Vincent Marion, Rossel Olivier, Hayashibe Mitsuhiro, Herbet Guillaume, Duffau Hugues, Guiraud David, Bonnetblanc François
Rev Neurosci. 2016 Apr 1;27(3):231-58. doi: 10.1515/revneuro-2015-0029.
Both electrical microstimulation (EMS) and direct electrical stimulation (DES) of the brain are used to perform functional brain mapping. EMS is applied to animal fundamental neuroscience experiments, whereas DES is performed in the operating theatre on neurosurgery patients. The objective of the present review was to shed new light on electrical stimulation techniques in brain mapping by comparing EMS and DES. There is much controversy as to whether the use of DES during wide-awake surgery is the 'gold standard' for studying the brain function. As part of this debate, it is sometimes wrongly assumed that EMS and DES induce similar effects in the nervous tissues and have comparable behavioural consequences. In fact, the respective stimulation parameters in EMS and DES are clearly different. More surprisingly, there is no solid biophysical rationale for setting the stimulation parameters in EMS and DES; this may be due to historical, methodological and technical constraints that have limited the experimental protocols and prompted the use of empirical methods. In contrast, the gap between EMS and DES highlights the potential for new experimental paradigms in electrical stimulation for functional brain mapping. In view of this gap and recent technical developments in stimulator design, it may now be time to move towards alternative, innovative protocols based on the functional stimulation of peripheral nerves (for which a more solid theoretical grounding exists).
脑电微刺激(EMS)和脑直接电刺激(DES)都用于进行脑功能图谱绘制。EMS应用于动物基础神经科学实验,而DES则在手术室对神经外科患者进行。本综述的目的是通过比较EMS和DES,为脑图谱绘制中的电刺激技术提供新的见解。关于在清醒手术期间使用DES是否是研究脑功能的“金标准”存在很多争议。作为这场辩论的一部分,有时会错误地认为EMS和DES在神经组织中产生相似的效应并具有可比的行为后果。事实上,EMS和DES各自的刺激参数明显不同。更令人惊讶的是,在EMS和DES中设置刺激参数没有坚实的生物物理原理;这可能是由于历史、方法和技术限制,这些限制限制了实验方案并促使使用经验方法。相比之下,EMS和DES之间的差距凸显了电刺激用于脑功能图谱绘制的新实验范式的潜力。鉴于这一差距以及刺激器设计的最新技术发展,现在可能是时候转向基于外周神经功能刺激的替代创新方案了(对此存在更坚实的理论基础)。