心理科学进展 ›› 2018, Vol. 26 ›› Issue (11): 2003-2012.doi: 10.3724/SP.J.1042.2018.02003
收稿日期:
2017-11-13
出版日期:
2018-11-15
发布日期:
2018-09-26
通讯作者:
陈天勇
E-mail:chenty@psych.ac.cn
基金资助:
WANG Chen-Xi, CHEN Tian-Yong(), HAN Bu-Xin
Received:
2017-11-13
Online:
2018-11-15
Published:
2018-09-26
Contact:
CHEN Tian-Yong
E-mail:chenty@psych.ac.cn
摘要:
大量研究表明, 前额叶的结构和功能更容易受年老化影响; 然而, 近年来的研究发现, 前额叶的结构和功能在老年阶段具有一定的可塑性。对老年人进行认知训练, 能够延缓前额叶皮层厚度的萎缩, 提高白质完整性, 改善神经网络的功能连接和分化, 并可能通过调节多巴胺系统的活动改变前额叶皮质和皮质下结构的功能激活模式。有氧锻炼能够改善心脑血管功能, 保护和促进神经元的存活和生长, 引起前额叶灰质、白质体积的增加及功能激活的变化。认知训练与有氧锻炼等相结合的整合性训练不仅引起前额叶及相关认知功能的改变, 而且具有更好的生态学效度, 使老年人日常认知能力和生活质量得到提高。未来研究应采用多种技术手段, 从多个层面理解老年阶段前额叶的可塑性及相关机制; 加强对与前额叶关系密切的多种认知功能可塑性神经机制的研究; 并重视与整合性训练有关的前额叶可塑性。
中图分类号:
王晨茜, 陈天勇, 韩布新. (2018). 前额叶在老年阶段的可塑性及相关机制. 心理科学进展 , 26(11), 2003-2012.
WANG Chen-Xi, CHEN Tian-Yong, HAN Bu-Xin. (2018). Plasticity of the prefrontal cortex in old age and underlying mechanisms. Advances in Psychological Science, 26(11), 2003-2012.
[1] | 陈天勇, 韩布新, 罗跃嘉, 李德明 . ( 2004). 认知年老化与执行衰退假说. 心理科学进展, 12( 5), 729-736. |
[2] | 李婷, 李春波 . ( 2013). 认知老化的神经机制及假说. 上海交通大学学报(医学版), 33( 7), 1030-1034. |
[3] | 李旭, 杜新, 陈天勇 . ( 2014). 促进老年人认知健康的主要途径(综述). 中国心理卫生杂志, 28( 2), 125-132. |
[4] | 路露, 陈美婉, 罗焕敏 . ( 2010). 神经营养因子受体的研究进展. 中国老年学杂志, 30( 1), 126-131. |
[5] | 彭苏浩, 汤倩, 宣宾 . ( 2014). 基因-大脑-行为框架下的抑制控制与老化. 心理科学进展, 22( 8), 1236-1245. |
[6] | Adnan, A.( 2014). Functional and structural substrates of neural modulation in older adults after executive control training (Unpublished master’s thesis). York University Toronto, Canada. |
[7] | Allaire, J., Bäckman, L., Balota, D. A., Bavelier, D., Bjork, R. A., Bower, G. H., ... Zelinski, E. M. ( 2014. A consensus on the brain training industry from the scientific community. Max Planck Institute for Human Development and Stanford Center on Longevity. Retrieved January 19, 2018, from |
[8] |
Anguera, J. A., Boccanfuso, J., Rintoul, J. L., Al-Hashimi, O., Faraji, F., Janowich, J., ... Gazzaley, A. ( 2013). Video game training enhances cognitive control in older adults. Nature, 501( 7465), 97-101.
doi: 10.1038/nature12486 URL |
[9] |
Antonenko, D., & Flöel, A.( 2014). Healthy aging by staying selectively connected: A mini-review. Gerontology, 60( 1), 3-9.
