Guillaume Gersdorff, Phoebe Ramos, Sudanthi Wijewickrema, Stephen O Apos Leary, Philippe Lefèbvre, Jean-Marc Gerard
{"title":"High-resolution intraoperative guide for cochlear implant surgery using optical coherence tomography.","authors":"Guillaume Gersdorff, Phoebe Ramos, Sudanthi Wijewickrema, Stephen O Apos Leary, Philippe Lefèbvre, Jean-Marc Gerard","doi":"10.1159/000552581","DOIUrl":null,"url":null,"abstract":"<p><p>Introduction Despite advances in soft surgery, intra-cochlear trauma during CI electrode insertion still occurs, potentially damaging cochlear micro-structures and affecting hearing outcomes or future treatments. While the round window membrane (RWM) approach is generally less traumatic, the hook region's complex anatomy can still cause mechanical injury, often due to limited visual guidance. Preoperative imaging and intraoperative Optical Coherence Tomography (OCT) could reduce trauma by offering high-resolution, real-time visualization of cochlear micro-structures. Methods Eight fresh-frozen human temporal bones (TB1-TB8) were included. The first six specimens (TB1-TB6) underwent micro-CT scanning with manual segmentation to establish detailed anatomical baselines and served for OCT-micro-CT co-registration. Following a standard cochlear implantation approach, intra-cochlear structures behind the round window membrane (RWM) were visualized using a microscope-integrated OCT system, with additional imaging performed via an anteroinferior cochleostomy to compare access routes. Electrode insertions were performed under OCT guidance in selected specimens, while feasibility of intraoperative workflow and insertion dynamics was assessed in TB7-TB8 under fluoroscopic control. Results OCT images were successfully obtained for each TB, with proper RWM exposure being crucial. The OCT microscope enabled scanning of the RWM and scala tympani (ST) from various axes, depths, and angles at a surgical working distance, improving assessment of proximal ST anatomy. OCT appears reliable for evaluating micro-anatomy through the RWM, guiding CI electrode selection, approach, and proximal array course modification during insertion. By visualizing critical structures and inferring deeper ones, it supports preoperative imagery-based planning and may reduce the risk of intracochlear damage. Conclusion Intra-operative OCT imaging enhances the precision of cochlear opening site and electrode insertion axis. By integrating OCT, CI surgery could shift from a largely blind procedure to one with significant visual guidance, reducing surgical trauma and improving postoperative hearing preservation.</p>","PeriodicalId":55432,"journal":{"name":"Audiology and Neuro-Otology","volume":" ","pages":"1-26"},"PeriodicalIF":1.4000,"publicationDate":"2026-08-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Audiology and Neuro-Otology","FirstCategoryId":"3","ListUrlMain":"https://doi.org/10.1159/000552581","RegionNum":4,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Introduction Despite advances in soft surgery, intra-cochlear trauma during CI electrode insertion still occurs, potentially damaging cochlear micro-structures and affecting hearing outcomes or future treatments. While the round window membrane (RWM) approach is generally less traumatic, the hook region's complex anatomy can still cause mechanical injury, often due to limited visual guidance. Preoperative imaging and intraoperative Optical Coherence Tomography (OCT) could reduce trauma by offering high-resolution, real-time visualization of cochlear micro-structures. Methods Eight fresh-frozen human temporal bones (TB1-TB8) were included. The first six specimens (TB1-TB6) underwent micro-CT scanning with manual segmentation to establish detailed anatomical baselines and served for OCT-micro-CT co-registration. Following a standard cochlear implantation approach, intra-cochlear structures behind the round window membrane (RWM) were visualized using a microscope-integrated OCT system, with additional imaging performed via an anteroinferior cochleostomy to compare access routes. Electrode insertions were performed under OCT guidance in selected specimens, while feasibility of intraoperative workflow and insertion dynamics was assessed in TB7-TB8 under fluoroscopic control. Results OCT images were successfully obtained for each TB, with proper RWM exposure being crucial. The OCT microscope enabled scanning of the RWM and scala tympani (ST) from various axes, depths, and angles at a surgical working distance, improving assessment of proximal ST anatomy. OCT appears reliable for evaluating micro-anatomy through the RWM, guiding CI electrode selection, approach, and proximal array course modification during insertion. By visualizing critical structures and inferring deeper ones, it supports preoperative imagery-based planning and may reduce the risk of intracochlear damage. Conclusion Intra-operative OCT imaging enhances the precision of cochlear opening site and electrode insertion axis. By integrating OCT, CI surgery could shift from a largely blind procedure to one with significant visual guidance, reducing surgical trauma and improving postoperative hearing preservation.
期刊介绍:
''Audiology and Neurotology'' provides a forum for the publication of the most-advanced and rigorous scientific research related to the basic science and clinical aspects of the auditory and vestibular system and diseases of the ear. This journal seeks submission of cutting edge research opening up new and innovative fields of study that may improve our understanding and treatment of patients with disorders of the auditory and vestibular systems, their central connections and their perception in the central nervous system. In addition to original papers the journal also offers invited review articles on current topics written by leading experts in the field. The journal is of primary importance for all scientists and practitioners interested in audiology, otology and neurotology, auditory neurosciences and related disciplines.