MEMS Flow Sensor System with Tracheal Tube Device for Evaluation of Respiration and Heartbeat Signal by Detecting Airflow at Mouth of Infant

Author:

Mitsunari Yuki1,Hasegawa Yoshihiro1,Taniguchi Kazuhiro1,Matsushima Miyoko2,Kawabe Tsutomu2,Shikida Mitsuhiro1

Affiliation:

1. Hiroshima City University

2. Nagoya University

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering,Mechanical Engineering

Reference18 articles.

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2. (2) A. Fujishiro, H. Kaneko, T. Kawashima, M. Ishida, and T. Kawano : “A penetrating micro-scale diameter probe array for in vivo neuron spike recordings”, Tech. Digest. The 24th International Conference on Micro Electro Mechanical Systems, pp. 1011-1014 (2011)

3. (3) N. Roxhed, T. C. Gasser, and P. Griss : “Penetration-Enhanced Ultrasharp Microneedles and Prediction on Skin Interaction for Efficient Transdermal Drug Delivery”, Journal of Microelectromechanical systems, Vol. 16, No. 6, pp. 1429-1440 (2007)

4. (4) H. J. G. E. Gardeniers, R. Luttge, E. J. W. Berenschot, M. J. de Boer, S. Y. Yeshurun, M. Hefetz, R. van't Oever, and A. van den Berg : “Silicon Micromachined Hollow Microneedles for Transdermal Liquid Transport”, Journal of Microelectromechanical systems, Vol. 12, No. 6, pp. 855-862 (2003)

5. (5) S. P. Davis, W. Martanto, M. G. Allen, and M. R. Prausnitz : “Hollow Metal Microneedles for Insulin Delivery to Diabetic Rats”, IEEE Transactions on Biomedical Engineering, Vol. 52, No. 5, pp. 909-915 (2005)

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