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180 LeDOUX Fanselow MS.1994.Neural organization of Goldman-Rakic PS.1996.Regional and cel- Proc Naul cad.Sc USd 93:13473-80 Fanselow MS.LeDoux JE.1999.Why we Gray A19.The van PS.1994.EfTects hin mpus is essential for context dis. Hitch vis Lesions of the ry for both with the potentiated startle paradigm tional reward.See Aggleton 1992. he amygdala p 21:1697 amygdala York:Basic Books 1982.The Limbic System.New York: num Gean P-W.Chang F-C.Hun C-R3. tial in ned to acoustic stimuli CG Jattell TW Teich a McCabe PM Schneiderman N.19.The role of amyg antl Romanski LM rma N.198 nucleus in the retention 20:263-7 412:285-94mulm Brai R NMDA amygdala.Narre 388:471-74 .Neve Rl Goddar Disorder and its Treament.ed.Rose formation. temporal pole corte180 LeDOUX Fanselow MS. 1994. Neural organization of the defensive behavior system responsible for fear. Psychon. Bull. Rev. 1:429–38 Fanselow MS, LeDoux JE. 1999. Why we think plasticity underlying Pavlovian fear conditioning occurs in the basolateral amygdala. Neuron 23:229–32 Frankland PW, Cestari V, Filipkowski RK, McDonald RJ, Silva A. 1998. The dorsal hippocampus is essential for context dis￾crimination, but not for contextual condi￾tioning. Behav. Neurosci. 112:863–74 Fuster JM. 1998. Distributed memory for both short and long term. Neurobiol. Learn. Mem. 70:268–74 Gaffan D. 1992. Amygdala and the memory of reward. See Aggleton 1992, pp. 471–83 Gallagher M, Holland PC. 1994. The amygdala complex: multiple roles in associative learning and attention. Proc. Natl. Acad. Sci. USA 91:11771–76 Gardner H. 1987. The Mind’s New Science: A History of the Cognitive Revolution. New York: Basic Books Gazzaniza MS, ed. 1999. The Cognitive Neu￾rosciences. Cambridge, MA: MIT Press. In press Gean P-W, Chang F-C, Hung C-R. 1993. Use￾dependent modification of a slow NMDA receptor-mediated synaptic potential in rat amygdalar slices. J. Neurosci. Res. 34:635– 41 Gentile CG, Jarrell TW, Teich A, McCabe PM, Schneiderman N. 1986. The role of amyg￾daloid central nucleus in the retention of differential Pavlovian conditioning of bra￾dycardia in rabbits. Behav. Brain Res. 20:263–73 Gewirtz JC, Davis M. 1997. Second-order fear conditioning prevented by blocking NMDA receptors in amygdala. Nature 388:471–74 Goddard AW, Gorman JM, Charney DS. 1998. Neurobiology of panic disorder. In Panic Disorder and its Treatment, ed. JF Rosen￾blaum, MH Pollack, pp. 57–92. New York: Dekker Goldman-Rakic PS. 1996. Regional and cel￾lular fractionation of working memory. Proc. Natl. Acad. Sci. USA 93:13473–80 Gray JA. 1982. The Neuropsychology of Anxi￾ety. New York: Oxford Univ. Press Helmstetter FJ, Bellgowan PS. 1994. Effects of muscimol applied to the basolateral amygdala on acquisition and expression of contextual fear conditioning in rats. Behav. Neurosci. 108:1005–9 Hitchcock J, Davis M. 1986. Lesions of the amygdala but not of the cerebellum or red nucleus block conditioned fear as measured with the potentiated startle paradigm. Behav. Neurosci. 100:11–22 Holland PC, Gallagher M. 1999. Amygdala circuitry in attentional and representational processes. Trends Cogn. Sci. 3:65–73 Huang YY, Kandel ER. 1998. Postsynaptic induction and PKA-dependent expression of LTP in the lateral amygdala. Neuron 21:169–78 Huang YY, Nguyen PV, Abel T, Kandel ER. 1996. Long-lasting forms of synaptic potentiation in the mamalian hippocampus. Learn. Mem. 3:74–85 Isaacson RL. 1982. The Limbic System. New York: Plenum Iwata J, LeDoux JE, Meeley MP, Arneric S, Reis DJ. 1986. Intrinsic neurons in the amygdaloid field projected to by the medial geniculate body mediate emotional responses conditioned to acoustic stimuli. Brain Res. 383:195–214 Jarrell TW, Gentile CG, Romanski LM, McCabe PM, Schneiderman N. 1987. Involvement of cortical and thalamic audi￾tory regions in retention of differential bradycardia conditioning to acoustic con￾ditioned stimulii in rabbits. Brain Res. 412:285–94 Josselyn SA, Carlezon, WA, Shi C, Neve RL, Nestler EJ, Davis M. 1998. Overexpression of CREB in the amygdala of rats facilitates long term memory formation. Soc. Neu￾rosci. Abs. Kaada BR. 1960. Cingulate, posterior orbital, anterior insular and temporal pole cortex. In
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