Scalable and High-Throughput In Vitro Vibratory Platform for Vocal Fold Tissue Engineering Applications
Biehl, A., Colmon, R., Timofeeva, A., Martins, A. M. G., Dion, G. R., Peters, K., & Freytes, D. O. (2023, May 17). Bioengineering, Vol. 10.
author keywords: vocal fold; bioreactor; piezoelectric speaker; vibration; frequency; displacement; fibroblasts; mesenchymal stem cells; gene expression
topics (OpenAlex): Voice and Speech Disorders; Acoustic Wave Phenomena Research; Speech Recognition and Synthesis
TL;DR:
A scalable and high-throughput platform that mimics the mechanical microenvironment of the VFs in vitro and can incorporate commercial assay formats ranging from 6- to 96-well plates which represents a significant improvement in scalability.
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