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Physiological Responses to Different CO2 Levels in Poor Ventilation Room

机译:在贫困通风室中对不同二氧化碳水平的生理反应

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According to ventilation of acceptable indoor air quality (IAQ), the air carbon dioxide concentration (C_(CO2)) and air temperature (T_a) increase with human in poor ventilation. The main source of CO2 pollution indoor is human respiration. This study simulates a poor ventilation condition and 10 volunteers participate with non-mask method to study the physiological responses in three C_(CO2) levels. Facial temperature (Tf), saturation of percentage oxygen (SpO2), and electrocardiography (HR) were spontaneously acquired while subjects were inside an airtight room. Analytical results indicate SpO2 decreased as C_(CO2) increased. Those results further demonstrate a positive correlation between C_(CO2)/HR and C_(CO2)/T_f, implying that the central-chemoreflex can stimulate the respiratory system since SpO2 variance and increased HR can promote pulmonary gas exchange. Notably, temperature difference in T_f and T_a increased under low C_(CO2) and then reversed and stabilized inference the antagonistic pattern accelerated rapidly initially and decelerated finally stabilized. These findings also imply that the internal body responded to changes in the external environment rapidly, attempted to homeostasis, and reached equilibrium slowly. Variations of C_(CO2) and T_a can be modeled by equations. Results of this study prove that IAQ affects physiological responses in the symbiotic relationship between the human body and surrounding environment.
机译:根据可接受的室内空气质量(IAQ)的通风,空气二氧化碳浓度(C_(二氧化碳))和空气温度(T_A)随着人的通气差而增加。 Co2污染室内的主要来源是人类呼吸。本研究模拟了通风条件差,10名志愿者参与非掩盖方法,以研究三个C_(CO2)水平的生理反应。在受试者内部在密闭室内,自发地获取面部温度(TF),氧气(SPO2)和心电图(HR)的饱和度。分析结果表明,随着C_(CO2)增加,SPO2降低。这些结果进一步证明了C_(CO 2)/ HR和C_(CO2)/ T_F之间的阳性相关性,这意味着中央化学料射精可以刺激呼吸系统,因为SPO2方差和HR增加可以促进肺气体交换。值得注意的是,在低C_(CO2)下T_F和T_A中的温度差增加,然后反转和稳定的推理,最初稳定,抗拮抗图案快速加速,最终稳定。这些发现还暗示内部身体迅速响应外部环境的变化,试图稳定,缓慢达到平衡。 C_(CO2)和T_A的变体可以由方程式建模。本研究的结果证明,IAQ影响人体与周围环境之间的共生关系中的生理反应。

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