Zhaoyu Chen

About Zhaoyu Chen

Zhaoyu Chen, With an exceptional h-index of 10 and a recent h-index of 7 (since 2020), a distinguished researcher at Technische Universität Dresden, specializes in the field of Material characterization, Multi-scale simulation, Experimental mechanics, Middle ear mechanics, biomedical materials.

His recent articles reflect a diverse array of research interests and contributions to the field:

Influence of inner ear impedance on middle ear sound transfer functions

Non-rigid point cloud registration for middle ear diagnostics with endoscopic optical coherence tomography

Multimodal additive manufacturing of biomimetic tympanic membrane replacements with near tissue-like acousto-mechanical and biological properties

Bewertung der Handhabung von biomimetischen Trommelfell (TF)-Membranen

Evaluation of the handling of biomimetic tympanic membrane (TM)-membrane

Noise exposure when drilling at the round window niche–A temporal bone study

The influence of inner ear impedance on middle ear sound transfer functions

Development of electrospun, biomimetic tympanic membrane implants with tunable mechanical and oscillatory properties for myringoplasty

Zhaoyu Chen Information

University

Position

Research associate of

Citations(all)

360

Citations(since 2020)

164

Cited By

224

hIndex(all)

10

hIndex(since 2020)

7

i10Index(all)

10

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

Zhaoyu Chen Skills & Research Interests

Material characterization

Multi-scale simulation

Experimental mechanics

Middle ear mechanics

biomedical materials

Top articles of Zhaoyu Chen

Influence of inner ear impedance on middle ear sound transfer functions

Heliyon

2024/3/30

Zhaoyu Chen
Zhaoyu Chen

H-Index: 8

Non-rigid point cloud registration for middle ear diagnostics with endoscopic optical coherence tomography

International Journal of Computer Assisted Radiology and Surgery

2024/1

Multimodal additive manufacturing of biomimetic tympanic membrane replacements with near tissue-like acousto-mechanical and biological properties

Acta Biomaterialia

2023/10/15

Bewertung der Handhabung von biomimetischen Trommelfell (TF)-Membranen

Laryngo-Rhino-Otologie

2023/5

Evaluation of the handling of biomimetic tympanic membrane (TM)-membrane

Laryngo-Rhino-Otologie

2023/5

Noise exposure when drilling at the round window niche–A temporal bone study

Laryngo-Rhino-Otologie

2023/5

Martin Koch
Martin Koch

H-Index: 0

Zhaoyu Chen
Zhaoyu Chen

H-Index: 8

The influence of inner ear impedance on middle ear sound transfer functions

Laryngo-Rhino-Otologie

2023/5

Zhaoyu Chen
Zhaoyu Chen

H-Index: 8

Development of electrospun, biomimetic tympanic membrane implants with tunable mechanical and oscillatory properties for myringoplasty

Biomaterials Science

2022

Zhaoyu Chen
Zhaoyu Chen

H-Index: 8

Development of Fibrous SF/PCL Tympanic Membrane Scaffolds via Electrospinning: Modeling and Experimental Verification

PAMM

2021/12

Zhaoyu Chen
Zhaoyu Chen

H-Index: 8

Jonas Graetz
Jonas Graetz

H-Index: 4

Electrospun Biomimetic SF/PCL Tympanic Membrane Implant: Experimental Study of Material Design, Acousto-Mechanical Properties and Biocompatability

Laryngo-Rhino-Otologie

2021/5

Simulation and Development of Biomimetic Electrospun PCL Nanofibrous Tympanic Membrane Implants

PAMM

2021/1

Zhaoyu Chen
Zhaoyu Chen

H-Index: 8

Thomas Stoppe
Thomas Stoppe

H-Index: 4

Simulation-Based Development of a Nanoscale, Electro-spun, Biomimetic PCL/SF TM Implant

Laryngo-Rhino-Otologie

2020/5

See List of Professors in Zhaoyu Chen University(Technische Universität Dresden)