Anaesthesia Department, Waikato District Health Board, Pembroke Street, Hamilton, New Zealand.
Brain Res. 2013 Aug 14;1526:65-70. doi: 10.1016/j.brainres.2013.06.013. Epub 2013 Jun 19.
How general anaesthetic drugs cause unconsciousness is a topic of ongoing clinical and scientific interest. It is becoming increasingly apparent that they disrupt cortical information processing, but the effects appear to depend on the spatial scale under investigation. In this study we investigated whether the intravenous anaesthetic etomidate synchronises neuronal activity on a sub-millimetre scale in mouse neocortical slices. In slices generating no-magnesium seizure-like event (SLE) field activity, we analysed the morphology of field potential activity recorded with 50µm extracellular electrodes. The analysis was based on the understanding that the amplitude and sheerness of field potential oscillations correlates with the synchrony of the underlying neural activity. When recorded from the region of the slice initiating SLE activity, etomidate consistently increased both population event amplitude (median(range) 85(24-350) to 101(30-427) µV) and slope 16.6(1.5-106.2) to 20.2(1.7-111.1) µV/ms (p=0.016 and p=0.0013, respectively). The results are consistent with an increase in neuronal synchrony within the receptive field of the recording electrode, estimated to be a circle diameter of 300µm. In conclusion, the neocortical slice preparation supports in vivo data showing that general anaesthetics increase neuronal synchrony on a local scale and provides an ideal model for investigating underlying mechanisms.
全麻药物如何引起意识丧失是一个持续的临床和科学研究课题。越来越明显的是,它们会破坏皮质信息处理,但这些影响似乎取决于研究的空间尺度。在这项研究中,我们调查了静脉麻醉药依托咪酯是否会在小鼠新皮层切片上亚毫米尺度上同步神经元活动。在没有镁诱导的癫痫样事件(SLE)场活动的切片中,我们分析了用 50µm 细胞外电极记录的场电位活动的形态。该分析基于这样的理解,即场电位振荡的幅度和锐度与基础神经活动的同步性相关。当从引发 SLE 活动的切片区域记录时,依托咪酯一致地增加了群体事件幅度(中位数(范围)85(24-350)至 101(30-427)µV)和斜率 16.6(1.5-106.2)至 20.2(1.7-111.1)µV/ms(p=0.016 和 p=0.0013,分别)。结果与记录电极感受野内神经元同步性增加一致,估计为 300µm 直径的圆圈。总之,新皮层切片制备支持体内数据表明,全身麻醉药在局部尺度上增加神经元同步性,并为研究潜在机制提供了理想的模型。