Carla Lacerda

Carla Lacerda

Texas Tech University

H-index: 16

North America-United States

About Carla Lacerda

Carla Lacerda, With an exceptional h-index of 16 and a recent h-index of 14 (since 2020), a distinguished researcher at Texas Tech University, specializes in the field of Tissue Engineering, Mechanotransduction, Signaling, Proteomics.

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

Front Cover: Facile Electrochemical Preparation of Hydrophobic Antibacterial Fabrics Using Reduced Graphene Oxide/Silver Nanoparticles (ChemElectroChem 6/2023).

Facile electrochemical preparation of hydrophobic antibacterial fabrics using reduced graphene oxide/silver nanoparticles

Telotristat ethyl reverses myxomatous changes in mice mitral valves

The Individual and Combined Effects of Shear, Tension, and Flexure on Aortic Heart Valve Endothelial Cells in Culture

Correction: Valvular Endothelial Cell Response to the Mechanical Environment—A Review

Valvular endothelial cell response to the mechanical environment—a review

Rheological behavior of a low crystallinity polyolefin-modified asphalt binder for flexible pavements

Shear type and magnitude affect aortic valve endothelial cell morphology, orientation, and differentiation

Carla Lacerda Information

University

Position

Assistant Professor

Citations(all)

853

Citations(since 2020)

442

Cited By

557

hIndex(all)

16

hIndex(since 2020)

14

i10Index(all)

20

i10Index(since 2020)

17

Email

University Profile Page

Google Scholar

Carla Lacerda Skills & Research Interests

Tissue Engineering

Mechanotransduction

Signaling

Proteomics

Top articles of Carla Lacerda

Front Cover: Facile Electrochemical Preparation of Hydrophobic Antibacterial Fabrics Using Reduced Graphene Oxide/Silver Nanoparticles (ChemElectroChem 6/2023).

ChemElectroChem

2023/3/14

Facile electrochemical preparation of hydrophobic antibacterial fabrics using reduced graphene oxide/silver nanoparticles

ChemElectroChem

2023/3/14

Telotristat ethyl reverses myxomatous changes in mice mitral valves

Frontiers in Cardiovascular Medicine

2022/8/4

The Individual and Combined Effects of Shear, Tension, and Flexure on Aortic Heart Valve Endothelial Cells in Culture

Cardiovascular Engineering and Technology

2022/6

Correction: Valvular Endothelial Cell Response to the Mechanical Environment—A Review

2022/3/1

Valvular endothelial cell response to the mechanical environment—a review

2021/12

Rheological behavior of a low crystallinity polyolefin-modified asphalt binder for flexible pavements

Case Studies in Construction Materials

2021/12/1

Shear type and magnitude affect aortic valve endothelial cell morphology, orientation, and differentiation

Experimental Biology and Medicine

2021/11

Evaluation of Electrochemically Reduced Graphene Composites As Antibacterial Materials

Electrochemical Society Meeting Abstracts 240

2021/10/19

Behnaz Jafari
Behnaz Jafari

H-Index: 1

Carla Lacerda
Carla Lacerda

H-Index: 10

Investigating the correlation of muscle function tests and sarcomere organization in C. elegans

Skeletal muscle

2021/8/13

Comparison of serotonin-regulated calcific processes in aortic and mitral valvular interstitial cells

ACS omega

2021/7/20

The tricuspid valve also maladapts as shown in sheep with biventricular heart failure

Elife

2020/12/15

The tricuspid valve also maladapts: A multiscale study in sheep with biventricular heart failure

bioRxiv

2020/9/4

Electrochemical Microbial Sensor for Rapid Detection and Quantification of Total Bacterial Count

Electrochemical Society Meeting Abstracts 237

2020/5/1

See List of Professors in Carla Lacerda University(Texas Tech University)

Co-Authors

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