饭饭TXT > 学习管理 > 《创新大脑(出版书)》作者:[美]艾克纳恩·戈德堡/译者:杨琼【完结】 > 创新大脑 ((美)艾克纳恩·戈德堡).txt

第 13 页

作者:美-艾克纳恩·戈德堡/译者:杨琼 当前章节:15573 字 更新时间:2026-6-22 18:52

3.H. Hecaen and M. L. Albert, Human Neuropsychology, Hardcover (New York: John Wiley & Sons Inc., 1978); A. Luria, Higher Cortical Functions in Man (New York:Basic Books, 1980); E. Goldberg, “Associative Agnosias and the Functions of the Left Hemisphere,” Journal of Clinical and Experimental Neuropsychology 12 (1990):467–484.

4.A. Luria, Higher Cortical Functions in Man (New York: Basic Books, 1980); E.Goldberg and W. Barr, “Tree Possible Mechanisms of Unawareness of Deficit,”in Awareness of Deficit: Theoretical and Clinical Issue, Eds. G. Prigatano and D.Schacter (New York: Oxford University Press, 1991): 152–175; R. C. Leiguarda and C. D. Marsden, “Limb Apraxias: Higher-Order Disorders of Sensorimotor Integration,” Brain 123 (2000): 860–879.

5.O. Sacks, The Man Who Mistook His Wife for a Hat: And Other Clinical Tales (New York: Touchstone, 1998).

6.J. Capgras and J. Reboul-Lachaux, “Illusion des ‘sosies’ dans un délire systématisé chronique,” Bulletin de la Société Clinique de Médicine Mentale 2 (1923): 6–16.

7.N. Chomsky, Language and Mind, 3rd edn. (Cambridge, UK: Cambridge University Press, 2006); N. Chomsky, Syntactic Structures (Eastford, NJ: Martino Fine Books,2015).

8.R. W. Byrne, “Human Cognitive Evolution,” in The Descent of Man: Psychological Perspectives of Hominid Evolution, Eds. M. C. Corbalis and S. E. G. Lea (New York:Oxford University Press, 1999): 71–87.

9.N. Geschwind and W. Levitsky, “Human Brain: Left-Right Asymmetries in Temporal Speech Region,” Science 161 (1968): 186–187; A. L. Foundas, A. Weisberg, C.A. Browning, and D. R. Weinberger, “Morphology of the Frontal Operculum: A Volumetric Magnetic Resonance Imaging Study of the Pars Triangularis,” Journal of Neuroimaging 2001): 153–159.

10.A. Luria, Higher Cortical Functions in Man, 2nd edn. (New York: Basic Books,1980); E. Goldberg, “The Gradiental Approach to Neocortical Functional Organization,” Journal of Clinical and Experimental Neuropsychology 11 (1989):489–517.

11.A. Martin, C. L. Wiggs, L. G. Ungerleider, and J. V. Haxby, “Neural Correlates of Category-Specific Knowledge,” Nature 379 (1996): 649–652; A. Martin, J. V. Haxby,F. M. Lalonde, C. L. Wiggs, and L. G. Ungerleider, “Discrete Cortical Regions Associated with Knowledge of Color and Knowledge of Action,” Science 270 (1995):102–105.

12.M. Cappelletti, F. Fregni, K. Shapiro, A. Pascual-Leone, and A. Caramazza,“Processing Nouns and Verbs in the Left Frontal Cortex: A Transcranial Magnetic Stimulation Study,” Journal of Cognitive Neuroscience 20 (2008): 707–720.

13.S. M. Kosslyn, “Seeing and Imagining in the Cerebral Hemispheres: A Computational Approach,” Psychological Review 94 (1987): 148–175.

14.For a comprehensive review of the subject, see: L. S. Rogers, G. Vallortigara, and R. J. Andrew, Divided Brains: The Biology and Behaviour of Brain Asymmetries(Cambridge, UK: Cambridge University Press, 2013).

