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体感皮层单神经元刺激的行为学报告

Behavioural report of single neuron stimulation in somatosensory cortex.

作者信息

Houweling Arthur R, Brecht Michael

机构信息

Bernstein Center for Computational Neuroscience and Humboldt University Berlin, Philippstrasse 13, House 6, 10115 Berlin, Germany.

出版信息

Nature. 2008 Jan 3;451(7174):65-8. doi: 10.1038/nature06447. Epub 2007 Dec 19.

DOI:10.1038/nature06447
PMID:18094684
Abstract

Understanding how neural activity in sensory cortices relates to perception is a central theme of neuroscience. Action potentials of sensory cortical neurons can be strongly correlated to properties of sensory stimuli and reflect the subjective judgements of an individual about stimuli. Microstimulation experiments have established a direct link from sensory activity to behaviour, suggesting that small neuronal populations can influence sensory decisions. However, microstimulation does not allow identification and quantification of the stimulated cellular elements. The sensory impact of individual cortical neurons therefore remains unknown. Here we show that stimulation of single neurons in somatosensory cortex affects behavioural responses in a detection task. We trained rats to respond to microstimulation of barrel cortex at low current intensities. We then initiated short trains of action potentials in single neurons by juxtacellular stimulation. Animals responded significantly more often in single-cell stimulation trials than in catch trials without stimulation. Stimulation effects varied greatly between cells, and on average in 5% of trials a response was induced. Whereas stimulation of putative excitatory neurons led to weak biases towards responding, stimulation of putative inhibitory neurons led to more variable and stronger sensory effects. Reaction times for single-cell stimulation were long and variable. Our results demonstrate that single neuron activity can cause a change in the animal's detection behaviour, suggesting a much sparser cortical code for sensations than previously anticipated.

摘要

理解感觉皮层中的神经活动与感知之间的关系是神经科学的核心主题。感觉皮层神经元的动作电位与感觉刺激的特性密切相关,反映了个体对刺激的主观判断。微刺激实验已在感觉活动与行为之间建立了直接联系,这表明小神经元群体能够影响感觉决策。然而,微刺激无法识别和量化所刺激的细胞成分。因此,单个皮层神经元的感觉影响仍然未知。在此,我们表明,刺激体感皮层中的单个神经元会影响检测任务中的行为反应。我们训练大鼠对低电流强度下桶状皮层的微刺激做出反应。然后,我们通过近胞刺激在单个神经元中引发短串动作电位。与无刺激的捕捉试验相比,动物在单细胞刺激试验中的反应频率显著更高。不同细胞之间的刺激效果差异很大,平均而言,在5%的试验中会诱发反应。刺激假定的兴奋性神经元会导致反应出现微弱偏向,而刺激假定的抑制性神经元则会产生更具变异性和更强的感觉效果。单细胞刺激的反应时间较长且具有变异性。我们的结果表明,单个神经元活动可导致动物检测行为发生变化,这表明感觉的皮层编码比之前预期的要稀疏得多。

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