Giuseppe De Nisco

Giuseppe De Nisco

Politecnico di Torino

H-index: 12

Europe-Italy

About Giuseppe De Nisco

Giuseppe De Nisco, With an exceptional h-index of 12 and a recent h-index of 12 (since 2020), a distinguished researcher at Politecnico di Torino, specializes in the field of Bioengineering, Computational Fluid Dynamics, Vascular Disease, Flow Visualization, Medical Imaging.

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

Predicting Lipid-Rich Plaque Progression in Coronary Arteries Using Multimodal Imaging and Wall Shear Stress Signatures

Smartphone-based particle tracking velocimetry for the in vitro assessment of coronary flows

Impact of wall displacements on the large-scale flow coherence in ascending aorta

Wall shear stress–related plaque growth of lipid-rich plaques in human coronary arteries: an near-infrared spectroscopy and optical coherence tomography study

Modelling blood flow in coronary arteries: Newtonian or shear-thinning non-Newtonian rheology?

Modelling aortic flows: impact of wall displacements on large-scale hemodynamic coherence in ascending aorta

Plaque progression is dependent on the local hemodynamics (time-averaged wall shear stress and TSVI) in combination with the plaque phenotype

Wall shear stress topological skeleton variability predicts plaque growth in human coronary arteries

Giuseppe De Nisco Information

University

Position

PoliToBIOMed Lab

Citations(all)

557

Citations(since 2020)

553

Cited By

132

hIndex(all)

12

hIndex(since 2020)

12

i10Index(all)

17

i10Index(since 2020)

16

Email

University Profile Page

Politecnico di Torino

Google Scholar

View Google Scholar Profile

Giuseppe De Nisco Skills & Research Interests

Bioengineering

Computational Fluid Dynamics

Vascular Disease

Flow Visualization

Medical Imaging

Top articles of Giuseppe De Nisco

Title

Journal

Author(s)

Publication Date

Predicting Lipid-Rich Plaque Progression in Coronary Arteries Using Multimodal Imaging and Wall Shear Stress Signatures

Arteriosclerosis, Thrombosis, and Vascular Biology

Giuseppe De Nisco

Eline MJ Hartman

Elena Torta

Joost Daemen

Claudio Chiastra

...

2024/4

Smartphone-based particle tracking velocimetry for the in vitro assessment of coronary flows

Medical Engineering & Physics

Elena Torta

Bianca Griffo

Giuseppe CA Caridi

Giuseppe De Nisco

Claudio Chiastra

...

2024/4/1

Impact of wall displacements on the large-scale flow coherence in ascending aorta

Journal of Biomechanics

Karol Calò

Katia Capellini

Giuseppe De Nisco

Valentina Mazzi

Emanuele Gasparotti

...

2023/6/1

Wall shear stress–related plaque growth of lipid-rich plaques in human coronary arteries: an near-infrared spectroscopy and optical coherence tomography study

Cardiovascular Research

Eline MJ Hartman

Giuseppe De Nisco

Annette M Kok

Mariusz Tomaniak

Fay MA Nous

...

2023/4/1

Modelling blood flow in coronary arteries: Newtonian or shear-thinning non-Newtonian rheology?

Computer Methods and Programs in Biomedicine

Giuseppe De Nisco

Maurizio Lodi Rizzini

Roberto Verardi

Claudio Chiastra

Alessandro Candreva

...

2023/12/1

Modelling aortic flows: impact of wall displacements on large-scale hemodynamic coherence in ascending aorta

Karol Calo

Katia Capellini

Giuseppe DE NISCO

Valentina Mazzi

Emanuele Gasparotti

...

2023

Plaque progression is dependent on the local hemodynamics (time-averaged wall shear stress and TSVI) in combination with the plaque phenotype

European Heart Journal

JJ Wentzel

G De Nisco

E Hartman

V Mazzi

C Chiastra

...

2023/11

Wall shear stress topological skeleton variability predicts plaque growth in human coronary arteries

Giuseppe DE NISCO

Eline M Hartman

Valentina Mazzi

Diego Gallo

Claudio Chiastra

...