15.Y. Yamazakia, U. Austb, L. Huberb, M. Hausmanna, and O. Güntürkün, “Lateralized Cognition: Asymmetrical and Complementary Strategies of Pigeons During Discrimination of the Human Concept,” Cognition 104 (2007): 315–344.

16.K. Folta, B. Diekamp, and O. Güntürkün, “Asymmetrical Modes of Visual BottomUp and Top-Down Integration in the Thalamic Nucleus Rotundus of Pigeons,”Journal of Neuroscience 27 (2004): 9475–9485.

17.J. W. Peirce and K. M. Kendrick, “Functional Asymmetry in Sheep Temporal Cortex,” Neuroreport 13 (2002): 2395–2399; J. W. Peirce, A. E. Leigh, A. P.DaCosta, and K. M. Kendrick, “Human Face Recognition in Sheep: Lack of Configurational Coding and Right Hemisphere Advantage,” Behavioural Processes 55 (2001): 13–26; J. W. Peirce, A. E. Leigh, and K. M. Kendrick, “Configurational Coding, Familiarity and the Right Hemisphere Advantage for Face Recognition in Sheep,” Neuropsychologia 38 (2000): 475–483.

18.K. Guo, K. Meints, C. Hall, S. Hall, and D. Mills, “Left Gaze Bias in Humans,Rhesus Monkeys and Domestic Dogs,” Animal Cognition 12 (2009): 409–418.

19.A. Ghazanfar, D. Smith-Rhorberg, and M. D. Hauser, “Role of Temporal Cues in Rhesus Monkey Vocal Recognition: Orienting Asymmetries to Reversed Calls,”Brain Behavior and Evolution 58 (2001): 163–172; M. D. Beecher, M. R. Petersen,S. R. Zoloth, D. B. Moody, and W. C. Stebbins, “Perception of Conspecific Vocalizations by Japanese Macaques. Evidence for Selective Attention and Neural Lateralization,” Brain Behavior and Evolution 16 (1979): 443–460; H. E. Heffner and R. S. Heffner, “Temporal Lobe Lesions and Perception of Species Specific Vocalizations by Macaques,” Science 226 (1984): 75–76.

20.R. Hamilton and B. A. Vermeire, “Complementary Hemispheric Specialization in Monkeys,” Science 242 (1988): 1691–1694.

21.N. Kriegeskorte, M. Mur, D. A. Ru, R. Kiani, J. Bodurka, H. Esteky, K. Tanaka, and P. A. Bandettini, “Matching Categorical Object Representations in Inferior Temporal Cortex of Man and Monkey,” Neuron 60 (2008):1126–1141.

22.E. Goldberg, “The Gradiental Approach to Neocortical Functional Organization,”Journal of Clinical and Experimental Neuropsychology 11 (1989): 489–517; E.Goldberg, “Higher Cortical Functions in Humans: The Gradiental Approach,” in Contemporary Neuropsychology and the Legacy of Luria, Ed. E. Goldberg (Mahwah,NJ: Lawrence Erlbaum, 1990): 229–276.

23.G. Huth, S. Nishimoto, A. T. Vu, and J. L. Gallant, “A Continuous Semantic Space Describes the Representation of Thousands of Object and Action Categories Across the Human Brain,” Neuron 76 (2012): 1210–1224.

24.G. A. Miller, “WordNet: A Lexical Database for English,” Communications of the ACM 38 (1995): 39–41. 我个人非常感谢已经去世的米勒博士。20世纪70年代中期,我在纽约市的洛克菲勒大学做客座研究员,米勒博士在那里有一个实验室,那时他和我成了朋友并帮助了我。

25.G. Huth, W. A. De Heer, T. L. Griffths, F. E. Theunissen, and J. L. Gallant, “Natural Speech Reveals the Semantic Maps That Tile Human Cerebral Cortex,” Nature 532(2016): 453–458.

26.L. Miller, J. Cummings, F. Mishkin, K. Boone, F. Prince, M. Ponton, and C. Cotman,“Emergence of Artistic Talent in Frontotemporal Dementia,” Neurology 51 (1998):978–982.

