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International Journal for Numerical Methods in Biomedical Engineering Template

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About the International Journal for Numerical Methods in Biomedical Engineering format

International Journal for Numerical Methods in Biomedical Engineering is a peer-reviewed journal published by Wiley, covering Elasticity and Material Modeling, Coronary Interventions and Diagnostics, Cardiovascular Function and Risk Factors.

PublisherWiley
Reference styleAuthor–year (Chicago)
Author–year — (Smith, 2023) in the text
Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." International Journal for Numerical Methods in Biomedical Engineering 12 (3): 45–58.

Formats any DOI in International Journal for Numerical Methods in Biomedical Engineering style. No sign-up.

Publishes research inElasticity and Material Modeling Coronary Interventions and Diagnostics Cardiovascular Function and Risk Factors Cardiovascular Health and Disease Prevention Advanced Numerical Methods in Computational Mathematics
ISSN2040-7939
Citation impact (2-yr)1.74
h-index74
i10-index859
Total citations32,498
Article processing charge$4,430
Top institutions publishing hereCentre National de la Recherche Scientifique
Journal websiteonlinelibrary.wiley.com
You getA submission-ready PDF and the editable LaTeX source — ready to submit.

Papers published in International Journal for Numerical Methods in Biomedical Engineering per year

77
2014
84
2015
109
2016
110
2017
137
2018
139
2019
136
2020
126
2021
121
2022
132
2023
127
2024
152
2025

Citation impact of International Journal for Numerical Methods in Biomedical Engineering by publication year

2.3K
2014
1.8K
2015
2.7K
2016
2.3K
2017
2.1K
2018
2.3K
2019
1.5K
2020
1.2K
2021
1.3K
2022
715
2023
377
2024
183
2025

Citations each year’s papers have accumulated so far — the most recent years are still building up.

Most-cited papers in International Journal for Numerical Methods in Biomedical Engineering

A systematic comparison between 1‐D and 3‐D hemodynamics in compliant arterial models

Nan Xiao, Jordi Alastruey, C. Alberto Figueroa · 24 Sep 2013

We present a systematic comparison of computational hemodynamics in arteries between a one-dimensional (1-D) and a three-dimensional (3-D) formulation with deformable vessel walls. The simulations were performed using a series of idealized compliant arterial models representing the common carotid artery, thoracic aorta, aortic bifurcation, and full aorta from the arch to the iliac bifurcation. The…

A review of personalized blood glucose prediction strategies for T1DM patients

Silvia Oviedo, Josep Vehı́, Remei Calm et al. · 19 Sep 2016

This paper presents a methodological review of models for predicting blood glucose (BG) concentration, risks and BG events. The surveyed models are classified into three categories, and they are presented in summary tables containing the most relevant data regarding the experimental setup for fitting and testing each model as well as the input signals and…

Persistent homology analysis of protein structure, flexibility, and folding

Kelin Xia, Guo‐Wei Wei · 6 Jun 2014

Proteins are the most important biomolecules for living organisms. The understanding of protein structure, function, dynamics, and transport is one of the most challenging tasks in biological science. In the present work, persistent homology is, for the first time, introduced for extracting molecular topological fingerprints (MTFs) based on the persistence of molecular topological invariants. MTFs…

A global multiscale mathematical model for the human circulation with emphasis on the venous system

Lucas O. Müller, Eleuterio F. Toro · 15 Jan 2014

We present a global, closed-loop, multiscale mathematical model for the human circulation including the arterial system, the venous system, the heart, the pulmonary circulation and the microcirculation. A distinctive feature of our model is the detailed description of the venous system, particularly for intracranial and extracranial veins. Medium to large vessels are described by one-dimensional…

A benchmark study of numerical schemes for one‐dimensional arterial blood flow modelling

Etienne Boileau, Perumal Nithiarasu, Pablo J. Blanco et al. · 23 Jun 2015

Haemodynamical simulations using one-dimensional (1D) computational models exhibit many of the features of the systemic circulation under normal and diseased conditions. Recent interest in verifying 1D numerical schemes has led to the development of alternative experimental setups and the use of three-dimensional numerical models to acquire data not easily measured in vivo. In most studies…

International Journal for Numerical Methods in Biomedical Engineering template — frequently asked questions

How do I write a paper in the International Journal for Numerical Methods in Biomedical Engineering format?
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What reference style does International Journal for Numerical Methods in Biomedical Engineering use?
International Journal for Numerical Methods in Biomedical Engineering uses Author–year (Chicago) references, shown as author–year markers such as (Smith, 2023) in the text. DocuGuru formats every in-text citation and the reference list in this exact style automatically. A reference appears like this: Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." International Journal for Numerical Methods in Biomedical Engineering 12 (3): 45–58.
Do I need to know LaTeX to submit to International Journal for Numerical Methods in Biomedical Engineering?
No. DocuGuru generates the USG LaTeX class and compiles the PDF for you in the background, so you get a Wiley-ready International Journal for Numerical Methods in Biomedical Engineering document without writing any LaTeX. If you do want it, the LaTeX source is included in the export.
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Who publishes International Journal for Numerical Methods in Biomedical Engineering?
International Journal for Numerical Methods in Biomedical Engineering is a multidisciplinary journal published by Wiley. DocuGuru's International Journal for Numerical Methods in Biomedical Engineering template matches Wiley's official submission format.
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