Joris P X, Smith P H
Laboratory of Auditory Neurophysiology, K.U.Leuven, Campus GHB O&N2, Herestraat 49 bus 1021, B-3000 Leuven, Belgium.
Neuroscience. 2008 Jun 12;154(1):65-76. doi: 10.1016/j.neuroscience.2008.03.002. Epub 2008 Mar 8.
Temporal coding in the auditory nerve is strikingly transformed in the cochlear nucleus. In contrast to fibers in the auditory nerve, some neurons in the cochlear nucleus can show "picket fence" phase-locking to low-frequency pure tones: they fire a precisely timed action potential at every cycle of the stimulus. Such synchronization enhancement and entrainment is particularly prominent in neurons with the spherical and globular morphology, described by Osen [Osen KK (1969) Cytoarchitecture of the cochlear nuclei in the cat. J Comp Neurol 136:453-483]. These neurons receive large axosomatic terminals from the auditory nerve--the end bulbs and modified end bulbs of Held--and project to binaural comparator nuclei in the superior olivary complex. The most popular model to account for picket fence phase-locking is monaural coincidence detection. This mechanism is plausible for globular neurons, which receive a large number of inputs. We draw attention to the existence of enhanced phase-locking and entrainment in spherical neurons, which receive too few end-bulb inputs from the auditory nerve to make a coincidence detection of end-bulb firings a plausible mechanism of synchronization enhancement.
听觉神经中的时间编码在耳蜗核中发生了显著变化。与听觉神经纤维不同,耳蜗核中的一些神经元能够对低频纯音表现出“栅栏式”锁相:它们在刺激的每个周期都精确地发放一个动作电位。这种同步增强和夹带现象在具有球形和球状形态的神经元中尤为突出,这些神经元由奥森描述[奥森KK(1969年)。猫耳蜗核的细胞构筑。《比较神经学杂志》136:453 - 483]。这些神经元从听觉神经接收大的轴体终末——赫尔德终球和改良终球,并投射到上橄榄复合体中的双耳比较核。解释栅栏式锁相最流行的模型是单耳符合检测。对于接收大量输入的球状神经元来说,这种机制是合理的。我们提请注意球形神经元中存在增强的锁相和夹带现象,这些球形神经元从听觉神经接收的终球输入太少,以至于使终球发放的符合检测成为同步增强的一种合理机制。