Marsat Gary, Pollack Gerald S
Department of Biology, McGill University, Montreal, Quebec, Canada H3A1B1.
J Neurosci. 2005 Jun 29;25(26):6137-44. doi: 10.1523/JNEUROSCI.0646-05.2005.
We studied the temporal coding properties of identified interneurons in the auditory system of crickets, using information theory as an analytical tool. The ascending neuron 1 (AN1), which is tuned to the dominant carrier frequency (CF) of cricket songs, selectively codes the limited range of amplitude modulation (AM) frequencies that occur in these signals. AN2, which is most sensitive to the ultrasonic frequencies that occur in echolocation calls of insectivorous bats, codes a broader range of AM frequencies, as occur in bat calls. A third neuron, omega neuron 1 (ON1), which is dually tuned to both ranges of carrier frequency, was shown previously to have CF-specific coding properties, allowing it to represent accurately the differing temporal structures of both cricket songs and bat calls. ON1 is a source of contralateral inhibition to AN1 and AN2, enhancing binaural contrast and facilitating sound localization. We used dichotic stimulation to examine the importance of the temporal structure of contralateral inhibition for enhancing binaural contrast. Contralateral inhibition degrades the coding of temporal pattern by AN1 and AN2, but only if the temporal pattern of inhibitory input matches that of excitation. Firing rate is also decreased most strongly by temporally matched contralateral inhibition. This is apparent for AN1 in its mean firing rate; for AN2, high-frequency firing is selectively suppressed. Our results show that the CF-specific coding properties of ON1 allow this single neuron to enhance effectively localization cues for both cricket-like and bat-like acoustic signals.
我们使用信息论作为分析工具,研究了蟋蟀听觉系统中已识别中间神经元的时间编码特性。上调神经元1(AN1),其调谐到蟋蟀歌声的主导载波频率(CF),选择性地编码这些信号中出现的有限范围的调幅(AM)频率。AN2,对食虫蝙蝠回声定位叫声中出现的超声频率最为敏感,编码更广泛范围的AM频率,如蝙蝠叫声中出现的那样。第三个神经元,ω神经元1(ON1),它对两个载波频率范围都进行了双重调谐,先前已被证明具有CF特异性编码特性,使其能够准确地表示蟋蟀歌声和蝙蝠叫声的不同时间结构。ON1是对AN1和AN2的对侧抑制源,增强双耳对比度并促进声音定位。我们使用双耳刺激来研究对侧抑制的时间结构对增强双耳对比度的重要性。对侧抑制会降低AN1和AN2对时间模式的编码,但前提是抑制性输入的时间模式与兴奋性输入的时间模式匹配。 firing rate也会因时间匹配的对侧抑制而下降最为强烈。这在AN1的平均放电率中很明显;对于AN2,高频放电被选择性抑制。我们的结果表明,ON1的CF特异性编码特性允许这个单一神经元有效地增强类似蟋蟀和类似蝙蝠声学信号的定位线索。