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Modeling the Near Infrared Light Propagation in Biological Tissues

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Paper Titles. Modeling the Near Infrared Light Propagation in Article Preview. Abstract: The model of photon energy distribution in biological tissue has a very important significance in the diagnosis and treatment of biomedical area. Add to Cart.

Applied Mechanics and Materials Volumes Main Theme:. Edited by:. Online since:. January Modeling , Near Infrared , Tissue. Cited by. Related Articles. Paper Title Pages. Authors: Z. Li, B. Authors: Jiu Long Wang. Abstract: Methane is an easily burning and exploding gas. It is the primary component of many gas fuels such as mine gas and natural gas and so on.

Incident online detecting methane gas density has important significance for mine and plant safe production and personal safety. Based on the near infrared spectral absorption of methane, a system using absorption type optical fiber for high sensitivity methane detection is demonstrated in this paper.


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DFB LD is adopted as light source in this paper. Modulating the light source, methane gas is detected by second harmonic. The ratio of the fundamental and second harmonic signal can be used for eliminating the interference owing to light power changing. The mathematical model of gas concentration harmonic measurement is built up. The result of methane concentration is also shown. The system overcomes the defect of great interference of available instruments by light route.

Computational Biomechanics of Soft Biological Tissues: Arterial Walls, Hearts Walls, and Ligaments

It has advantages such as high sensitivity, quick response speed, large dynamic range, preventing electromagnetic interference, preventing burning and explosion, not easily being poisoned and so on. The probe can be put in condition of easily burning and exploding, being poisonous being high temperature and so on that man and instrument can not easily enter. It can realize online continuous telecontrol and telemeter. Authors: Gaurang Patel, M. Sureshkumar, Purvi Patel. The effects of doping percentage of TiO2 on these parameters have been discussed and behaviors of all parameters are investigated.

Abstract: LiNbO3 is an important crystal which has piezoelectric, ferroelectric and electro-optical functions.


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  4. Modeling the Near Infrared Light Propagation in Biological Tissues?
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