Flack L, White R, Tweed J, Gregory D W, Qureshi M Y
Department of Bio-Medical Physics and Bio-Engineering, University of Aberdeen.
Br J Audiol. 1995 Aug;29(4):237-45. doi: 10.3109/03005369509086602.
A major problem in high-gain post-aural hearing aids is acoustic feedback. One of the sources of feedback is the plastic tubing that guides the sound from the hearing aid hook to the ear canal. The objectives of this study were to determine the effects of increases in tubing wall thickness on the amount of acoustic feedback in the hearing aid system and to characterize earmould tubing. Five different samples of Tygon tubing were tested, of which four had different wall thicknesses; the study also compared Tygon tubing with medical grade PVC tubing. Measurement of the wall thickness, taken from scanning electron micrographs, showed that the wall thickness differed from the National Association of Earmould Laboratories standard by less than 6% and was well within the manufacturer's tolerances. Measurement of sound attenuation showed that an increase in the tubing wall thickness of 0.330 mm (Tygon 13 Standard to Tygon 13 Double Wall) caused an increase in sound attenuation of 2 dB, across the frequency range measured (0.5-4 kHz). It was also found that the medical grade PVC had a 5 dB greater sound attenuation than the equivalent Tygon tubing. While these differences are quite small, they could contribute to a reduction in acoustic feedback when used in conjunction with other hearing aid or earmould improvements.
高增益耳后式助听器的一个主要问题是声反馈。反馈的来源之一是将声音从助听器挂钩引导至耳道的塑料管。本研究的目的是确定管壁厚度增加对助听器系统中声反馈量的影响,并对耳模管进行特性描述。测试了五种不同的泰贡管样品,其中四种具有不同的壁厚;该研究还将泰贡管与医用级聚氯乙烯管进行了比较。从扫描电子显微照片测量得到的壁厚表明,其与耳模实验室协会标准的差异小于6%,且完全在制造商的公差范围内。声音衰减测量表明,在测量的频率范围(0.5 - 4 kHz)内,管壁厚度增加0.330毫米(从泰贡13标准管到泰贡13双层壁管)会导致声音衰减增加2分贝。还发现医用级聚氯乙烯的声音衰减比同等的泰贡管大5分贝。虽然这些差异相当小,但当与其他助听器或耳模改进措施结合使用时,它们可能有助于减少声反馈。