1.Preparation and biological application of carbon nanotube atomic force microscope probe.
Tieqiang ZHAO ; Liqiu GUO ; Shen DONG ; Feihu ZHANG
Journal of Biomedical Engineering 2003;20(2):352-355
The atomic force microscope (AFM) with an atomic resolution is a powerful tool for biological structure. The probe is an important part that determines the resolution of AFM. Carbon nanotube is becoming an ideal AFM probe due to its unique structure physical and chemical properties. Carbon nanotube AFM probes can be made by manual assembly or chemical vapor deposition. Several proteins, nucleic acids and cells have been investigated with carbon nanotube probes. Not only the high-resolution images but also the determination of specific DNA sequence and haplotype were acquired. Carbon nanotube AFM probe will increasingly play an important role in biological studies.
Carbon
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Cells, Cultured
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Equipment Design
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Erythrocytes
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parasitology
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ultrastructure
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Microscopy, Atomic Force
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instrumentation
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Proteins
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ultrastructure
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Sequence Analysis, DNA
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methods
2.Calculation Method of Incubation Period of Infectious Diseases and Its Epidemiological Significance
Yuying WU ; Yang ZHAO ; Xiaoliang WU ; Xiaoliang CHEN ; Tieqiang WANG ; Dongsheng HU ; Ming ZHANG
Chinese Journal of Preventive Medicine 2020;54(9):1026-1030
Based on the practical application, this paper introduced the basic calculation conditions, methods and epidemiological significance of incubation period. The real data were used for calculations of the incubation period by lognormal, gamma, Weibull and Erlang distribution methods. Both of the complete and incomplete observation data were demonstrated.
3.Calculation Method of Incubation Period of Infectious Diseases and Its Epidemiological Significance
Yuying WU ; Yang ZHAO ; Xiaoliang WU ; Xiaoliang CHEN ; Tieqiang WANG ; Dongsheng HU ; Ming ZHANG
Chinese Journal of Preventive Medicine 2020;54(9):1026-1030
Based on the practical application, this paper introduced the basic calculation conditions, methods and epidemiological significance of incubation period. The real data were used for calculations of the incubation period by lognormal, gamma, Weibull and Erlang distribution methods. Both of the complete and incomplete observation data were demonstrated.
4. Impact of hypertensive disorder complicating pregnancy on neonatal mortality and major complications in preterm infants
Meiyu WANG ; Xiangyong KONG ; Zhichun FENG ; Fengdan XU ; Hongyan LYU ; Lihong YANG ; Sujing WU ; Rong JU ; Jin WANG ; Li PENG ; Zhankui LI ; Xiaolin ZHAO ; Shujuan ZENG ; Huixian QIU ; Weixi WEN ; Hui WU ; Ying LI ; Nan LI ; Xuefeng ZHANG ; Wenzheng JIA ; Guo GUO ; Weipeng LIU ; Feng WANG ; Gaimei LI ; Fang LIU ; Wei LI ; Xiao-ying ZHAO ; Hongbin CHENG ; Yunbo XU ; Wenchao CHEN ; Huan YIN ; Yanjie DING ; Xiaoliang WANG ; Ruiyan SHAN ; Ping XU ; Meiying HAN ; Chunyan YANG ; Tieqiang CHEN ; Xiaomei TONG ; Shaojun LIU ; Ziyuan LIU
Chinese Journal of Applied Clinical Pediatrics 2018;33(14):1065-1070
Objective:
To investigate the effect of hypertensive disorder complicating pregnancy (HDCP) on the mortality and early complications of premature infants.
Methods:
The general clinical data of preterm infants with gestational age 24-36+ 6 weeks were collected from the cooperative units in the task group from January 1, 2013 to December 31, 2014.According to the severity of HDCP, the infants were divided into 4 groups: HDCP group, preeclampsia group, eclampsia group and non HDCP group, the mortality and major complications of preterm infants were compared, and the influencing factors were analyzed.
Results:
The mortality rate of preterm in the HDCP group was significantly higher than that of non HDCP group, and there was statistical significance (