Wiley

Concepts in Magnetic Resonance Part B Template

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About the Concepts in Magnetic Resonance Part B format

Concepts in Magnetic Resonance Part B is a peer-reviewed journal published by Wiley, covering Advanced MRI Techniques and Applications, Advanced NMR Techniques and Applications, NMR spectroscopy and applications.

PublisherWiley
Reference styleAuthor–year (Chicago)
Author–year — (Smith, 2023) in the text
Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." Concepts in Magnetic Resonance Part B 12 (3): 45–58.

Formats any DOI in Concepts in Magnetic Resonance Part B style. No sign-up.

Publishes research inAdvanced MRI Techniques and Applications Advanced NMR Techniques and Applications NMR spectroscopy and applications Atomic and Subatomic Physics Research Electron Spin Resonance Studies
ISSN1552-5031
h-index35
i10-index155
Total citations6,317
Article processing charge$1,450
Top institutions publishing hereThe University of Queensland
You getA submission-ready PDF and the editable LaTeX source — ready to submit.

Papers published in Concepts in Magnetic Resonance Part B per year

27
2013
29
2014
36
2015
36
2016
30
2017
27
2018
3
2019
3
2020
4
2021
3
2022
2
2023
1
2024

Citation impact of Concepts in Magnetic Resonance Part B by publication year

94
2013
127
2014
167
2015
284
2016
104
2017
123
2018
38
2019
39
2020
8
2021
14
2022
7
2023
0
2024

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

Most-cited papers in Concepts in Magnetic Resonance Part B

Application of a Fourier-based method for rapid calculation of field inhomogeneity due to spatial variation of magnetic susceptibility

José P. Marques, Richard Bowtell · 1 Jan 2005

Inhomogeneous B0-magnetic fields generate distortion in magnetic resonance images, particularly those produced using echo planar imaging, and are responsible for signal reduction due to intravoxel dephasing in gradient echo experiments. Such effects increase in magnitude in proportionality with the static field strength, and with the growing use of high-field (3 T and above) systems in…

A fast calculation method for magnetic field inhomogeneity due to an arbitrary distribution of bulk susceptibility

Rarès Salomir, Baudouin Denis de Senneville, Chrit Moonen · 1 Jan 2003

Abstract A fast calculation method for the magnetic field distribution due to (dynamic) changes in susceptibility may allow real‐time interventional applications. Here it is shown that a direct relationship can be obtained between the magnetic field perturbation and the susceptibility distribution inside the MR magnet using a first order perturbation approach to Maxwell's magneto‐static equations,…

Design and construction of a dipolar Halbach array with a homogeneous field from identical bar magnets: NMR Mandhalas

H. Raich, Peter Blümler · 1 Oct 2004

Abstract Magnets of the Halbach layout are interesting for the use in mobile NMR/MRI devices. Therefore, the ideal Halbach magnet was iterated using identical bar magnets, which are positioned and oriented based on analytical equations. These configurations were simulated with two‐dimensional finite‐element methods. Performance factors were defined to relate field strength with homogeneity and mass.…

Design and performance of a DNP prepolarizer coupled to a rodent MRI scanner

Arnaud Comment, B. van den Brandt, Kai Uffmann et al. · 1 Oct 2007

Abstract For most of the last forty years, the techniques of Dynamic Nuclear Polarization (DNP) have been confined to particle‐physics laboratories building polarized targets, but recently it has been shown that samples similar to a solid target can be transformed into room temperature liquid solutions while retaining a high nuclear polarization. This method of “hyperpolarization”…

Novel gradient coils designed using a boundary element method

Michael Poole, Richard Bowtell · 9 Jul 2007

Abstract Boundary element methods offer a powerful approach for designing gradient coils, allowing the generation of coils wounds on arbitrarily shaped surface so as to produce any form of field variation that is consistent with Maxwell's equations. These methods are based on meshing the current carrying surface into an array of boundary elements. In this…

Concepts in Magnetic Resonance Part B template — frequently asked questions

How do I write a paper in the Concepts in Magnetic Resonance Part B format?
In DocuGuru you write your manuscript in a normal editor — no LaTeX setup required — and select the Concepts in Magnetic Resonance Part B template. When you export, DocuGuru compiles the paper into the official Wiley format and hands you a submission-ready PDF along with the editable LaTeX source.
What reference style does Concepts in Magnetic Resonance Part B use?
Concepts in Magnetic Resonance Part B 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." Concepts in Magnetic Resonance Part B 12 (3): 45–58.
Do I need to know LaTeX to submit to Concepts in Magnetic Resonance Part B?
No. DocuGuru generates the USG LaTeX class and compiles the PDF for you in the background, so you get a Wiley-ready Concepts in Magnetic Resonance Part B document without writing any LaTeX. If you do want it, the LaTeX source is included in the export.
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Yes. Paste or upload your current manuscript — Word, LaTeX, Markdown, or plain text — and DocuGuru reflows it into the Concepts in Magnetic Resonance Part B format with correct headings, figures, tables, and author–year citations.
Who publishes Concepts in Magnetic Resonance Part B?
Concepts in Magnetic Resonance Part B is a multidisciplinary journal published by Wiley. DocuGuru's Concepts in Magnetic Resonance Part B template matches Wiley's official submission format.
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Yes — DocuGuru produces a PDF built with the official Concepts in Magnetic Resonance Part B template (the USG class) that is ready to submit to Wiley, together with the matching LaTeX source files.
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