Matsumoto Nozomu, Akagi-Tsuchihashi Nana, Noda Teppei, Komune Noritaka, Nakagawa Takashi
Department of Otorhinolaryngology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Otol Neurotol Open. 2022 Aug 5;2(3):e017. doi: 10.1097/ONO.0000000000000017. eCollection 2022 Sep.
One of the mechanisms that cause tip fold-over is a misalignment between the electrode array's coiling direction and the cochlea's curving direction.
We reviewed surgical videos and computed tomography (CT) datasets of the patients who underwent cochlear implantation procedures from January 2010 to December 2021, paying particular attention to the cochlea's orientation in the surgeon's microscopic view.
CT dataset and video recordings were analyzed to measure the "slope angle," which is the angle between the cochlea's coiling plane and the horizontal plane.
There were 220 cases that met the criteria and completed the analysis. The mean slope angle was 12.1° ± 9.5°, with a minimum of -9.4° and maximum of 44.6°. However, each surgeon had a favored slope angle range.
Understanding the slope angle and making an effort to reduce the chance of misalignment during electrode insertion may help prevent tip fold-over of slim perimodiolar electrode arrays.
导致电极尖端折叠的机制之一是电极阵列的卷曲方向与耳蜗的弯曲方向不匹配。
我们回顾了2010年1月至2021年12月接受人工耳蜗植入手术患者的手术视频和计算机断层扫描(CT)数据集,特别关注外科医生显微镜视野下耳蜗的方向。
分析CT数据集和视频记录以测量“倾斜角”,即耳蜗卷曲平面与水平面之间的角度。
有220例符合标准并完成分析。平均倾斜角为12.1°±9.5°,最小值为-9.4°,最大值为44.6°。然而,每位外科医生都有一个偏好的倾斜角范围。
了解倾斜角并努力减少电极插入过程中不匹配的机会可能有助于防止纤细的蜗周电极阵列的尖端折叠。