doi: 10.1159/000354376 URL pmid: 24080587 |
[10] |
Au, J., Sheehan, E., Tsai, N., Duncan, G. J., Buschkuehl, M., & Jaeggi, S. M. ( 2015). Improving fluid intelligence with training on working memory: A meta-analysis. Psychonomic Bulletin & Review, 22( 2), 366-377.
doi: 10.1073/pnas.0801268105 URL pmid: 25102926 |
[11] |
Bäckman, L., Nyberg, L., Soveri, A., Johansson, J., Andersson, M., Dahlin, E., ... Rinne, J. O. ( 2011). Effects of working-memory training on striatal dopamine release. Science, 333( 6043), 718.
doi: 10.1126/science.1204978 URL pmid: 21817043 |
[12] |
Ball, K., Edwards, J. D., Ross, L. A., & McGwin, G., Jr. ( 2010). Cognitive training decreases motor vehicle collision involvement among older drivers. Journal of the American Geriatrics Society, 58( 11), 2107-2113.
doi: 10.1111/j.1532-5415.2010.03138.x URL pmid: 3057872 |
[13] |
Bari, A., & Robbins, T.W. ( 2013). Inhibition and impulsivity: Behavioral and neural basis of response control. Progress in Neurobiology, 108, 44-79.
doi: 10.1016/j.pneurobio.2013.06.005 URL |
[14] |
Bellander, M., Bäckman, L., Liu, T., Schjeide, B.-M. M., Bertram, L., Schmiedek, F., ... Lövdén, M. ( 2015). Lower baseline performance but greater plasticity of working memory for carriers of the val allele of the COMT Val158Met polymorphism. Neuropsychology, 29( 2), 247-254.
doi: 10.1037/neu0000088 URL |
[15] |
Bellar, D., Glickman, E. L., Juvancic-Heltzel, J., & Gunstad, J. ( 2011). Serum insulin like growth factor-1 is associated with working memory, executive function and selective attention in a sample of healthy, fit older adults. Neuroscience, 178, 133-137.
doi: 10.1016/j.neuroscience.2010.12.023 URL |
[16] |
Binder, J.R., & Desai, R.H . ( 2011). The neurobiology of semantic memory. Trends in Cognitive Sciences, 15( 11), 527-536.
doi: 10.1016/j.tics.2011.10.001 URL pmid: 22001867 |
[17] |
Boyer, D.M., & Harrington, A.R . ( 2018). Scaling of bony canals for encephalic vessels in euarchontans: Implications for the role of the vertebral artery and brain metabolism. Journal of Human Evolution, 114, 85-101.
doi: 10.1016/j.jhevol.2017.09.003 URL |
[18] |
Brehmer, Y., Kalpouzos, G., Wenger, E., & Lövdén, M. ( 2014). Plasticity of brain and cognition in older adults. Psychological Research, 78( 6), 790-802.
doi: 10.1007/s00426-014-0587-z URL pmid: 25261907 |
[19] |
Brehmer, Y., Rieckmann, A., Bellander, M., Westerberg, H., Fischer, H., & Bäckman, L. ( 2011). Neural correlates of training-related working-memory gains in old age. Neuroimage, 58( 4), 1110-1120.
doi: 10.1016/j.neuroimage.2011.06.079 URL pmid: 21757013 |
[20] | Cao, W., Cao, X., Hou, C., Li, T., Cheng, Y., Jiang, L., ... Yao, D. ( 2016). Effects of cognitive training on resting-state functional connectivity of default mode, salience, and central executive networks. Frontiers in Aging Neuroscience, 8, 70. |
[21] |
Cao, X. Y., Yao, Y., Li, T., Cheng, Y., Feng, W., Shen, Y., ... Li, C. B. ( 2016). The impact of cognitive training on cerebral white matter in community-dwelling elderly: One-year prospective longitudinal diffusion tensor imaging study. Scientific Reports, 6( 33212).
