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Who Needs Emotions? The Brain Meets the Robot

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organization of motivational–emotional systems 71<br />

Katona, I., Rancz, E. A., Acsady, L., Ledent, C., Mackie, K., Hajos, N., & Freund,<br />

T. F. (2001). Distribution of CB1 cannabinoid receptors in <strong>the</strong> amygdala and<br />

<strong>the</strong>ir role in <strong>the</strong> control of GABAergic transmission. Journal of Neuroscience,<br />

21, 9506–9518.<br />

Keefe, K. A., & Gerfen, C. R. (1996). D 1 dopamine receptor–mediated induction<br />

of zif268 and c-fos in <strong>the</strong> dopamine-depleted striatum: Differential regulation<br />

and independence from NMDA receptors. Journal of Comparative Neurology,<br />

367, 165–176.<br />

Kehoe, P., & Blass, E. M. (1986a). Behaviorally functional opioid systems in infant<br />

rats: I. Evidence for olfactory and gustatory classical conditioning. Behavioral<br />

Neuroscience, 100, 359–367.<br />

Kehoe, P., & Blass, E. M. (1986b). Opioid-mediation of separation distress in 10day-old<br />

rats: Reversal of stress with maternal stimuli. Developmental Psychobiology,<br />

19, 385–398.<br />

Kelley, A. E., Bakshi, V. P., Haber, S. N., Steininger, T. L., Will, M. J., & Zhang, M.<br />

(2002). Opioid modulation of taste hedonics within <strong>the</strong> ventral striatum. Physiology<br />

and Behavior, 76, 365–377.<br />

Keverne, E. B., Martensz, N. D., & Tuite, B. (1989). Beta-endorphin concentrations<br />

in cerebrospinal fluid of monkeys are influenced by grooming relationships.<br />

Psychoneuroendocrinology, 14, 155–161.<br />

Koepp, M. J., Gunn, R. N., Lawrence, A. D., Cunningham, V. J., Dagher, A., Jones,<br />

T., Brooks, D. J., Bench, C. J., & Grasby, P. M. (1998). Evidence for striatal<br />

dopamine release during a video game. Nature, 393, 266–268.<br />

Kokay, I. C., & Mercer, A. R. (1996). Characterisation of dopamine receptors in<br />

insect (Apis mellifera) brain. <strong>Brain</strong> Research, 706, 47–56.<br />

LaMotte, C. C., Snowman, A., Pert, C. B., & Snyder, S. H. (1978). Opiate receptor<br />

binding in rhesus monkey brain: Association with limbic structures. <strong>Brain</strong> Research,<br />

155, 374–379.<br />

LeDoux, J. E. (2000). Emotion circuits in <strong>the</strong> brain. Annual Review of Neuroscience,<br />

23, 155–184.<br />

Lester, L. S., & Fanselow, M. S. (1985). Exposure to a cat produces opioid analgesia<br />

in rats. Behavioral Neuroscience, 99, 756–759.<br />

Levine, A. S., Morley, J. E., Gosnell, B. A., Billington, C. J., & Bartness, T. J. (1985).<br />

Opioids and consummatory behavior. <strong>Brain</strong> Research Bulletin, 14, 663–672.<br />

Lewis, B. L., & O’Donnell, P. (2000). Ventral tegmental area afferents to <strong>the</strong> prefrontal<br />

cortex maintain membrane potential “up” states in pyramidal neurons<br />

via D 1 dopamine receptors. Cerebal Cortex, 10, 1168–1175.<br />

Lord, J. A., Waterfield, A. A., Hughes, J., & Kosterlitz, H. W. (1977). Endogenous<br />

opioid peptides: Multiple agonists and receptors. Nature, 267, 495–499.<br />

MacLean, P. (1949). Psychosomatic disease and <strong>the</strong> “visceral brain.” Psychosomatic<br />

Medicine, 11, 338–353.<br />

MacLean, P. D. (1958). <strong>The</strong> limbic system with respect to self preservation and <strong>the</strong><br />

preservation of <strong>the</strong> species. Journal of Nervous and Mental Disease, 127, 1–11.<br />

MacLean, P. D. (1969). <strong>The</strong> hypothalamus and emotional behavior. In W. J. H.<br />

Nauta (Ed), <strong>The</strong> hypothalamus. Springfield, IL: Thomas.

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