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8篇 您的检索式:作者名="Li Yaobo"
    题名 作者 年代 出处 被引量
1Treatment and reuse of toilet wastewater by an airlift external circulation membrane bioreactor显示文摘Yaobo Fan Gang Li 2006Process Biochemistry2006,41,:1
2Treatment and reuse of toilet wastewater by an airliftexternal circulation membrane bioreactor显示文摘Fan Yaobo Li Gang Wu Linlin 0,,41:1
3Treatment and reuse of toilet wastewater by an airlift external circulation membrane bioreactor显示文摘Fan Yaobo Li Gang Wu Linlin 2006Proc Biochem2006,41,:1
4Voice Activity Detection Method Based on Gray Correlation Analysis Algorithm 显示文摘Cheng Gong Zhang Xiongwei Li Yaobo 2012Journal of PLA University of Science and Technology2012,56,7:1
5Treatment and reuse of toilet wastewater by an airlift external circulation membrane bioreactor显示文摘FAN Yaobo LI Gang WU Linlin 2006Process Biolchemistry2006,41,:1
6Treatment and reuse of toilet wastewater by an airlift external circulation membrane bioreactor 显示文摘Yaobo Fan Gang Li 2006Process Biochemistry2006,41,:1
7Treatment and reuse of toilet wastewater by an airlift external circula- tion membrane bioreactor显示文摘Fan Yaobo Li Gang Wu Linlin 2006Process Biochemistry2006,41,6:1
8Personal glucose meters coupled with signal amplification technologies for quantitative detection of non-glucose targets:Recent progress and challenges in food safety hazards analysis显示文摘Ensuring food safety is paramount worldwide.Developing effective detection methods to ensure food safety can be challenging owing to trace hazards,long detection time,and resource-poor sites,in addition to the matrix effects of food.Personal glucose meter(PGM),a classic point-of-care testing device,possesses unique application advantages,demonstrating promise in food safety.Currently,many studies have used PGM-based biosensors and signal amplification technologies to achieve sensitive and specific detection of food hazards.Signal amplification technologies have the potential to greatly improve the analytical performance and integration of PGMs with biosensors,which is crucial for solving the challenges associated with the use of PGMs for food safety analysis.This review introduces the basic detection principle of a PGM-based sensing strategy,which consists of three key factors:target recognition,signal transduction,and signal output.Representative studies of existing PGM-based sensing strategies combined with various signal amplification technologies(nanomaterial-loaded multienzyme labeling,nucleic acid reaction,DNAzyme catalysis,responsive nanomaterial encapsulation,and others)in the field of food safety detection are reviewed.Future perspectives and potential opportunities and challenges associated with PGMs in the field of food safety are discussed.Despite the need for complex sample preparation and the lack of standardization in the field,using PGMs in combination with signal amplification technology shows promise as a rapid and cost-effective method for food safety hazard analysis.Feng He Haijie Wang Pengfei Du Tengfei Li Weiting Wang Tianyu Tan Yaobo Liu Yanli Ma Yuanshang Wang A.M.Abd El-Aty 2023Journal of Pharmaceutical Analysis2023,13,3:0
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