doi: 10.1038/srep33212 URL |
[22] |
Carlén, M.( 2017). What constitutes the prefrontal cortex? Science, 358( 6362), 478-482.
doi: 10.1126/science.aan8868 URL |
[23] |
Carlson, M. C., Erickson, K. I., Kramer, A. F., Voss, M. W., Bolea, N., Mielke, M., ... Fried, L. P. ( 2009). Evidence for neurocognitive plasticity in at-risk older adults: The Experience Corps program. Journals of Gerontology - Series A Biological Sciences and Medical Sciences, 64( 12), 1275-1282.
doi: 10.1093/gerona/glp117 URL pmid: 19692672 |
[24] |
Castro-Chavira, S. A., Barrios, F. A., Pasaye, E. H., Alatorre- Cruz, G. C., & Fernández, T. ( 2016). Compensatory larger cortical thickness in healthy elderly individuals with electroencephalographic risk for cognitive decline. Neuroreport, 27( 9), 710-715.
doi: 10.1097/WNR.0000000000000602 URL |
[25] |
Chapman, S. B., Aslan, S., Spence, J. S., Hart, J. J., Jr., Bartz, E. K., Didehbani, N., ... Lu, H. ( 2015). Neural mechanisms of brain plasticity with complex cognitive training in healthy seniors. Cerebral Cortex, 25( 2), 396-405.
doi: 10.1093/cercor/bht234 URL pmid: 23985135 |
[26] | Cheng, Y., Wu, W. Y., Feng, W., Wang, J. Q., Chen, Y., Shen, Y., ... Li, C. B. ( 2012). The effects of multi-domain versus single-domain cognitive training in non-demented older people: A randomized controlled trial. Bmc Medicine, 10(30). |
[27] |
Chooi, W.-T., & Thompson, L.A. ( 2012). Working memory training does not improve intelligence in healthy young adults. Intelligence, 40( 6), 531-542.
doi: 10.1016/j.intell.2012.07.004 URL |
[28] | Colcombe, S. J., Erickson, K. I., Scalf, P. E., Kim, J. S., Prakash, R., McAuley, E., ... Kramer, A. F. ( 2006). Aerobic exercise training increases brain volume in aging humans. The Journals of Gerontology: Series A 61( 11), 1166-1170. |
[29] |
Dahlin, E., Neely, A. S., Larsson, A., Bäckman, L., & Nyberg, L. ( 2008). Transfer of learning after updating training mediated by the striatum. Science, 320( 5882), 1510-1512.
doi: 10.1126/science.1155466 URL |
[30] | de Melo Coelho, F. G., Vital, T. M., Stein, A. M., Arantes, F. J., Rueda, A. V., Camarini, R., ... Santos-Galduróz, R. F. ( 2014). Acute aerobic exercise increases brain-derived neurotrophic factor levels in elderly with Alzheimer's disease. Journal of Alzheimer's Disease, 39(2), 401-408. |
[31] |
Donoso, M., Collins, A. G. E., & Koechlin, E. ( 2014). Foundations of human reasoning in the prefrontal cortex. Science, 344( 6191), 1481-1486.
doi: 10.1126/science.1252254 URL |
[32] | Eggenberger, P., Wolf, M., Schumann, M., & de Bruin, E. D.( 2016). Exergame and balance training modulate prefrontal brain activity during walking and enhance executive function in older adults. Frontiers in Aging Neuroscience, 8, 66. |
[33] |
Engvig, A., Fjell, A. M., Westlye, L. T., Moberget, T., Sundseth, Ø., Larsen, V. A., & Walhovd, K. B. ( 2010). Effects of memory training on cortical thickness in the elderly. Neurolmage, 52( 4), 1667-1676.
