Whiteley Samuel J, Knutsen Per M, Matthews David W, Kleinfeld David
Department of Physics, University of Chicago, Chicago, Illinois; Department of Physics, University of California, San Diego, La Jolla, California; and.
Department of Physics, University of California, San Diego, La Jolla, California; and
J Neurophysiol. 2015 Jul;114(1):138-45. doi: 10.1152/jn.00179.2015. Epub 2015 Apr 8.
Rodents use their vibrissae to detect and discriminate tactile features during active exploration. The site of mechanical transduction in the vibrissa sensorimotor system is the follicle sinus complex and its associated vibrissa. We study the mechanics within the ring sinus (RS) of the follicle in an ex vivo preparation of the mouse mystacial pad. The sinus region has a relatively dense representation of Merkel mechanoreceptors and longitudinal lanceolate endings. Two-photon laser-scanning microscopy was used to visualize labeled cell nuclei in an ∼ 100-nl vol before and after passive deflection of a vibrissa, which results in localized displacements of the mechanoreceptor cells, primarily in the radial and polar directions about the vibrissa. These displacements are used to compute the strain field across the follicle in response to the deflection. We observe compression in the lower region of the RS, whereas dilation, with lower magnitude, occurs in the upper region, with volumetric strain ΔV/V ∼ 0.01 for a 10° deflection. The extrapolated strain for a 0.1° deflection, the minimum angle that is reported to initiate a spike by primary neurons, corresponds to the minimum strain that activates Piezo2 mechanoreceptor channels.
啮齿动物在主动探索过程中利用触须来检测和辨别触觉特征。触须感觉运动系统中的机械转导部位是毛囊窦复合体及其相关的触须。我们在小鼠面部触须垫的离体标本中研究毛囊环形窦(RS)内的力学。窦区域有相对密集的默克尔机械感受器和纵向柳叶状末梢。在触须被动偏转前后,使用双光子激光扫描显微镜观察约100 nl体积内标记的细胞核,触须偏转导致机械感受器细胞发生局部位移,主要是在围绕触须的径向和极向。这些位移用于计算响应偏转时整个毛囊的应变场。我们观察到RS下部区域受压,而上部区域发生较小程度的扩张,对于10°的偏转,体积应变ΔV/V约为0.01。对于0.1°的偏转(据报道这是初级神经元引发动作电位的最小角度)的外推应变,对应于激活Piezo2机械感受器通道的最小应变。