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1.
J Hazard Mater ; 311: 176-85, 2016 Jul 05.
Article in English | MEDLINE | ID: mdl-26985871

ABSTRACT

The increase of blast exposures leads to the need for better assessment of the blast threat. Empirical models describing the blast propagation in ideal conditions as free-field or surface detonations are commonly employed, but in some configurations the ground-reflected shock should be treated explicitly. Empirical models permit the prediction of the blast characteristics with the ground-reflected shock. The present study uses some original experimental data to evaluate the accuracy of the predicted overpressure with time regarding the reflected shock characteristics. Three methods are tested. The first method, called method of images (MOI) and linearly adding a virtual ground-symmetrical source blast to the free-field blast, is quick but lacks accuracy regarding the reflected shock characteristics. The second method, based on the LOAD_BLAST_ENHANCED function of the commercial LS-DYNA framework, better captures the reflected shock compared to the MOI, but the overall differences with experimental data are of the same order of magnitude as for the MOI. An original fit is introduced, based on standard physical parameters. The accuracy of this fit on the reflected shock characteristics, and the better match with the overall overpressure time series, shows its potential as a new empirical blast predicting tool.

2.
Int J Audiol ; 55(1): 30-7, 2016.
Article in English | MEDLINE | ID: mdl-26328899

ABSTRACT

OBJECTIVE: We tested middle-ear functioning in humans following intense exposure to noise. Noise generated by small caliber firearms was thought to have no effect on the middle-ear. DESIGN: A cross-over design. We measured middle-ear impedance, acoustic reflex, distortion product otoacoustic emissions (DPOAEs), and transient evoked otoacoustic emissions (TEOAEs) before and after practice rounds performed twice per day. STUDY SAMPLE: Fifty-nine soldiers equipped with earplugs undergoing regular training for a special mission. The mean noise exposure (LAeq8h) was estimated to be 106 ±1 dB SPL. RESULTS: Impedancemetry revealed a significant increase in the compliance and gradient of the tympano-ossicular chain after impulse noise exposure in the right and left ears. Acoustic reflex reactivity did not show a significant change. DPOAEs and TEOAEs were slightly decreased at 2 kHz, and showed a marked asymmetry in disfavor of the left ear. In soldiers with initial high reactivity of acoustic reflex, increased compliance was associated with a significant decrease in left TEOAEs at 1.5 and 2 kHz. CONCLUSION: Our results suggest that the use of small-caliber firearms, even while wearing earplugs, affects middle-ear function and may play a role in the early stage of auditory fatigue encompassing tinnitus.


Subject(s)
Ear, Middle/physiopathology , Firearms , Military Personnel , Noise, Occupational/adverse effects , Occupational Exposure/prevention & control , Acoustic Impedance Tests , Adult , Audiometry, Evoked Response , Cross-Over Studies , Ear Protective Devices , Humans , Occupational Diseases/etiology , Occupational Diseases/physiopathology , Occupational Diseases/prevention & control , Occupational Exposure/analysis , Otoacoustic Emissions, Spontaneous , Tinnitus/etiology , Tinnitus/physiopathology , Tinnitus/prevention & control , Young Adult
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