883 research outputs found

    Putting the public back into public health

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    Legal Status of the Educational Accrediting Agency Problems in Judical Supervision and Governmental Regulation

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    The Legal Status of the Educational Accrediting Agency

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    The educational accrediting agency is a powerful instrumentality in the United States-able, with minimal governmental interference, to set policies and standards in an area of vital concern to the public. As education becomes more complex, and as our society increasingly relies upon educational training and upon the standards by which that training is evaluated, the impact which the accrediting agency will have upon educational institutions and students enrolled in them will correspondingly increase. For all its influence, however, the accrediting agency occupies an ambiguous legal position. Therefore, in order to lay the framework for a more thorough understanding of the status of accrediting agencies in our legal system, this Comment will analyze the actual and potential judicial and legislative restraints on their activities

    California Police Sexual Misconduct Arrest Cases, 2005-2011

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    This report was prepared at the request of the California Research Bureau. The data are from a larger study on police crime in the United States. Police crimes are those crimes committed by sworn law enforcement officers given the general powers of arrest at the time the offense was committed and/or at the time when the officer was arrested. These crimes can occur while the officer is on- or off-duty and include offenses committed by state, county, municipal, tribal, or special law enforcement agencies. Police crimes damage the occupational integrity of police officers, the organizational legitimacy of the employing law enforcement agency, and the overall authority and legitimacy of the law enforcement community. According to Stinson’s (2009) typology of police crime, nearly all crime committed by sworn law enforcement officers is alcohol-related, drug-related, sex-related, violence-related, and/or profit-motivated. This report focuses on the sex-related police crime arrests of sworn law enforcement officers in the State of California during the years 2005-2011

    Dysfunctional stem and progenitor cells impair fracture healing with age

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    Successful fracture healing requires the simultaneous regeneration of both the bone and vasculature; mesenchymal stem cells (MSCs) are directed to replace the bone tissue, while endothelial progenitor cells (EPCs) form the new vasculature that supplies blood to the fracture site. In the elderly, the healing process is slowed, partly due to decreased regenerative function of these stem and progenitor cells. MSCs from older individuals are impaired with regard to cell number, proliferative capacity, ability to migrate, and osteochondrogenic differentiation potential. The proliferation, migration and function of EPCs are also compromised with advanced age. Although the reasons for cellular dysfunction with age are complex and multidimensional, reduced expression of growth factors, accumulation of oxidative damage from reactive oxygen species, and altered signaling of the Sirtuin-1 pathway are contributing factors to aging at the cellular level of both MSCs and EPCs. Because of these geriatric-specific issues, effective treatment for fracture repair may require new therapeutic techniques to restore cellular function. Some suggested directions for potential treatments include cellular therapies, pharmacological agents, treatments targeting age-related molecular mechanisms, and physical therapeutics. Advanced age is the primary risk factor for a fracture, due to the low bone mass and inferior bone quality associated with aging; a better understanding of the dysfunctional behavior of the aging cell will provide a foundation for new treatments to decrease healing time and reduce the development of complications during the extended recovery from fracture healing in the elderly

    Bone area provides a responsive outcome measure for bone changes in short-term knee osteoarthritis studies

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    Objective: This post-hoc study analyzed 3D bone area from an osteoarthritis (OA) cohort demonstrating no change in cartilage thickness. Methods: 27 women with painful medial knee OA had MRI at 0, 3 and 6 months. Images were analysed using active appearance models. Results: At 3 and 6 months the mean change in medial femoral bone area was 0.34% [95% CI 0.04, 0.64] and 0.61% [CI 0.32, 0.90]. 40% of subjects had progression > SDD at 6 months. Conclusion: In this small cohort at high risk of OA progression, bone area changed at 3 and 6 months when cartilage morphometric measures did not

    PucC and LhaA direct efficient assembly of the light-harvesting complexes in <i>Rhodobacter sphaeroides</i>

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    The mature architecture of the photosynthetic membrane of the purple phototroph Rhodobacter sphaeroides has been characterised to a level where an atomic-level membrane model is available, but the roles of the putative assembly proteins LhaA and PucC in establishing this architecture are unknown. Here we investigate the assembly of light-harvesting LH2 and reaction centre-light-harvesting1-PufX (RC-LH1-PufX) photosystem complexes using spectroscopy, pull-downs, native gel electrophoresis, quantitative mass spectrometry and fluorescence lifetime microscopy to characterise a series of lhaA and pucC mutants. LhaA and PucC are important for specific assembly of LH1 or LH2 complexes, respectively, but they are not essential; the few LH1 subunits found in ΔlhaA mutants assemble to form normal RC-LH1-PufX core complexes showing that, once initiated, LH1 assembly round the RC is cooperative and proceeds to completion. LhaA and PucC form oligomers at sites of initiation of membrane invagination; LhaA associates with RCs, bacteriochlorophyll synthase (BchG), the protein translocase subunit YajC and the YidC membrane protein insertase. These associations within membrane nanodomains likely maximise interactions between pigments newly arriving from BchG and nascent proteins within the SecYEG-SecDF-YajC-YidC assembly machinery, thereby co-ordinating pigment delivery, the co-translational insertion of LH polypeptides and their folding and assembly to form photosynthetic complexes. LhaA and PucC form oligomers at the sites where invagination of the cytoplasmic membranes is initiated, and they play important roles in photosystem assembly in the purple phototrophic bacterium Rhodobacter sphaeroides. Establishing the architecture of the photosynthetic membrane involves interplay between LhaA, reaction centre complexes, bacteriochlorophyll synthase, the protein translocase subunit YajC, and the YidC membrane protein insertase. These associations likely coordinate the delivery of pigments and the membrane insertion, folding and assembly of photosystem polypeptides
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