Stefan Scheiner

About Stefan Scheiner

Stefan Scheiner, With an exceptional h-index of 18 and a recent h-index of 17 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of Multiscale modeling, Poromechanics, Coupled phenomena, Systems Biology, Bone Mechanobiology.

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

SGABU computational platform for multiscale modeling:: Bridging the gap between education and research

Viscoelasticity of hydrating shotcrete as key to realistic tunnel shell stress assessment with the New Austrian Tunneling Method

Complex Biomechanics: from atoms to patients

Piezoelectric exitation of bone metabolism scrutinized by means of multiscale modeling

Mechanobiology of bone studied by means of multiscale modeling

Predicting the growth of wood structures based on a micromechanics-informed beam model

The Mechanics of Pandemics: Empowering Boltzmann Creep for the Prediction of COVID-19 Fatality Trends

Designing 3D printed ceramic lattice structures for osseointegrative implants

Stefan Scheiner Information

University

Position

___

Citations(all)

1591

Citations(since 2020)

866

Cited By

1069

hIndex(all)

18

hIndex(since 2020)

17

i10Index(all)

27

i10Index(since 2020)

23

Email

University Profile Page

Google Scholar

Stefan Scheiner Skills & Research Interests

Multiscale modeling

Poromechanics

Coupled phenomena

Systems Biology

Bone Mechanobiology

Top articles of Stefan Scheiner

Title

Journal

Author(s)

Publication Date

SGABU computational platform for multiscale modeling:: Bridging the gap between education and research

Computer methods and programs in biomedicine

Tijana Geroski

Orestis Gkaintes

Aleksandra Vulović

Niketa Ukaj

Jorge Barrasa-Fano

...

2024/1/1

Viscoelasticity of hydrating shotcrete as key to realistic tunnel shell stress assessment with the New Austrian Tunneling Method

Mechanics of Advanced Materials and Structures

Raphael Scharf

Maximilian Sorgner

Stefan Scheiner

Bernhard Pichler

Christian Hellmich

2024/3/19

Complex Biomechanics: from atoms to patients

Christian Hellmich

Johannes Kalliauer

Niketa Ukaj

Stefan Scheiner

2023/5/23

Piezoelectric exitation of bone metabolism scrutinized by means of multiscale modeling

Erik Kornfellner

Stefan Scheiner

2023

Mechanobiology of bone studied by means of multiscale modeling

Stefan Scheiner

Christian Hellmich

Nenad Filipovic

2023/10/9

Predicting the growth of wood structures based on a micromechanics-informed beam model

Antonia Wagner

Stefan Scheiner

2023

The Mechanics of Pandemics: Empowering Boltzmann Creep for the Prediction of COVID-19 Fatality Trends

Niketa Ukaj

Christian Hellmich

Stefan Scheiner

2023/10/9

Designing 3D printed ceramic lattice structures for osseointegrative implants

Transactions on Additive Manufacturing Meets Medicine

Erik Kornfellner

Stefan Reininger

Stefan Scheiner

Francesco Moscato

2023/9/11

Multiscale, Micromechanics-Inspired Modeling Employed for Quantifying the Mechanobiology of Bone

Stefan Scheiner

Christian Hellmich

Tijana Geroski

Nenad Filipovic

2023/6/5

Hierarchical biomechanics: concepts, bone as prominent example, and perspectives beyond

Christian Hellmich

Niketa Ukaj

Bart Smeets

Hans Van Oosterwyck

Nenad Filipovic

...

2022/5/1

Report on Collected Data

Christian Hellmich

Niketa Ukaj

Stefan Scheiner

Tijana Sustersic

Milos Ivanovic

...

2022

Piezoelectric Excitation of Bone Metabolism Scrutinized by Means of Multiscale Modeling

Stefan Scheiner

2022

Computation of Mechanical Stimuli Potentially Governing the Mechanobiology of Bone Computed by Means of Micromechanics-Based Models

Stefan Scheiner

2022

A Micromechanics-Informed Beam Model of Growing Wood Structures

Antonia Wagner

Stefan Scheiner

2022/6/7

Contiuum Micromechanics: From Fundamentals to Stiffness Homogenization (and Beyond)

Multiscale Modeling and Bone Pathologies

Stefan Scheiner

2022/5/24

Utilization of Continuum Micromechanical Up-and Down-Scaling Relations for Studying Transport Processes in Porous Media

Stefan Scheiner

2021

Parameter reduction, sensitivity studies, and correlation analyses applied to a mechanobiologically regulated bone cell population model of the bone metabolism

Computers in Biology and Medicine

Isabella Larcher

Stefan Scheiner

2021/9/1

The Structural Mechanics of the Vienna Tramway Rails: Advanced Beam Theory-Assisted 1D/2D FE Modelling

Patricia Sofie Kuttke

Valentin Jagsch

Stefan Scheiner

Christian Hellmich

2021

Hydrostatic compression tests, capillary rheometry tests, and extrusion tests performed on unvulcanized rubber confirm importance of compressibility for die swell—arguments …

Polymer Testing

R Plachy

C Hellmich

F Arthofer

S Robin

A Holzner

...

2021/9/1

State of the art in the multiscale modeling in biomedical engineering. Deliverable Report D3. 1

Christian Hellmich

Niketa Ukaj

Stefan Scheiner

Nenad Filipovic

Bart Smeets

...

2021

See List of Professors in Stefan Scheiner University(Technische Universität Wien)

Co-Authors

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