Instituto de Investigación en Discapacidades Neurológicas, Universidad de Castilla-La Mancha, Albacete, Spain; and.
J Neurophysiol. 2014 Feb;111(4):817-35. doi: 10.1152/jn.00971.2011. Epub 2013 Nov 27.
Besides the rapid fluctuations in pressure that constitute the "fine structure" of a sound stimulus, slower fluctuations in the sound's envelope represent an important temporal feature. At various stages in the auditory system, neurons exhibit tuning to envelope frequency and have been described as modulation filters. We examine such tuning in the ventral nucleus of the lateral lemniscus (VNLL) of the pentobarbital-anesthetized cat. The VNLL is a large but poorly accessible auditory structure that provides a massive inhibitory input to the inferior colliculus. We test whether envelope filtering effectively applies to the envelope spectrum when multiple envelope components are simultaneously present. We find two broad classes of response with often complementary properties. The firing rate of onset neurons is tuned to a band of modulation frequencies, over which they also synchronize strongly to the envelope waveform. Although most sustained neurons show little firing rate dependence on modulation frequency, some of them are weakly tuned. The latter neurons are usually band-pass or low-pass tuned in synchronization, and a reverse-correlation approach demonstrates that their modulation tuning is preserved to nonperiodic, noisy envelope modulations of a tonal carrier. Modulation tuning to this type of stimulus is weaker for onset neurons. In response to broadband noise, sustained and onset neurons tend to filter out envelope components over a frequency range consistent with their modulation tuning to periodically modulated tones. The results support a role for VNLL in providing temporal reference signals to the auditory midbrain.
除了构成声音刺激“精细结构”的压力快速波动外,声音包络的较慢波动代表了一个重要的时间特征。在听觉系统的各个阶段,神经元表现出对包络频率的调谐,并被描述为调制滤波器。我们在戊巴比妥钠麻醉的猫的外侧丘系腹核(VNLL)中检查这种调谐。VNLL 是一个大而难以接近的听觉结构,它对下丘提供大量抑制性输入。我们测试了当多个包络分量同时存在时,包络滤波是否有效地应用于包络谱。我们发现了两种具有互补特性的广泛的响应类别。起始神经元的放电率调谐到调制频率的带内,在该带内它们也强烈地与包络波形同步。尽管大多数持续神经元的放电率对调制频率的依赖性很小,但其中一些神经元的调谐较弱。这些神经元在同步时通常是带通或低通调谐,并且反向相关方法表明,它们的调制调谐可保留给音调载波的非周期性、噪声调制的包络。起始神经元对这种类型的刺激的调制调谐较弱。对于宽带噪声,持续和起始神经元往往会滤除与它们对周期性调制音调的调制调谐一致的频率范围内的包络分量。结果支持 VNLL 在为听觉中脑提供时间参考信号方面的作用。