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长期手部振动对跟踪任务中视觉-手动操作表现的后期影响。

Post-effects of long-term hand vibration on visuo-manual performance in a tracking task.

作者信息

Gerard M J, Martin B J

机构信息

Corporate Ergonomics, Eastman Kodak Co., Rochester, NY 14652, USA.

出版信息

Ergonomics. 1999 Feb;42(2):314-26. doi: 10.1080/001401399185676.

Abstract

Movement precision and performance time were evaluated through a visuo-manual tracking task performed before and after 10-min hand vibration exposure. Constant displacement amplitude vibration of 0.2 and 0.3 mm peak to peak at 90, 150, 300 Hz were applied to the hand z-axis by a vertical handle. During exposure a grip force of 5% MVC was exerted for 5 s and then relaxed for 25 s while maintaining fingers-handle contact. The tracking task consisted in moving a ring (phi = 9 mm) attached to a thin rod held between the index finger and thumb along a zig-zagged wire (phi = 3.7 mm). Alterations of tracking errors (ring-wire contact) and tracking time were analysed as a function of the vibration parameters. The tasks were performed by ten healthy participants. Vibration induced a significant increase in tracking errors (ring-wire contact) and a significant decrease in tracking time. These impairments decayed with time after vibration exposure. The recovery period was > 5 min but < 10 min with the exception of 90 Hz vibration, for which recovery could be > 10 min. The number of tracking errors was neither influenced by vibration frequency nor by amplitude. The tracking time decreased as frequency increased and recovery was related to the displacement amplitude. The subjective rating of the performance on a visual analogue scale indicated that the subjects tended to perceive the task as being easier after vibration exposure. Vibration applied to the non-dominant hand while the participant performed the tracking task had no effect. These results show that vibration similar to hand-tool vibration affects precision and velocity control of visually guided hand movements. Furthermore, these performance decrements were not consciously perceived.

摘要

通过在手部振动暴露10分钟前后执行的视觉手动跟踪任务来评估运动精度和执行时间。通过垂直手柄对手部z轴施加峰峰值为0.2和0.3毫米、频率为90、150、300赫兹的恒定位移幅度振动。在暴露期间,以5%最大自主收缩(MVC)的握力施加5秒,然后放松25秒,同时保持手指与手柄接触。跟踪任务包括沿着锯齿形金属丝(直径 = 3.7毫米)移动一个连接在食指和拇指之间的细杆上的环(直径 = 9毫米)。分析跟踪误差(环与金属丝接触)和跟踪时间的变化作为振动参数的函数。该任务由十名健康参与者完成。振动导致跟踪误差(环与金属丝接触)显著增加,跟踪时间显著减少。这些损伤在振动暴露后随时间衰减。恢复期>5分钟但<10分钟,90赫兹振动除外,其恢复可能>10分钟。跟踪误差的数量既不受振动频率也不受振幅的影响。跟踪时间随着频率增加而减少,恢复与位移幅度有关。视觉模拟量表上对表现的主观评分表明,受试者在振动暴露后倾向于认为任务更容易。在参与者执行跟踪任务时对手的非优势手施加振动没有影响。这些结果表明,类似于手动工具振动的振动会影响视觉引导手部运动的精度和速度控制。此外,这些性能下降并未被有意识地感知到。

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