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Changes in sensory reweighting of proprioceptive information during standing balance with age and disease

机译:站立平衡与年龄和疾病的关系时本体感受信息的感觉加权改变

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摘要

With sensory reweighting, reliable sensory information is selected over unreliable information during balance by dynamically combining this information. We used system identification techniques to show the weight and the adaptive process of weight change of proprioceptive information during standing balance with age and specific diseases. Ten healthy young subjects (aged between 20 and 30 yr) and 44 elderly subjects (aged above 65 yr) encompassing 10 healthy elderly, 10 with cataract, 10 with polyneuropathy, and 14 with impaired balance, participated in the study. During stance, proprioceptive information of the ankles was disturbed by rotation of the support surface with specific frequency content where disturbance amplitude increased over trials. Body sway and reactive ankle torque were measured to determine sensitivity functions of these responses to the disturbance amplitude. Model fits resulted in a proprioceptive weight (changing over trials), time delay, force feedback, reflexive stiffness, and damping. The proprioceptive weight was higher in healthy elderly compared with young subjects and higher in elderly subjects with cataract and with impaired balance compared with healthy elderly subjects. Proprioceptive weight decreased with increasing disturbance amplitude; decrease was similar in all groups. In all groups, the time delay was higher and the reflexive stiffness was lower compared with young or healthy elderly subjects. In conclusion, proprioceptive information is weighted more with age and in patients with cataract and impaired balance. With age and specific diseases the time delay was higher and reflexive stiffness was lower. These results illustrate the opportunity to detect the underlying cause of impaired balance in the elderly with system identification.
机译:通过感官加权,可以在平衡期间通过动态组合可靠的感官信息而不是不可靠的信息。我们使用系统识别技术来显示体重和适应感过程中本体感受信息在年龄和特定疾病之间的平衡过程中的变化。十名健康的青年受试者(年龄在20至30岁之间)和44名老年受试者(年龄在65岁以上)包括10名健康的老人,10名白内障,10名多神经病和14名平衡受损的受试者参加了研究。在站立期间,脚踝的本体感受信息会因具有特定频率含量的支撑表面的旋转而受到干扰,其中干扰幅度随试验而增加。测量身体的摇摆和脚踝的反作用扭矩,以确定这些响应对扰动幅度的敏感度函数。模型拟合导致本体感觉重量(在试验中改变),时间延迟,力反馈,反射刚度和阻尼。健康的老年人的本体感觉重量比年轻的受试者高,而白内障和平衡受损的老年人的本体感觉重量与健康的老年人相比更高。本体感受权重随干扰幅度的增加而降低;所有组的下降相似。与年轻或健康的老年受试者相比,在所有组中,时间延迟都较高,而反射刚度较低。总之,对于年龄大,白内障和平衡受损的患者,本体感受信息的权重更高。随着年龄和特定疾病的发展,时间延迟增加,反身僵硬度降低。这些结果表明,通过系统识别可以发现老年人平衡能力受损的根本原因。

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