288
D. Yurelun-Todd, “Emotional and Cognitive Changes During Adolescence,” Curr Opinion in Neurobiol 17 (2007): 251; B. Luna et al., “Maturation of Widely Distributed Brain Function Subserves Cognitive Development,” Neuroimage 13 (2001): 786; B. Schlaggar et al., “Functional Neuroanatomical Differences Between Adults and School-Age Children in the Processing of Single Words,” Sci 296 (2002): 1476.
289
A. Wang et al., “Developmental Changes in the Neural Basis of Interpreting Communicative Intent,” SCAN 1 (2006): 107.
290
T. Paus et al., “Maturation of White Matter in the Human Brain: A Review of Magnetic Resonance Studies,” Brain Res Bull 54 (2001): 255; A. Raznahan et al., “Patterns of Coordinated Anatomical Change in Human Cortical Development: A Longitudinal Neuroimaging Study of Maturational Coupling,” Neuron 72 (2011): 873; N. Strang et al., “Developmental Changes in Adolescents’ Neural Response to Challenge,” Developmental Cog Nsci 1 (2011): 560.
291
C. Masten et al., “Neural Correlates of Social Exclusion During Adolescence: Understanding the Distress of Peer Rejection,” SCAN (2009): 143.
292
J. Perrin et al., “Growth of White Matter in the Adolescent Brain: Role of Testosterone and Androgen Receptor,” J Nsci 28 (2008): 9519; T. Paus et al., “Sexual Dimorphism in the Adolescent Brain: Role of Testosterone and Androgen Receptor in Global and Local Volumes of Grey and White Matter,” Horm Behav 57 (2010): 63; A. Arnsten and R. Shansky, “Adolescence: Vulnerable Period for Stress-Induced PFC Function?” ANYAS 102 (2006): 143; W. Moore et al., “Facing Puberty: Associations Between Pubertal Development and Neural Responses to Affective Facial Displays,” SCAN 7 (2012): 35; R. Dahl, “Adolescent Brain Development: A Period of Vulnerabilities and Opportunities,” ANYAS 1021 (2004): 1.
293
R. Rosenfield, “Clinical Review: Adolescent Anovulation: Maturational Mechanisms and Implications,” J Clin Endo and Metabolism 98 (2013): 3572.
294
D. Yurelun-Todd, “Emotional and Cognitive Changes During Adolescence,” Curr Opinion in Neurobiol 17 (2007): 251; B. Schlaggar et al., “Functional Neuroanatomical Differences Between Adults and School-Age Children in the Processing of Single Words,” Sci 296 (2002): 1476.
295
W. Moore et al., “Facing Puberty: Associations Between Pubertal Development and Neural Responses to Affective Facial Displays,” SCAN 7 (2012): 35.
296
D. Gee et al., “A Developmental Shift from Positive to Negative Connectivity in Human Amygdala-Prefrontal Circuitry,” J Nsci 33 (2013): 4584.
297
K. McRae et al., “Association Between Trait Emotional Awareness and Dorsal Anterior Cingulate Activity During Emotion Is Arousal-Dependent,” Neuroimage 41 (2008): 648; W. Killgore et al., “Sex-Specific Developmental Changes in Amygdala Responses to Affective Faces,” Neuroreport 12 (2001): 427; W. Killgore and D. Yurgelun-Todd, “Unconscious Processing of Facial Affect in Children and Adolescents,” Soc Nsci 2 (2007): 28; T. Hare et al., “Biological Substrates of Emotional Reactivity and Regulation in Adolescence During an Emotional Go-Nogo Task,” BP 63 (2008): 927; T. Wager et a l., “Prefrontal-Subcortical Pathways Mediating Successful Emotion Regulation,” Neuron 25 (2008): 1037; T. Hare et al., “Self-Control in Decision-Making Involves Modulation of the vmPFC Valuation System,” Sci 324 (2009): 646; C. Masten et al., “Neural Correlates of Social Exclusion During Adolescence: Understanding the Distress of Peer Rejection,” SCAN 4 (2009): 143.; к сноске: Shulman et al., “Sex Differences in the Developmental Trajectories of Impulse Control and Sensation-Seeking from Early Adolescence to Early Adulthood,” J Youth and Adolescence 44 (2013): 1.
298
G. Laviola et al., “Risk-Taking Behavior in Adolescent Mice: Psychobiological Determinants and Early Epigenetic Influence,” Nsci Biobehav Rev 27 (2003): 19; V. Reyna and F. Farley, “Risk and Rationality in Adolescent Decision Making: Implications for Theory, Practice, and Public Policy,” Psych Sci in the Public Interest 7 (2006): 1; L. Steinberg, “Risk Taking in Adolescence: New Perspectives from Brain and Behavioral Science,” Curr Dir Psych Res 16 (2007): 55; L. Steinberg, Age of Opportunity: Lessons from the New Science of Adolescence (New York: Houghton Mifflin, 2014); C. Moutsiana et al., “Human Development of the Ability to Learn from Bad News,” PNAS 110 (2013): 16396.
299
Критический обзор см. в: A. R. Smith et al., “The Role of the Anterior Insula in Adolescent Decision Making,” Developmental Nsci 36 (2014): 196.
300
К сноске: Shulman et al., “Sex Differences in the Developmental Trajectories of Impulse Control and Sensation-Seeking from Early Adolescence to Early Adulthood,” J Youth and Adolescence 44 (2013): 1.
301
R. Sapolsky, “Open Season,” New Yorker, March 30, 1998, p. 57.
302
D. Rosenberg and D. Lewis, “Changes in the Dopaminergic Innervation of Monkey Prefrontal Cortex During Late Postnatal Development: A Tyrosine Hydroxylase Immunohistochemical Study,” BP 36 (1994): 272.
303
B. Knutson et al., “FMRI Visualization of Brain Activity During a Monetary Incentive Delay Task,” Neuroimage 12 (2000): 20; E. Barkley-Levenson and A. Galvan, “Neural Representation of Expected Value in the Adolescent Brain,” PNAS 111 (2014): 1646; S. Schneider et al., “Risk Taking and the Adolescent Reward System: A Potential Common linkg to Substance Abuse,” Am J Psychiatry 169 (2012): 39; S. Burnett et al., “Development During Adolescence of the Neural Processing of Social Emotion,” J Cog Nsci 21 (2008): 1; J. Bjork et al., “Developmental Differences in Posterior Mesofrontal Cortex Recruitment by Risky Rewards,” J Nsci 27 (2007): 4839; J. Bjork et al., “Incentive-Elicited Brain Activation in Adolescents: Similarities and Differences from Young Adults,” J Nsci 25 (2004): 1793; S. Blakemore et al., “Adolescent Development of the Neural Circuitry for Thinking About Intentions,” SCAN 2 (2007):