恒化器
- 名chemostat
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恒化器(chemostat)模型是微生物生态学研究中的一个重要模型。
The chemostat is a important model in microbial ecology .
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Lotka-Volterra模型和恒化器模型是两类重要的生物数学模型。
Lotka-Volterra model and chemostat model are two kinds of the most significant models in Mathematical biology .
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带营养再循环项的双营养竞争恒化器模型分析
Analysis of a Competitive Chemostat Model with Two-nutrients and Nutrients Recycling
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应用口腔恒化器形成人工牙菌斑的扫描电镜研究
Scanning Electron Microscope Study of Artificial Plaque Using Mouth Chemostat
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一类带有毒素生产的恒化器模型的定性分析
Qualitative Analysis of a Chemostat Model with Production of Toxin
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一类未搅拌恒化器中食物网的共存态
Coexistence States for a Food Web in an Un-stirred Chemostat
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一类具有脉冲效应的恒化器数学模型
A Mathematical Model of the Chemostat with impulsive Input
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恒化器模型是生物数学中重要的模型之一。
Chemostat model is one of the most significant models in Mathematical biology .
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营养再生的双营养恒化器模型的全局稳定性
Global Stability in a Chemostat Model with Two-Nutrients Recycling
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一类具有抑制剂的非均匀恒化器模型的共存态
Coexistence of an Unstirred Chemostat Model with an Inhibitor
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恒化器是用于微生物连续培养的一种实验装置。
The chemostat is a laboratory apparatus used for the continuous culture of microorganisms .
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带捕食与被捕食结构的恒化器模型的吸引性
The Attractability of Chemostat Model with Predator-Prey Populations
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恒化器中微生物连续培养单食物链模型的定性分析
Qualitative analysis for the single food chain model of microorganism continuous culture in chemostat
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恒化器系统的建模与稳定性分析
Modeling and Stability Analysis for the Chemostat Systems
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改良恒化器中牙周致病菌和致龋菌的激光共聚焦显微镜动态观察
Dynamic observation of periodontal pathogens and cariogenic bacteria in modified chemostat using confocal laser scanning microscopy
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为了能够在体外模拟牙菌斑,利用4种与龋病关系密切的细菌,应用口腔恒化器合成了一种人工牙菌斑。
Four cariogenic bacteria were used to produce a plaque called artificial plaque by a mouth chemostat model .
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结果:①在体外恒化器龋病模型中,三组牙釉质表面开窗区均形成了不同程度的早期龋病损。
Early caries lesions were formed on the windows on smooth surfaces in different degree in bacteria model in vitro of three groups .
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通过分析这两种竞争恒化器模型动力学性质,得出竞争排斥原理的充分条件。
By performing mathematical analysis for two kinds of competitive chemostat model , we obtain the sufficient conditions for satisfying competitive exclusion principle .
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恒化器是一个连续培养微生物的实验装置,通过控制其输入和输出量来了解物种之间的相互作用。
The chemostat is a device frequently used to perform laboratory experiments for understanding the interactions among species by controlling the input and output .
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在这篇文章中,我们提出并分析了一个具有捕食者,食饵和既有周期脉冲输入又有周期脉冲输出营养液的恒化器模型。
In this paper , we present and analyze a simple model for a chemostat with predator , prey and periodically pulsed input and washout substrate .
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本文讨论了一类在单种营养物输入的未搅拌恒化器中的简单食物网模型,该模型除了营养物以外,还包含有一个捕食者种群和两个竞争的食饵种群。
In this paper , we discuss a simple food web model consisting of one predator and two competing prey populations in an un-stirred chemostat with a single nutrient input .
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恒化器中营养的输入和流出近似模拟了自然界的连续代谢作用,流出的微生物相当于自然界中常常发生的物种非自然死亡或迁出。
The input and output of the nutrient in the Chemostat simulate approximately the continuous metabolism in nature and outputs of microorganisms correspond to species ' migration or unnatural death which often happen in nature .
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对于两种营养输入的污染的恒化器模型,文〔21〕研究了其简化形式,本文研究其一般形式,对初始规模较小的种群,得到了其持续生存与绝灭的阈值。
In paper [ 21 ] , we studied the simplified form of the polluted chemostat model with double nutrient input , In this paper , we consider the unsimplified form , and obtained the threshold between persistence and extinction for small size initial population .