Department of Biomedical and Clinical Sciences, Linköping University, Linköping, Sweden.
Trends Hear. 2023 Jan-Dec;27:23312165231168741. doi: 10.1177/23312165231168741.
Bone conduction (BC) stimulation has mainly been used for clinical hearing assessment and hearing aids where stimulation is applied at the mastoid behind the ear. Recently, BC has become popular for communication headsets where the stimulation position often is close to the anterior part of the ear canal opening. The BC sound transmission for this stimulation position is here investigated in 21 participants by ear canal sound pressure measurements and hearing threshold assessment as well as simulations in the LiUHead. The results indicated that a stimulation position close to the ear canal opening improves the sensitivity for BC sound by around 20 dB but by up to 40 dB at some frequencies. The transcranial transmission ranges typically between -40 and -25 dB. This decreased transcranial transmission facilitates saliency of binaural cues and implies that BC headsets are suitable for virtual and augmented reality applications. The findings suggest that with BC stimulation close to the ear canal opening, the sound pressure in the ear canal dominates the perception of BC sound. With this stimulation, the ear canal pathway was estimated to be around 25 dB greater than other contributors, like skull bone vibrations, for hearing BC sound in a healthy ear. This increased contribution from the ear canal sound pressure to BC hearing means that a position close to the ear canal is not appropriate for clinical use since, in such case, a conductive hearing loss affects BC and air conduction thresholds by a similar amount.
骨导(BC)刺激主要用于临床听力评估和助听器,刺激位于耳后的乳突。最近,BC 因其在通信耳机中的应用而广受欢迎,其刺激位置通常靠近耳道开口的前部。在这里,通过耳道声压测量、听力阈值评估以及在 LiUHead 中的模拟,对 21 名参与者的这种刺激位置的 BC 声音传输进行了研究。结果表明,靠近耳道开口的刺激位置可将 BC 声音的灵敏度提高约 20dB,但在某些频率下可提高 40dB。颅穿传范围通常在-40 到-25dB 之间。这种颅穿传的减少促进了双耳线索的显著性,这意味着 BC 耳机适用于虚拟现实和增强现实应用。研究结果表明,在靠近耳道开口的 BC 刺激下,耳道内的声压主导了 BC 声音的感知。对于健康耳朵,这种刺激下,耳道通路的贡献估计比其他因素(如颅骨骨振动)高出约 25dB,对于 BC 听力来说,这增加了耳道声压对 BC 听力的贡献。这意味着,对于临床应用来说,接近耳道的位置是不合适的,因为在这种情况下,传导性听力损失会对 BC 和空气传导阈值产生相似的影响。