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3D displacement of the middle ear ossicles in the quasi-static pressure regime using new X-ray stereoscopy technique

机译:使用新的X射线立体技术在准静态压力状态下中耳小骨的3D位移

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摘要

A novel X-ray stereoscopy technique, using greyscale information obtained from moving markers, was used to study the 3D motion in both gerbil and rabbit middle ear ossicles in the quasi-static pressure regime. The motion can be measured without visually exposing the ossicles. The ossicles showed non-linear behaviour as a function of both pressure and frequency. For instance, about 80% of the maximum umbo displacement occurs at a 1 kPa (peak-to-peak) pressure load, while a limited increase of the amplitude is noticed when the pressure goes to 2 kPa. In rabbit the ratio of stapes to umbo motion amplitude was 0.35 for a pressure of 2 kPa (peak-to-peak) at 0.5 Hz. From two stereoscopic projections of the marker paths, 3D motion of the ossicles could be calculated. This motion is demonstrated on high resolution computer models in order to visualize ossicular chain behaviour. (C) 2015 Elsevier B.V. All rights reserved.
机译:一种新颖的X射线立体技术,利用从移动标记获得的灰度信息,来研究沙鼠和兔中耳小骨在准静态压力下的3D运动。无需在视觉上暴露小骨即可测量运动。小骨显示出非线性行为,它是压力和频率的函数。例如,最大的umbo位移的大约80%发生在1 kPa(峰到峰)的压力负荷下,而当压力达到2 kPa时,振幅的增加有限。在兔子中,在0.5 Hz的压力为2 kPa(峰对峰)时,骨与超音波运动幅度之比为0.35。根据标记路径的两个立体投影,可以计算出小骨的3D运动。为了可视化听骨链行为,在高分辨率计算机模型上演示了此动作。 (C)2015 Elsevier B.V.保留所有权利。

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