目的:全面了解复发性糖尿病足溃疡(DFU)相关研究的研究现状,为今后有关DFU复发临床研究提供参考。方法:计算机检索中国知网、万方、维普、PubMed、Web of Science核心合集等数据库中关于复发性DFU相关文献,检索时限为2000年1月1日—2022...目的:全面了解复发性糖尿病足溃疡(DFU)相关研究的研究现状,为今后有关DFU复发临床研究提供参考。方法:计算机检索中国知网、万方、维普、PubMed、Web of Science核心合集等数据库中关于复发性DFU相关文献,检索时限为2000年1月1日—2022年7月31日,主要采用CiteSpace软件对检索结果进行分析。结果:共纳入DFU复发相关文献829篇,包括中文文献271篇,英文文献558篇。国内外研究热点基本一致,包括DFU复发的危险因素、DFU的治疗及预防复发。结论:我国研究者可借鉴国外研究经验,加强国际合作,进一步提高我国复发性DFU的研究质量。同时重视对DFU病人的随访,以期达到有效预防DFU病人复发,降低DFU复发率,最终提高DFU病人生活质量。展开更多
The key technologies of precision blasting were put forward based on the characteristics of urban via- duct blasting demolition in complicated surroundings. Initial bending instability mechanics model of reinforcing s...The key technologies of precision blasting were put forward based on the characteristics of urban via- duct blasting demolition in complicated surroundings. Initial bending instability mechanics model of reinforcing steel bar frame of blasting fragmented pier and sequenced collapsed dynamic model were established for quanti- tative blasting design. Technologies of water pressure blasting were applied in multi-cell box girder fragmenta- tion. The detonating network of non-electric duplication crossover was adopted for the safety and reliability of ultra-long delay. The rationality of blasting scheme and parameters were validated by physical model test. Harm- ful effects were forecasted and controlled by integrated protective technologies. Specialization, cooperation, pre- cision, execution (SCPE) project management method was put forward for precision management. The key tech- nologies of precision demolition blasting can provide reference for similar proiects.展开更多
文摘目的:全面了解复发性糖尿病足溃疡(DFU)相关研究的研究现状,为今后有关DFU复发临床研究提供参考。方法:计算机检索中国知网、万方、维普、PubMed、Web of Science核心合集等数据库中关于复发性DFU相关文献,检索时限为2000年1月1日—2022年7月31日,主要采用CiteSpace软件对检索结果进行分析。结果:共纳入DFU复发相关文献829篇,包括中文文献271篇,英文文献558篇。国内外研究热点基本一致,包括DFU复发的危险因素、DFU的治疗及预防复发。结论:我国研究者可借鉴国外研究经验,加强国际合作,进一步提高我国复发性DFU的研究质量。同时重视对DFU病人的随访,以期达到有效预防DFU病人复发,降低DFU复发率,最终提高DFU病人生活质量。
文摘The key technologies of precision blasting were put forward based on the characteristics of urban via- duct blasting demolition in complicated surroundings. Initial bending instability mechanics model of reinforcing steel bar frame of blasting fragmented pier and sequenced collapsed dynamic model were established for quanti- tative blasting design. Technologies of water pressure blasting were applied in multi-cell box girder fragmenta- tion. The detonating network of non-electric duplication crossover was adopted for the safety and reliability of ultra-long delay. The rationality of blasting scheme and parameters were validated by physical model test. Harm- ful effects were forecasted and controlled by integrated protective technologies. Specialization, cooperation, pre- cision, execution (SCPE) project management method was put forward for precision management. The key tech- nologies of precision demolition blasting can provide reference for similar proiects.