27.W. Snyder, E. Mulcahy, J. L. Taylor, D. J. Mitchell, P. Sachdev, and S. C. Gandevia,“Savant-like Skills Exposed in Normal People by Suppressing the Left Frontotemporal Lobe,” Journal of Integrative Neuroscience 2 (2003): 149–158; A. Snyder,“Explaining and Inducing Savant Skills: Privileged Access to Lower Level, Lessprocessed Information,” Philosophical Transactions of the Royal Society of London,B: Biological Sciences 364 (2009): 1399–1405.

28.E. Goldberg, D. Roediger, N. E. Kucukboyaci, C. Carlson, O. Devinsky, R.Kuzniecky, E. Halgren, and T. Thesen, “Hemispheric Asymmetries of Cortical Volume in the Human Brain,” Cortex 49 (2013): 200–210; M. Harciarek, D.Malaspina, T. Sun, and E. Goldberg, “Schizophrenia and Frontotemporal Dementia:Shared Causation?” International Review of Psychiatry, 25 (2013): 168–177.

29.T. Q. Wu, Z. A. Miller, B. Adhimoolam, D. D. Zackey, B. K. Khan, R. Ketelle, K. P.Ranki, and B. L. Miller, “Verbal Creativity in Semantic Variant Primary Progressive Aphasia,” Neurocase 21 (2015): 73–78.

04 美人鱼和乐高大师

1.J. R. Hayes, “Cognitive Processes in Creativity,” in Handbook of Creativity, Eds. J. A.Glover, R. R. Ronning, and C. R. Reynolds (New York: Plenum Press, 1989): 135–145; D. K. Simonton, “Creative Development as Acquired Expertise: Theoretical Issues and Empirical Tests,” Developmental Review 20 (2000): 283–318.

2.M. Csikszentmihalyi, Creativity: Flow and the Psychology of Discovery and Invention (New York: HarperCollins, 1996).

3.关于更为详细的评述,参见E. Goldberg, The Executive Brain: Frontal Lobes and the Civilized Mind (New York: Oxford University Press, 2009), 以及E. Goldberg,The New Executive Brain: Frontal Lobes in a Complex World (New York: Oxford University Press, 2009)。

4.J. M. Fuster, The Neuroscience of Freedom and Creativity: Our Predictive Brain(Cambridge, UK: Cambridge University Press, 2013).

5.D. H. Ingvar, “Memory of the Future: An Essay on the Temporal Organization of Conscious Awareness,” Human Neurobiology 4 (1985): 127–136.

6.N. Chomsky, Language and Mind, 3rd edn. (Cambridge, UK: Cambridge University Press, 2006); N. Chomsky, Syntactic Structures (Berlin, Germany: De Gruyter Mouton, 1957); N. Chomsky, Aspects of the Theory of Syntax (Cambridge, MA: MIT Press, 1965).

7.E. Goldberg and R. Bilder, “Frontal Lobes and Hierarchic Organization of Neurocognitive Control,” in Frontal Lobes Revisited, Ed. E. Perecman (New York:IRBN, 1987): 159–187.

8.D. Everett, “Cultural Constraints on Grammar and Cognition in Pirah?,” Current Anthropology 46 (2005): 621–646; A. Nevins, D. Pesetsky, and C. Rodrigues,“Evidence and Argumentation: A Reply to Everett,” Language 85 (2009): 671–681.

9.Y. N. Harari, Sapiens: A Brief History of Humankind (New York: Harper, 2015).

10.P. Shipman, The Invaders: How Humans and Their Dogs Drove Neanderthals to Extinction, 3rd edn. (Cambridge, MA: Belknap Press, 2015).

