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糖尿病患者对过热环境所致损害的易感性
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作者 李芳 王苏华 陆荣柱 《国外医学(医学地理分册)》 CAS 2014年第1期74-79,共6页
2型糖尿病等慢性疾病可能会改变身体对过热的正常反应。已有研究表明,糖尿病引起的内皮依赖性和非内皮依赖性损伤均会影响皮肤血流(SkBF)对局部热损耗(散热)反应.这就会降低过热或药物刺激所致的SkBF加快幅度。2型糖尿病会减少体温调节... 2型糖尿病等慢性疾病可能会改变身体对过热的正常反应。已有研究表明,糖尿病引起的内皮依赖性和非内皮依赖性损伤均会影响皮肤血流(SkBF)对局部热损耗(散热)反应.这就会降低过热或药物刺激所致的SkBF加快幅度。2型糖尿病会减少体温调节性出汗,因而机体把热量从体内传递到体外的传导能力则会降低。糖尿病相关的并发症和必须使用的治疗药物(尤其是那些会影响体液平衡的药物)也可减少SkBF和出汗,从而进一步增加糖尿病患者与过热相关疾病的健康风险。本文综述了2型糖尿病对热损耗反应的易感性。发现2型糖尿病及其并发症以及必需的治疗药物的使用可能会引起脱水、降低SkBF和减少出汗,进而影响这一人群的体温调节,且这一不良影响在血糖控制不佳的患者中表现得更加明显,但是那些经常参加体力活动的糖尿病人群,只需要更少的药物,同时也能很好的控制血糖水平,却和跟相似年龄和体型的健康人群一样能够耐受过热。 展开更多
关键词 糖尿病 热损耗(散热) 过热环境 易感性 过热事件
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Simulation of the Microphysical Processes and Effect of Latent Heat on a Heavy Rainfall Event in Beijing
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作者 GUO Chun-Wei XIAO Hui +1 位作者 YANG Hui-Ling TANG Qi 《Atmospheric and Oceanic Science Letters》 CSCD 2014年第6期521-526,共6页
An extraordinary rainstorm that occurred in Beijing on 21 July 2012 was simulated using the Weather Research and Forecasting model. The results showed that:(1) The two precipitation phases were based on a combination ... An extraordinary rainstorm that occurred in Beijing on 21 July 2012 was simulated using the Weather Research and Forecasting model. The results showed that:(1) The two precipitation phases were based on a combination of cold cloud processes and warm cloud processes. The accumulated conversion amount and conversion rate of microphysical processes in the warm-area phase were all much larger than those in the cold front phase.(2) 72.6% of rainwater was from the warm-area phase. Rainwater mainly came from the melting of graupel and the melting of snow, while the accretion of cloud water by rain ranked second.(3) The net heating rate with height appeared as an overall warming with two strong heating centers in the lower and middle layers of the troposphere and a minimum heating center around the melting layer. The net heating effect in the warm-area phase was stronger than that in the cold front phase.(4) Warm cloud processes contributed most to latent heat release, and the thermal effect of cold cloud processes on the storm in the cold front phase was enhanced compared to that in the warm-area phase.(5) The melting of graupel and snow contributed most to latent heat absorption, and the effect of the evaporation of rainwater was significantly reduced in the cold front phase. 展开更多
关键词 extraordinary rainstorm warm-area precipitation cold front precipitation microphysical processes latent heat effect
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