Gênero e os Nossos Cérebros

Gina Rippon · Capítulo 33 de 46

Páginas do PDF

Gênero e os Nossos Cérebros

publicação.[68]

https://www.independent.co.uk/life-style/the-hardwired-difference-between-male-and-female-brains-

could-explainwhy-men-are-better-at-map-8978248.html (acessado em 4 novembro de 2018); J. Naish, “Men’s and women’s brains: the truth!”, Mail Online, 5 de dezembro de 2013,

https://www.dailymail.co.uk/femail/article-2518327/Mens-womensbrains-truth-As-research-proves-

sexes-brains-ARE-wired-differentlywomens-cleverer-ounce-ounce–men-read-female-feelings.html

(acessado em 4 de novembro de 2018). • 68. C. O’Connor e H. Joffe, “Gender on the Brain: A Case Study of Science Communication in the New Media Environment”, PLoS One 9:10 (2014), e110830.

 

CAPÍTULO 5: O cérebro do século XXI

1. K. J. Friston, “The Fantastic Organ”, Brain 136:4 (2013), pp. 1328-32. • 2. N. K. Logothetis, “The

Ins and Outs of fMRI Signals”, Nature Neuroscience 10:10 (2007), p. 1230. • 3. K. J. Friston,

“Functional and Effective Connectivity: A Review”, Brain Connectivity 1:1 (2011), pp. 13-36. • 4. Y. Assaf e O. Pasternak, “Diffusion Tensor Imaging (DTI)-Based White Matter Mapping in Brain

Research: A Review”, Journal of Molecular Neuroscience 34:1 (2008), pp. 51-61. • 5. A. Holtmaat e K. Svoboda, “Experience-Dependent Structural Synaptic Plasticity in the Mammalian Brain”, Nature

Reviews Neuroscience 10:9 (2009), p. 647. • 6. A. Razi e K. J. Friston, “The Connected Brain: Causality, Models, and Intrinsic Dynamics”, IEEE Signal Processing Magazine 33:3 (2016), pp. 14-

35. • 7. A. von Stein e J. Sarnthein, “Different Frequencies for Different Scales of Cortical Integration: From Local Gamma to Long Range Alpha/Theta Synchronization”, International Journal

of Psychophysiology 38:3 (2000), pp. 301-13. • 8. S. Baillet, “Magnetoencephalography for Brain

Electrophysiology and Imaging”, Nature Neuroscience 20:3 (2017), p. 327. • 9. W. D. Penny, S. J. Kiebel, J. M. Kilner e M. D. Rugg, “Event-Related Brain Dynamics”, Trends in Neurosciences 25:8

(2002), pp. 387-9. • 10. K. Kessler, R. A. Seymour e G. Rippon, “Brain Oscillations and Connectivity in Autism Spectrum Disorders (ASD): New Approaches to Methodology, Measurement and

Modelling”, Neuroscience and Biobehavioral Reviews 71 (2016), pp. 601-20. • 11. S. E. Fisher, “Translating the Genome in Human Neuroscience”, em G. Marcus e J. Freeman (orgs.), The Future of the Brain: Essays by the World’s Leading Neuroscientists (Princeton, NJ, Princeton University

Press, 2015), pp. 149-58. • 12. S. R. Chamberlain, U. Muller, A. D. Blackwell, L. Clark, T. W. Robbins e B. J. Sahakian, “Neurochemical Modulation of Response Inhibition and Probabilistic

Learning in Humans”, Science 311:5762 (2006), pp. 861-3. • 13. C. Eliasmith, “Building a Behaving

Brain”, em Marcus e Freeman (orgs.), The Future of the Brain, pp. 125–36. • 14. A. Zador, “The Connectome as a DNA Sequencing Problem”, em Marcus e Freeman (orgs.), The Future of the

Brain, 2015), pp. 40-49, na p. 46. • 15. J. W. Lichtman, J. Livet e J. R. Sanes, “A Technicolour

Approach to the Connectome”, Nature Reviews Neuroscience 9:6 (2008), p. 417. • 16. G. Bush, P. Luu e M. I. Posner, “Cognitive and Emotional Influences in Anterior Cingulate Cortex”, Trends in

Cognitive Sciences 4:6 (2000), pp. 215-22. • 17. M. Alper, “The ‘God’ Part of the Brain: A Scientific

Interpretation of Human Spirituality and God” (Naperville, IL, Sourcebooks, 2008). • 18. J. H. Barkow, L. Cosmides e J. Tooby (orgs.), The Adapted Mind: Evolutionary Psychology and the

Generation of Culture (Nova York, Oxford University Press, 1992). • 19. Penny et al., “Event-

Related Brain Dynamics”. • 20. G. Shen, T. Horikawa, K. Majima e Y. Kamitani, “Deep Image

Reconstruction from Human Brain Activity”, bioRxiv (2017), 240317. • 21. R. A. Thompson e C. A. Nelson, “Developmental Science and the Media: Early Brain Development”, American Psychologist

56:1 (2001), pp. 5-15. • 22. Thompson e Nelson, “Developmental Science and the Media”, p. 5. • 23. A. May, “Experience-Dependent Structural Plasticity in the Adult Human Brain”, Trends in

Cognitive Sciences 15:10 (2011), pp. 475-82. • 24. Y. Chang, “Reorganization and Plastic Changes of the Human Brain Associated with Skill Learning and Expertise”, Frontiers in Human Neuroscience 8