The core interthreshold zone during exposure to red and blue light.

IF 3.3 4区 医学 Q1 PHYSIOLOGY
Naoshi Kakitsuba, Igor B Mekjavic, Tetsuo Katsuura
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引用次数: 5

Abstract

Background: This study tested the hypothesis that the core interthreshold zone (CIZ) changes during exposure to red or blue light via the non-visual pathway, because it is known that light intensity affects the central nervous system. We conducted a series of human experiments with 5 or 10 male subjects in each experiment.

Methods: The air temperature in the climatic chamber was maintained at 20 to 24°C. The subjects wore suits perfused with 25°C water at a rate of 600 cm3/min. They exercised on an ergometer at 50% of their maximum work rate for 10 to 15 minutes until sweating commenced, and then remained continuously seated without exercise until their oxygen uptake increased. The rectal temperature and skin temperatures at four sites were monitored using thermistors. The sweating rate was measured at the forehead with a sweat rate monitor. Oxygen uptake was monitored with a gas analyzer. The subjects were exposed to red or blue light at 500 lx and 1000 lx in both summer and winter.

Results: The mean CIZs at 500 lx were 0.23 ± 0.16°C under red light and 0.20 ± 0.10°C under blue light in the summer, and 0.19 ± 0.20°C under red light and 0.26 ± 0.24°C under blue light in the winter. The CIZs at 1000 lx were 0.18 ± 0.14°C under red light and 0.15 ± 0.20°C under blue light in the summer, and 0.52 ± 0.18°C under red light and 0.71 ± 0.28°C under blue light in the winter. A significant difference (P <0.05) was observed in the CIZs between red and blue light at 1000 lx in the winter, and significant seasonal differences under red light (P <0.05) and blue light (P <0.01) were also observed at 1000 lx.

Conclusions: The present study demonstrated that dynamic changes in the physiological effects of colors of light on autonomic functions via the non-visual pathway may be associated with the temperature regulation system.

Abstract Image

Abstract Image

Abstract Image

暴露于红光和蓝光时的核心阈间区。
背景:本研究验证了核心阈间区(CIZ)在通过非视觉途径暴露于红色或蓝色光时发生变化的假设,因为已知光强度会影响中枢神经系统。我们进行了一系列的人体实验,每个实验有5到10名男性受试者。方法:气候室空气温度保持在20 ~ 24℃。受试者穿着以600 cm3/min流速灌注25°C水的宇航服。他们在测力仪上以最大工作速率的50%运动10到15分钟,直到开始出汗,然后一直坐着不运动,直到他们的摄氧量增加。使用热敏电阻监测四个部位的直肠温度和皮肤温度。用出汗率监测器在前额测量出汗率。用气体分析仪监测摄氧量。受试者在夏季和冬季分别暴露在500 lx和1000 lx的红光或蓝光下。结果:500 lx下,夏季红光下平均ciz为0.23±0.16℃,蓝光下平均ciz为0.20±0.10℃;冬季红光下平均ciz为0.19±0.20℃,蓝光下平均ciz为0.26±0.24℃。1000 lx下的ciz夏季红光下为0.18±0.14℃,蓝光下为0.15±0.20℃;冬季红光下为0.52±0.18℃,蓝光下为0.71±0.28℃。结论:本研究表明,光的颜色通过非视觉通路对自主神经功能的生理影响的动态变化可能与温度调节系统有关。
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来源期刊
自引率
6.50%
发文量
39
期刊介绍: Journal of Physiological Anthropology (JPA) is an open access, peer-reviewed journal that publishes research on the physiological functions of modern mankind, with an emphasis on the physical and bio-cultural effects on human adaptability to the current environment. The objective of JPA is to evaluate physiological adaptations to modern living environments, and to publish research from different scientific fields concerned with environmental impact on human life. Topic areas include, but are not limited to: environmental physiology bio-cultural environment living environment epigenetic adaptation development and growth age and sex differences nutrition and morphology physical fitness and health Journal of Physiological Anthropology is the official journal of the Japan Society of Physiological Anthropology.
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