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首页> 外文期刊>Otology and neurotology: official publication of the American Otological Society, American Neurotology Society [and] European Academy of Otology and Neurotology >A vibration investigation of a flat surface contact to skull bone for direct bone conduction transmission in sheep skulls in vivo
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A vibration investigation of a flat surface contact to skull bone for direct bone conduction transmission in sheep skulls in vivo

机译:绵羊颅骨平面接触颅骨以直接传导骨骼的振动研究

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摘要

Hypothesis: Bone conduction implant (BCI) attached with a flat surface contact will offer efficient and linear vibration transmission over time. Background: Despite that percutaneous bone conduction devices (PBCD) are successful in treating patients with conductive hearing loss, there are some drawbacks related to the need of a permanent skin penetration. The BCI system is designed as an alternative to the PBCD because it leaves the skin intact. Methods: BCI dummy implants were installed in 3 sheep skulls in vivo to study the vibration transmission characteristics over time. Mechanical point impedances and vibration transfer response functions of the BCI implants were measured at the time of surgery and after a healing period of 8 months. Results: In 1 sheep both implants healed without complications. In the other 2 sheep, the implants were either partially loose or lost to follow up. In the sheep with stable implants, it was found by the resonance frequency shift of the mechanical point impedance that a firmer integration between the implant and bone tissue as seen in osseointegrated surfaces developed over time. It was also shown that the transcranial vibration transmission remains stable and linear. Providing bone chips in the contact between the implant and the bone did not enhance vibration transmission. The surgical procedure for installing the BCI dummy implants was uneventful. Conclusion: The mechanical point impedances and vibration transfer response functions indicate that the BCI implants integrate and that transmission conditions remain stable over time.
机译:假设:附有平面触点的骨传导植入物(BCI)将随着时间的推移提供有效且线性的振动传递。背景:尽管经皮骨传导装置(PBCD)成功治疗了传导性听力损失患者,但仍存在一些需要永久性皮肤穿透的缺点。 BCI系统被设计为PBCD的替代产品,因为它可以使皮肤保持完整。方法:将BCI假体植入体内,安装在3个绵羊头骨中,研究随时间变化的振动传递特性。 BCI植入物的机械点阻抗和振动传递响应函数在手术时以及8个月的愈合期后进行了测量。结果:在1只绵羊中,两种植入物均愈合,无并发症。在另两只绵羊中,植入物要么部分松弛,要么丢失以致无法跟进。在具有稳定植入物的绵羊中,通过机械点阻抗的共振频率偏移发现,随着时间的推移,在骨整合表面中可以看到植入物与骨骼组织之间的牢固整合。还表明,经颅振动传递保持稳定和线性。在植入物和骨骼之间的接触中提供骨骼碎片不会增强振动传递。安装BCI假体的手术过程很顺利。结论:机械点阻抗和振动传递响应函数表明BCI植入物已集成并且传输条件随时间保持稳定。

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