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胰岛素抵抗数值判别式的再论证 被引量:1
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作者 杨奎元 李瑞红 《医学研究通讯》 2004年第11期50-52,共3页
目的证明胰岛抵抗数学判别公式(Gt/Go·Ct/Co·Io/It)的适用性、可靠性。为临床判定胰岛素抵抗程度,评价药物治疗效果,提供了简便、客观科学的方法。结果验证了空腹时段正常人、MDDM患者,肘静脉血中G、I、C的浓度相对稳定。即... 目的证明胰岛抵抗数学判别公式(Gt/Go·Ct/Co·Io/It)的适用性、可靠性。为临床判定胰岛素抵抗程度,评价药物治疗效果,提供了简便、客观科学的方法。结果验证了空腹时段正常人、MDDM患者,肘静脉血中G、I、C的浓度相对稳定。即糖代谢过程终末“剩余”平衡。糖负荷后,时点t,肘静脉血中G、I、C的变化度,代人数学式(G/I·C)其计算值在特定范围内振荡,在波动中趋向平衡。结论糖负荷后任意时点t,肘静脉血中G、I、C与自身空腹时段检测值之比,表达这一时点相关因子浓度的变化度。Gt/Go·Ct/Co·Io/It数学式的计算值是时点t,细胞糖代谢“速率”代谢“通量”间接的定量指标。其值为:K±b;K为常数,系数b为振荡幅度。由此可推论与糖代谢相关的细胞、细胞微单元的功能负荷或其病理进程。 展开更多
关键词 胰岛素抵抗 细胞微单元 糖代谢 数值判别式 通量分布
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Demineralization of Gondwana coal with Pseudomonas mendocina strain B6-1: a case study of coal from Gopinathpur top and bottom seams of Mugma mine, Dhanbad, Jharkhand (India)
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作者 Prakash K. Singh Asha Lata Singh +4 位作者 Mahendra P. Singh A. S. Naik Dharmshila Singh Spardha Rai Aniruddha Kumar 《International Journal of Coal Science & Technology》 EI 2016年第2期235-245,共11页
In the present investigation an attempt has been made to demineralize the Gondwana coal of Gopinathpur top and bottom seams of Mugma mine, Raniganj coalfield, Dhanbad with the help of Pseudomonas mendocina strain B6-1... In the present investigation an attempt has been made to demineralize the Gondwana coal of Gopinathpur top and bottom seams of Mugma mine, Raniganj coalfield, Dhanbad with the help of Pseudomonas mendocina strain B6-1. The change in the amount of ash yield and decrease in the concentration of selected minor elements like Na, K, Mn and Ca and environmentally sensitive selected trace elements such as Cd, Pb, Se, Ni, Mn, and Zn have been studied as a function of time of bacterial treatment as well as with variation in the bacterial biomass. After 28 days of bacterial treatment there was variable amount of decrease observed in ash yield as well as in the concentration of minor and trace elements. The removal of the elements was further enhanced with the increase in the bacterial biomass from 10 to 25 mg/mL. Due to over exploitation of superior grade coals in the country, the remaining coal resources, available for current use, are inferior in grade and contain high level of impurities and there is ample scope of bio-beneficiation of these coals using bacterial biomass. 展开更多
关键词 Pseudomonas mendocina Gondwana coal Minor and trace elements DEMINERALIZATION
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