University of Szeged, Doctoral School of Clinical Medicine, Szeged.
University of Szeged, Department of Oto-Rhino-Laryngology and Head-Neck Surgery, Szeged.
Ideggyogy Sz. 2021 May 30;74(5-6):191-195. doi: 10.18071/isz.74.0191.
Our goal was to determine the optimal orientation of insertion of the Slim Modiolar electrode and develop an easy-to-use method to aid implantation surgery. In some instances, the electrode arrays cannot be inserted in their full length. This can lead to buckling, interscalar dislocation or tip fold-over. In our opinion, one of the possible reasons of tip fold-over is unfavourable orientation of the electrode array. Our goal was to determine the optimal orientation of the Slim Modiolar electrode array relative to clear surgical landmarks and present our method in one specified case.
For the measurement, we used the preoperative CT scan of one of our cochlear implant patients. These images were processed by an open source and free image visualization software: 3D Slicer. In the first step we marked the tip of the incus short process and then created the cochlear view. On this view we drew two straight lines: the first line represented the insertion guide of the cochlear implant and the second line was the orientation marker (winglet). We determined the angle enclosed by winglet and the line between the tip of the incus short process and the cross-section of previously created two lines. For the calculation we used a self-made python code.
The result of our algorithm for the angle was 46.6055°. To validate this result, we segmented, from the CT scan, the auditory ossicles and the membranaceous labyrinth. From this segmentation we generated a 3D reconstruction. On the 3D view, we can see the position of the previous lines relative to the anatomical structures. After this we rotated the 3D model together with the lines so that the insertion guide forms a dot. In this view, the angle was measured with ImageJ and the result was 46.599°.
We found that our method is easy, fast, and time-efficient. The surgery can be planned individually for each patient, based on their routine preoperative CT scan of the temporal bone, and the implantation procedure can be made safer. In the future we plan to use this method for all cochlear implantation surgeries, where the Slim Modiolar electrode is used.
我们的目标是确定 Slim Modiolar 电极的最佳插入方向,并开发一种易于使用的方法来辅助植入手术。在某些情况下,电极阵列无法完全插入。这可能导致电极弯曲、标度间脱位或尖端折叠。在我们看来,尖端折叠的一个可能原因是电极阵列的方向不合适。我们的目标是确定 Slim Modiolar 电极相对于明确的手术标志的最佳方向,并在一个特定的病例中介绍我们的方法。
对于测量,我们使用了我们的一位人工耳蜗植入患者的术前 CT 扫描。这些图像由一个开源且免费的图像可视化软件:3D Slicer 进行处理。在第一步中,我们标记了砧骨短突的尖端,然后创建了耳蜗视图。在这个视图上,我们画了两条直线:第一条线代表人工耳蜗植入的插入引导线,第二条线是方向标记(翼片)。我们确定了翼片和之前创建的两条线之间的尖端的角度。对于计算,我们使用了一个自制的 Python 代码。
我们的算法得出的角度结果为 46.6055°。为了验证这个结果,我们从 CT 扫描中分割出听小骨和膜迷路。从这个分割中,我们生成了一个 3D 重建。在 3D 视图中,我们可以看到之前的线相对于解剖结构的位置。然后,我们一起旋转 3D 模型和线,使得插入引导线形成一个点。在这个视图中,我们使用 ImageJ 测量角度,结果为 46.599°。
我们发现我们的方法简单、快速、高效。手术可以根据每位患者的常规颞骨 CT 扫描进行个体化计划,使植入过程更加安全。在未来,我们计划在所有使用 Slim Modiolar 电极的人工耳蜗植入手术中使用这种方法。