Slow and fast (gamma) neuronal oscillations in the perirhinal cortex and lateral amygdala

被引:72
作者
Collins, DR [1 ]
Pelletier, JG [1 ]
Paré, D [1 ]
机构
[1] Univ Laval, Fac Med, Dept Physiol, Neurophysiol Lab, Quebec City, PQ G1K 7P4, Canada
关键词
D O I
10.1152/jn.2001.85.4.1661
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Most lesion studies emphasize the distinct contributions of the amygdala and perirhinal cortex to memory. Yet, the presence of strong reciprocal excitatory projections between these two structures suggests that they are functionally coupled. To gain some insight into this issue, the present study examined whether the close anatomical ties existing between perirhinal and lateral amygdala (LA) neurons are expressed in their spontaneous activity. To this end, multiple simultaneous recordings of single unit discharges and local field potentials were performed in the LA and perirhinal cortex in ketamine-xylazine anesthetized cats. The perirhinal cortex and LA exhibited a similar pattern of spontaneous activity. Recordings at both sites were dominated by a slow focal oscillation at 1 Hz onto which was superimposed a faster rhythm (approximate to 30 Hz) whose amplitude fluctuated cyclically. Computing cross-correlograms between focal waves recorded simultaneously in the perirhinal cortex and LA revealed a close relationship between their spontaneous activity. Even when recording sites were separated by as much as 8 mm, the slow focal oscillation remained highly correlated (r greater than or equal to 0.7). In contrast, the correlation between fast oscillations was usually lower (r approximate to 0.3). Perievent histograms of neuronal discharges revealed that the firing probability of most LA and perirhinal neurons increased during the depth-negative component of the slow oscillation. In addition, respectively, 47 and 64% of LA and perirhinal neurons exhibited a significant modulation of firing probability in relation to the fast oscillations. Finally, cross-correlating unit discharges simultaneously recorded in the LA and perirhinal cortex confirmed the presence of phase-related oscillatory events in both structures. In summary, our results suggest that the interconnections existing between the perirhinal cortex and LA can support the genesis of coherent neuronal activities at various frequencies. These results imply that cooperative interactions must be taking place between these structures.
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收藏
页码:1661 / 1672
页数:12
相关论文
共 81 条
[1]   Low-frequency (<1 Hz) oscillations in the human sleep electroencephalogram [J].
Achermann, P ;
Borbely, AA .
NEUROSCIENCE, 1997, 81 (01) :213-222
[2]   Impaired declarative memory for emotional material following bilateral amygdala damage in humans [J].
Adolphs, R ;
Cahill, L ;
Schul, R ;
Babinsky, R .
LEARNING & MEMORY, 1997, 4 (03) :291-300
[3]   Long-term potentiation in the in vitro perirhinal cortex displays associative properties [J].
Bilkey, DK .
BRAIN RESEARCH, 1996, 733 (02) :297-300
[4]   A SYNAPTIC MODEL OF MEMORY - LONG-TERM POTENTIATION IN THE HIPPOCAMPUS [J].
BLISS, TVP ;
COLLINGRIDGE, GL .
NATURE, 1993, 361 (6407) :31-39
[5]   SINGLE-UNIT ACTIVITY IN THE LATERAL NUCLEUS OF THE AMYGDALA AND OVERLYING AREAS OF THE STRIATUM IN FREELY BEHAVING RATS - RATES, DISCHARGE PATTERNS, AND RESPONSES TO ACOUSTIC STIMULI [J].
BORDI, F ;
LEDOUX, J ;
CLUGNET, MC ;
PAVLIDES, C .
BEHAVIORAL NEUROSCIENCE, 1993, 107 (05) :757-769
[6]   Synaptology of prefrontal cortical projections to the basolateral amygdala: An electron microscopic study in the rat [J].
BrinleyReed, M ;
Mascagni, F ;
McDonald, AJ .
NEUROSCIENCE LETTERS, 1995, 202 (1-2) :45-48
[7]   Learning and transfer of object-reward associations and the role of the perirhinal cortex [J].
Buckley, MJ ;
Gaffan, D .
BEHAVIORAL NEUROSCIENCE, 1998, 112 (01) :15-23
[8]  
Buffalo EA, 1998, HIPPOCAMPUS, V8, P330, DOI 10.1002/(SICI)1098-1063(1998)8:4<330::AID-HIPO3>3.3.CO
[9]  
2-2
[10]   Cholinergic activation and tonic excitation induce persistent gamma oscillations in mouse somatosensory cortex in vitro [J].
Buhl, EH ;
Tamás, G ;
Fisahn, A .
JOURNAL OF PHYSIOLOGY-LONDON, 1998, 513 (01) :117-126