Zhang Yi, Li Zhaoduan, Dong Hui, Yu Tian
Department of Anesthesiology, the Affiliated Hospital of Zunyi Medical College, Guizhou Key Laboratory of Anesthesia and Organ Protection, China.
J Pharmacol Sci. 2014;126(4):370-81. doi: 10.1254/jphs.14153FP. Epub 2014 Nov 26.
The effects of anesthetics on the transmission and processing of sensory information within the thalamocortical pathway and the underlying mechanism are not fully understood. Using the extracellular recording technique, we investigated the changes of spontaneous and stimulation-evoked activities within and between the ventral posteromedial nucleus (VPM) and primary somatosensory cortex barrel field (S1BF) of the rat in vivo during propofol anesthesia. Spontaneous local field potentials, whiskers deflection–elicited somatosensory evoked potentials, and multi-unit activities in VPM/S1BF were assessed at different depths of propofol anesthesia. In VPM and S1BF, powers of spontaneous and stimulation-evoked activities, coupled with stimulation-evoked multi-unit, were decreased with increasing of propofol anesthesia. Cortical onset latency increased during intermediate/deep level propofol anesthesia, whereas thalamic onset latencies were not changed even at different depths of anesthesia. In addition, spontaneous and whisker deflectionevoked alpha oscillations were observed during propofol anesthesia, which is similar to sleep spindles, These data suggest that propofol affects processing of sensory information by 1) attenuating respective neuronal activities in VPM and S1BF, 2) delaying the ascending signal transmission from VPM to S1BF, and 3) inducing a natural-sleep type of anesthesia.
麻醉剂对丘脑皮质通路内感觉信息的传递和处理的影响及其潜在机制尚未完全明确。我们采用细胞外记录技术,研究了在丙泊酚麻醉期间大鼠体内腹后内侧核(VPM)和初级体感皮层桶状区(S1BF)内以及二者之间的自发活动和刺激诱发活动的变化。在丙泊酚麻醉的不同深度下,评估了VPM/S1BF中的自发局部场电位、触须偏转诱发的体感诱发电位以及多单位活动。在VPM和S1BF中,随着丙泊酚麻醉深度的增加,自发活动和刺激诱发活动的功率以及刺激诱发的多单位活动均降低。在丙泊酚中/深度麻醉期间,皮层起始潜伏期延长,而即使在不同麻醉深度下,丘脑起始潜伏期也未改变。此外,在丙泊酚麻醉期间观察到了自发的和触须偏转诱发的α振荡,这与睡眠纺锤波相似。这些数据表明,丙泊酚通过以下方式影响感觉信息的处理:1)减弱VPM和S1BF中各自的神经元活动;2)延迟从VPM到S1BF的上行信号传递;3)诱导自然睡眠类型的麻醉。