Download PDF by G. Fiskum, J. Hazelton, R. Gullapalli, W. L. Fourney: 26th Southern Biomedical Engineering Conference SBEC 2010,

By G. Fiskum, J. Hazelton, R. Gullapalli, W. L. Fourney (auth.), Keith E. Herold, Jafar Vossoughi, William E. Bentley (eds.)

ISBN-10: 3642149979

ISBN-13: 9783642149979

ISBN-10: 3642149987

ISBN-13: 9783642149986

The twenty sixth Southern Biomedical Engineering convention used to be hosted by means of the Fischell division of Bioengineering and the A. James Clark college of Engineering from April 30 – might 2 2010.. The convention application consisted of 168 oral displays and 21 poster shows with nearly 250 registered individuals of which approximately part have been scholars. The periods have been designed alongside topical traces with scholar papers jumbled together randomly with extra senior investigators. there has been a scholar pageant leading to a number of most sensible Paper and Honorable point out awards. there have been 32 technical periods happening in 6-7 parallel classes. This complaints is a subset of the papers submitted to the convention. It comprises 147 papers prepared in topical parts. Many thank you exit to the paper reviewers who considerably more suitable the readability of the submitted papers.

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Additional resources for 26th Southern Biomedical Engineering Conference SBEC 2010, April 30 - May 2, 2010, College Park, Maryland, USA

Example text

E. an effective frequency of 25 kHz) prior to converting the voltages to pressures. B. Experimental Conditions A shock tube system, designed to simulate blast loading pressure profiles in a laboratory setting, was used to generate a short duration pressure wave on the HSHM. The system is divided into two sections separated by a thin membrane designed to rupture once a certain pressure differential is reached between the Driver and Driven sections (Figure 2). The Driver section is pressurized with helium gas, which flows into the Driven section once the membrane ruptures.

The presence of different energy transmission paths in the skull-brain-neck system have been assessed [11]. Finally, the effects of protective devices such as helmets have also been studied [12,13]. Recently, Moss et al. [14] proposed skull deformation as a novel mechanism associated with blast related brain injuries. Nyein et al. [15] concluded that direct interaction and propagation of the shock wave through the skull to the brain is possible. Models that have been developed to study injuries due to interactions between blast waves and the skullbrain system have been limited.

Therefore, the pressure waveform experienced within the brain varies significantly and is largely dictated by anatomical location for a given loading condition. The pressure response observed in the brain is somewhat complex and is not well characterized by a simple peak overpressure. The existence of a characteristic pressure waveform at each location in the brain permitted the identification of prominent features that could be extracted. As the introduction of the helmet system did not affect the IFMBE Proceedings Vol.

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26th Southern Biomedical Engineering Conference SBEC 2010, April 30 - May 2, 2010, College Park, Maryland, USA by G. Fiskum, J. Hazelton, R. Gullapalli, W. L. Fourney (auth.), Keith E. Herold, Jafar Vossoughi, William E. Bentley (eds.)


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