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1.
Chinese Journal of School Health ; (12): 925-929, 2022.
Article in Chinese | WPRIM | ID: wpr-934840

ABSTRACT

Objective@#To grasp the research dynamics and development trend of the thermal environment of campus buildings in China, so as to lay the foundation for in depth research and provide a reference basis.@*Methods@#Based on 479 documents in CNKI from 2000 to 2020, the documents were visualized and analyzed by keywords, including co occurrence, clustering, outbreak and author cooperation network in CiteSpace.@*Results@#In the past 20 years, the research on thermal environment of campus buildings in China had gone through a period of formation development growth, and was at a high growth stage now. The word frequency of "thermal comfort, thermal environment, indoor thermal environment, natural ventilation" was greater than 50, which was a high frequency keyword. The highest outbreak rate of "green campus" was 3.75, and "university library, university building, microclimate and green building" was in the outbreak period. And LIU Jiaping, LIU Zehua, WANG Hongguang and others were highly productive authors and have formed cooperative network groups with their own cores, but the cooperation among the network groups was less to be strengthened.@*Conclusion@#The research dynamics of the thermal environment of campus buildings is closely related to the policy development in China, and the research on "green campus, campus energy saving optimization, and university buildings" based on human thermal comfort theory is a hot topic of continuous attention.

2.
Acta Physiologica Sinica ; (6): 723-733, 2021.
Article in Chinese | WPRIM | ID: wpr-921275

ABSTRACT

Amino acids are essential nutrients for humans and have a wide range of biological functions. They are the constituent units of protein and energy metabolites. In addition, they are also widely involved in the maintenance and regulation of various physiological functions, and play a role in transcription, translation, post-translational modification and other levels. The liver is a key metabolic organ, and it acts as a hub that connects the metabolism of various tissues. Amino acid sensing plays a very important role in the regulation of hepatic glucose and lipid metabolism. Therefore, accurately sensing the levels of intracellular and extracellular amino acids is the key to maintaining cell homeostasis. There are several well-known amino acid sensors in eukaryotic cells, such as general control non-derepressible-2 (GCN2), mammalian target of rapamycin (mTOR) and taste receptors, which play an important role in maintaining metabolic homeostasis. This article gives a detailed introduction to the role and mechanism of amino acids in regulating hepatic glucose and lipid metabolism, laying a foundation for further exploration of amino acid sensing mechanism and treatment of hepatic glucose and lipid metabolism disorders.


Subject(s)
Humans , Amino Acids , Glucose/metabolism , Homeostasis , Lipid Metabolism , Liver
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