Louage Dries H G, van der Heijden Marcel, Joris Philip X
Laboratory of Auditory Neurophysiology, Medical School, K. U. Leuven, B-3000 Leuven, Belgium.
J Neurosci. 2005 Feb 9;25(6):1560-70. doi: 10.1523/JNEUROSCI.4742-04.2005.
Compared with auditory nerve (AN) fibers, trapezoid body (TB) fibers of the cat show enhanced synchronization to low-frequency tones. This phenomenon probably contributes to the high temporal resolution of binaural processing. We examined whether enhanced synchronization also occurs to sustained broadband noise. We recorded responses to a reference Gaussian noise and its polarity-inverted version in the TB of barbiturate-anesthetized cats. From these we constructed shuffled autocorrelograms (SACs) and quantified spike timing by measuring the amplitude and width of their central peak. Many TB fibers with low characteristic frequency (CF) showed SACs with higher and narrower central peaks than ever observed in the AN, indicating better consistency and precision of temporal coding. Larger peaks were also observed in TB fibers with high CF, but this was mostly caused by higher average firing rates, resulting in a larger number of coincident spikes across stimulus repetitions. The results document monaural preprocessing of the temporal information delivered to binaural nuclei in the olivary complex, which likely contributes to the high sensitivity to interaural time differences.
与听觉神经(AN)纤维相比,猫的斜方体(TB)纤维对低频音调表现出更强的同步性。这种现象可能有助于双耳处理的高时间分辨率。我们研究了增强的同步性是否也出现在持续的宽带噪声中。我们记录了巴比妥麻醉猫的TB对参考高斯噪声及其极性反转版本的反应。从中我们构建了混洗自相关图(SAC),并通过测量其中心峰的幅度和宽度来量化尖峰时间。许多具有低特征频率(CF)的TB纤维显示出比在AN中观察到的更高、更窄的中心峰的SAC,表明时间编码具有更好的一致性和精度。在具有高CF的TB纤维中也观察到更大的峰,但这主要是由更高的平均放电率引起的,导致在刺激重复过程中有更多的同步尖峰。结果记录了传递到橄榄复合体双耳核的时间信息的单耳预处理,这可能有助于对双耳时间差的高敏感性。