Literature DB >> 25751868

A Computational Framework for Electrical Stimulation of Vestibular Nerve.

Prisca Marianelli, Marco Capogrosso, Lorenzo Bassi Luciani, Alessandro Panarese, Silvestro Micera.   

Abstract

The vestibular organs are very important to generate reflexes critical for stabilizing gaze and body posture. Vestibular diseases significantly reduce the quality of life of people who are affected by them. Some research groups have recently started developing vestibular neuroprostheses to mitigate these symptoms. However, many scientific and technological issues need to be addressed to optimise their use in clinical trials. We developed a computational model able to mimic the response of human vestibular nerves and which can be exploited for "in-silico" testing of new strategies to design implantable vestibular prostheses. First, a digital model of the vestibular system was reconstructed from anatomical data. Monopolar stimulation was delivered at different positions and distances from ampullary nerves. The electrical potential induced by the injected current was computed through finite-element methods and drove extra-cellular stimulation of fibers in the vestibular, facial, and cochlear nerves. The electrical activity of vestibular nerves and the resulting eye movements elicited by different stimulation protocols were investigated. A set of electrode configurations was analyzed in terms of selectivity at increasing injected current. Electrode position along the nerve plays a major role in producing undesired activity in other nontargeted nerves, whereas distance from the fiber does not significantly affect selectivity. Indications are provided to minimize misalignment in nonoptimal electrode locations. Eye movements elicited by the different stimulation protocols are calculated and compared to experimental values, for the purpose of model validation.

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Year:  2015        PMID: 25751868     DOI: 10.1109/TNSRE.2015.2407861

Source DB:  PubMed          Journal:  IEEE Trans Neural Syst Rehabil Eng        ISSN: 1534-4320            Impact factor:   3.802


  5 in total

1.  Model-based Vestibular Afferent Stimulation: Modular Workflow for Analyzing Stimulation Scenarios in Patient Specific and Statistical Vestibular Anatomy.

Authors:  Michael Handler; Peter P Schier; Karl D Fritscher; Patrik Raudaschl; Lejo Johnson Chacko; Rudolf Glueckert; Rami Saba; Rainer Schubert; Daniel Baumgarten; Christian Baumgartner
Journal:  Front Neurosci       Date:  2017-12-19       Impact factor: 4.677

2.  Computer Simulation of the Electrical Stimulation of the Human Vestibular System: Effects of the Reactive Component of Impedance on Voltage Waveform and Nerve Selectivity.

Authors:  Simone D'Alessandro; Michael Handler; Rami Saba; Carolyn Garnham; Daniel Baumgarten
Journal:  J Assoc Res Otolaryngol       Date:  2022-09-01

3.  Characterization of Cochlear, Vestibular and Cochlear-Vestibular Electrically Evoked Compound Action Potentials in Patients with a Vestibulo-Cochlear Implant.

Authors:  T A K Nguyen; Samuel Cavuscens; Maurizio Ranieri; Konrad Schwarz; Nils Guinand; Raymond van de Berg; Thomas van den Boogert; Floor Lucieer; Marc van Hoof; Jean-Philippe Guyot; Herman Kingma; Silvestro Micera; Angelica Perez Fornos
Journal:  Front Neurosci       Date:  2017-11-21       Impact factor: 4.677

4.  Model-Based Vestibular Afferent Stimulation: Evaluating Selective Electrode Locations and Stimulation Waveform Shapes.

Authors:  Peter Schier; Michael Handler; Lejo Johnson Chacko; Anneliese Schrott-Fischer; Karl Fritscher; Rami Saba; Christian Baumgartner; Daniel Baumgarten
Journal:  Front Neurosci       Date:  2018-08-30       Impact factor: 4.677

5.  Neural Network Model of Vestibular Nuclei Reaction to Onset of Vestibular Prosthetic Stimulation.

Authors:  Jack DiGiovanna; T A K Nguyen; Nils Guinand; Angelica Pérez-Fornos; Silvestro Micera
Journal:  Front Bioeng Biotechnol       Date:  2016-04-20
  5 in total

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