实验条件下热、光色温对女生精度和速度综合影响的研究

Ehsan Habibi, H. Dehghan, S. Mousavi, Parnian Ilbag, Mahsa Jahadi Naeini
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引用次数: 0

摘要

研究背景与目的:认知功能,如精度和速度,显著影响人为错误和事件。光、色和热的温度会影响认知功能。因此,本研究考察了热和色温对实验室工作速度和精度的影响。材料与方法:本研究在伊朗伊斯法罕市伊斯法罕医学大学大气医学院实验室对10名女学生进行研究。采用Piron v型测振仪和精密目标测振仪测量精度和速度。试验分4轮进行,每次1小时。第一转22°C,色温3000°K,第二转22°C,色温6000°K,第三转36°C,色温3000°K,第四转36°C,色温6000°K,进行调整。结果:根据所得结果,在色温为3000、温度为22°C和36°C两种情况下,精密测振仪和目标测振仪的测量精度显著(P0.05)。结论:总的来说,本研究结果表明,36℃下的工作精度低于22℃;工作速度较高,改变光的色温对提高工作精度没有明显影响。因此,在温度高于舒适的环境中,建议采用控制策略降低温度。
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Investigating the Combined Effects of Heat and Light Color Temperature on Precision and Speed in Female Students in Laboratory Conditions
Background & Aims of the Study: Cognitive functions, such as precision and speed, significantly affect human errors and incidents. The temperature of light color and heat can impact cognitive functions. Therefore, the present study examined the effect of heat and color temperature on the speed and precision of work in the laboratory. Materials and Methods: This study was conducted on 10 female students in the Laboratory of Atmospheric Medical School of Isfahan University of Medical Sciences in Isfahan City, Iran. Piron v-vibrometer and precision and target vibrometer devices were used to measure accuracy and speed. The test was held in 4 turns, each time for 1 hour. The first turn, 22°C, and color temperature 3000°K, the second turn 22°C and color temperature 6000°K, the third turn 36°C and color temperature 3000°K and the fourth turn 36°C and color temperature 6000°K, adjusted. Results: Based on the obtained results, precision measurement with precision and target vibrometer was significant in two cases with a color temperature of 3000 and temperatures of 22°C and 36°C (P<0.05); thus, with increasing temperature, the frequency of errors enhanced, and consequently the precision decreased. Furthermore, the speed measurement with the precision and target and Piron v-vibrometer in color temperature state 6000 and temperatures of 22°C and 36°C and the color temperature of 3000 and temperatures 22°C and 36°C were significant (P<0.05). In other words, with increasing temperature, the time of work decreased, and as a result, the speed of work increased, and in other cases, no significant relationship was observed (P>0.05). Conclusion: In general, the present study results indicated that the precision of work at 36°C is less than exposure to 22°C; the speed of work is higher, and changing the color temperature of light has no significant effect on increasing the precision of work. Therefore, it is suggested to use control strategies to reduce the temperature in environments with temperatures higher than comfort.
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