TEMPORAL CODING OF AMPLITUDE AND FREQUENCY-MODULATION IN THE RAT AUDITORY-CORTEX

被引:126
作者
GAESE, BH
OSTWALD, J
机构
[1] Department of Animal Physiology, University of Tübingen, Tübingen, D-72076
关键词
DIRECTION-SELECTIVE; PERIODICITY CODING; SINGLE UNIT; FEATURE DETECTION; INTRINSIC OSCILLATIONS;
D O I
10.1111/j.1460-9568.1995.tb00340.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The rat primary auditory cortex was explored for neuronal responses to pure tones and sinusoidally amplitude-modulated (SAM) and frequency-modulated (SFM) stimuli. Units showed phase-locked responses to SAM stimulation (55%) and SFM stimulation (80%), with modulation frequencies up to 18 Hz. Tuning characteristics to the modulation frequency were mainly band-pass with best modulation frequencies (BMFs) between 4 and 15 Hz. Units with synchronized activity to SFM stimulation showed three response types with respect to the direction of the frequency modulation: 52% were selective to the upward direction, 30% to the downward direction, and 18% had no preference. Triangular frequency modulations were used to test if units were tuned to specific modulation frequencies or to specific rates of frequency change. In the vast majority of units tested the response characteristics were strongly influenced by varying the modulation frequency, whereas varying the rate of frequency change had little effect in the stimulus range used. Units that showed phase-locked responses to SAM and SFM stimulation had similar activity patterns in response to both types of stimuli. BMFs for SAM and SFM stimulation were significantly correlated. Intrinsic oscillations of up to 20 Hz could be seen in the spontaneous activity and after the stimuli independent of the stimulus type. Oscillation frequencies were significantly correlated with the BMFs of the respective units. The results are discussed in terms of a mechanism for periodicity detection based on a temporal code. This could be important for the recognition of complex acoustic signals.
引用
收藏
页码:438 / 450
页数:13
相关论文
共 59 条
[51]   ANALYSIS OF FREQUENCY-MODULATED AND COMPLEX SOUNDS BY SINGLE AUDITORY NEURONES OF BATS [J].
SUGA, N .
JOURNAL OF PHYSIOLOGY-LONDON, 1968, 198 (01) :51-&
[52]  
Suga N., 1983, ADV VERTEBRATE NEURO, V56, P829
[53]  
VARTANIAN IA, 1974, ACUSTICA, V31, P305
[54]   SINGLE UNIT RESPONSES IN COCHLEAR NUCLEUS OF HORSESHOE BATS TO SINUSOIDAL FREQUENCY AND AMPLITUDE MODULATED SIGNALS [J].
VATER, M .
JOURNAL OF COMPARATIVE PHYSIOLOGY, 1982, 149 (03) :369-388
[55]   CLASSIFICATION OF INSECTS BY ECHOLOCATING GREATER HORSESHOE BATS [J].
VONDEREMDE, G ;
SCHNITZLER, HU .
JOURNAL OF COMPARATIVE PHYSIOLOGY A-SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, 1990, 167 (03) :423-430
[56]   RESPONSES OF AUDITORY CORTICAL NEURONS TO STIMULI OF CHANGING FREQUENCY [J].
WHITFIEL.IC ;
EVANS, EF .
JOURNAL OF NEUROPHYSIOLOGY, 1965, 28 (04) :655-&
[57]   CHANGES IN THE VISUAL-SYSTEM OF MONOCULARLY SUTURED OR ENUCLEATED CATS DEMONSTRABLE WITH CYTOCHROME-OXIDASE HISTOCHEMISTRY [J].
WONGRILEY, M .
BRAIN RESEARCH, 1979, 171 (01) :11-28
[58]  
Zilles K. J., 1985, CORTEX RAT STEREOTAX
[59]  
1987, SAS STAT GUIDE PERSO