2023

Design of innovative self-expandable femoral stents using inverse homogenization topology optimization

Computer Methods in Applied Mechanics and Engineering

Dario Carbonaro

Francesco Mezzadri

Nicola Ferro

Giuseppe De Nisco

Alberto Luigi Audenino

...

2023/11/1

Corrigendum to" Impact of wall displacements on the large-scale flow coherence in ascending aorta"[J. Biomech. 154 (2023) 111620].

Journal of Biomechanics

Karol Calò

Katia Capellini

Giuseppe De Nisco

Valentina Mazzi

Emanuele Gasparotti

...

2023/7/27

Divergence of the normalized wall shear stress as an effective computational template of low-density lipoprotein polarization at the arterial blood-vessel wall interface

Computer Methods and Programs in Biomedicine

Valentina Mazzi

Giuseppe De Nisco

Karol Calò

Claudio Chiastra

Joost Daemen

...

2022/11/1

Coronary artery stenting affects wall shear stress topological skeleton

Journal of Biomechanical Engineering

Claudio Chiastra

Valentina Mazzi

Maurizio Lodi Rizzini

Karol Calò

Anna Corti

...

2022/1/11

Investigating the impact of wall distensibility on aortic flow using a network-based approach

Karol Calo

Katia Capellini

Giuseppe DE NISCO

Diego Gallo

Simona Celi

...

2022

The variability of wall shear stress topological skeleton predicts plaque growth in human coronary arteries

Giuseppe DE NISCO

Eline M Hartman

Valentina Mazzi

Diego Gallo

Claudio Chiastra

...

2022

Computational investigation of the role of low-density lipoprotein and oxygen transport in atherosclerotic arteries

Anna Corti

Monika Colombo

Giuseppe De Nisco

Jose Felix Rodriguez Matas

Francesco Migliavacca

...

2022/1/1

Current and future applications of computational fluid dynamics in coronary artery disease

Alessandro Candreva

Giuseppe De Nisco

Maurizio Lodi Rizzini

Fabrizio D’Ascenzo

Gaetano Maria De Ferrari

...

2022/11/4

The definition of low wall shear stress and its effect on plaque progression estimation in human coronary arteries

Scientific Reports

Eline MJ Hartman

Giuseppe De Nisco

Frank JH Gijsen

Suze-Anne Korteland

Anton FW van der Steen

...

2021/11/11

Wall shear stress topological skeleton analysis in cardiovascular flows: Methods and applications

Valentina Mazzi

Umberto Morbiducci

Karol Calò

Giuseppe De Nisco

Maurizio Lodi Rizzini

...

2021/1

Early atherosclerotic changes in coronary arteries are associated with endothelium shear stress contraction/expansion variability

Annals of Biomedical Engineering

Valentina Mazzi

Giuseppe De Nisco

Ayla Hoogendoorn

Karol Calò

Claudio Chiastra

...

2021/7/29

EULERIAN-BASED WALL SHEAR STRESS TOPOLOGICAL SKELETON AS A TEMPLATE OF NEAR-WALL MASS TRANSPORT IN ARTERIES

Giuseppe DE NISCO

Valentina Mazzi

Karol Calo

Maurizio LODI RIZZINI

Claudio Chiastra

...

2021

See List of Professors in Giuseppe De Nisco University(Politecnico di Torino)

Co-Authors

H-index: 46
Umberto Morbiducci, PhD

Umberto Morbiducci, PhD

Politecnico di Torino

H-index: 31
Diego Gallo

Diego Gallo

Politecnico di Torino

H-index: 29
Claudio Chiastra

Claudio Chiastra

Politecnico di Torino

H-index: 9
Karol Calò

Karol Calò

Politecnico di Torino

H-index: 9
Maurizio Lodi Rizzini

Maurizio Lodi Rizzini

Politecnico di Torino

H-index: 9
Valentina Mazzi

Valentina Mazzi

Politecnico di Torino

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