Accommodative Facility and Response Time before and after Computer Task of Varying Durations in Young Adults.

Q3 Medicine British and Irish Orthoptic Journal Pub Date : 2023-10-16 eCollection Date: 2023-01-01 DOI:10.22599/bioj.295
Asha Kaliugavaradhan, Dharani Ramamurthy
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Abstract

Aim: To investigate the changes in near accommodative facility and response time in young adults following computer work of 30 minutes and 1 hour in duration.

Methods: A total of 50 young adults (37 females, 13 males) with mean age of 20.68 ± 1.33 years were included in this experimental study. Monocular near accommodative facility was measured using ±2.00 Dioptre Sphere (DS) flipper at 40 cm using the N6 (the smallest print size that can be read by an individual with normal visual acuity) target before and after two reading tasks. Both pre- and post-task measurements were video recorded using a smart phone and the number of cycles per minute, positive response time (time taken to stimulate accommodation), and negative response time (time taken to relax accommodation) were calculated from the video recording. Data were analysed using SPSS Version 22.0.

Results: Out of the 50 participants, 29 were emmetropes (Mean SER: 0.16 ± 0.29 D), and 21 were myopes (Mean SER: -1.89 ± 1.16 D). The mean pre-task accommodative facility was 6.79 ± 3.52 cycles per minute, and the post-task accommodative facility was 6.25 ± 3.65 cycles per minute (p = 0.10) for the 30-minutes task and 5.76 ± 3.89 cycles per minute (p = 0.01) for 1-hour task. The mean pre-task positive response time was 2.87 ± 1.55 seconds, and the post-task positive response times for 30 minutes and 1 hour were 2.86 ± 1.67 seconds (p = 0.88) and 2.98 ± 2.33 seconds (p = 0.42), respectively. The mean pre-task negative response time was 8.77 ± 8.83 seconds, and the post-task negative response times for 30 minutes and 1 hour task were 11.83 ± 14.28 seconds (p = 0.16) and 14.72 ± 17.32 seconds (p = 0.03), respectively.

Conclusion: Monocular near accommodative facility was significantly reduced, and negative response time was delayed following 1 hour of computer work.

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年轻人在不同持续时间的计算机任务前后的适应设施和反应时间。
目的:研究年轻人在计算机工作30分钟和1小时后,近调节设施和反应时间的变化。方法:本实验共纳入50名年轻人(37名女性,13名男性),平均年龄20.68±1.33岁。在两次阅读任务前后,使用N6(视力正常的个人可以阅读的最小打印尺寸)目标,使用±2.00的Dioptre Sphere(DS)翻板在40厘米处测量单眼近调节设施。使用智能手机对任务前和任务后的测量结果进行视频记录,并根据视频记录计算每分钟的循环次数、积极反应时间(刺激调节所需的时间)和消极反应时间(放松调节所需时间)。使用SPSS 22.0版对数据进行分析。结果:在50名参与者中,29人为正视型(平均SER:0.16±0.29 D),21人为近视型(平均SER:1.89±1.16 D)。任务前的平均调节能力为每分钟6.79±3.52个循环,任务后的调节能力为30分钟任务每分钟6.25±3.65个循环(p=0.010),1小时任务每分钟5.76±3.89个循环(p=0.01)。任务前的平均阳性反应时间为2.87±1.55秒,任务后30分钟和1小时的阳性反应时间分别为2.86±1.67秒(p=0.88)和2.98±2.33秒(p=0.42)。任务前平均负反应时间为8.77±8.83秒,任务后30分钟和1小时的负反应时间分别为11.83±14.28秒(p=0.016)和14.72±17.32秒(p=0.03)。结论:计算机工作1小时后,单眼近调节功能显著减少,负反应时间延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
British and Irish Orthoptic Journal
British and Irish Orthoptic Journal Health Professions-Optometry
CiteScore
1.50
自引率
0.00%
发文量
13
审稿时长
18 weeks
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