doi: 10.1016/j.neuroimage.2010.05.041 URL pmid: 20580844 |
[34] |
Engvig, A., Fjell, A. M., Westlye, L. T., Moberget, T., Sundseth, Ø., Larsen, V. A., & Walhovd, K. B. ( 2012). Memory training impacts short-term changes in aging white matter: A longitudinal diffusion tensor imaging study. Human Brain Mapping, 33( 10), 2390-2406.
doi: 10.1002/hbm.v33.10 URL |
[35] |
Erickson, K. I., Leckie, R. L., & Weinstein, A. M. ( 2014). Physical activity, fitness, and gray matter volume. Neurobiology of Aging, 35( Suppl. 2), S20-S28.
doi: 10.1016/j.neurobiolaging.2014.03.034 URL pmid: 4094356 |
[36] |
Erickson, K. I., Weinstein, A. M., Sutton, B. P., Prakash, R. S., Voss, M. W., Chaddock, L., ... Kramer, A. F. ( 2012). Beyond vascularization: Aerobic fitness is associated with N-acetylaspartate and working memory. Brain and Behavior, 2( 1), 32-41.
doi: 10.1002/brb3.30 URL pmid: 3343297 |
[37] | Fjell, A. M., Sneve, M. H., Grydeland, H., Storsve, A. B., & Walhovd, K. B. ( 2016). The disconnected brain and executive function decline in aging. Cerebral Cortex, 27( 3), 2303-2317. |
[38] |
Goulden, N., Khusnulina, A., Davis, N. J., Bracewell, R. M., Bokde, A. L., McNulty, J. P., & Mullins, P. G. ( 2014). The salience network is responsible for switching between the default mode network and the central executive network: Replication from DCM. Neurolmage, 99, 180-190.
doi: 10.1016/j.neuroimage.2014.05.052 URL |
[39] |
Grady, C.( 2012). The cognitive neuroscience of ageing. Nature Reviews Neuroscience, 13, 491-505.
doi: 10.1038/nrn3256 URL pmid: 22714020 |
[40] |
Gray, J. R., Chabris, C. F., & Braver, T. S. ( 2003). Neural mechanisms of general fluid intelligence. Nature Neuroscience, 6( 3), 316-322.
doi: 10.1038/nn1014 URL |
[41] | Håkansson, K., Ledreux, A., Daffner, K., Terjestam, Y., Bergman, P., Carlsson, R., ... Mohammed, A. K. H.( 2017). BDNF responses in healthy older persons to 35 minutes of physical exercise, cognitive training, and mindfulness: Associations with working memory function. Journal of Alzheimer's Disease, 55( 2), 645-657. |
[42] |
Haskell, W. L., Lee, I.-M., Pate, R. R., Powell, K. E., Blair, S. N., Franklin, B. A., ... Bauman, A. ( 2007). Physical activity and public health: Updated recommendation for adults from the American College of Sports Medicine and the American Heart Association. Medicine and Science in Sports and Exercise, 39( 8), 1423-1434.
doi: 10.1249/mss.0b013e3180616b27 URL |
[43] |
Heinzel, S., Lorenz, R. C., Brockhaus, W.-R., Wüstenberg, T., Kathmann, N., Heinz, A., & Rapp, M. A. ( 2014). Working memory load-dependent brain response predicts behavioral training gains in older adults. Journal of Neuroscience, 34( 4), 1224-1233.
doi: 10.1523/JNEUROSCI.2463-13.2014 URL |
[44] |
Heinzel, S., Lorenz, R. C., Pelz, P., Heinz, A., Walter, H., Kathmann, N., ... Stelzel, C. ( 2016). Neural correlates of training and transfer effects in working memory in older adults. Neurolmage, 134, 236-249.
