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101.
Pu-Hsi Tsai Nean-Been Kan Su-Chen Ho Chieh-Chung Liu Chih-Cheng Lin 《Journal of food science》2005,70(9):S581-S585
ABSTRACT: Oolong tea contains polyphenolic catechins that can act as antioxidants and improve blood lipid status. The purpose of this study was to investigate the effect of a daily intake of Oolong tea for 30 d on the cholesterol profiles, lipid peroxidation level, and superoxide dismutase activity in athletes before and after exhaustive exercise. Twenty-two male rugby players served as the experiment subjects. They were divided into 2 groups: the tea-supplement group and control group. The results showed that there was a significant increase in total plasma cholesterol for both groups after training. There were no significant differences in the high-density lipoprotein (HDL) cholesterol level and low-density lipoprotein (LDL) cholesterol level after tea supplementation. However, ingestion of Oolong tea resulted in significantly lower resting and post-exhaustive exercise level of plasma malondialdehyde, and significantly lower resting level of superoxide dismutase activity. The results suggest that supplementation with Oolong tea for rugby players can decrease oxidative stress, and this can be explained by the decrease of lipid peroxidation level in cooperation with Oolong tea supplementation against the free radicals. 相似文献
102.
103.
Huey-Ru Chen Ying-Chung Chen Ting-Chang Chang Kuan-Chang Chang Tsung-Ming Tsai Tian-Jian Chu Chih-Cheng Shih Nai-Chuan Chuang Kao-Yuan Wang 《Nanoscale research letters》2014,9(1):177
In this letter, we utilize an electrical analysis method to develop a TaN thin film resistor with a stricter spec and near-zero temperature coefficient of resistance (TCR) for car-used electronic applications. Simultaneously, we also propose a physical mechanism mode to explain the origin of near-zero TCR for the TaN thin film resistor (TFR). Through current fitting, the carrier conduction mechanism of the TaN TFR changes from hopping to surface scattering and finally to ohmic conduction for different TaN TFRs with different TaN microstructures. Experimental data of current–voltage measurement under successive increasing temperature confirm the conduction mechanism transition. A model of TaN grain boundary isolation ability is eventually proposed to influence the carrier transport in the TaN thin film resistor, which causes different current conduction mechanisms. 相似文献