Department of Biomedical Engineering, University of Rochester, Rochester, NY 14642, USA.
Hear Res. 2010 Oct 1;269(1-2):134-45. doi: 10.1016/j.heares.2010.06.018. Epub 2010 Jun 30.
Evidence suggests that the lateral superior olive (LSO) initiates an excitatory pathway specialized to process interaural level differences (ILDs), the primary cues used by mammals to localize high-frequency sounds in the horizontal plane. Type I units in the central nucleus of the inferior colliculus (ICC) of decerebrate cats exhibit monaural and binaural response properties qualitatively similar to those of LSO units, and are thus supposed to be the midbrain component of the ILD pathway. Studies have shown, however, that the responses of ICC cells do not often reflect simply the output of any single source of excitatory inputs. The goal of this study was to compare directly the monaural, spectral response properties of LSO and type I units measured in unanesthetized decerebrate cats. Compared to LSO units, type I units have narrower V-shaped excitatory tuning curves, higher spontaneous rates, lower maximum stimulus-evoked firing rates and more nonmonotonic rate-level curves for tones and noise. In addition, low-frequency type I units have lower thresholds to tones than corresponding LSO units. Taken together, these results suggest that the excitatory ILD pathway from LSO to ICC is mostly a high-frequency channel, and that additional inputs transform LSO influences in the ICC.
有证据表明,外侧上橄榄核(LSO)启动了一条专门处理耳间强度差(ILDs)的兴奋性通路,ILDs 是哺乳动物在水平面上定位高频声音的主要线索。去大脑猫的下丘中央核(ICC)中的 I 型单位表现出与 LSO 单位定性相似的单耳和双耳反应特性,因此被认为是 ILD 通路的中脑成分。然而,研究表明,ICC 细胞的反应并不总是简单地反映任何单一兴奋性输入源的输出。本研究的目的是直接比较在未麻醉去大脑猫中测量的 LSO 和 I 型单位的单耳、光谱反应特性。与 LSO 单位相比,I 型单位具有更窄的 V 形兴奋性调谐曲线、更高的自发率、更低的最大刺激诱发放电率以及对音调的更非单调的率-级曲线和噪声。此外,低频 I 型单位对音调的阈值低于相应的 LSO 单位。总之,这些结果表明,LSO 到 ICC 的兴奋性 ILD 通路主要是一个高频通道,而额外的输入则改变了 ICC 中的 LSO 影响。