a Bioengineering, Department of Electrical, Electronic and Computer Engineering , University of Pretoria , Pretoria , South Africa.
Network. 2016;27(2-3):67-106. doi: 10.3109/0954898X.2016.1171411. Epub 2016 May 2.
Three-dimensional (3D) computational modeling of the auditory periphery forms an integral part of modern-day research in cochlear implants (CIs). These models consist of a volume conduction description of implanted stimulation electrodes and the current distribution around these, coupled with auditory nerve fiber models. Cochlear neural activation patterns can then be predicted for a given input stimulus. The objective of this article is to present the context of 3D modeling within the field of CIs, the different models, and approaches to models that have been developed over the years, as well as the applications and potential applications of these models. The process of development of 3D models is discussed, and the article places specific emphasis on the complementary roles of generic models and user-specific models, as the latter is important for translation of these models into clinical application.
三维(3D)听觉外周计算建模是当今耳蜗植入物(CI)研究的重要组成部分。这些模型包括植入刺激电极的体积传导描述及其周围电流分布,以及听神经纤维模型。然后可以针对给定的输入刺激预测耳蜗神经激活模式。本文的目的是介绍 3D 建模在 CI 领域中的背景、不同的模型以及多年来开发的模型方法,以及这些模型的应用和潜在应用。讨论了 3D 模型的开发过程,并特别强调了通用模型和用户特定模型的互补作用,因为后者对于将这些模型转化为临床应用非常重要。