Dept. of Anesthesiology, Wake Forest School of Medicine, Winston-Salem, NC 27157-1009, USA.
J Neurophysiol. 2012 Aug;108(4):1122-9. doi: 10.1152/jn.00399.2012. Epub 2012 Jun 6.
Maturation of the nervous system results in changes in both central and peripheral processing. To better understand responses to injury in the young, developmental differences in the acute response to incision were investigated in both tactile and nociceptive myelinated peripheral mechanosensitive afferent neurons in vivo. Neuronal intrasomal recordings were performed in juvenile and infant rats in 34 L5 dorsal root ganglia, and each neuron was phenotypically defined. Neurons had a mechanosensitive receptive field in the glabrous skin on the plantar surface of the hind paw, which was characterized at baseline and for up to 45 min after incision. Fundamental maturational differences in the effect of incision were clear: in high-threshold nociceptive mechanoreceptors, the mechanical threshold decreased immediately and the receptive field size increased rapidly in juvenile rats but not in infant rats. Additionally, a divergence in changes in the instantaneous response frequency of tactile afferents occurred between the two ages. These differences may help explain maturational differences in responses to peripheral injury and suggest that differences in central nervous system responses may be partially mitigated by spatially confined and frequency-dependent differences resulting from tactile and nociceptive mechanosensitive input.
神经系统的成熟会导致中枢和外周处理的变化。为了更好地理解年轻人对损伤的反应,本研究在活体触觉和伤害性有髓外周机械敏感传入神经元中,研究了发育过程中对切口的急性反应差异。在 34 个 L5 背根神经节中对幼年和婴儿大鼠进行了神经元胞体内记录,并对每个神经元进行了表型定义。神经元在足底表面的无毛皮肤上有一个机械敏感的感受野,在基线和切口后长达 45 分钟内进行了特征描述。切口效应的明显基本成熟差异是:在高阈值伤害性机械感受器中,机械阈值在幼年大鼠中立即降低,感受野大小迅速增大,但在婴儿大鼠中则没有。此外,两种年龄之间的触觉传入的瞬时反应频率的变化出现了分歧。这些差异可能有助于解释对外周损伤反应的成熟差异,并表明中枢神经系统反应的差异可能部分通过触觉和伤害性机械敏感输入的空间限制和频率依赖性差异得到缓解。