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身体运动改善认知能力下降的分子生物学机制 被引量:2

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摘要 神经系统为了确保更好的竞争条件,不仅进化为控制肌肉效应的机制,而且从外周组织逆转该系统的功能,进而影响大脑的功能。在这个观点情况下,身体活动有可能对大脑的认知功能包括学习和记忆产生重要的影响。然而,身体锻炼对大脑认知功能影响的分子生物机制至今还没有完全解释清楚。其中包括超分子机制(包括神经再生、突触发生、血管新生),这些均受到诸如脑源性神经增长因子、胰岛素样生长因子1、激素和第二信使等分子机制的调节和控制。
作者 丁腊生
出处 《当代体育科技》 2014年第30期15-16,共2页 Contemporary Sports Technology
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  • 1张厚粲,王晓平.瑞文标准推理测验在我国的修订[J].心理学报,1989,21(2):113-121. 被引量:180
  • 2Skilbeck CE, grade DT, Hewer RL. el al. Recovery after stroke.J Neurol Neurosurg Psychiatry, 1983, 46:5-8.
  • 3Kass J, Florence SL, Jain N. Reorganization of sensory systems of primates after injury. Neurosciencentist, 1997,3: 123-130.
  • 4Zea-longa E, Philip R, Carlson S, et al. Reversible middle artery occlusion without craniotomy in rats. Stroke, 1995, 20:81-84.
  • 5Johansson BB. Functional outcome in rats transferred to an enriched environment 15 days after focal ischemic. Stroke, 1996, 27:324- 326.
  • 6Kempermann G, Gast D, Gage FH. Neuroplasticity in old age: sustained fivefold induction of hippocampus neurogenesis by long-term environmental enrichment. Ann Neurol, 2002,52 : 135-143.
  • 7Hilbig A, Babh TL, Najm 1, et al. Focal cortical dysplasia in children. Dev-Neurosci, 1999 ,21:271-280.
  • 8Hilbig H, Bidom HJ, Steingruber S, et al. Enriched environmental conditions reverse age-dependent gliosis and losses of neurofilaments and extraceUular matrix components but do not alter lipofuscin accumulation in the hindlimb area of the aging rat brain. J Chem-Neuroanat. 2002,23 : 199-209.
  • 9Nygren J, Kokaia M, Wieloch T. Decreased expression of brainderived neurotrophic factor in BNDF(+/-) mice is associaled with enhanced recovery of motor performance and increased neureblast member following experimental stroke. J Neurosci Res, 2006,84 : 626-631.
  • 10Johansson BB, Grabowski M. Functional recovery, after brain inh.action: plasticity and neural transplation. Brain Pathol, 1994,4: 85 -95.

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  • 1于素梅.肥胖与有氧运动减肥的生物学分析(综述)[J].北京体育大学学报,2001,24(1):62-63. 被引量:114
  • 2王丽,马嵘,马国栋,刘善云.抗阻训练运动处方研究进展[J].中国体育科技,2007,43(3):71-76. 被引量:31
  • 3孙中武,朱小群,周江宁.轻度认知功能损害的血管危险因素和认知损害[J].安徽医科大学学报,2007,42(3):313-316. 被引量:9
  • 4Brookmeyer R, Johnson E, Ziegler-Graham K, et al. Fore- casting the global burden of Alzheimer's disease[J]. Alzheim- ers Dement, 2007, 3(3): 186191.
  • 5Petersen RC, Smith GE, Waring SC, et al. Mild cognitive impairment: clinical characterization and outcome[J]. Arch Neurol, 1999, 56(3): 303-308.
  • 6Lautenschlager NT, Cox KL, Flicker L, et al. Effect of physical activity on cognitive function in older adults at risk for Alzheimer disease: a randomized trial[J]. JAMA,2008, 300(9): 1027-1037.
  • 7Colcombe S, Kramer AF. Fitness effects on the cognitive function of older adults: a meta-analytic study[J]. Psychol Sci, 2003, 14(2): 125-130.
  • 8Grande G, Vanacore N, Maggiore L, et al. Physical activity reduces the risk of dementia in mild cognitive impairment subjects: a cohort study[J]. J Alzheimers Dis, 2014, 39(4): 833-839.
  • 9Geda YE, Roberts RO, Knopman DS, et al. Physical exer- cise, aging, and mild cognitive impairment: a population- based study[J]. Arch Neurol, 2010, 67(1): 80-86.
  • 10Middleton LE, Barnes DE, Lui LY, et al. Physical activity over the life course and its association with cognitive perfor- mance and impairment in old age[J]. J Am Geriatr Soc, 2010, 58(7): 1322-1326.

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