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Electrical Stimulation Overlap Visualization for Image-Guided Cochlear Implant Programming

机译:电气刺激与图像引导耳蜗植入式编程重叠可视化

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Cochlear implants consist of an implanted array of electrodes and passive electronics and an external processor designed to directly stimulate auditory nerve fibers to induce the sensation of hearing in those who have experienced hearing loss caused by problems in the inner ear. After surgical implantation, audiologists program the processor with settings intended to produce optimal hearing outcomes. The likelihood of optimal outcomes increases when audiologists are provided with tools that assist them in making objective decisions based on the patient's own anatomy and surgical placement of the array. A visualization tool currently in use, called distance-versus-frequency (DVF)curves, can be used to estimate channel interactions between electrodes. Although the information presented is objective, an audiologist's decisions are subject to their own estimations applied to this visualization. In this paper, we present a new visualization technique designed to remove the subjectivity of visually assessing channel interactions between electrodes. Preliminary results show plans generated using this method are more consistent and are rated as optimal more often than those generated using DVF curves.
机译:耳蜗植入物包括植入的电极和无源电子器件和外部处理器,设计用于直接刺激听觉神经纤维,诱导听力损失的感觉,在内耳中有问题引起的听力损失。在手术植入后,听力学家用旨在产生最佳听力结果的设置进行程序。当听觉专家提供有助于它们的工具时,最佳结果的可能性增加了,这些工具基于患者自身的解剖和阵列的手术放置来实现客观决策。目前正在使用的可视化工具称为距离 - 与频率(DVF)曲线,可用于估计电极之间的信道相互作用。虽然所提供的信息是客观的,但听证员的决定受应用于这种可视化的自身估计。在本文中,我们提出了一种新的可视化技术,旨在消除视觉评估电极之间的视觉频道相互作用的主体性。初步结果显示使用该方法生成的计划更加一致,并且比使用DVF曲线产生的那些更常见的额定值。

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