Chamber stapes prosthesis with an improved fastening of the membrane

Stapes prostheses are dedicated to assisting patients with otosclerosis. Currently used stapes prostheses have the form of a piston and are called piston prostheses. However, the perilymph excitation by piston prosthesis is not perfect so a new chamber stapes prosthesis (ChSP) has been proposed. The...

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Main Authors: Pudlik Małgorzata, Skarżyński Henryk, Kwacz Monika
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:ITM Web of Conferences
Online Access:https://doi.org/10.1051/itmconf/20171505005
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spelling doaj-f8eb46f1656b4d86a2c96da859e297742021-02-02T06:00:53ZengEDP SciencesITM Web of Conferences2271-20972017-01-01150500510.1051/itmconf/20171505005itmconf_cmes-17_05005Chamber stapes prosthesis with an improved fastening of the membranePudlik MałgorzataSkarżyński HenrykKwacz MonikaStapes prostheses are dedicated to assisting patients with otosclerosis. Currently used stapes prostheses have the form of a piston and are called piston prostheses. However, the perilymph excitation by piston prosthesis is not perfect so a new chamber stapes prosthesis (ChSP) has been proposed. The ChSP allows for a more effective stimulation of the cochlea than the piston. A crucial element of the ChSP is a flexible membrane. The membrane transmits vibrations from the plate to the fluid that fills the chamber and then to the inner ear. In the first prototype, the membrane was glued to the chamber, which is an unacceptable solution in a real medical device because of a risk to patient's health. Therefore, there is a need to improve the membrane fastening. In this study, we present a new improved method for attaching the membrane to the chamber. A modified 3D model of the ChSP was build and an additional fastening element was designed. The design process of the fastening element was based on the analysis of deformation conducted for elements made of different materials. As a result the optimal geometry of the element was determined. The new fastening has been experimentally tested using the 3D printed model. Fastening the membrane to the prosthesis was a success and assessed as efficient. The results of the experimental tests confirmed that presented modification can be used in the ChSPs intended for clinical trials.https://doi.org/10.1051/itmconf/20171505005
collection DOAJ
language English
format Article
sources DOAJ
author Pudlik Małgorzata
Skarżyński Henryk
Kwacz Monika
spellingShingle Pudlik Małgorzata
Skarżyński Henryk
Kwacz Monika
Chamber stapes prosthesis with an improved fastening of the membrane
ITM Web of Conferences
author_facet Pudlik Małgorzata
Skarżyński Henryk
Kwacz Monika
author_sort Pudlik Małgorzata
title Chamber stapes prosthesis with an improved fastening of the membrane
title_short Chamber stapes prosthesis with an improved fastening of the membrane
title_full Chamber stapes prosthesis with an improved fastening of the membrane
title_fullStr Chamber stapes prosthesis with an improved fastening of the membrane
title_full_unstemmed Chamber stapes prosthesis with an improved fastening of the membrane
title_sort chamber stapes prosthesis with an improved fastening of the membrane
publisher EDP Sciences
series ITM Web of Conferences
issn 2271-2097
publishDate 2017-01-01
description Stapes prostheses are dedicated to assisting patients with otosclerosis. Currently used stapes prostheses have the form of a piston and are called piston prostheses. However, the perilymph excitation by piston prosthesis is not perfect so a new chamber stapes prosthesis (ChSP) has been proposed. The ChSP allows for a more effective stimulation of the cochlea than the piston. A crucial element of the ChSP is a flexible membrane. The membrane transmits vibrations from the plate to the fluid that fills the chamber and then to the inner ear. In the first prototype, the membrane was glued to the chamber, which is an unacceptable solution in a real medical device because of a risk to patient's health. Therefore, there is a need to improve the membrane fastening. In this study, we present a new improved method for attaching the membrane to the chamber. A modified 3D model of the ChSP was build and an additional fastening element was designed. The design process of the fastening element was based on the analysis of deformation conducted for elements made of different materials. As a result the optimal geometry of the element was determined. The new fastening has been experimentally tested using the 3D printed model. Fastening the membrane to the prosthesis was a success and assessed as efficient. The results of the experimental tests confirmed that presented modification can be used in the ChSPs intended for clinical trials.
url https://doi.org/10.1051/itmconf/20171505005
work_keys_str_mv AT pudlikmałgorzata chamberstapesprosthesiswithanimprovedfasteningofthemembrane
AT skarzynskihenryk chamberstapesprosthesiswithanimprovedfasteningofthemembrane
AT kwaczmonika chamberstapesprosthesiswithanimprovedfasteningofthemembrane
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