Yu Xiong-Jie, Xu Xin-Xiu, Chen Xi, He Shigang, He Jufang
Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.
J Neurophysiol. 2009 Feb;101(2):980-7. doi: 10.1152/jn.91130.2008. Epub 2008 Dec 10.
Responses to repeated auditory stimuli were examined in 103 neurons in the auditory region of the thalamic reticular nucleus (TRN) and in 20 medial geniculate (MGB) neurons of anesthetized rats. A further six TRN neurons were recorded from awake rats. The TRN neurons showed strong responses to the first trial and weak responses to the subsequent trials of repeated auditory stimuli and electrical stimulation of the MGB and auditory cortex when the interstimulus interval (ISI) was short (<3 s). They responded to the second trial when the interstimulus interval was lengthened to >or=3 s. These responses contrasted to those of MGB neurons, which responded to repeated auditory stimuli of different ISIs. The TRN neurons showed a significant increase in the onset auditory response from 9.5 to 76.5 Hz when the ISI was increased from 200 ms to 10 s (P<0.001, ANOVA). The duration of the auditory-evoked oscillation was longer when the ISI was lengthened. The slow recovery of the TRN neurons after oscillation of burst firings to fast repetitive stimulus was a reflection of a different role than that of the thalamocortical relay neurons. Supposedly the TRN is involved in the process of attention such as attention shift; the slow recovery of TRN neurons probably limits the frequent change of the attention in a fast rhythm.
在麻醉大鼠丘脑网状核(TRN)听觉区域的103个神经元以及20个内侧膝状体(MGB)神经元中,研究了对重复听觉刺激的反应。另外从清醒大鼠中记录了6个TRN神经元。当刺激间隔(ISI)较短(<3秒)时,TRN神经元对重复听觉刺激以及MGB和听觉皮层的电刺激的首次试验表现出强烈反应,而对后续试验表现出微弱反应。当刺激间隔延长至≥3秒时,它们对第二次试验有反应。这些反应与MGB神经元的反应形成对比,MGB神经元对不同ISI的重复听觉刺激均有反应。当ISI从200毫秒增加到10秒时,TRN神经元的起始听觉反应频率从9.5赫兹显著增加到76.5赫兹(P<0.001,方差分析)。当ISI延长时,听觉诱发振荡的持续时间更长。TRN神经元在对快速重复刺激的爆发式放电振荡后恢复缓慢,这反映了其与丘脑皮质中继神经元不同的作用。据推测,TRN参与了诸如注意力转移等注意力过程;TRN神经元恢复缓慢可能限制了注意力在快速节奏下的频繁变化。