In-Vitro Study of Speed and Alignment Angle in Cochlear Implant Electrode Array Insertions

被引:33
作者
Aebischer, Philipp [1 ,2 ]
Mantokoudis, Georgios [1 ]
Weder, Stefan [1 ]
Anschuetz, Lukas [1 ]
Caversaccio, Marco [1 ,2 ]
Wimmer, Wilhelm [1 ,2 ]
机构
[1] Univ Hosp Bern, Inselspital, Dept Otolaryngol Head & Neck Surg, CH-3010 Bern, Switzerland
[2] Univ Bern, ARTORG Ctr Biomed Engn Res, Hearing Res Lab, CH-3012 Bern, Switzerland
关键词
Electrodes; Force; Load modeling; Surgery; Force measurement; Ear; Biological system modeling; Free fitting array; lateral wall array; robotic cochlear implantation; insertion trajectory; friction force model; cochlear shape; RESIDUAL HEARING; ROUND WINDOW; FORCE; FRICTION; PRESERVATION; SURGERY; MODEL; AXIS; TOOL;
D O I
10.1109/TBME.2021.3088232
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Objective: The insertion of the electrode array is a critical step in cochlear implantation. Herein we comprehensively investigate the impact of the alignment angle and feed-forward speed on deep insertions in artificial scala tympani models with accurate macro-anatomy and controlled frictional properties. Methods: Motorized insertions (n=1033) were performed in six scala tympani models with varying speeds and alignment angles. We evaluated reaction forces and micrographs of the insertion process and developed a mathematical model to estimate the normal force distribution along the electrode arrays. Results: Insertions parallel to the cochlear base significantly reduce insertion energies and lead to smoother array movement. Non-constant insertion speeds allow to reduce insertion forces for a fixed total insertion time compared to a constant feed rate. Conclusion: In cochlear implantation, smoothness and peak forces can be reduced with alignment angles parallel to the scala tympani centerline and with non-constant feed-forward speed profiles. Significance: Our results may help to provide clinical guidelines and improve surgical tools for manual and automated cochlear implantation.
引用
收藏
页码:129 / 137
页数:9
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