劉紅箭

基本信息,經歷,教育經歷,工作經歷,學術論文,

基本信息

姓名:劉紅箭
性別:男
民族:漢
出生年月:1960.2
出生地:吉林省長春市
學歷:博士研究生
系別:預防醫學系
職稱:教授
學科專業:流行病與衛生統計學
研究方向:慢性病流行病學,醫學現場研究中的統計學套用
講授課程:衛生統計學

經歷

教育經歷

1983.7 東北師範大學 數學系畢業 獲得理學學士學位
1996.3 日本東北大學醫學系研究科 碩士研究生畢業 獲得康復醫學碩士學位
2003.3 日本東北大學醫學系研究科 博士研究生畢業 獲得醫學博士學位

工作經歷

1983.7- 長春市教育局
1986.7- 白求恩醫科大學基礎醫學院
2003.4- 日本東北大學加齡醫學研究所
2011.6- 吉林大學公共衛生學院
代表性科研項目:
新自律神經情報解析法與藥效評價模型的開發研究(日本學術振興會)
關於形狀記憶合金人工心肌輔助下的圧感受器的反射感受性研究(日本學術振興會)
人工括約肌的開発及生體適應性研究(日本文部省)
以血管健康為切入點的高校教師健康教育模式研究(吉林省教育科學研究項目)血管健康的影響因素及干預策略研究(吉林省衛生廳)
醫療保險內容的差異對農村居民高血壓與糖尿病治療行為的影響(國際合作項目)
吉林省公務人員身心疲勞度評估及干預研究(事業單位委託項目)吉林省公務人員心腦血管疾病危險因素識別與干預研究(事業單位委託項目)

學術論文

第一作者英文論文
1. Effects of Metabolic Syndrome on Cardio-Ankle Vascular Index in Middle-Aged and Elderly Chinese. Metabolic Syndrome and Related Disorders. 9(2): 105-110, 2011. (SCI)
2. Effect of Mechanical Circulatory Support on Pulse Transit Time. 12th International Symposium of Nano-medicine and Bioengineering Engineering in the East Asian-Pacific Rim Region. P135-136. 2010.
3. Analysis of Baroreflex Sensitivity during Undulation Pump Ventricular Assist Device Support. Artificial Organs. 33(7), 651-655, 2009. (SCI)
4. Analysis of Baroreflex Sensitivity and Autonomic Nerve Activity in a Goat Model with the Artificial Myocardial Assist Device Support. 9th International Symposium of Nano-medicine and Bioengineering Engineering in the East Asian-Pacific Rim Region. P142-143. 2009.
5. Analysis of Power Spectrum and Fractal Dimension During Undulation Pump Ventricular Assistance. Nano-Biomedical Engineering 2009, Imperial College Press. London. P433-439. 2009.
6. Baroreflex sensitivity with the undulation pump artificial heart. Proceeding of the International Symposium on Biological and Physiological Engineering/The 22nd SICE Symposium on Biolofical and Physiological Engineering. P306-309, 13-14, 2008.
7. Biochemical evaluations of artificial anal sphincter using shape memory alloys. Journal of Artificial Organs. 10(4), 223-227, 2007. (SCI)
8. Long-term biocompatibility of the artificial anal sphincter in animal models. The 3rd Tohoku-NUS Joint Symposium on the Future Nano-medicine and Bioengineering in the East Asian Region. P25-28. Research Publishing, Chennai, Singapore, 2007.
9. Comparative analysis of cardio-ankle vascular index between Japanese and Russians. Future Medical Engineering Based on Bionanotechnology. Esashi M, Ishii K, Ohuchi N, Osumi N, Sato M, Yamaguchi Teds, Imperial College Press. London. P 411-418. 2007. (SCI)
10. Impact of Type A behavior on brachial-ankle pulse wave velocity in Japanese. Tohoku Journal of Experimental Medicine. 209 (1): 15-21, 2006. (SCI)
11. Comparison of Cardio-Ankle Vascular Index in Japanese and Russians. The 2nd Tohoku-NUS Joint Symposium on the Future Nano-medicine and Bioengineering in the East Asian Region. NanoScience and Technology for Medical Applications). Research Publishing, Chennai, Singapore, P93-94, 2006.
12. Comparison of brachial-ankle pulse wave velocity in Japanese and Russians. Tohoku Journal of Experimental Medicine. 207 (4): 263-270, 2005. (SCI)
13. Comparison of Heart Rate Variability and Stroke Volume Variability. Autonomic Neuroscience: Basic and Clinical. 116(1-2): 69-75, 2004. (SCI)
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