Jose A. Sanz-Herrera

Jose A. Sanz-Herrera

Universidad de Sevilla

H-index: 21

Europe-Spain

About Jose A. Sanz-Herrera

Jose A. Sanz-Herrera, With an exceptional h-index of 21 and a recent h-index of 19 (since 2020), a distinguished researcher at Universidad de Sevilla, specializes in the field of Mechanobiology, Numerical Methods in Engineering, Mechanical Engineering.

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

Multiscale characterization of the mechanics of curved fibered structures with application to biological materials

Forces and degradation underlie angiogenesis driven mosaicism in cerebral cavernous malformations

A mechanobiological model for tumor spheroid evolution with application to glioblastoma: A continuum multiphysics approach

Traction force reconstruction assessment on real three-dimensional matrices and cellular morphologies

An in silico study on the influence of extracellular matrix mechanics on vasculogenesis

Force-mediated recruitment and reprogramming of healthy endothelial cells drive vascular lesion growth

Unraveling the mechanisms of enhanced angiogenesis and endothelial mosaicism in cerebral cavernous malformations: the role of cellular forces and ECM degradation

Time-Dependent Collagen Fibered Structure in the Early Distraction Callus: Imaging Characterization and Mathematical Modeling

Jose A. Sanz-Herrera Information

University

Position

___

Citations(all)

1992

Citations(since 2020)

1013

Cited By

1343

hIndex(all)

21

hIndex(since 2020)

19

i10Index(all)

37

i10Index(since 2020)

31

Email

University Profile Page

Universidad de Sevilla

Google Scholar

View Google Scholar Profile

Jose A. Sanz-Herrera Skills & Research Interests

Mechanobiology

Numerical Methods in Engineering

Mechanical Engineering

Top articles of Jose A. Sanz-Herrera

Title

Journal

Author(s)

Publication Date

Multiscale characterization of the mechanics of curved fibered structures with application to biological materials

bioRxiv

Jose Antonio Sanz-Herrera

Alejandro Apolinar-Fernandez

Alvaro Jimenez-Aires

Pedro Perez-Alcantara

Jaime Dominguez

...

2024

Forces and degradation underlie angiogenesis driven mosaicism in cerebral cavernous malformations

Apeksha Shapeti

Jorge Barrasa Fano

Janne de Jong

Abdel Rahman Abdel Fattah

Said Assou

...

2023/9/28

A mechanobiological model for tumor spheroid evolution with application to glioblastoma: A continuum multiphysics approach

Computers in Biology and Medicine

Ana Carrasco-Mantis

Teodora Randelovic

Héctor Castro-Abril

Ignacio Ochoa

Manuel Doblaré

...

2023/6/1

Traction force reconstruction assessment on real three-dimensional matrices and cellular morphologies

International Journal of Engineering Science

Alejandro Apolinar-Fernández

Jorge Barrasa-Fano

Mar Cóndor

Hans Van Oosterwyck

José A Sanz-Herrera

2023/5/1

An in silico study on the influence of extracellular matrix mechanics on vasculogenesis

Computer Methods and Programs in Biomedicine

Ana Carrasco-Mantis

Tomás Alarcón

José Antonio Sanz-Herrera

2023/4/1

Force-mediated recruitment and reprogramming of healthy endothelial cells drive vascular lesion growth

bioRxiv

Apeksha Shapeti

Jorge Barrasa Fano

Abdel Rahman Abdel Fattah

Janne de Jong

Jose Antonio Sanz-Herrera

...

2023

Unraveling the mechanisms of enhanced angiogenesis and endothelial mosaicism in cerebral cavernous malformations: the role of cellular forces and ECM degradation

Apeksha Shapeti

Jorge Barrasa Fano

Janne de Jong

Abdel Rahman Abdel Fattah

Said Assou

...

2023/10/11

Time-Dependent Collagen Fibered Structure in the Early Distraction Callus: Imaging Characterization and Mathematical Modeling

Annals of Biomedical Engineering

Pablo Blázquez-Carmona

José A Sanz-Herrera

Juan Mora-Macías

Juan Morgaz

Jaime Domínguez

...

2022/12

Computational Analysis of 3D Cellular Forces with Application to in vitro Models in Mechanobiology

Jorge Barrasa Fano

2022/4/15

Understanding glioblastoma invasion using physically-guided neural networks with internal variables

PLoS Computational Biology

Jacobo Ayensa-Jiménez

Mohamed H Doweidar

Jose A Sanz-Herrera

Manuel Doblare

2022/4/4

Análisis in silico de la influencia mecánica de la matriz extracelular en la vasculogénesis

Ana Carrasco-Mantis

Tomás Alarcón

José A Sanz-Herrera

2022

TFMLAB: A toolbox for studying cell mechanics in a 3D in vitro vascular disease model

Jorge Barrasa Fano

José Antonio Sanz-Herrera

Eva Faurobert

Hans Van Oosterwyck

2021/3/4

Quantifying cellular forces in a 3D in vitro vascular model

Jorge Barrasa Fano

Apeksha Shapeti

Mar Cóndor

Janne de Jong

Alejandro Apolinar Fernandez

...

2021/9/7

Mechanical influence of surrounding soft tissue on bone regeneration processes: a bone lengthening study

Annals of Biomedical Engineering

Pablo Blázquez-Carmona

Juan Mora-Macías

José Antonio Sanz-Herrera

Juan Morgaz

Rocío Navarrete-Calvo

...

2021/2

Structural optimization of 3D-printed patient-specific ceramic scaffolds for in vivo bone regeneration in load-bearing defects

journal of the mechanical behavior of biomedical materials

Pablo Blázquez-Carmona

José Antonio Sanz-Herrera

Francisco Javier Martínez-Vázquez

Jaime Domínguez

Esther Reina-Romo

2021/9/1

Análisis cinemático de un modelo 3D de migración celular

José Antonio Sanz Herrera

Pedro Pérez Alcántara

2021

Prediction and identification of physical systems by means of physically-guided neural networks with meaningful internal layers

Computer Methods in Applied Mechanics and Engineering

Jacobo Ayensa-Jimenez

Mohamed H Doweidar

Jose A Sanz-Herrera

Manuel Doblare

2021/8/1

Inverse method based on 3D nonlinear physically constrained minimisation in the framework of traction force microscopy

Soft Matter

José Antonio Sanz-Herrera

Jorge Barrasa-Fano

Mar Cóndor

Hans Van Oosterwyck

2021

TFMLAB: A MATLAB toolbox for 4D traction force microscopy

SoftwareX

Jorge Barrasa-Fano

Apeksha Shapeti

Alvaro Jorge-Penas

Mojtaba Barzegari

José Antonio Sanz-Herrera

...

2021/7/1

Advanced 3D Traction Force Microscopy to calculate forces in sprouting angiogenesis

Jorge Barrasa Fano

Apeksha Shapeti

Janne de Jong

José Antonio Sanz-Herrera

Hans Van Oosterwyck

2021/10/28

See List of Professors in Jose A. Sanz-Herrera University(Universidad de Sevilla)

Co-Authors

H-index: 133
Boccaccini, Aldo R.

Boccaccini, Aldo R.

Friedrich-Alexander-Universität Erlangen-Nürnberg

H-index: 45
Hans Van Oosterwyck

Hans Van Oosterwyck

Katholieke Universiteit Leuven

H-index: 42
José Domínguez

José Domínguez

Universidad de Sevilla

H-index: 21
Pilar Ariza

Pilar Ariza

Universidad de Sevilla

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