11.S. L. Bressler and V. Menon, “Large-Scale Brain Networks in Cognition: Emerging Methods and Principles,” Trends in Cognitive Sciences 14 (2010): 277–290; M.D. Fox, A. Z. Snyder, J. L. Vincent, M. Corbetta, D. C. Van Essen, and M. E.Raichle, “The Human Brain Is Intrinsically Organized Into Dynamic, Anticorrelated Functional Networks,” Proceedings of the National Academy of Sciences 102 (2005):9673–9678.

12.D. Mantini, M. Corbetta, G. L. Romani, G. A. Orban, and W. Vanduffel,“Evolutionarily Novel Functional Networks in the Human Brain?” The Journal of Neuroscience 33 (2013): 3259–3275; R. N. Spreng, W. D. Stevens, J. P. Chamberlain,A. W. Gilmore, and D. L. Schacter, “Default Network Activity, Coupled with the Frontoparietal Control Network, Supports Goal-Directed Cognition,” Neuroimage 53(2010): 303–317.

13.关于对“功能系统”概念的进一步描述,参见A. R. Luria, Higher Cortical Functions in Man (New York: Basic Books, 1980)。

14.关于认知“模块化”理论全盛期的讨论,参见E. Goldberg, “The Rise and Fall of Modular Orthodoxy,” Journal of Clinical and Experimental Neuropsychology 17(1995): 193–208。

15.D. Wang, R. L. Buckner, and X. H. Liu, “Functional Specialization in the Human Brain Estimated by Intrinsic Hemispheric Interaction,” The Journal of Neuroscience 34 (2014): 12341–12352.

16.A. Ardestani, W. Shen, F. Darvas, A. W. Toga, and J. M. Fuster, “Modulation of Frontoparietal Neurovascular Dynamics in Working Memory,” Journal of Cognitive Neuroscience 28 (2016): 379–401.

17.R. L. Buckner, J. R. Andrews-Hanna, and D. L. Schacter, “The Brain’s Default Network Anatomy, Function, and Relevance to Disease,” Annals of the New York Academy of Sciences 1124 (2008): 1–38.

18.A. R. Luria, Higher Cortical Functions in Man (New York: Basic Books, 1980);E. Goldberg, “The Gradiental Approach to Neocortical Functional Organization,”Journal of Clinical and Experimental Neuropsychology 11 (1989): 489–517.

19.E. Goldberg, D. Roediger, N. E. Kucukboyaci, C. Carlson, O. Devinsky, R.Kuzniecky, E. Halgren, and T. Thesen, “Hemispheric Asymmetries of Cortical Volume in the Human Brain,” Cortex 49 (2013): 200–210.

20.D. Sridharan, D. J. Levitin, and V. Menon, “A Critical Role for the Right Frontoinsular Cortex in Switching Between Central-Executive and Default-Mode Networks,” Proceedings of the National Academy of Sciences 105 (2008): 12569–12574; D. Sridharan, D. J. Levitin, C. H. Chafe, J. Berger, and V. Menon, “Neural Dynamics of Event Segmentation in Music: Converging Evidence for Dissociable Ventral and Dorsal Networks,” Neuron 55 (2007): 521–532; S. L. Bressler and V. Menon, “Large-scale Brain Networks in Cognition: Emerging Methods and Principles,” Trends in Cognitive Sciences 14 (2010): 277–290.

21.E. Goldberg, The New Executive Brain: Frontal Lobes in a Complex World (New York: Oxford University Press, 2009); M. Koenigs and J. Grafman, “The Functional Neuroanatomy of Depression: Distinct Roles for Ventromedial and Dorsolateral Prefrontal Cortex,” Behavioural Brain Research 201 (2009): 239–243.

22.X. J. Chai, S. Whitfield-Gabrieli, A. K. Shinn, J. D. E. Gabrieli, A. N. Casta?ón,J. M. McCarthy, B. M. Cohen, and D. ?ngür, “Abnormal Medial Prefrontal Cortex Resting-State Connectivity in Bipolar Disorder and Schizophrenia,”Neuropsychopharmacology 36 (2011): 2009–2017; P. J. Hellyer, M. Shanahan,G. Scott, R. J. Wise, D. J. Sharp, and R. Leech, “The Control of Global Brain Dynamics: Opposing Actions of Frontoparietal Control and Default Mode Networks on Attention,” Journal of Neuroscience 34 (2014): 451–461.

