White Olivier, Babič Jan, Trenado Carlos, Johannsen Leif, Goswami Nandu
INSERM UMR1093-CAPS, Université Bourgogne Franche-Comté, UFR des Sciences du Sport, Dijon, France.
Acquired Brain Injury Rehabilitation, Faculty of Medicine and Health Sciences, School of Health Sciences, University of East Anglia, Norwich Research Park, Norwich, United Kingdom.
Front Physiol. 2019 Jan 28;9:1865. doi: 10.3389/fphys.2018.01865. eCollection 2018.
Multisensory integration is essential for maintenance of motor and cognitive abilities, thereby ensuring normal function and personal autonomy. Balance control is challenged during senescence or in motor disorders, leading to potential falls. Increased uncertainty in sensory signals is caused by a number of factors including noise, defined as a random and persistent disturbance that reduces the clarity of information. Counter-intuitively, noise can be beneficial in some conditions. Stochastic resonance is a mechanism whereby a particular level of noise actually enhances the response of non-linear systems to weak sensory signals. Here we review the effects of stochastic resonance on sensory modalities and systems directly involved in balance control. We highlight its potential for improving sensorimotor performance as well as cognitive and autonomic functions. These promising results demonstrate that stochastic resonance represents a flexible and non-invasive technique that can be applied to different modalities simultaneously. Finally we point out its benefits for a variety of scenarios including in ambulant elderly, skilled movements, sports and to patients with sensorimotor or autonomic dysfunctions.
多感官整合对于维持运动和认知能力至关重要,从而确保正常功能和个人自主性。衰老或运动障碍期间平衡控制受到挑战,导致潜在跌倒。包括噪声在内的多种因素会导致感觉信号的不确定性增加,噪声被定义为一种随机且持续的干扰,会降低信息的清晰度。与直觉相反,噪声在某些情况下可能是有益的。随机共振是一种机制,特定水平的噪声实际上会增强非线性系统对微弱感觉信号的响应。在此,我们综述随机共振对直接参与平衡控制的感觉模态和系统的影响。我们强调其改善感觉运动性能以及认知和自主功能的潜力。这些有前景的结果表明,随机共振是一种灵活且非侵入性的技术,可同时应用于不同模态。最后,我们指出其在多种场景中的益处,包括对行走的老年人、熟练运动、体育以及感觉运动或自主功能障碍患者。