Glazewski Stanislaw, Barth Alison L
Department of Biological Sciences and Center for the Neural Basis of Cognition, Carnegie Mellon University, 4400 Fifth Avenue, Pittsburgh, PA, 15213, USA; School of Life Sciences and Institute for Science and Technology in Medicine, Keele University, Keele, Staffordshire, UK.
Eur J Neurosci. 2015 Feb;41(4):410-9. doi: 10.1111/ejn.12805. Epub 2014 Dec 26.
Although subthreshold inputs of neocortical sensory neurons are broadly tuned, the spiking output is more restricted. These subthreshold inputs provide a substrate for stimulus intensity-dependent changes their spiking output, as well as for experience-dependent plasticity to alter firing properties. Here we investigated how different stimulus intensities modified the firing output of individual neurons in layer 2/3 of the mouse barrel cortex. Decreasing stimulus intensity over a 30-fold range lowered the firing rates evoked by principal whisker stimulation and reduced the overall size of the responding ensemble in whisker-undeprived animals. We then examined how these responses were changed after single-whisker experience (SWE). After 7 days of SWE, the mean magnitude of response to spared whisker stimulation at the highest stimulus intensity was not altered. However, lower-intensity whisker stimulation revealed a more than 10-fold increase in mean firing output compared with control animals. Also, under control conditions, only ~15% of neurons showed any firing at low stimulus intensity, compared with more than 70% of neurons after SWE. However, response changes measured in the immediately surrounding representations were detected only for the highest stimulus intensity. Overall, these data showed that the measurement of experience-dependent changes in the spike output of neocortical neurons was highly dependent upon stimulus intensity.
尽管新皮层感觉神经元的阈下输入具有广泛的调谐性,但其动作电位输出却受到更多限制。这些阈下输入为刺激强度依赖性改变其动作电位输出以及经验依赖性可塑性改变放电特性提供了基础。在此,我们研究了不同刺激强度如何改变小鼠桶状皮层第2/3层单个神经元的放电输出。在30倍的范围内降低刺激强度,会降低主要触须刺激诱发的放电频率,并减少未剥夺触须动物中响应群体的总体规模。然后,我们研究了单触须经验(SWE)后这些反应是如何变化的。经过7天的SWE后,在最高刺激强度下对保留触须刺激的平均反应幅度没有改变。然而,与对照动物相比,较低强度的触须刺激显示平均放电输出增加了10倍以上。此外,在对照条件下,只有约15%的神经元在低刺激强度下有任何放电,而在SWE后这一比例超过70%。然而,仅在最高刺激强度下检测到紧邻表征中测量到的反应变化。总体而言,这些数据表明,新皮层神经元动作电位输出中经验依赖性变化的测量高度依赖于刺激强度。