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在步态和平衡功能下降的老年人中,即使在远矢状面空间内的视觉触觉交互作用。

Visuotactile interaction even in far sagittal space in older adults with decreased gait and balance functions.

作者信息

Teramoto Wataru, Honda Keito, Furuta Kento, Sekiyama Kaoru

机构信息

Department of Psychology, Kumamoto University, 2-40-1 Kurokami, Chuo-ku, Kumamoto, 860-8555, Japan.

Department of Computer Science and Systems Engineering, Muroran Institute of Technology, 27-1 Mizumoto-cho, Muroran, Hokkaido, 050-8585, Japan.

出版信息

Exp Brain Res. 2017 Aug;235(8):2391-2405. doi: 10.1007/s00221-017-4975-7. Epub 2017 May 10.

Abstract

Spatial proximity of signals from different sensory modalities is known to be a crucial factor in facilitating efficient multisensory processing in young adults. However, recent studies have demonstrated that older adults exhibit strong visuotactile interactions even when the visual stimuli were presented in a spatially disparate position from a tactile stimulus. This suggests that visuotactile peripersonal space differs between older and younger adults. In the present study, we investigated to what extent peripersonal space expands in the sagittal direction and whether this expansion was linked to the decline in sensorimotor functions in older adults. Vibrotactile stimuli were delivered either to the left or right index finger, while visual stimuli were presented at a distance of 5 cm (near), 37.5 cm (middle), or 70 cm (far) from each finger. The participants had to respond rapidly to a randomized sequence of unimodal (visual or tactile) and simultaneous visuotactile targets (i.e., a redundant target paradigm). Sensorimotor functions were independently assessed by the Timed Up and Go (TUG) and postural stability tests. Results showed that reaction times to the visuotactile bimodal stimuli were significantly faster than those to the unimodal stimuli, irrespective of age group [younger adults: 22.0 ± 0.6 years, older adults: 75.0 ± 3.3 years (mean ± SD)] and target distance. Of importance, a race model analysis revealed that the co-activation model (i.e., visuotactile multisensory integrative process) is supported in the far condition especially for older adults with relatively poor performance on the TUG or postural stability tests. These results suggest that aging can change visuotactile peripersonal space and that it may be closely linked to declines in sensorimotor functions related to gait and balance in older adults.

摘要

来自不同感觉模态的信号在空间上的接近,被认为是促进年轻人进行高效多感觉处理的关键因素。然而,最近的研究表明,即使视觉刺激呈现于与触觉刺激在空间上不同的位置,老年人也会表现出强烈的视觉触觉交互作用。这表明,老年人和年轻人的视觉触觉个人周边空间有所不同。在本研究中,我们调查了个人周边空间在矢状方向上扩展的程度,以及这种扩展是否与老年人感觉运动功能的衰退有关。将振动触觉刺激施加于左手或右手食指,同时在距每个手指5厘米(近)、37.5厘米(中)或70厘米(远)的位置呈现视觉刺激。参与者必须对单模态(视觉或触觉)和同时出现的视觉触觉目标(即冗余目标范式)的随机序列迅速做出反应。通过定时起立行走测试(TUG)和姿势稳定性测试独立评估感觉运动功能。结果显示,无论年龄组如何[年轻人:22.0±0.6岁,老年人:75.0±3.3岁(平均值±标准差)]以及目标距离如何,对视觉触觉双模态刺激的反应时间均显著快于对单模态刺激的反应时间。重要的是,一种竞争模型分析表明,在远距离条件下,共激活模型(即视觉触觉多感觉整合过程)得到支持,尤其是对于在TUG或姿势稳定性测试中表现相对较差的老年人。这些结果表明,衰老会改变视觉触觉个人周边空间,并且这可能与老年人步态和平衡相关的感觉运动功能衰退密切相关。

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