• 通常根据物水平的磷酸化糖酵解通量估计估计能量供应

    Energy provision is usually estimated from estimates of substrate-level phosphorylation and glycolytic flux.

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  • 甘油转化为二羟丙酮磷酸进入糖酵解

    The glycerol is converted into dihydroxyacetone phosphate which enters glycolysis .

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  • 反应酵解羧酸循环关键连接(3)。

    This is a critical link between glycolysis and the TCA cycle (3).

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  • 糖酵解过程中产生的丙酮分解乙醛二氧化碳

    The pyretic acid formed by GLYCOLYSIS is broken down into acetaldehyde and carbon dioxide.

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  • 武术套路中长拳类项目代谢酵解供能项目;

    Secondly, the Changquan events in Wushu routine is a non-oxygen metabolism's sugar zymolysis energy-providing event;

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  • 四川省康定县温泉分离出株嗜热厌氧糖酵解细菌。

    A thermophilic anaerobic glycolytic bacterium was isolated from the hot spring of Kang Ding County of Sichuan Province.

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  • 未经糖酵解代谢葡萄通过第二途径:磷酸HMP支路

    The glucose not used in glycolysis is metabolized via a second pathway, the hexose monophosphate (HMP) shunt.

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  • 葡萄通过糖酵解作用羧酸循环呼吸过程中氧化。

    Glucose is oxidized in respiration through glycolysis and the KREBS CYCLE.

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  • 红细胞主要代谢途径糖酵解大多数物种主要能量来源葡萄

    The principal metabolic pathway of RBC is glycolysis, and the main energy source in most species is glucose.

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  • 酵解过程生命提供能量的过程,维持生命起关键作用

    Glycolytic reaction which provides energy for life is very important to maintain life.

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  • 酵解,即葡萄生成乳酸白细胞产生能量主要途径

    The main energy producing pathway in the leucocyte is glycolysis, resulting in lactate production from glucose .

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  • 酵解,即葡萄生成乳酸白细胞产生能量主要途径

    The main energy producing pathway in the leucocyte is glycolysis, resulting in lactate production from glucose.

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  • NSE酵解途径重要,它脑中能量供应密切相关

    NSE is proved to be an important enzyme involved in the glycolytic pathway and is closely related to the energy supply for brain.

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  • 结论肝纤维化过程中伴有蛋白质合成分解异常酵解活动增强

    Conclusion (1) Li ver fibrosis is accompanied with abnormal protein synthesis and asition, a s well as the enhanced activity of glycolysis;

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  • 磷酸烯醇式丙酮酸(pep)酵解合成atp两种磷酸基的供体之一

    Phosphoenolpyruvate (PEP) is one of the two phosphoryl group donors in the synthesis of ATP during glycolysis.

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  • 提示CO改变心肌能量代谢途径增强无氧糖酵解代偿CO所致心肌缺氧

    These results suggest that co can change the way of cardiac energy metabolism and increase anaerobic glycolysis to compensate for cardiac hypoxia induced by co.

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  • 显然敏感品种呼吸主要通过糖酵解途径抗性品种比较依赖磷酸途径。

    Sensitive varieties apprently respire mainly by the glycolysis pathway whereas resistant varieties depend more on the pentose phosphate pathway.

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  • 来源于脂肪甘油步酶反应代谢转化糖酵解中间产物磷酸二羟丙酮

    Glycerol obtained from the breakdown of fat is metabolized by conversion to dihydroxyacetone phosphate, a glycolytic intermediate, in two enzyme-catalyzed reactions.

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  • 结论尿病发病一段时期内,补充提高视网膜酵解限速活性

    Conclusion in the early stage of diabetes, Mg supplementation can improve the activities of the crucial rate limiting enzymes relating to glycolytic pathway of diabetic retinal tissue in rats.

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  • 通过耗尽肌肉能量(三磷酸腺甙)快速增加产生乳酸无氧糖酵解加速僵发生

    This speeds up the onset of rigor mortis by depleting muscle energy (ATP) and rapidly increasing the anaerobic glycolysis that produces lactic acid.

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  • ATP糖酵解收获阶段经过两个反应生成,磷酸甘油酸激酶丙酮酸激酶催化。

    ATP is formed in the payoff phase of glycolysis by two reactions, promoted by phosphoglycerate kinase and pyruvate kinase.

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  • 提示保尔佳可能是通过抑制癌细胞酵解影响细胞能量代谢,致癌细胞生长受到抑制

    This suggests that Polyergar can inhibit the growth of cancer cell probably through inhibiting the glycolysis of the cancer cell which in turn influenced the cell energy metabolism.

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  • 乳酸糖酵解产物,从前被广泛认为是引起肌肉疲劳酸中毒诱导组织损伤关键因素

    It was previously largely considered a major cause of muscle fatigue and a key factor in acidosis-induced tissue damage.

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  • 酵解混沌振荡过程进行动态辨识建模,结果表明算法具有较好的辨识效果和收敛

    The dynamic glycolysis chaotic oscillation process is identified using VBL network, which shows that this algorithm has better convergence property than other algorithms.

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  • 如何很好地解决运动员机体无氧酵解能力缺乏具体而明确措施训练方法、手段。

    But how to solve the athletes' ability of anaerobic metabolism is lack of measures and training ways.

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  • 完好细胞糖酵解调节步骤可以通过研究整个组织器官葡萄分解代谢来鉴别

    The regulated steps of glycolysis in intact cells Can be identified by studying the catabolism of glucose in whole tissues or organs.

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  • 定量方法分析心肌病理损害程度测定心肌糖酵解中间产物11项以及能量代谢产物。

    Myocardial injury was estimated with a semi-quantitative histological scoring system, and 11 intermediate metabolites in glycolysis and ATP, ADP, AMP, CP in myocardium were measured.

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  • 糖酵解产生丙酮酸在正常条件丙酮酸脱氢酶(PDH)转化乙酰辅酶a (1 - 3)。

    Pyruvate generated from glycolysis is converted to acetyl-CoA by pyruvate dehydrogenase (PDH) under normoxia (1-3).

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  • 糖酵解产生丙酮酸在正常条件丙酮酸脱氢酶(PDH)转化乙酰辅酶a (1 - 3)。

    Pyruvate generated from glycolysis is converted to acetyl-CoA by pyruvate dehydrogenase (PDH) under normoxia (1-3).

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