doi: 10.1016/j.neuroimage.2016.03.068 URL pmid: 27046110 |
[45] | Heinzel, S., Riemer, T. G., Schulte, S., Onken, J., Heinz, A., & Rapp, M. A. ( 2014). Catechol-O-methyltransferase (COMT) genotype affects age-related changes in plasticity in working memory: A pilot study. BioMed Research International, 2014, ( 414351), 7. |
[46] |
Hötting, K., Reich, B., Holzschneider, K., Kauschke, K., Schmidt, T., Reer, R., ... Roder, B. ( 2012). Differential cognitive effects of cycling versus stretching/coordination training in middle-aged adults. Health Psychology, 31( 2), 145-155.
doi: 10.1037/a0025371 URL |
[47] | Hötting, K., & Roder, B.( 2013). Beneficial effects of physical exercise on neuroplasticity and cognition. Neuroscience & Biobehavioral Reviews, 37( 9), 2243-2257. |
[48] |
Jaeggi, S. M., Buschkuehl, M., Jonides, J., & Perrig, W. J. ( 2008). Improving fluid intelligence with training on working memory. PNAS, 105( 19), 6829-6833.
doi: 10.1073/pnas.0801268105 URL |
[49] |
Ji, Y., Wang, J., Chen, T., Du, X., & Zhan, Y. ( 2016). Plasticity of inhibitory processes and associated far- transfer effects in older adults. Psychology and aging, 31( 5), 415-429.
doi: 10.1037/pag0000102 URL pmid: 27243762 |
[50] | Jiang, L. J., Cao, X. Y., Li, T., Tang, Y. Y., Li, W., Wang, J. J., ... Li, C. B. ( 2016). Cortical thickness changes correlate with cognition changes after cognitive training: Evidence from a Chinese community study. Frontiers in Aging Neuroscience, 8, 118. |
[51] |
Kim, G. H., Jeon, S., Im, K., Kwon, H., Lee, B. H., Kim, G. Y., ... Na, D. L. ( 2015). Structural brain changes after traditional and robot-assisted multi-domain cognitive training in community-dwelling healthy elderly. PLoS One, 10( 4), e0123251.
doi: 10.1371/journal.pone.0123251 URL |
[52] | Li, R., Zhu, X. Y., Yin, S. F., Niu, Y. N., Zheng, Z. W., Huang, X., ... Li, J. ( 2014). Multimodal intervention in older adults improves resting-state functional connectivity between the medial prefrontal cortex and medial temporal lobe. Frontiers in Aging Neuroscience, 6, 39. |
[53] |
Lin, F., Heffner, K. L., Ren, P., Tivarus, M. E., Brasch, J., Chen, D. G., ... Tadin, D. ( 2016). Cognitive and neural effects of vision-based speed-of-processing training in older adults with amnestic mild cognitive impairment: A pilot study. Journal of the American Geriatrics Society, 64( 6), 1293-1298.
doi: 10.1111/jgs.14132 URL |
[54] |
Lindenberger, U.( 2014). Human cognitive aging: Corriger la fortune? Science, 346( 6209), 572-578.
doi: 10.1126/science.1254403 URL pmid: 25359964 |
[55] |
Littlefield, A. M., Setti, S. E., Priester, C., & Kohman, R. A. ( 2015). Voluntary exercise attenuates LPS-induced reductions in neurogenesis and increases microglia expression of a proneurogenic phenotype in aged mice. Journal of Neuroinflammation, 12( 1), 138.
doi: 10.1186/s12974-015-0362-0 URL |
[56] |
Lövdén, M., Bodammer, N. C., Kühn, S., Kaufmann, J., Schütze, H., Tempelmann, C., ... Lindenberger, U. ( 2010). Experience-dependent plasticity of white-matter microstructure extends into old age. Neuropsychologia, 48( 13), 3878-3883.
