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用计算机求解不相容问题的数学模型(Ⅱ)
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作者 郭开仲 《广东工业大学学报》 CAS 1989年第3期1-5,共5页
文[3]给出了求解一维不相容问题的一个数学模型,本文在它的基础上建立另一种求解不相容问题的数学模型。该模型采用首先分析要求解的不相容问题成为不相容的因素,从而找出在该问题中那些可改变的条件限制下,消除该不相容问题的不相容因... 文[3]给出了求解一维不相容问题的一个数学模型,本文在它的基础上建立另一种求解不相容问题的数学模型。该模型采用首先分析要求解的不相容问题成为不相容的因素,从而找出在该问题中那些可改变的条件限制下,消除该不相容问题的不相容因素的方法。 展开更多
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PC12 cell integrated biosensing neuron devices for evaluating neuronal exocytosis function upon silver nanoparticles exposure
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作者 Pratikkumar Shah Qiaoli Yue +3 位作者 Xuena Zhu Fangcheng Xu Huai-Sheng Wang Chen-Zhong Li 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第10期1600-1604,共5页
In this research, we explored a rapid assessment of silver nanoparticles(Ag-NPs) neurotoxicity at a single-cell level. Traditional nanotoxicity assays on large cell-populations may hide the important heterogeneity of ... In this research, we explored a rapid assessment of silver nanoparticles(Ag-NPs) neurotoxicity at a single-cell level. Traditional nanotoxicity assays on large cell-populations may hide the important heterogeneity of individual cells often found in neuronal cells. The development in the area of new nanomaterial discoveries is far ahead of the development of advanced tools to measure these materials' toxicity. Development of alternative approaches to assess nanomaterials toxicity rapidly, reliably, and accurately is desirable. Here, we present a chip-based, cell-integrated microwell-array device for rapid assessment of neurotoxicity of Ag-NPs by monitoring the exocytosis function of a PC12 cell. Results presented here confirm the dose-dependent toxicity of Ag-NPs and the immediate alteration of their exocytosis function when exposed to NPs. 展开更多
关键词 neuron devices NANOTOXICITY AMPEROMETRY EXOCYTOSIS PC12 silver nanoparticle
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