enhanced by platelet-derived growth factor BB-mediated chemotaxis. CG core-shell composites fabricated with perforated membranes display scaffold-membrane integration with significantly improved tensile properties compared to scaffolds without membrane shells. Finally, we show that perforated membrane-scaffold composites support sustained tenocyte metabolic activity as well as improved cell infiltration and reduced expression of hypoxia-inducible factor 1α compared to composites with nonperforated membranes. These results will guide the design of improved biomaterials for tendon repair that are mechanically competent while also supporting infiltration of exogenous cells and other extrinsic mediators of wound healing.

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