Lemercier Clément E, Krieger Patrik
Faculty of Medicine, Institute of Physiology, Department of Systems Neuroscience, Ruhr University Bochum, Bochum, Germany.
IBRO Neurosci Rep. 2022 Sep 29;13:356-363. doi: 10.1016/j.ibneur.2022.09.008. eCollection 2022 Dec.
Merkel cells (MCs) and associated primary sensory afferents of the whisker follicle-sinus complex, accurately code whisker self-movement, angle, and whisk phase during whisking. However, little is known about their roles played in cortical encoding of whisker movement. To this end, the spiking activity of primary somatosensory barrel cortex (wS1) neurons was measured in response to varying the whisker deflection amplitude and velocity in transgenic mice with previously established reduced mechanoelectrical coupling at MC-associated afferents. Under reduced MC activity, wS1 neurons exhibited increased sensitivity to whisker deflection. This appeared to arise from a lack of variation in response magnitude to varying the whisker deflection amplitude and velocity. This latter effect was further indicated by weaker variation in the temporal profile of the evoked spiking activity when either whisker deflection amplitude or velocity was varied. Nevertheless, under reduced MC activity, wS1 neurons retained the ability to differentiate stimulus features based on the timing of their first post-stimulus spike. Collectively, results from this study suggest that MCs contribute to cortical encoding of both whisker amplitude and velocity, predominantly by tuning wS1 response magnitude, and by patterning the evoked spiking activity, rather than by tuning wS1 response latency.
触须毛囊-窦复合体的 Merkel 细胞(MCs)及其相关的初级感觉传入神经,在触须运动过程中能精确编码触须的自我运动、角度和触须相位。然而,关于它们在触须运动的皮层编码中所起的作用,人们知之甚少。为此,在与 MC 相关的传入神经处机械电耦合预先降低的转基因小鼠中,测量了初级体感桶状皮层(wS1)神经元的放电活动,以响应不同的触须偏转幅度和速度。在 MC 活动降低的情况下,wS1 神经元对触须偏转表现出更高的敏感性。这似乎是由于对不同的触须偏转幅度和速度,反应幅度缺乏变化所致。当触须偏转幅度或速度变化时,诱发放电活动的时间轮廓变化较弱,进一步表明了后一种效应。然而,在 MC 活动降低的情况下,wS1 神经元仍保留根据其刺激后第一个峰电位的时间来区分刺激特征的能力。总的来说,这项研究的结果表明,MCs 主要通过调节 wS1 的反应幅度和塑造诱发的放电活动模式,而不是通过调节 wS1 的反应潜伏期,来促进触须幅度和速度的皮层编码。