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Transmission pathways of vibratory stimulation as measured by subjective thresholds and distortion-product otoacoustic emissions.

机译:通过主观阈值和失真产物耳声发射测量的振动刺激的传播途径。

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摘要

To clarify the contribution of the skull contents to the transmission of bone vibratory stimuli, and to examine the characteristics of such stimuli, we compared auditory thresholds and distortion-product otoacoustic emission (DPOAE) levels with a bone vibrator placed on various sites of the head, including the eye. The best audiometric thresholds and the highest DPOAE levels were obtained with the vibrator placed on the mastoid of the measuring side, or on the ultrasound-window bone vibrator on the eye were similar to those of the forehead, and about 10 dB higher than at the best sites. DPOAEs were clearly present when elicited by a combination of air-conducted stimuli presented through an insert earphone and with the bone vibrator placed on the eye. These results indicate that vibratory sounds can be transmitted through the skull contents to the inner ear. The intracranial transmission pathway of the vibratory stimuli may play a significant role, particularly at low frequencies, and possibly also whenthe vibratory stimuli are applied on the skull bone.
机译:为了阐明颅骨内容物对骨骼振动刺激的传递的贡献,并检查此类刺激的特征,我们将听觉阈值和畸变产物耳声发射(DPOAE)水平与放置在头部各个部位的骨骼振动器进行了比较,包括眼睛。将振动器放在测量侧的乳突上或眼睛上的超声窗口骨振动器上,可获得最佳的听力阈值和最高的DPOAE水平,这与前额相似,并且比前额高约10 dB。最好的网站。当通过插入式耳机提供的空气传导刺激以及将骨振动器放在眼睛上时,会引发DPOAE。这些结果表明,振动声可以通过颅骨内容物传播到内耳。振动刺激的颅内传递途径可能起着重要的作用,特别是在低频时,并且可能在将振动刺激施加到颅骨上时也可能起重要作用。

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