Strzalkowski Nicholas D J, Peters Ryan M, Inglis J Timothy, Bent Leah R
Department of Human Health and Nutritional Science, University of Guelph , Guelph , Canada.
Department of Clinical Neuroscience, University of Calgary , Calgary , Canada.
J Neurophysiol. 2018 Sep 1;120(3):1233-1246. doi: 10.1152/jn.00848.2017. Epub 2018 Jun 6.
Cutaneous afferents convey exteroceptive information about the interaction of the body with the environment and proprioceptive information about body position and orientation. Four classes of low-threshold mechanoreceptor afferents innervate the foot sole and transmit feedback that facilitates the conscious and reflexive control of standing balance. Experimental manipulation of cutaneous feedback has been shown to alter the control of gait and standing balance. This has led to a growing interest in the design of intervention strategies that enhance cutaneous feedback and improve postural control. The advent of single-unit microneurography has allowed the firing and receptive field characteristics of foot sole cutaneous afferents to be investigated. In this review, we consolidate the available cutaneous afferent microneurographic recordings from the foot sole and provide an analysis of the firing threshold, and receptive field distribution and density of these cutaneous afferents. This work enhances the understanding of the foot sole as a sensory structure and provides a foundation for the continued development of sensory augmentation insoles and other tactile enhancement interventions.
皮肤传入神经传递有关身体与环境相互作用的外感受信息以及有关身体位置和方向的本体感受信息。四类低阈值机械感受器传入神经支配足底并传递反馈,有助于对站立平衡进行有意识和反射性控制。实验证明,对皮肤反馈进行操作会改变步态和站立平衡的控制。这使得人们对增强皮肤反馈并改善姿势控制的干预策略设计越来越感兴趣。单单位微神经图技术的出现使得能够研究足底皮肤传入神经的放电和感受野特性。在本综述中,我们汇总了来自足底的可用皮肤传入神经微神经图记录,并对这些皮肤传入神经的放电阈值、感受野分布和密度进行了分析。这项工作增进了我们对足底作为一种感觉结构的理解,并为感觉增强鞋垫和其他触觉增强干预措施的持续发展奠定了基础。