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Shifting balance from neurodegeneration to regeneration of the brain: a novel therapeutic approach to Alzheimer's disease and related neurodegenerative conditions 被引量:3
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作者 Khalid Iqbal Syed Faraz Kazim +1 位作者 Silvia Bolognin Julie Blanchard 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第16期1518-1519,共2页
Neurodegeneration is one of the biggest public health problems in modern society. Age-associated neurodegeneration, which is accelerated several-fold in Alzheimer's disease (AD) alone, is not only an enormous socia... Neurodegeneration is one of the biggest public health problems in modern society. Age-associated neurodegeneration, which is accelerated several-fold in Alzheimer's disease (AD) alone, is not only an enormous social and economic burden to the affected in- dividuals and their families, but is also a great scientific challenge. Currently 25-35 million people worldwide suffer from AD, the single largest cause of dementia in middle- to old-aged individuals. These numbers are projected to triple by 2050 if no treatment to prevent or reverse AD is developed. 展开更多
关键词 a novel therapeutic approach to Alzheimer’s disease and related neurodegenerative conditions shifting balance from neurodegeneration to regeneration of the brain AD
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Research on Modified Shifting Balance Genetic Algorithms 被引量:1
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作者 MA Hong-mei GONG Dun-wei 《Journal of China University of Mining and Technology》 EI 2007年第2期188-192,共5页
The increasing overlap of core and colony populations during the anaphase of evolution may limit the performance of shifting balance genetic algorithms. To decrease such overlapping,so as to increase the local search ... The increasing overlap of core and colony populations during the anaphase of evolution may limit the performance of shifting balance genetic algorithms. To decrease such overlapping,so as to increase the local search capability of the core population,the sub-space method was used to generate uniformly distributed initial colony populations over the decision variable space. The core population was also dynamically divided,making simultaneous searching in several local spaces possible. The algorithm proposed in this paper was compared to the original one by searching for the optimum of a complicated multi-modal function. The results indicate that the solutions obtained by the modified algorithm are better than those of the original algorithm. 展开更多
关键词 genetic algorithms shifting balance genetic algorithms small spaces dynamic partition multi-modal function
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