Qin Ling, Wang Jingyu, Sato Yu
Department of Physiology, Interdisciplinary Graduate School of Medicine and Engineering, University of Yamanashi, Chuo, Yamanashi, Japan.
J Neurophysiol. 2008 Sep;100(3):1622-34. doi: 10.1152/jn.90364.2008. Epub 2008 Jul 16.
Previous studies in anesthetized animals reported that the primary auditory cortex (A1) showed homogenous phasic responses to FM tones, namely a transient response to a particular instantaneous frequency when FM sweeps traversed a neuron's tone-evoked receptive field (TRF). Here, in awake cats, we report that A1 cells exhibit heterogeneous FM responses, consisting of three patterns. The first is continuous firing when a slow FM sweep traverses the receptive field of a cell with a sustained tonal response. The duration and amplitude of FM response decrease with increasing sweep speed. The second pattern is transient firing corresponding to the cell's phasic tonal response. This response could be evoked only by a fast FM sweep through the cell's TRF, suggesting a preference for fast FM. The third pattern was associated with the off response to pure tones and was composed of several discrete response peaks during slow FM stimulus. These peaks were not predictable from the cell's tonal response but reliably reflected the time when FM swept across specific frequencies. Our A1 samples often exhibited a complex response pattern, combining two or three of the basic patterns above, resulting in a heterogeneous response population. The diversity of FM responses suggests that A1 use multiple mechanisms to fully represent the whole range of FM parameters, including frequency extent, sweep speed, and direction.
先前对麻醉动物的研究报告称,初级听觉皮层(A1)对调频(FM)音调呈现出均匀的相位反应,即在FM扫描穿过神经元的音调诱发感受野(TRF)时,对特定瞬时频率产生短暂反应。在此,我们报告在清醒猫中,A1细胞表现出异质性的FM反应,包括三种模式。第一种是当缓慢的FM扫描穿过具有持续音调反应的细胞的感受野时的持续放电。FM反应的持续时间和幅度随着扫描速度的增加而减小。第二种模式是对应于细胞相位音调反应的短暂放电。这种反应只能由快速FM扫描穿过细胞的TRF诱发,表明对快速FM有偏好。第三种模式与对纯音的关闭反应相关,并且在缓慢FM刺激期间由几个离散的反应峰值组成。这些峰值无法从细胞的音调反应中预测,但可靠地反映了FM扫过特定频率的时间。我们的A1样本通常表现出复杂的反应模式,结合了上述两种或三种基本模式,从而产生了异质性的反应群体。FM反应的多样性表明,A1使用多种机制来充分表征FM参数的整个范围,包括频率范围、扫描速度和方向。