doi: 10.1016/j.neuropsychologia.2010.08.026 URL |
[57] | Luo, C., Zhang, X., Cao, X., Gan, Y., Li, T., Cheng, Y., ... Li, C. ( 2016). The lateralization of intrinsic networks in the aging brain implicates the effects of cognitive training. Frontiers in Aging Neuroscience, 8, 32. |
[58] | Luszcz, M . ( 2011). Executive function and cognitive aging. In K. Schaie & S. Willis (Eds.), Handbook of the psychology of aging (7th ed) (pp. 59-72). San Diego, CA: Academic Press. |
[59] |
Mander, B. A., Rao, V., Lu, B., Saletin, J. M., Lindquist, J. R., Ancoli-Israel, S., ... Walker, M. P. ( 2013). Prefrontal atrophy, disrupted NREM slow waves and impaired hippocampal-dependent memory in aging. Nature Neuroscience, 16( 3), 357-364.
doi: 10.1038/nn.3324 URL |
[60] |
McNab, F., Varrone, A., Farde, L., Jucaite, A., Bystritsky, P., Forssberg, H., & Klingberg, T. ( 2009). Changes in cortical dopamine D1 receptor binding associated with cognitive training. Science, 323( 5915), 800-802.
doi: 10.1126/science.1166102 URL |
[61] | Melby-Lervåg, M., & Hulme, C.( 2016). There is no convincing evidence that working memory training is effective: A reply to Au et al. (2014) and Karbach and Verhaeghen (2014). Psychonomic Bulletin & Review, 23( 1), 324-330. |
[62] |
Metzler-Baddeley, C., Foley, S., de Santis, S., Charron, C., Hampshire, A., Caeyenberghs, K., & Jones, D. K. ( 2017). Dynamics of white matter plasticity underlying working memory training: Multimodal evidence from diffusion MRI and T2 relaxometry. Journal of Cognitive Neuroscience, 29( 9), 1-12.
doi: 10.1162/jocn_a_01032 URL |
[63] |
Mishra, J., de Villers-Sidani, E., Merzenich, M., & Gazzaley, A. ( 2014). Adaptive training diminishes distractibility in aging across species. Neuron, 84( 5), 1091-1103.
doi: 10.1016/j.neuron.2014.10.034 URL pmid: 25467987 |
[64] |
Ng, K. K., Lo, J. C., Lim, J. K. W., Chee, M. W. L., & Zhou, J. ( 2016). Reduced functional segregation between the default mode network and the executive control network in healthy older adults: A longitudinal study. Neurolmage, 133, 321-330.
doi: 10.1016/j.neuroimage.2016.03.029 URL |
[65] |
Ngandu, T., Lehtisalo, J., Solomon, A., Levälahti, E., Ahtiluoto, S., Antikainen, R., ... Kivipelto, M. ( 2015). A 2 year multidomain intervention of diet, exercise, cognitive training, and vascular risk monitoring versus control to prevent cognitive decline in at-risk elderly people (FINGER): A randomised controlled trial. The Lancet, 385( 9984), 2255-2263.
doi: 10.1016/S0140-6736(15)60461-5 URL |
[66] |
Oswald, W. D., Gunzelmann, T., Rupprecht, R., & Hagen, B. ( 2006). Differential effects of single versus combined cognitive and physical training with older adults: The SimA study in a 5-year perspective. European Journal of Ageing, 3( 4), 179-192.
doi: 10.1007/s10433-006-0035-z URL |
[67] | Park, D.C., & Bischof, G.N . ( 2013). The aging mind: Neuroplasticity in response to cognitive training. Dialogues in Clinical Neuroscience, 15( 1), 109-119. |
[68] | Raz, N . ( 2004). The aging brain:Structural changes and their implications for cognitive aging. In R. Dixon, L. Backman, & L.-G. Nilsson (Eds.), New Frontiers in Cognitive Aging (pp. 115-134). Oxford University Press. |
[69] |
Raz, N., Lindenberger, U., Rodrigue, K. M., Kennedy, K. M., Head, D., Williamson, A., ... Acker, J. D. ( 2005). Regional brain changes in aging healthy adults: General trends, individual differences and modifiers. Cerebral Cortex, 15( 11), 1676-1689.
