*Saxonian Cochlear Implant Center, Department of Otorhinolaryngology, Technical University of Dresden, Germany †MED-EL, Innsbruck, Austria.
Otol Neurotol. 2014 Jan;35(1):58-63. doi: 10.1097/MAO.0000000000000211.
The aim of the study is to investigate the insertion depth angles for different types of electrode arrays and its variability depending on the individual cochlear size.
Preoperative estimation of the insertion depth angles for different electrode arrays can help surgeons choose the optimal electrode length, especially for low-frequency residual hearing preservation.
Four different electrode arrays varying in lengths (20, 24, 28, and 31 mm) were inserted in 10 temporal bones to quantify the insertion depth angle of each inserted electrode. High-resolution 3D radiographs provided by Flat Panel Computed Volume Tomography (FPCT) were used to determine electrode array insertion depth angle and diameter of the cochlea's basal turn.
The high-resolution FPCT images from all electrode arrays inserted into the temporal bones allowed reliable measurements of insertion depth angles. In particular, statistically significant different insertion depth angles between the various array types were identified. The insertion of the 20-, 24-, 28-, and 31-mm arrays yielded a mean insertion depth angle of 341 degrees (SD, 22 degrees), 477 degrees (SD, 36 degrees), 587 degrees (SD, 42 degrees), and 673 degrees (SD, 38 degrees), respectively. Furthermore, a statistically significant negative correlation between insertion depth angle and diameter of the cochlea's basal turn was found for the 20- and 31-mm arrays.
The results suggest an individually adapted length of electrode arrays, which should be taken into account for an improved decision paradigm for patients scheduled for cochlear implantation. This is of particular importance for patients with low-frequency residual hearing.
本研究旨在探讨不同类型的电极阵列的插入深度角度及其在个体耳蜗大小方面的可变性。
术前对不同电极阵列的插入深度角度进行估计可以帮助外科医生选择最佳的电极长度,特别是对于低频残余听力的保留。
将四种不同长度(20、24、28 和 31 毫米)的电极阵列插入 10 个颞骨中,以量化每个插入电极的插入深度角度。使用平板计算机断层容积摄影术(FPCT)提供的高分辨率 3D 射线照片来确定电极阵列插入深度角度和耳蜗基底转的直径。
所有插入颞骨的电极阵列的高分辨率 FPCT 图像均允许对插入深度角度进行可靠测量。特别是,确定了各种阵列类型之间存在统计学上显著不同的插入深度角度。20、24、28 和 31 毫米阵列的插入产生了 341 度(标准差,22 度)、477 度(标准差,36 度)、587 度(标准差,42 度)和 673 度(标准差,38 度)的平均插入深度角度。此外,对于 20-和 31-毫米阵列,插入深度角度与耳蜗基底转直径之间存在统计学上显著的负相关。
结果表明,电极阵列的长度应因人而异,这应纳入到为接受耳蜗植入术的患者制定的改进决策范式中。对于低频残余听力的患者,这一点尤为重要。