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A Novel Method for Clinical Cochlear Duct Length Estimation toward Patient-Specific Cochlear Implant Selection:

机译:一种针对患者特定的人工耳蜗选择的临床人工耳道长度估计的新方法:

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ObjectiveIn the field of cochlear implantation, the current trend toward patient-specific electrode selection and the achievement of optimal audiologic outcomes has resulted in implant manufacturers developing a large portfolio of electrodes. The aim of this study was to bridge the gap between the known variability of cochlea length and this electrode portfolio.DesignRetrospective analysis on cochlear length and shape in micro–computed tomography and cone beam computed tomography data.SettingTertiary care medical center.Subjects and MethodsA simple 2-step approach was developed to accurately estimate the individual cochlear length as well as the projected length of an electrode array inside the cochlea. The method is capable of predicting the length of the cochlea and the inserted electrode length at any specific angle. Validation of the approach was performed with 20 scans of human temporal bones (micro–computed tomography) and 47 pre- and postoperative clinical scans (cone beam computed tomography).Resu...
机译:目的在耳蜗植入领域,当前针对患者特定电极选择的趋势以及实现最佳听力学结果的趋势导致植入物制造商开发了大量电极。这项研究的目的是弥合已知耳蜗长度的变异性与该电极组合之间的差距。设计回顾性分析微计算机断层扫描和锥束计算机断层扫描数据中的耳蜗长度和形状。设置三级医疗医学中心。开发了两步法以准确估计单个耳蜗长度以及耳蜗内部电极阵列的预计长度。该方法能够以任何特定角度预测耳蜗的长度和插入的电极的长度。该方法的验证是通过对20片人类颞骨进行扫描(微型计算机断层扫描)和47例术前和术后临床扫描(锥形束计算机断层扫描)进行的。

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