Does somatosensory feedback from the plantar foot sole contribute to verticality perception?

IF 1.3 4区 医学 Q4 NEUROSCIENCES Somatosensory and Motor Research Pub Date : 2021-09-01 Epub Date: 2021-07-13 DOI:10.1080/08990220.2021.1949977
A Nedelkou, V Hatzitaki, K Chatzinikolaou, G Grouios
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引用次数: 5

Abstract

Aim of the study: In upright standing, the human foot sole is the only point of contact with the ground conveying information about the pressure distribution under the feet. We examined how the altered somatosensory input from the plantar foot receptors, when standing on a soft surface, affects the subjective estimation of the earth vertical in different sensory contexts.

Materials and methods: Twelve (12) healthy young females (mean age: 21.8 ± 2.4 years) adjusted the orientation of a visual line (35 × 1.5 cm) representing the roll orientation of a hand-held (attached on a 24.9 × 4 cm cylinder) or head-attached electromagnetic tracking sensor (Nest of Birds, Ascension Technologies Inc., VT. USA, 60 Hz) under two visual conditions (eyes open, eyes closed) while standing on a soft or firm surface. The mean absolute (accuracy) and variable (precision) error in the verticality estimate was depicted in the sensor's roll deviation from the gravitational vertical.

Results: The accuracy and the precision of the estimate decreased in the absence of vision, while standing on the soft surface and when the estimate was provided by an active hand rather than head rotation. The surface effect was significant only in the absence of vision and when the estimate was provided by the hand.

Conclusions: The contribution of the plantar foot mechanoreceptors to gravity perception is sensory context dependent. Perception of the earth vertical is more accurate when estimated by active head rotation due to the integration of the vestibular and neck proprioceptive afferents.

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来自足底的体感反馈是否有助于垂直感?
研究的目的:在直立站立时,人的脚底是唯一与地面接触的点,传递有关脚底压力分布的信息。我们研究了当站在柔软的表面上时,来自足底感受器的体感输入是如何在不同的感觉环境中影响对地面垂直度的主观估计的。材料和方法:12(12)名健康的年轻女性(平均年龄:21.8±2.4岁)在两种视觉条件下(眼睛睁开和闭上),站在柔软或坚硬的表面上,调整代表手持式(附着在24.9 × 4 cm圆柱体上)或头戴式电磁跟踪传感器(Nest of Birds, Ascension Technologies Inc., VT. USA, 60 Hz)滚动方向的视觉线(35 × 1.5 cm)的方向。垂直度估计的平均绝对(精度)和变(精度)误差用传感器与重力垂直线的滚转偏差来描述。结果:在没有视觉的情况下,当站在柔软的表面上,当用手而不是头部旋转提供估计时,估计的准确性和精度下降。表面效应只有在没有视觉和用手进行估计时才显着。结论:足底机械感受器对重力感知的贡献是感觉环境依赖性的。由于前庭和颈部本体感觉传入的整合,当头部主动旋转时,对地球垂直的感知更准确。
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来源期刊
Somatosensory and Motor Research
Somatosensory and Motor Research 医学-神经科学
自引率
0.00%
发文量
4
审稿时长
>12 weeks
期刊介绍: Somatosensory & Motor Research publishes original, high-quality papers that encompass the entire range of investigations related to the neural bases for somatic sensation, somatic motor function, somatic motor integration, and modeling thereof. Comprising anatomical, physiological, biochemical, pharmacological, behavioural, and psychophysical studies, Somatosensory & Motor Research covers all facets of the peripheral and central processes underlying cutaneous sensation, and includes studies relating to afferent and efferent mechanisms of deep structures (e.g., viscera, muscle). Studies of motor systems at all levels of the neuraxis are covered, but reports restricted to non-neural aspects of muscle generally would belong in other journals.
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