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41.

Background

Although, person centred care has for a long time been an important approach to nursing care, it is often not a reality in the clinical environment. The focus of health research has, until recently, been on the physical aspects of a persons’ illness and this has influenced how care is delivered. There is a need to broaden the focus from the illness to the person who is ill. A holistic approach to the persons’ social and cultural experience of their illness will aid health care professions to provide person centred care.This paper will make the argument that narrative inquiry is a well suited to health care research in general and nursing research in particular as it focuses its inquiry on the individual person's experience of their illness – ‘what matters’ from the person's point of view. Narrative inquiry explores the narrative from a temporal, social and spatial view.

Conclusions

There is a need to find what is important from the patients’ ‘point of view’ to optimise care. Narrative Inquiry is a methodology often used in education and sociology. It is a gentle relational methodology that has the capability to uncover what is important to the person in their situation. The research findings are presented narratively, that is, informally and engagingly for the consumer of the research.  相似文献   
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AIDS and Behavior - While pre-exposure prophylaxis (PrEP) is a key HIV prevention tool for adolescents and young adults (AYAs), its initiation and sustained use is shaped by AYAs’ unique...  相似文献   
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The effect of an educational program upon hospital antibiotic use   总被引:3,自引:0,他引:3  
The effect of an educational program on the use of antibiotics was studied in a university-affiliated Veterans Administration Hospital. Following an initial survey of antibiotic usage, educational presentations of the collected data were made to the hospital staff which included specific prescribing errors and alternative recommendations. Then, another survey was conducted. Measurable changes following the educational presentations were limited to decreasing costs of unjustified antibiotic use. An effect was noted in decreasing unjustified use of antibiotics in prophylactic situations, but this remained the most common misuse. Thus, an educational program directed at specific prescribing errors produced little noticeable effect on the use of antibiotics in a university-affiliated hospital. The study indicates that more direct measures, such as control of use of particular antibiotics, may be required to produce a meaningful change in prescribing practices.  相似文献   
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Community Mental Health Journal - The mortality disparity for persons with schizophrenia spectrum disorders (SSDs) due to cardiovascular disease is a devastating problem. Many risk factors are...  相似文献   
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It is now well-established that boundaries separating tetragonal-like (T) and rhombohedral-like (R) phases in BiFeO3 thin films can show enhanced electrical conductivity. However, the origin of this conductivity remains elusive. Here, we study mixed-phase BiFeO3 thin films, where local populations of T and R can be readily altered using stress and electric fields. We observe that phase boundary electrical conductivity in regions which have undergone stress-writing is significantly greater than in the virgin microstructure. We use high-end electron microscopy techniques to identify key differences between the R–T boundaries present in stress-written and as-grown microstructures, to gain a better understanding of the mechanism responsible for electrical conduction. We find that point defects (and associated mixed valence states) are present in both electrically conducting and non-conducting regions; crucially, in both cases, the spatial distribution of defects is relatively homogeneous: there is no evidence of phase boundary defect aggregation. Atomic resolution imaging reveals that the only significant difference between non-conducting and conducting boundaries is the elastic distortion evident – detailed analysis of localised crystallography shows that the strain accommodation across the R–T boundaries is much more extensive in stress-written than in as-grown microstructures; this has a substantial effect on the straightening of local bonds within regions seen to electrically conduct. This work therefore offers distinct evidence that the elastic distortion is more important than point defect accumulation in determining the phase boundary conduction properties in mixed-phase BiFeO3.

The localized crystallography of conducting and non-conducting phase boundaries in mixed-phase BiFeO3 is directly compared using scanning transmission electron microscopy techniques.

The complexity of electrical conductivity in domain walls in BiFeO3 (and in ferroics in general) is as multifaceted as ever. Various influences such as point defect accumulation, octahedral rotations, magnetic interactions and electrostatic discontinuities are thought to be possible mechanisms at play,1–8 either alone or in combination. The research area of domain wall conductivity is currently flourishing and the view that domain walls offer exciting prospects in terms of engineering systems in which the domain walls act as distinct identities to the domains which they separate is now widely accepted. We believe that it is pertinent timing to address a lack of experimental investigations providing meaningful direct comparison of the localised crystallography and defect structure responsible for observed enhanced electrical conductivity. This study is stimulated by the interesting discoveries of conductive phase boundaries, specifically, in mixed-phase BiFeO3.9,10 By tuning the local populations of the tetragonal-like (T) and rhombohedral-like (R) phases in BiFeO3 thin films via electric and stress fields, we demonstrate that electrical conductivity along phase boundaries is significantly greater after stress-writing. We probe the key crystallographic differences between the R–T boundaries created via stress, compared to those already present in the as-grown microstructures, to disentangle the mechanism determining electrical conduction in mixed-phase BiFeO3.The growth of BiFeO3 on substrates enforcing a large in-plane compressive strain drives the formation of monoclinic phases that are approximately rhombohedral (R) and tetragonal (T). Similar to materials such as PbZr0.53Ti0.47O3 that straddle a morphotropic phase boundary, highly strained BiFeO3 can readily undergo phase transitions between the R and T phases (and vice versa). The high-strain T phase exhibits a tetragonal-like symmetry (almost P4mm) with a c/a ratio of ∼1.2; the Fe displacement towards one of the apical oxygens along [001]pc results in fivefold oxygen coordinated Fe, and an enhanced polarisation roughly 1.5 times that of the bulk single crystal.7,11 The R phase, on the other hand, resembles the rhombohedral bulk phase (almost R3c), where the Fe is octahedrally coordinated, with a ferroelectric distortion along the pseudocubic [111]pc axis, and antiferrodistortive rotations of the FeO6 octahedra around [111]pc occur. The crystal structure and misfit strain associated with the native (as-grown) R and T phases is reported elsewhere, both theoretically12–15 and experimentally,6,7,16–21 making it well-known that the ferroelectric and the antiferrodistortive degrees of freedom in mixed-phase BiFeO3 set it apart from other typical perovskites. Notably, despite the ample evidence provided on phase reversal and characterisation of the as-grown phases, most of the literature (especially regarding electric field cycling of the mixed-phase state) has been primarily concerned with X-ray diffraction (XRD) i.e. global measurements that will not necessarily pick up on the more subtle, atomic-scale aspects of structure local to the phase boundaries. The importance of the study described herein resides in the uniqueness of creating microstructures such that both the as-grown and stress-induced R–T phase boundaries can be included within one single cross-sectional transmission electron microscopy (TEM) lamella; this gives the best possible scenario to allow meaningful direct comparison of the localised crystallography and defect structure responsible for the observed enhanced electrical conductivity found at stress-induced phase boundaries.  相似文献   
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