Wallace Mark N, Anderson Lucy A, Palmer Alan R
Medical Research Council, Institute of Hearing Research, University Park, Nottingham, UK.
J Neurophysiol. 2007 Oct;98(4):1941-52. doi: 10.1152/jn.00697.2007. Epub 2007 Aug 15.
Accurate temporal coding of low-frequency tones by spikes that are locked to a particular phase of the sine wave (phase-locking), occurs among certain groups of neurons at various processing levels in the brain. Phase-locked responses have previously been studied in the inferior colliculus and neocortex of the guinea pig and we now describe the responses in the auditory thalamus. Recordings were made from 241 single units, 32 (13%) of which showed phase-locked responses. Units with phase-locked responses were mainly (82%) located in the ventral division of the medial geniculate body (MGB), and also the medial division (18%), but were not found in the dorsal or shell divisions. The upper limiting frequency of phase-locking varied greatly between units (60-1,100 Hz) and between anatomical divisions. The upper limit in the ventral division was 520 Hz and in the medial was 1,100 Hz. The range of steady-state delays calculated from phase plots also varied: ventral division, 8.6-14 ms (mean 11.1 ms; SD 1.56); medial division, 7.5-11 ms (mean 9.3 ms; SD 1.5). Taken together, these measurements are consistent with the medial division receiving a phase-locked input directly from the brain stem, without an obligatory relay in the inferior colliculus. Cells in both the ventral and medial divisions of the MGB showed a response that phase-locked to the fundamental frequency of a guinea pig purr and may be involved in analyzing communication calls.
大脑不同处理水平的特定神经元群中,存在通过锁定正弦波特定相位的尖峰对低频音调进行精确时间编码(锁相)的现象。此前已在豚鼠的下丘和新皮层中研究过锁相反应,现在我们描述听觉丘脑的反应。对241个单个神经元进行了记录,其中32个(13%)表现出锁相反应。具有锁相反应的神经元主要(82%)位于内侧膝状体(MGB)的腹侧部,也有18%位于内侧部,但在背侧部或壳核中未发现。锁相的上限频率在不同神经元之间(60 - 1100赫兹)以及不同解剖部位之间差异很大。腹侧部的上限为520赫兹,内侧部为1100赫兹。根据相位图计算出的稳态延迟范围也有所不同:腹侧部为8.6 - 14毫秒(平均11.1毫秒;标准差1.56);内侧部为7.5 - 11毫秒(平均9.3毫秒;标准差1.5)。综合来看,这些测量结果表明内侧部直接从脑干接收锁相输入,无需在下丘进行必然的中继。MGB腹侧部和内侧部的细胞都表现出对豚鼠咕噜声基频的锁相反应,可能参与对交流叫声的分析。