Rodriguez Jorge Jesus, Pfister Markus, Zenner Hans P, Zalaman Ilse M, Maassen Marcus M
Department of Otolaryngology, Head and Neck Surgery, University Hospital of Tübingen, Germany.
Laryngoscope. 2006 Mar;116(3):473-81. doi: 10.1097/01.MLG.0000199889.61483.8F.
Assessment of the optimal static preloading of Otologics Middle Ear Transducer (MET) Ossicular Stimulator, when coupled to the incus.
The MET Ossicular Stimulator is a partially implantable electromagnetic middle ear hearing device that transmits vibrations to the ossicular chain. The vibration patterns were measured with laser-Doppler vibrometry.
Experimental.
We used three human cadaveric temporal bones (TB) and one MET ossicular stimulator.
Laser-Doppler vibrometry was used for the selection of TBs. The cochlea was subsequently extirpated from the posterior side to measure the vibrational patterns (VP) of the footplate. Three TBs with different VP were selected based on data obtained from volunteers with normal hearing (n = 110): one TB with a VP larger than +1 SD, one TB with a VP in the range of +/-1 SD, and 1 TB with a VP smaller than -1 SD. Transfer functions were calculated between VP of the measurement points at the coupling rod, umbo, incus, and footplate. The TBs were subsequently defrosted. The MET was implanted and coupled to the ossicular chain. Different coupling loads were measured at the incus, the umbo, and the footplate.
Optimal transfer function between the MET transducer and the oval window was achieved during contact when the coupling rod advanced 0.0625 mm (90 degrees rotation). Additional advances of 0.0625 mm (180 degrees turn = 0.125 mm) resulted in a decreased vibrational amplitude, ranging between 20 and 40 dB below 3 kHz. The lowest linear distortion occurred up to 10 kHz during direct contact without advancing the coupling rod.
评估Otologics中耳换能器(MET)听骨刺激器与砧骨耦合时的最佳静态预加载。
MET听骨刺激器是一种部分可植入的电磁中耳听力装置,可将振动传递至听骨链。使用激光多普勒振动测量法测量振动模式。
实验性研究。
我们使用了三块人类尸体颞骨(TB)和一台MET听骨刺激器。
使用激光多普勒振动测量法选择颞骨。随后从后侧切除耳蜗以测量镫骨底板的振动模式(VP)。根据从听力正常的志愿者(n = 110)获得的数据,选择了三块VP不同的颞骨:一块VP大于+1标准差的颞骨,一块VP在±1标准差范围内的颞骨,以及一块VP小于-1标准差的颞骨。计算耦合杆、鼓膜脐、砧骨和镫骨底板测量点的VP之间的传递函数。随后将颞骨解冻。植入MET并将其与听骨链耦合。在砧骨、鼓膜脐和镫骨底板处测量不同的耦合负载。
当耦合杆前进0.0625毫米(旋转90度)时,在接触过程中MET换能器与卵圆窗之间实现了最佳传递函数。额外前进0.0625毫米(旋转180度 = 0.125毫米)会导致振动幅度降低,在3千赫兹以下降低20至40分贝。在不推进耦合杆的直接接触过程中,高达10千赫兹时线性失真最低。