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5赫兹正弦单轴和双轴(垂直和横向)全身振动期间的对比度阈值和注视视差

Contrast thresholds and fixation disparity during 5-Hz sinusoidal single- and dual-axis (vertical and lateral) whole-body vibration.

作者信息

Griefahn B, Bröde P, Jaschinski W

机构信息

Institute for Occupational Physiology at the University of Dortmund, Germany.

出版信息

Ergonomics. 2000 Mar;43(3):317-32. doi: 10.1080/001401300184431.

Abstract

The present study assumed that whole-body vibration, transmitted through the seat, impairs spatial retinal resolution and oculomotor alignment parallel to the vibration axis. More specifically, that the decrement increases gradually from single-axis lateral via single-axis vertical and dual-axis linear to dual-axis circular motion. Twenty participants (19-26 years of age) with good vision volunteered for the experiment where in three sessions one of the following three conditions, contrast threshold, nonius bias or fixation disparity, for vertically and horizontally oriented test patterns was determined during five experimental conditions. The latter comprised a control (a(z) = a(y) = 0) and four conditions where 5-Hz sinusoidal motion of 1.2 ms(-2) rms were applied separately, either in the vertical or in the lateral direction, or simultaneously in both directions, once without and once with a phase shift of 90 degrees, thus causing dual-axis linear or circular motion. Contrast thresholds for horizontal gratings and the variability of vertical fixation disparity increased significantly whenever the participants were exposed to vertical motion (alone or combined with lateral motion). These effects may result in an increased difficulty in properly recognizing characters and graphic patterns containing horizontal lines and in the development of asthenopic complaints.

摘要

本研究假设,通过座椅传递的全身振动会损害视网膜的空间分辨率以及与振动轴平行的眼球运动对准。更具体地说,从单轴横向振动经单轴垂直振动、双轴线性振动到双轴圆周运动,这种视力下降会逐渐加剧。20名视力良好的参与者(年龄在19至26岁之间)自愿参与该实验。在三个实验环节中,针对垂直和水平方向的测试图案,分别在五种实验条件下测定以下三种情况之一:对比度阈值、叉丝偏差或注视差异。这五种实验条件包括一个对照组(a(z)=a(y)=0)以及四种条件,在这些条件下,分别以1.2 ms(-2) rms的5赫兹正弦运动单独施加于垂直或横向方向,或者同时施加于两个方向,一次无相位偏移,一次有90度相位偏移,从而产生双轴线性或圆周运动。每当参与者暴露于垂直运动(单独或与横向运动相结合)时,水平光栅的对比度阈值以及垂直注视差异的变异性都会显著增加。这些影响可能会导致识别包含水平线的字符和图形图案的难度增加,并引发视力疲劳症状。

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