The switching model of latent inhibition: an update of neural substrates

被引:207
作者
Weiner, I [1 ]
Feldon, J [1 ]
机构
[1] SWISS FED INST TECHNOL, INST TOXICOL, LAB BEHAV BIOL & FUNCT TOXICOL, CH-8603 SCHWERZENBACH, SWITZERLAND
关键词
latent inhibition; switching model; dopamine; nucleus accumbens shell; core; amphetamine; neuroleptics; hippocampal formation; schizophrenia;
D O I
10.1016/S0166-4328(97)02314-0
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
Organisms exposed to a stimulus which has no significant consequences, show subsequently latent inhibition (LI), namely, retarded conditioning to this stimulus. LI is considered to index the capacity to ignore irrelevant stimuli and its disruption has recently received increasing interest as an animal model of cognitive deficits in schizophrenia. Initial studies indicated that LI is disrupted by systemic or intra-accumbens injections of amphetamine and hippocampal lesions, and potentiated by systemic administration of neuroleptics. On the basis of these findings, the switching model of LI proposed that LI depends on the subicular input to the nucleus accumbens (NAC). Subsequent studies supported and refined this proposition. Lesion studies show that LI is indeed disrupted by severing the subicular input to the NAG, and further implicate the entorhinal/ventral subicular portion of this pathway projecting to the shell subterritory of the NAG. There is a functional dissociation between the shell and core subterritories of the NAG, with lesions of the former but not of the latter disrupting LI. This suggests that the shell is necessary for the expression and the core for the disruption of LI. The involvement of the NAC has been also demonstrated by findings that LI is disrupted by intra-accumbens injection of amphetamine and potentiated by DA depletion or blockade in this structure. Disruption and potentiation of LI by systemic administration of amphetamine and neuroleptics, respectively, have been firmly established, and in addition, have been shown to be sensitive to parametric manipulations of the LI procedure. LI is unaffected by lesions and DA manipulations of medial prefrontal cortex and lesions of basolateral amygdala. The implications of these findings for LI as an animal model of schizophrenia are discussed. (C) 1997 Elsevier Science B.V.
引用
收藏
页码:11 / 25
页数:15
相关论文
共 141 条
[1]   EFFECTS OF CS PREEXPOSURES ON AVOIDANCE LEARNING IN RATS WITH HIPPOCAMPAL LESIONS [J].
ACKIL, JE ;
MELLGREN, RL ;
HALGREN, C ;
FROMMER, GP .
JOURNAL OF COMPARATIVE AND PHYSIOLOGICAL PSYCHOLOGY, 1969, 69 (4P1) :739-&
[2]   THE DISORDER OF CONSCIOUSNESS IN SCHIZOPHRENIA [J].
ANSCOMBE, R .
SCHIZOPHRENIA BULLETIN, 1987, 13 (02) :241-260
[3]   THE EFFECTS OF ELECTROLYTIC MEDIAN RAPHE LESIONS ON 2 MEASURES OF LATENT INHIBITION [J].
ASIN, KE ;
WIRTSHAFTER, D ;
KENT, EW .
BEHAVIORAL AND NEURAL BIOLOGY, 1980, 28 (04) :408-417
[4]   NEURONS IN THE VENTRAL SUBICULUM, AMYGDALA AND ENTORHINAL CORTEX WHICH PROJECT TO THE NUCLEUS-ACCUMBENS - THEIR INPUT FROM SOMATOSTATIN-IMMUNOREACTIVE BOUTONS [J].
AYLWARD, RLM ;
TOTTERDELL, S .
JOURNAL OF CHEMICAL NEUROANATOMY, 1993, 6 (01) :31-42
[5]   LATENT INHIBITION AND PSYCHOTIC PRONENESS IN NORMAL SUBJECTS [J].
BARUCH, I ;
HEMSLEY, DR ;
GRAY, JA .
PERSONALITY AND INDIVIDUAL DIFFERENCES, 1988, 9 (04) :777-783
[6]   DIFFERENTIAL PERFORMANCE OF ACUTE AND CHRONIC-SCHIZOPHRENICS IN A LATENT INHIBITION TASK [J].
BARUCH, I ;
HEMSLEY, DR ;
GRAY, JA .
JOURNAL OF NERVOUS AND MENTAL DISEASE, 1988, 176 (10) :598-606
[7]   ALTERATIONS OF SPONTANEOUS NEURONAL-ACTIVITY IN CAUDATE-PUTAMEN, NUCLEUS ACCUMBENS AND AMYGDALOID COMPLEX OF RATS PRODUCED BY D-AMPHETAMINE [J].
BASHORE, TR ;
REBEC, GV ;
GROVES, PM .
PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR, 1978, 8 (04) :467-474
[8]   PRENATAL DISTURBANCES OF NERVE-CELL MIGRATION IN THE ENTORHINAL REGION - A COMMON VULNERABILITY FACTOR IN FUNCTIONAL PSYCHOSES [J].
BECKMANN, H ;
JAKOB, H .
JOURNAL OF NEURAL TRANSMISSION-GENERAL SECTION, 1991, 84 (1-2) :155-164
[9]  
BERENDSE HW, 1992, J NEUROSCI, V12, P2079
[10]  
Bleuler E, 1911, DEMENTIA PRAECOX