Department of Otolaryngology, Japanese Red Cross Wakayama Medical Center, Wakayama, Japan.
Department of Otolaryngology-Head and Neck Surgery, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Otolaryngol Head Neck Surg. 2023 Jul;169(1):105-111. doi: 10.1002/ohn.240. Epub 2023 Jan 25.
This study aimed to evaluate the importance of mobile cone-beam computed tomography in detecting tip fold-over of a slim modiolar electrode within the cochlea during surgery.
Retrospective case review.
Tertiary medical center.
From January 2020 to June 2022, 33 ears of 30 patients with normal cochlear morphology underwent cochlear implantation with slim modiolar electrodes and intraoperative mobile cone-beam computed tomography imaging. Furthermore, we retrospectively reviewed the medical records and images.
The tip fold-over of the electrodes was detected using mobile cone-beam computed tomography in 3 out of 33 ears (9.1%). We could not identify the tip fold-over by scouting plain X-ray images in 2 out of 3 cases before taking the cone-beam computed tomography images. Electrode removal and reinsertion were performed before wound closure and the successful reinsertion was confirmed by mobile cone-beam computed tomography. The folded electrode tips were located at 238.8°, 152°, and 185.8°.
Intraoperative mobile cone-beam computed tomography is useful in detecting the tip fold-over of the slim modiolar electrodes during surgery. Therefore, it was possible to reinsert the electrodes in all cases before closing the wound, eliminating the need for revision surgeries. Moreover, the analysis of mobile cone-beam computed tomography images may help to elucidate the mechanisms of electrode tip fold-over.
本研究旨在评估术中移动锥形束 CT 在检测耳蜗内 slim 蜗轴电极尖端折叠中的重要性。
回顾性病例研究。
三级医疗中心。
2020 年 1 月至 2022 年 6 月,30 例患者的 33 侧正常耳蜗形态接受了 slim 蜗轴电极的耳蜗植入术,并进行了术中移动锥形束 CT 成像。此外,我们回顾性地复习了病历和图像。
在 33 耳中(9.1%),移动锥形束 CT 检测到电极的尖端折叠。在拍摄锥形束 CT 图像之前,我们无法在 2 例中通过普通 X 射线图像识别尖端折叠。在关闭伤口之前,我们进行了电极移除和重新插入,并通过移动锥形束 CT 确认了重新插入的成功。折叠的电极尖端位于 238.8°、152°和 185.8°。
术中移动锥形束 CT 有助于检测手术中 slim 蜗轴电极的尖端折叠。因此,在关闭伤口之前,所有病例都可以重新插入电极,避免了需要进行修正手术。此外,移动锥形束 CT 图像的分析可能有助于阐明电极尖端折叠的机制。