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Who Needs Emotions? The Brain Meets the Robot

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382 conclusions<br />

Localization of grasp representations in humans by positron emission tomography:<br />

1. Observation versus execution. Experimental <strong>Brain</strong> Research, 111, 246–252.<br />

Rizzolatti, G., & Luppino, G. (2001). <strong>The</strong> cortical motor system. Neuron, 31, 889–<br />

901.<br />

Rizzolatti, G., & Luppino, G. (2003). Grasping movements: Visuomotor transformations.<br />

In M. A. Arbib (Ed.), <strong>The</strong> handbook of brain <strong>the</strong>ory and neural networks<br />

(2nd ed., pp. 501–504). Cambridge, MA: MIT Press.<br />

Rizzolatti, G., Luppino, G., & Matelli, M. (1998). <strong>The</strong> organization of <strong>the</strong> cortical<br />

motor system: New concepts. Electroencephalography and Clinical Neurophysiology,<br />

106, 283–296.<br />

Rolls, E. T. (1999). <strong>The</strong> brain and emotion. Oxford: Oxford University Press.<br />

Rolls, E. T. (2000). Neurophysiology and functions of <strong>the</strong> primate amygdala, and<br />

<strong>the</strong> neural basis of emotion. In J. P. Aggleton (Ed.), <strong>The</strong> amygdala: A functional<br />

analysis (2nd ed., pp. 447–478). Oxford: Oxford University Press.<br />

Scheibel, M. E., & Scheibel, A. B. (1958). Structural substrates for integrative patterns<br />

in <strong>the</strong> brain stem reticular core. In H. H. Jasper et al. (Eds.), Reticular<br />

formation of <strong>the</strong> brain (pp. 31–68). Boston: Little, Brown.<br />

Schneider, G. E. (1969). Two visual systems. Science, 163, 895–902.<br />

Schultz, W. (2000). Multiple reward signals in <strong>the</strong> brain. Nature Reviews Neuroscience,<br />

1, 199–207.<br />

Stoerig, P. (2001). <strong>The</strong> neuroanatomy of phenomenal vision: A psychological perspective.<br />

Annals of <strong>the</strong> New York Academy of Science, 929, 176–194.<br />

Sutton, R. S., & Barto, A. G. (1998). Reinforcement learning: An introduction. Cambridge,<br />

MA: MIT Press.<br />

Swanson, L. W. (2000). Cerebral hemisphere regulation of motivated behavior.<br />

<strong>Brain</strong> Research, 886, 113–164.<br />

Swanson, L. W., & Mogenson, G. J. (1981). Neural mechanisms for <strong>the</strong> functional<br />

coupling of autonomic, endocrine and somatomotor responses in adaptive behavior.<br />

<strong>Brain</strong> Research, 228, 1–34.<br />

Taira, M., Mine, S., Georgopoulos, A. P., Murata, A., & Sakata, H. (1990). Parietal<br />

cortex neurons of <strong>the</strong> monkey related to <strong>the</strong> visual guidance of hand movement.<br />

Experimental <strong>Brain</strong> Research, 83, 29–36.<br />

Ungerleider, L. G., & Mishkin, M. (1982). Two cortical visual systems. In D. J. Ingle,<br />

M. A. Goodale, & R. J. W. Mansfield (Eds.), Analysis of visual behavior. Cambridge,<br />

MA: MIT Press.<br />

von Neumann, J. (1966). <strong>The</strong>ory of self-reproducing automata. (edited and completed<br />

by A.W. Burks). Urbana: University of Illinois Press.<br />

Watts, A. G. (2001). Neuropeptides and <strong>the</strong> integration of motor responses to dehydration.<br />

Annual Review of Neuroscience, 24, 357–384.<br />

Watts, A. G. (2003). Motivation, neural substrates. In M. A. Arbib (Ed.), <strong>The</strong> handbook<br />

of brain <strong>the</strong>ory and neural networks (2nd ed., pp. 680–683). Cambridge,<br />

MA: MIT Press.<br />

Weiskrantz, L., Warrington, E. K., Sanders, M. D., & Marshall, J. (1974). Visual<br />

capacity in <strong>the</strong> hemianopic field following a restricted occipital ablation. <strong>Brain</strong>,<br />

97, 709–728.

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