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Simulation of the power transmission of bone-conducted sound in a finite-element model of the human head

机译:人头有限元模型中骨传导声的电力传递的模拟

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摘要

Bone conduction (BC) sound is the perception of sound transmitted in the skull bones and surrounding tissues. To better understand BC sound perception and the interaction with surrounding tissues, the power transmission of BC sound is investigated in a three-dimensional finite-element model of a whole human head. BC sound transmission was simulated in the FE model and the power dissipation as well as the power flow following a mechanical vibration at the mastoid process behind the ear was analyzed. The results of the simulations show that the skull bone (comprises the cortical bone and diploe) has the highest BC power flow and thereby provide most power transmission for BC sound. The soft tissues was the second most important media for BC sound power transmission, while the least BC power transmission is through the brain and the surrounding cerebrospinal fluid (CSF) inside the cranial vault. The vibrations transmitted in the skull are mainly concentrated at the skull base when the stimulation is at the mastoid. Other vibration transmission pathways of importance are located at the occipital bone at the posterior side of the head while the transmission of sound power through the face, forehead and vertex is minor. The power flow between the skull bone and skull interior indicate that some BC power is transmitted to and from the skull interior but the transmission of sound power through the brain seem to be minimal and only local to the brain-bone interface.
机译:骨传导(BC)声音是在颅骨和周围组织中传输的声音的感知。为了更好地理解BC声音感知和与周围组织的相互作用,在整个人头的三维有限元模型中研究了BC声音的动力传递。在FE模型中模拟了BC声音传输,并且在分析了耳朵后面的乳突过程中的机械振动后的功率流动。仿真的结果表明,颅骨(包括皮质骨和型计算机)具有最高的BC功率流动,从而为BC声音提供大多数动力传输。软组织是BC声动力传递的第二个最重要的介质,而最小的BC电力传输是通过颅骨内部的大脑和周围的脑脊液(CSF)。当刺激处于乳突中时,在颅骨中传递的振动主要集中在颅底。重要的振动传输路径位于头部后侧的枕骨,而通过面部的声音传输,前额和顶点是次要的。颅骨和头骨内部之间的功率流量表明一些BC电力被传递到颅骨内部,但是通过大脑的声音传输似乎是最小的并且仅是脑骨界面的局部。

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