五、结 论

五、结 论

本章研究发现藏族世居者存在与汉族移居者不同的适应机制,与移居者不同藏族世居者运动产生与运动整合过程不受海拔影响,但随着海拔升高,刺激选择能力损伤的同时执行控制所分配的资源也随之减少。本章研究证实了高海拔暴露对藏族世居者视觉空间注意能力的影响存在海拔阈限。


[1]Javier Virués-Ortega,Buela-Casal G ,Garrido E ,et al.Neuropsychological Functioning Associated with High-Altitude Exposure[J].Neuropsychology Review,2004,14(4):197-224.

[2]Bakharev,V.D.Investigation of memory during adaptation to high mountain conditions.[J].human physiology,1981,7(6):409.

[3]Richardson C,Hogan A M,Bucks R S,et al.Neurophysiological evidence for cognitive and brain functional adaptation in adolescents living at high altitude[J].Clinical Neurophysiology,2011,122(9): 1726-1734.

[4]Jansen G F A,Krins A,Basnyat B,et al.Role of the altitude level on cerebral autoregulation in residents at high altitude[J].Journal of Applied Physiology,2007,103(2): 518-523.

[5]Yan X,Zhang J,Gong Q,et al.Adaptive influence of long term high altitude residence on spatial working memory: an fMRI study[J].Brain and cognition,2011,77(1): 53-59.

[6]Yan X,Zhang J,Gong Q,et al.Prolonged high-altitude residence impacts verbal working memory: an fMRI study[J].Experimental brain research,2011,208(3):437-445.

[7]Chang L,Yakupov R,Cloak C,et al.Marijuana use is associated with a reorganized visual-attention network and cerebellar hypoactivation[J].Brain,2006,129(5):1096-1112.

[8]Shapiro K,Hillstrom A P,Husain M.Control of visuotemporal attention by inferior parietal and superior temporal cortex[J].Current Biology,2002,12(15): 1320-1325.

[9]Jansen G F A,Krins A,Basnyat B,et al.Role of the altitude level on cerebral autoregulation in residents at high altitude[J].Journal of Applied Physiology,2007,103(2): 518-523.

[10]Ma H,Han B,Wang Y.Different neurocognitive patterns of conflict control in Tibetans living above and below 4 000 m[J].PeerJ,2019,7: e7269.

[11]Ma H,Han B,Wang Y.Different neurocognitive patterns of conflict control in Tibetans living above and below 4 000 m[J].PeerJ,2019,7: e7269.

[12]Amenedo E ,Laura Lorenzo-López,Paula Pazo-álvarez.Response processing during visual search in normal aging: The need for more time to prevent cross talk between spatial attention and manual response selection[J].Biological Psychology,2012,91(2): 201-211.

[13]Zhang D ,Ma H ,Huang J ,et al.Exploring the impact of chronic high-altitude exposure on visual spatial attention using the ERP approach[J].Brain and Behavior,2018: e00944.(https://www.daowen.com)

[14]Falkenstein M.Inhibition,conflict and the Nogo-N2[J].Clinical neurophysiology:official journal of the International Federation of Clinical Neurophysiology,2006,117(8): 1638.

[15]Yordanova J,Kolev V,Hohnsbein J,et al.Sensorimotor slowing with ageing is mediated by a functional dysregulation of motor-generation processes: evidence from high-resolution event-related potentials[J].Brain,2004,127(2): 351-362.

[16]Mattay V S,Fera F,Tessitore A,et al.Neurophysiological correlates of age-related changes in human motor function[J].Neurology,2002,58(4): 630-635.

[17]Amenedo E ,Laura Lorenzo-López,Paula Pazo-álvarez.Response processing during visual search in normal aging: The need for more time to prevent cross talk between spatial attention and manual response selection[J].Biological Psychology,2012,91(2): 201-211.

[18]Heuninckx S,Wenderoth N,Debaere F,et al.Neural basis of aging: the penetration of cognition into action control[J].Journal of Neuroscience,2005,25(29):6787-6796.

[19]Bötzel K,Ecker C,Schulze S.Topography and dipole analysis of reafferent electrical brain activity following the Bereitschaftspotential[J].Experimental Brain Research,1997,114(2): 352-361.

[20]Shibasaki H,Barrett G,Halliday E,et al.Components of the movement-related cortical potential and their scalp topography[J].Electroencephalography and clinical neurophysiology,1980,49(3-4): 213-226.

[21]Szurhaj W,Bourriez J L,Kahane P,et al.Intracerebral study of gamma rhythm reactivity in the sensorimotor cortex[J].European Journal of Neuroscience,2005,21(5): 1223-1235.

[22]Szurhaj W,Labyt E,Bourriez J L,et al.Relationship between intracerebral gamma oscillations and slow potentials in the human sensorimotor cortex[J].European Journal of Neuroscience,2006,24(3): 947-954.

[23]Falkenstein M.Inhibition,conflict and the Nogo-N2[J].Clinical neurophysiology:official journal of the International Federation of Clinical Neurophysiology,2006,117(8): 1638.

[24]Yordanova J,Kolev V,Hohnsbein J,et al.Sensorimotor slowing with ageing is mediated by a functional dysregulation of motor-generation processes: evidence from high-resolution event-related potentials[J].Brain,2004,127(2): 351-362.

[25]Hommel B.The role of attention for the Simon effect[J].Psychological research,1993,55(3): 208-222.

[26]Juncos-Rabadán O,Pereiro A X,Facal D.Cognitive interference and aging: Insights from a spatial stimulus-response consistency task[J].Acta Psychologica,2008,127(2): 237-246.

[27]Knösche T,Praamstra P,Stegeman D,et al.Linear estimation discriminates midline sources and a motor cortex contribution to the readiness potential[J].Electroencephalography and clinical Neurophysiology,1996,99(2): 183-190.

[28]Kutas M,Donchin E.Studies of squeezing: handedness,responding hand,response force,and asymmetry of readiness potential[J].Science,1974,186(4163): 545-548.