Noise Exposure in Hyperbaric Environments

Abstract

New developments in diving systems and underwater tools are increasing the extent of noise exposure of divers. The need for effective, but appropriate hearing-conservation regulations has been recognized. This paper presents a review fo the physical and physiological factors which determine auditory sensitivity in hyperbaric environments and the effects of noise on divers. Experimental evidence on hearing and noise exposure in hyperbaric environments is also reviewed. In general, it is essential that noise measurements made in diving chambers and helmets take into account the characteristic impedance of the breathing gas used in specific operations. Failure to do so results in a gross overestimation of the noise intensity to which divers are exposed. Further, changes which occur in the functioning of the external ear tend to reduce overall auditory sensitivity at frequencies below 6000 Hertz thus providing some protection from the effects of noise. However, auditory sensitivity may be enhanced at the higher frequencies (6000 to 12000 Hertz) with consequences that are as yet unknown. Such changes in auditory function are not due to physiological changes but are attributable wholly to the environment in which the diver is functioning. Theory and existing evidence clearly indicate that normo-baric conditions to hyperbaric environments is inappropriate.

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Document Details

Document Type
Technical Report
Publication Date
Sep 12, 1984
Accession Number
ADA155421

Entities

People

  • Paul F. Smith

Organizations

  • Naval Submarine Medical Research Laboratory

Tags

Communities of Interest

  • Biomedical
  • Ground and Sea Platforms

DTIC Thesaurus Topics

  • Ambient Noise
  • Biomedical Research
  • Compressed Air
  • Ear
  • Frequency
  • Gases
  • Impedance
  • Intensity
  • Measurement
  • Navy
  • Respiration
  • Sound Pressure
  • Standards
  • Submarine Bases
  • Submarines
  • Tools
  • Underwater Tools

Readers

  • Auditory Neuroscience/Auditory Physiology.
  • Marine Mammal Biology
  • Systems Analysis and Design