doi: 10.1093/cercor/bhi044 URL |
[70] |
Rebok, G. W., Ball, K., Guey, L. T., Jones, R. N., Kim, H.-Y., King, J. W., ... Willis, S. L. ( 2014). Ten-year effects of the advanced cognitive training for independent and vital elderly cognitive training trial on cognition and everyday functioning in older adults. Journal of the American Geriatrics Society, 62( 1), 16-24.
doi: 10.1111/jgs.2014.62.issue-1 URL |
[71] |
Ruscheweyh, R., Willemer, C., Krüger, K., Duning, T., Warnecke, T., Sommer, J., ... Flöel, A. ( 2011). Physical activity and memory functions: An interventional study. Neurobiology of Aging, 32( 7), 1304-1319.
doi: 10.1016/j.neurobiolaging.2009.08.001 URL pmid: 19716631 |
[72] | Schättin, A., Arner, R., Gennaro, F., & de Bruin, E. D.( 2016). Adaptations of prefrontal brain activity, executive functions, and gait in healthy elderly following exergame and balance training: A randomized-controlled study. Frontiers in Aging Neuroscience, 8, 278. |
[73] |
Sillanpää, E., Häkkinen, A., Laaksonen, D. E., Karavirta, L., Kraemer, W. J., & Häkkinen, K. ( 2010). Serum basal hormone concentrations, nutrition and physical fitness during strength and/or endurance training in 39-64-year- old women. International Journal of Sports Medicine, 31( 2), 110-117.
doi: 10.1055/s-0029-1242811 URL |
[74] | Simons, D.( 2013. 19 questions about video games, multitasking, and aging. Retrieved January 19, 2018, from |
[75] | Smith, R.( Ed).( 1992). Inhibition:History and meaning in the sciences of mind and brain. . Berkeley: University of California Press. |
[76] | So, J. H., Huang, C., Ge, M. Y., Cai, G. Y., Zhang, L. Q., Lu, Y. S., & Mu, Y. L. ( 2017). Intense exercise promotes adult hippocampal neurogenesis but not spatial discrimination. Frontiers in Cellular Neuroscience, 11, 13. |
[77] | Suzuki, T., Shimada, H., Makizako, H., Doi, T., Yoshida, D., Ito, K., Kato, T. (2013). A randomized controlled trial of multicomponent exercise in older adults with mild cognitive impairment. PLoS One, 8#(4), e61483. |
[78] | Tsujii, T., Komatsu, K., & Sakatani, K. ( 2013). Acute effects of physical exercise on prefrontal cortex activity in older adults: A functional near-infrared spectroscopy study. In W. J. Welch, F. Palm, D. F. Bruley, D. K. Harrison (Eds.), Oxygen Transport to Tissue Xxxiv. Advances in Experimental Medicine and Biology, vol 765.( pp. 293-298). New York, NY: Springer. |
[79] | Viboolvorakul, S., & Patumraj, S.( 2014). Exercise training could improve age-related changes in cerebral blood flow and capillary vascularity through the upregulation of VEGF and eNOS. BioMed Research International, 2014, 12. |
[80] | Voelcker-Rehage, C., Godde, B., & Staudinger, U. M. ( 2011). Cardiovascular and coordination training differentially improve cognitive performance and neural processing in older adults. Frontiers in Human Neuroscience, 5, 26. |
[81] |
Wen, W., Zhu, W. L., He, Y., Kochan, N. A., Reppermund, S., Slavin, M. J., ... Sachdev, P. ( 2011). Discrete neuroanatomical networks are associated with specific cognitive abilities in old age. Journal of Neuroscience, 31( 4), 1204-1212.
doi: 10.1523/JNEUROSCI.4085-10.2011 URL pmid: 21273405 |
[82] |
West, R.L. ( 1996). An application of prefrontal cortex function theory to cognitive aging. Psychological Bulletin, 120( 2), 272-292.
doi: 10.1037//0033-2909.120.2.272 URL pmid: 8831298 |
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