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7篇 您的检索式:作者名="Emma MC"
    题名 作者 年代 出处 被引量
1Apoptosis-associated release of Smac/DIABLO from mitochondria requires active caspases and is blocked by Bcl-2 显示文摘Colin Adrain Emma MC Seamus JM 2001Embo J2001,20,23:1
2Rab39a binds caspase - 1 and is required for caspase - 1 - dependent interleukin - I beta secretion 显示文摘Christine EB Emma MC Luke AJ 2009J Biol Chem2009,284,34:1
3Apoptosis-associated release of Smac/DIABLO from mitochondria requires active caspases and is blocked by Bcl-2显示文摘Adrain C Emma MC Seamos JM 2001Embo J2001,20,23:1
4First year undergrad- uate nursing students and nursing mentors:An evaluation of their experience of specialist areas as their hub practice learning environment显示文摘Jacqueline MC David L Emma LK 2015Nurse Educ Pract2015,6,5:1
5Apoptosis 2 associated release of Smac/DIABLO from mitochondria requires active caspases and is blocked by Bcl-2显示文摘Adrain C Emma MC Seamos JM 2001Embo J2001,20,23:1
6Hypo-activity induced skeletal muscle atrophy and potential nutritional interventions: A review显示文摘Periods of hypo-activity result in profound changes in skeletal muscle morphology and strength. This review primarily addresses the differential impact of de-training, bed-rest, limb immobilisation and unilateral lower limb suspension on muscle morphology, strength and fatigability. The degree of muscle atrophy differs depending on the hypo-activity model and the muscles in question, with the leg and postural muscles being the most susceptible to atrophy. Hypo-activity also results in the dramatic loss of strength that often surpasses the loss of muscle mass, and consequently, the nervous system and contractile properties adapt to adjust for this excessive loss of strength. In addition, the degree of muscle strength loss is different depending on the hypo-activity model, with immobilisation appearing to have a greater impact on strength than unloaded models. There is a step-wise difference in the magnitude of muscle loss so that, even after accounting for differential durations of interventions immobilisation ≥ unilateral lower limb suspension ≥ bed-rest ≥ de-training. Muscle fatigability varies between hypoactivity models but the results are equivocal and thismay be due to task-specific adaptations. This review also addresses potential nutritional interventions for attenuating hypo-activity induced muscle atrophy and strength declines, in the absence of exercise. Essential amino acid supplementation stands as a strong candidate but other supplements are good contenders for attenuating hypo-activity induced atrophy and strength losses. Several potential nutritional supplements are highlighted that could be used to combat muscle atrophy but extensive research is needed to determine the most effective.Emma L Bostock Christopher I Morse Keith Winwood Islay Mc Ewan Gladys L Onambélé-Pearson 2013World Journal of Translational Medicine2013,2,3:1
7A transient three-plasmid expression of high titer retroviral vectors显示文摘Yuko S Paula MC Emma ER 1995Nucleic Acids Research1995,23,4:1
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