Kisser Ulrich, Ertl-Wagner Birgit, Hempel John Martin, Müller Joachim, D'Anastasi Melvin, Schrötzlmair Florain, Adderson-Kisser Christine, Laubender Ruediger P, Stelter Klaus, Braun Christian, Pomschar Andreas
Department of Otorhinolaryngology, Head and Neck Surgery, University of Munich.
Acta Otolaryngol. 2014 Oct;134(10):1011-5. doi: 10.3109/00016489.2014.913313.
The length of the cochlea can be determined with good precision using a 3D-curved multiplanar reconstruction analysis technique and linear reconstruction of the cochlea. The method is not time-consuming and can be applied during clinical routine.
A preoperative prediction of the best cochlear implant electrode length can help reduce the risk of intraoperative cochlear trauma in patients who need to retain residual acoustic hearing for electric-acoustic stimulation or in patients with anatomical anomalies or malformations. The goal of this study was to evaluate the accuracy and reliability of length measurement of the cochlea after linear reconstruction using 3D-curved multiplanar reconstrucion analysis of high resolution computed tomography (CT) scans.
Human cadaveric temporal bone specimens underwent cochlear implantation using custom-made electrodes with two radiopaque markers of a defined length before CTscans were made. Length measurement was performed by four readers and the results were compared to the true value. Inter-reader reliability was calculated. The time needed for analysis was recorded.
The mean time needed for analysis of one specimen's radiologic data was 6.1 (± 3.4) min. The mean deviation of the length measurement from the true value was 0.8 (± 0.7) mm. Inter-reader reliability was excellent (0.76, p = 0.006).
使用三维曲面多平面重建分析技术和耳蜗线性重建能够高精度地确定耳蜗长度。该方法并不耗时,可应用于临床常规操作。
术前预测最佳人工耳蜗电极长度有助于降低需要保留残余听力以进行电声刺激的患者或存在解剖学异常或畸形的患者术中发生耳蜗创伤的风险。本研究的目的是评估使用高分辨率计算机断层扫描(CT)扫描的三维曲面多平面重建分析进行线性重建后耳蜗长度测量的准确性和可靠性。
在进行CT扫描之前,使用带有两个固定长度不透射线标记的定制电极对人类尸体颞骨标本进行人工耳蜗植入。由四名阅片者进行长度测量,并将结果与真实值进行比较。计算阅片者间的可靠性。记录分析所需时间。
分析一个标本的放射学数据平均所需时间为6.1(±3.4)分钟。长度测量值与真实值的平均偏差为0.8(±0.7)毫米。阅片者间可靠性极佳(0.76,p = 0.006)。