23.C. F. Jacobsen, “An Experimental Analysis of the Frontal Association Areas in Primates,” Journal of Nervous and Mental Disease 82 (1935): 1–14; C. F.Jacobsen, “Studies of Cerebral Function in Primates. I. The Functions of the Frontal Association Areas in Monkeys,” Comparative Psychology Monographs 13 (1936):1–60.

24.J. M. Fuster and G. E. Alexander, “Delayed Response Deficit by Cryogenic Depression of Frontal Cortex,” Brain Research 20 (1970): 85–90; J. M. Fuster, “Unit Activity in Prefrontal Cortex During Delayed-Response Performance: Neuronal Correlates of Transient Memory,” Journal of Neurophysiology 36 (1973): 61–78; J.M. Fuster and G. E. Alexander, “Neuron Activity Related to Short-term Memory,”Science 173 (1971): 652–654.

25.A. Baddeley, “Working Memory: Looking Back and Looking Forward,” Nature Reviews Neuroscience 4 (2003): 829–839.

26.L. D. Selemon and P. S. Goldman-Rakic, “Common Cortical and Subcortical Targets of the Dorsolateral Prefrontal and Posterior Parietal Cortices in the Rhesus Monkey:Evidence for a Distributed Neural Network Subserving Spatially Guided Behavior,”Journal of Neuroscience 8 (1988): 4049–4068; P. S. Goldman-Rakic, “Circuitry of the Primate Prefrontal Cortex and the Regulation of Behavior by Representational Memoir,” in Handbook of Physiology, The Nervous System, Higher Functions of the Brain, Ed. F. Plum (Bethesda, MD: American Physiological Society, 1987): 373–417;M. L. Schwartz and P. S. Goldman-Rakic, “Prenatal Specification of Callosal Connections in Rhesus Monkey,” Journal of Comparative Neurology 307 (1991):144–162.

27.J. M. Fuster, The Prefontal Cortex, 5th edn. (London, UK: Academic Press, 2015).

28.W. K. Kirchner, “Age Differences in Short-term Retention of Rapidly Changing Information,” Journal of Experimental Psychology 55 (1958): 352–358; S. M. Jaeggi,M. Buschkuehl, W. J. Perrig, and B. Meier, “The Concurrent Validity of the N-back Task as a Working Memory Measure,” Memory 18 (2010): 394–412; S. M. Jaeggi, M.Buschkuehl, J. Jonides, and W. J. Perrig, “Improving Fluid Intelligence with Training on Working Memory,” Proceedings of the National Academy of Sciences 105 (2008):6829–6833.

29.J. M. Fuster, The Neuroscience of Freedom and Creativity: Our Predictive Brain(Cambridge, UK: Cambridge University Press, 2013).

30.R. Smullyan, G?del’s Incompleteness Theorems (Oxford University Press, 1991).

31.J. M. Fuster, The Prefontal Cortex, 5th edn. (London, UK: Academic Press, 2015).

32.A. F. T. Arnsten, C. D. Paspalas, N. J. Gamo, Y. Yang, and M. Wang, “Dynamic Network Connectivity: A New Form of Neuroplasticity,” Trends in Cognitive Sciences 14 (2010): 365–375; A. F. T. Arnsten, M. J. Wang, and C. D. Paspalas,“Neuromodulation of Thought: Flexibilities and Vulnerabilities in Prefrontal Cortical Network Synapses,” Neuron 76 (2012): 223–239.

目录
设置
设置
阅读主题
字体风格
雅黑 宋体 楷书 卡通
字体大小
适中 偏大 超大
保存设置
恢复默认
手机
手机阅读
扫码获取链接,使用浏览器打开
书架同步,随时随地,手机阅读
首 页 < 上一章 章节列表 下一章 > 尾 页