INVITRO NEURONS IN MAMMALIAN CORTICAL LAYER 4 EXHIBIT INTRINSIC OSCILLATORY ACTIVITY IN THE 10-HZ TO 50-HZ FREQUENCY-RANGE

被引:427
作者
LLINAS, RR
GRACE, AA
YAROM, Y
机构
[1] UNIV PITTSBURGH,DEPT BEHAV NEUROSCI & PSYCHIAT,PITTSBURGH,PA 15260
[2] HEBREW UNIV JERUSALEM,INST LIFE SCI,DEPT NEUROBIOL,JERUSALEM,ISRAEL
关键词
PERSISTENT SODIUM CONDUCTANCE; CONJUNCTIVE PROPERTIES; COGNITION;
D O I
10.1073/pnas.88.3.897
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
We report here the presence of fast subthreshold oscillatory potentials recorded in vitro from neurons within layer 4 of the guinea pig frontal cortex. Two types of oscillatory neurons were recorded: (i) One type exhibited subthreshold oscillations whose frequency increased with membrane depolarization and encompassed a range of 10-45 Hz. Action potentials in this type of neuron demonstrated clear after-hyperpolarizations. (ii) The second type of neuron was characterized by narrow-frequency oscillations near 35-50 Hz. These oscillations often outlasted the initiating depolarizing stimulus. No calcium component could be identified in their action potential. In both types of cell the subthreshold oscillations were tetrodotoxin-sensitive, indicating that the depolarizing phase of the oscillation was generated by a voltage-dependent sodium conductance. The initial depolarizing phase was followed by a potassium conductance responsible for the falling phase of the oscillatory wave. In both types of cell, the subthreshold oscillation could trigger spikes at the oscillatory frequency, if the membrane was sufficiently depolarized. Combining intracellular recordings with Lucifer yellow staining showed that the narrow-frequency oscillatory activity was produced by a sparsely spinous interneuron located in layer 4 of the cortex. This neuron has extensive local axonal collaterals that ramify in layers 3 and 4 such that they may contribute to the columnar synchronization of activity in the 40- to 50-Hz range. Cortical activity in this frequency range has been proposed as the basis for the "conjunctive properties" of central nervous system networks.
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页码:897 / 901
页数:5
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