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快速原型制造中的数控加工容许速度
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作者 蔡悦华 《河北理工学院学报》 2003年第3期31-35,39,共6页
对快速原型制造中的数控加工容许速度进行了研究 ,运用泛灰色不确定性系统理论 ,建立了加工容许速度与加工半径的不确定性系统优化模型USMO— 1,给出了精度检验方法。编制了MATLAB程序 ,给出了处理实例 ,并与各种模型进行了比较。该模... 对快速原型制造中的数控加工容许速度进行了研究 ,运用泛灰色不确定性系统理论 ,建立了加工容许速度与加工半径的不确定性系统优化模型USMO— 1,给出了精度检验方法。编制了MATLAB程序 ,给出了处理实例 ,并与各种模型进行了比较。该模型不仅适合于等间距建模 ,也适合于非等间距建模 ,具有精度高、使用简便等特点 ,值得在快速原型制造中推广使用。 展开更多
关键词 快速原型制造 数控加工 容许速度 泛灰色不确定性系统理论 加工半径 数据处理模型 精度 关联度检验
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Unraveling the mechanisms of synapse formation and axon regeneration: the awesome power of C. elegans genetics 被引量:3
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作者 JIN YiShi 《Science China(Life Sciences)》 SCIE CAS CSCD 2015年第11期1084-1088,共5页
Since Caenorhabditis elegans was chosen as a model organism by Sydney Brenner in 1960's, genetic studies in this organism have been instrumental in discovering the function of genes and in deciphering molecular si... Since Caenorhabditis elegans was chosen as a model organism by Sydney Brenner in 1960's, genetic studies in this organism have been instrumental in discovering the function of genes and in deciphering molecular signaling network. The small size of the organism and the simple nervous system enable the complete reconstruction of the first connectome. The stereotypic developmental program and the anatomical reproducibility of synaptic connections provide a blueprint to dissect the mechanisms underlying synapse formation. Recent technological innovation using laser surgery of single axons and in vivo imaging has also made C. elegans a new model for axon regeneration. Importantly, genes regulating synaptogenesis and axon regeneration are highly conserved in function across animal phyla. This mini-review will summarize the main approaches and the key findings in understanding the mechanisms underlying the development and maintenance of the nervous system. The impact of such findings underscores the awesome power of C. elegans genetics. 展开更多
关键词 presynaptic active zone DLK kinase microtubule dynamics EFA-6 rpm-1 SYD-2 Liprin ubiquitin E3 ligase axoninjury laser axotomy
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