Literature DB >> 29631499

Cochlear helix and duct length identification - Evaluation of different curve fitting techniques.

Daniel Schurzig1, Max Eike Timm2, G Jakob Lexow2, Omid Majdani2, Thomas Lenarz2, Thomas S Rau2.   

Abstract

OBJECTIVE: Within the field of cochlear implantation (CIs), the role of utilizing patient-specific cochlear anatomy for choosing the optimal implant electrode is becoming increasingly important. Unfortunately, performing detailed anatomical measurements of a cochlea using clinical imaging data is rather time consuming and hence difficult to implement into the clinical routine. In order to accelerate clinical cochlear anatomy evaluations, previously developed mathematical models can be adjusted to the patient-specific anatomy by measuring just a few overall cochlear dimensions. However, the accuracy of model-based cochlear anatomy estimations is unclear, and incorrect evaluations may lead to false conclusions regarding the suitability of specific implant electrodes.
METHODS: Based on 10 cochleae, an error evaluation of various commonly used curve fitting approaches for cochlear shape and duct length approximation was conducted. Spline tracings of the cochlear contours were used as reference values for the various approximations.
RESULTS: Parameterized average cochlear helix models and two of five analytical approaches were found to be suitable for reconstructing the cochlear helical shape and estimating its length. DISCUSSION: Spline curve reconstructions are the most accurate and reliable method for assessing patient-specific cochlear geometry, especially in the case of anatomical irregularities. The most accurate results within the group of model-based evaluations still resulted in mean overall cochlear length deviations of approximately 5%.
CONCLUSION: Spline curve reconstructions appear to be the best option for anatomical diagnostics in clinical practice. Retrospective studies can be performed to further evaluate model-based evaluations.

Entities:  

Keywords:  A-value; Cochlear duct length; Cochlear geometry; Cochlear helix; Cochlear implant electrode; Cochlear implantation; Cochlear measurements; Cochlear spiral

Mesh:

Year:  2018        PMID: 29631499     DOI: 10.1080/14670100.2018.1460025

Source DB:  PubMed          Journal:  Cochlear Implants Int        ISSN: 1467-0100


  9 in total

1.  Cochlear Duct Length Measurements in Computed Tomography and Magnetic Resonance Imaging Using Newly Developed Techniques.

Authors:  Johannes Taeger; Franz Tassilo Müller-Graff; Lukas Ilgen; Phillip Schendzielorz; Rudolf Hagen; Tilman Neun; Kristen Rak
Journal:  OTO Open       Date:  2021-09-24

2.  Uncoiling the Human Cochlea-Physical Scala Tympani Models to Study Pharmacokinetics Inside the Inner Ear.

Authors:  Daniel Schurzig; Max Fröhlich; Stefan Raggl; Verena Scheper; Thomas Lenarz; Thomas S Rau
Journal:  Life (Basel)       Date:  2021-04-21

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

Authors:  Daniel Schurzig; Max Eike Timm; Cornelia Batsoulis; Rolf Salcher; Daniel Sieber; Claude Jolly; Thomas Lenarz; Masoud Zoka-Assadi
Journal:  OTO Open       Date:  2018-10-02

4.  Three-dimensional tonotopic mapping of the human cochlea based on synchrotron radiation phase-contrast imaging.

Authors:  Helge Rask-Andersen; Hanif M Ladak; Sumit Agrawal; Hao Li; Luke Helpard; Jonas Ekeroot; Seyed Alireza Rohani; Ning Zhu
Journal:  Sci Rep       Date:  2021-02-24       Impact factor: 4.379

5.  A novel cochlear measurement that predicts inner-ear malformation.

Authors:  Tawfiq Khurayzi; Fida Almuhawas; Abdulrahman Alsanosi; Yassin Abdelsamad; Úna Doyle; Anandhan Dhanasingh
Journal:  Sci Rep       Date:  2021-04-01       Impact factor: 4.379

6.  CT imaging-based approaches to cochlear duct length estimation-a human temporal bone study.

Authors:  Tabita Breitsprecher; Anandhan Dhanasingh; Marko Schulze; Markus Kipp; Rami Abu Dakah; Tobias Oberhoffner; Michael Dau; Bernhard Frerich; Marc-André Weber; Soenke Langner; Robert Mlynski; Nora M Weiss
Journal:  Eur Radiol       Date:  2021-08-31       Impact factor: 5.315

7.  Vestibular Aqueduct Morphology and Meniere's Disease-Development of the "Vestibular Aqueduct Score" by 3D Analysis.

Authors:  Laurent Noyalet; Lukas Ilgen; Miriam Bürklein; Wafaa Shehata-Dieler; Johannes Taeger; Rudolf Hagen; Tilmann Neun; Simon Zabler; Daniel Althoff; Kristen Rak
Journal:  Front Surg       Date:  2022-02-04

8.  Implementation of secondary reconstructions of flat-panel volume computed tomography (fpVCT) and otological planning software for anatomically based cochlear implantation.

Authors:  Franz-Tassilo Müller-Graff; Lukas Ilgen; Philipp Schendzielorz; Johannes Voelker; Johannes Taeger; Anja Kurz; Rudolf Hagen; Tilmann Neun; Kristen Rak
Journal:  Eur Arch Otorhinolaryngol       Date:  2021-06-08       Impact factor: 3.236

9.  [Measuring the cochlea using a tablet-based software package: influence of imaging modality and rater background].

Authors:  Lena Weber; Pingling Kwok; Erin M Picou; Christina Wendl; Christopher Bohr; Steven C Marcrum
Journal:  HNO       Date:  2022-08-15       Impact factor: 1.330

  9 in total

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