Amanda (Peters) Randles

Amanda (Peters) Randles

Duke University

H-index: 36

North America-United States

About Amanda (Peters) Randles

Amanda (Peters) Randles, With an exceptional h-index of 36 and a recent h-index of 23 (since 2020), a distinguished researcher at Duke University, specializes in the field of parallel computing, fluid dynamics.

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

Optimizing Temporal Waveform Analysis: A Novel Pipeline for Efficient Characterization of Left Coronary Artery Velocity Profiles

Enhanced CT simulation using realistic vascular flow dynamics

Surgical Modulation of Pulmonary Artery Shear Stress: A Patient-Specific CFD Analysis of the Norwood Procedure

Preventing stent failure using adaptive shear responsive endovascular implant

The power of genetic diversity in genome-wide association studies of lipids (vol 600, pg 675, 2021)

Enhancing Adaptive Physics Refinement Simulations Through the Addition of Realistic Red Blood Cell Counts

Case Study for Performance Portability of GPU Programming Frameworks for Hemodynamic Simulations

Optimizing Cloud Computing Resource Usage for Hemodynamic Simulation

Amanda (Peters) Randles Information

University

Position

___

Citations(all)

5602

Citations(since 2020)

3176

Cited By

3749

hIndex(all)

36

hIndex(since 2020)

23

i10Index(all)

122

i10Index(since 2020)

66

Email

University Profile Page

Duke University

Google Scholar

View Google Scholar Profile

Amanda (Peters) Randles Skills & Research Interests

parallel computing

fluid dynamics

Top articles of Amanda (Peters) Randles

Title

Journal

Author(s)

Publication Date

Optimizing Temporal Waveform Analysis: A Novel Pipeline for Efficient Characterization of Left Coronary Artery Velocity Profiles

arXiv preprint arXiv:2402.10146

Justen R Geddes

Amanda Randles

2024/2/15

Enhanced CT simulation using realistic vascular flow dynamics

Cyrus Tanade

Nicholas Felice

Ehsan Abadi

Ehsan Samei

Amanda Randles

...

2024/4/1

Surgical Modulation of Pulmonary Artery Shear Stress: A Patient-Specific CFD Analysis of the Norwood Procedure

Cardiovascular Engineering and Technology

Simbarashe G Chidyagwai

Michael S Kaplan

Christopher W Jensen

James S Chen

Reid C Chamberlain

...

2024/3/8

Preventing stent failure using adaptive shear responsive endovascular implant

2024/3/5

The power of genetic diversity in genome-wide association studies of lipids (vol 600, pg 675, 2021)

Nature

Sarah E Graham

Shoa L Clarke

Kuan-Han H Wu

Stavroula Kanoni

Greg JM Zajac

...

2023/5/26

Enhancing Adaptive Physics Refinement Simulations Through the Addition of Realistic Red Blood Cell Counts

Sayan Roychowdhury

Samreen T Mahmud

Aristotle Martin

Peter Balogh

Daniel F Puleri

...

2023/11/12

Case Study for Performance Portability of GPU Programming Frameworks for Hemodynamic Simulations

Aristotle Martin

Amanda Randles

2023

Optimizing Cloud Computing Resource Usage for Hemodynamic Simulation

William Ladd

Christopher Jensen

Madhurima Vardhan

Jeff Ames

Jeff R Hammond

...

2023/5/15

Low-Cost Post Hoc Reconstruction of HPC Simulations at Full Resolution

Ayman Z Yousef

Erik W Draeger

Amanda Randles

2023/10/23

Investigating the Influence of Heterogeneity Within Cell Types on Microvessel Network Transport

Cellular and Molecular Bioengineering

Junyu Nan

Sayan Roychowdhury

Amanda Randles

2023/12

The Role of Immersion for Improving Extended Reality Analysis of Personalized Flow Simulations

Cardiovascular Engineering and Technology

Harvey Shi

Madhurima Vardhan

Amanda Randles

2023/4

Modeling the effect of patient size on cerebral perfusion during veno-arterial extracorporeal membrane oxygenation

Perfusion

Bradley Feiger

Christopher W Jensen

Benjamin S Bryner

William P Segars

Amanda Randles

2023/7/3

Performance Evaluation of Heterogeneous GPU Programming Frameworks for Hemodynamic Simulations

Aristotle Martin

Geng Liu

William Ladd

Seyong Lee

John Gounley

...

2023/11/12

Effect of constitutive law on the erythrocyte membrane response to large strains

Computers & Mathematics with Applications

Marianna Pepona

John Gounley

Amanda Randles

2023/2/15

Establishing massively parallel models to examine the influence of cell heterogeneity on tumor growth

Journal of Computational Science

Cyrus Tanade

Sarah Putney

Amanda Randles

2023/7/1

Moment Representation of Regularized Lattice Boltzmann Methods on NVIDIA and AMD GPUs

Pedro Valero-Lara

Jeffrey Vetter

John Gounley

Amanda Randles

2023/11/12

Cloud Computing at Scale: Tracking 4.5 Million Heartbeats of 3D Coronary Flow via the Longitudinal Hemodynamic Mapping Framework

AMANDA RANDLES

2023

Establishing metrics to quantify spatial similarity in spherical and red blood cell distributions

Journal of Computational Science

Sayan Roychowdhury

Erik W Draeger

Amanda Randles

2023/7/1

Cloud computing to enable wearable-driven longitudinal hemodynamic maps

Cyrus Tanade

Emily Rakestraw

William Ladd

Erik Draeger

Amanda Randles

2023/11/12

A Heterogeneous, In Transit Approach for Large Scale Cellular Modeling

AYMAN YOUSEF

AMANDA RANDLES

2023

See List of Professors in Amanda (Peters) Randles University(Duke University)

Co-Authors

H-index: 110
Efthimios Kaxiras

Efthimios Kaxiras

Harvard University

H-index: 91
Hanspeter Pfister

Hanspeter Pfister

Harvard University

H-index: 79
Franziska Michor

Franziska Michor

Harvard University

H-index: 29
Kelly R. Stevens

Kelly R. Stevens

University of Washington

H-index: 24
Yang You

Yang You

National University of Singapore

H-index: 22
Michelle Anne Borkin

Michelle Anne Borkin

Northeastern University

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