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Unveiling the Strain Uniformity Challenge: Design and Evaluation of a Pdms Membrane for Precise Mechanobiology Studies

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Date

2025

Journal Title

Journal ISSN

Volume Title

Publisher

Taylor & Francis Ltd

Open Access Color

Green Open Access

No

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Publicly Funded

No
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Average
Influence
Average
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Average

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Journal Issue

Abstract

Mechanotransduction and mechanosensing enable cells to respond to mechanical stimuli, essential in various physiological functions. Specialized cell stretching devices use stretchable, transparent, and biocompatible elastomeric membranes to study these responses. However, achieving strain uniformity is a key challenge, affecting data accuracy and reliability. This study designed a polydimethylsiloxane (PDMS) membrane with optimized uniformity for electromechanical cell stretching. Finite element analysis optimized membrane size and shape, achieving a 90% strain uniformity index-a 233% improvement over commercial membranes. By tailoring material properties like cross-linker ratio and curing time, membrane failure issues were resolved, enhancing applications in tissue engineering and mechanobiology research.

Description

Keywords

Biaxial Tension, Hyperelastic Material, Pdms, Uniform Strain

Fields of Science

Citation

WoS Q

Q4

Scopus Q

Q3
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N/A

Source

Computer Methods in Biomechanics and Biomedical Engineering

Volume

Issue

Start Page

1

End Page

13
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Scopus : 0

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