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Intracranial Pressure and Promontory Vibration With Soft Tissue Stimulation in Cadaveric Human Whole Heads

机译:颅内压和海角振动与软组织刺激的人尸体的整个头部。

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Hypothesis:Intracranial pressure and skull vibrations are correlated and depend on the stimulation position and frequency.Background:A hearing sensation can be elicited by vibratory stimulation on the skin covered skull, or by stimulation on soft tissue such as the neck. It is not fully understood whether different stimulation sites induce the skull vibrations responsible for the perception or whether other transmission pathways are dominant. The aim of this study was to assess the correlation between intracranial pressure and skull vibration measured on the promontory for stimulation to different sites on the head.Methods:Measurements were performed on four human cadaver heads. A bone conduction hearing aid was held in place with a 5-Newton steel headband at four locations (mastoid, forehead, eye, and neck). While stimulating in the frequency range of 0.3 to 10kHz, acceleration of the cochlear promontory was measured with a Laser Doppler Vibrometer, and intracranial pressure at the center of the head with a hydrophone.Results:Promontory acceleration and intracranial pressure was measurable for all stimulation sites. The ratios were comparable between all stimulation sites for frequencies below 2kHz.Conclusion:These findings indicate that both promontory acceleration and intracranial pressure are involved for stimulation on the sites investigated. The transmission pathway of sound energy is comparable for the four stimulation sites.
机译:假设:颅内压和颅骨振动是相关的,并取决于刺激的位置和频率。背景:皮肤覆盖的颅骨上的振动刺激或颈部等软组织的刺激均可引起听觉。尚不完全了解不同的刺激位点是否会引起负责感知的颅骨振动,或其他传播途径是否占主导地位。这项研究的目的是评估颅内压与颅骨上测量的颅骨振动之间的相关性,以刺激头部的不同部位。方法:对四个人的尸体头部进行测量。用5-牛顿钢头带将骨导助听器固定在四个位置(乳突,前额,眼睛和颈部)。在0.3至10kHz的频率范围内进行刺激时,使用激光多普勒振动计测量耳蜗的加速度,并使用水听器测量头中央的颅内压。结果:在所有刺激部位均可测量到海岸加速度和颅内压。在低于2kHz的频率下,所有刺激位点之间的比率是可比的。结论:这些发现表明,在所研究的位点上,刺激都涉及了海床加速度和颅内压。四个刺激部位的声能传播途径相当。

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