Current Publications

Journal Publications
since 2022

Recent Journal Publications

[76881]
Title: Experimental thresholds of magnetically induced currents via a figure-of-eight coil up to 25 {kHz}.
Written by: J. Bohnert, M. Graeser, B. Gleich and O. Dössel
in: <em>Biomedizinische Technik. Biomedical Engineering</em>. (2012).
Volume: <strong>57</strong>. Number: (3),
on pages: 185--191
Chapter:
Editor:
Publisher:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1515/bmt-2012-0007
URL:
ARXIVID:
PMID: 22691426

[BibTex] [pmid]

Note: article

Abstract: Magnetic particle imaging, uses magnetic fields of frequencies in the kilo-hertz range. Little research has been carried out upon effects on excitable tissue caused by time-varying magnetic fields in that frequency range. To learn about magnetic stimulation thresholds, a system that is capable of generating a very focused magnetic field strong enough to induce a muscular reaction was built. Stimulation thresholds at 7.38, 12.04, 16.5, and 25.27 {kHz} have been recorded in 31 trial participants. It has been proved that magnetic stimulation is possible up to even 25 {kHz}, and respective thresholds have been determined. This article presents the trial setup, procedure, and evaluation of field quantities.

Conference Abstracts and Proceedings
since 2022

Recent Conference Abstracts and Proceedings

[76881]
Title: Experimental thresholds of magnetically induced currents via a figure-of-eight coil up to 25 {kHz}.
Written by: J. Bohnert, M. Graeser, B. Gleich and O. Dössel
in: <em>Biomedizinische Technik. Biomedical Engineering</em>. (2012).
Volume: <strong>57</strong>. Number: (3),
on pages: 185--191
Chapter:
Editor:
Publisher:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1515/bmt-2012-0007
URL:
ARXIVID:
PMID: 22691426

[pmid]

Note: article

Abstract: Magnetic particle imaging, uses magnetic fields of frequencies in the kilo-hertz range. Little research has been carried out upon effects on excitable tissue caused by time-varying magnetic fields in that frequency range. To learn about magnetic stimulation thresholds, a system that is capable of generating a very focused magnetic field strong enough to induce a muscular reaction was built. Stimulation thresholds at 7.38, 12.04, 16.5, and 25.27 {kHz} have been recorded in 31 trial participants. It has been proved that magnetic stimulation is possible up to even 25 {kHz}, and respective thresholds have been determined. This article presents the trial setup, procedure, and evaluation of field quantities.

Publications

Journal Publications
since 2014

Journal Publications

[76881]
Title: Experimental thresholds of magnetically induced currents via a figure-of-eight coil up to 25 {kHz}.
Written by: J. Bohnert, M. Graeser, B. Gleich and O. Dössel
in: <em>Biomedizinische Technik. Biomedical Engineering</em>. (2012).
Volume: <strong>57</strong>. Number: (3),
on pages: 185--191
Chapter:
Editor:
Publisher:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1515/bmt-2012-0007
URL:
ARXIVID:
PMID: 22691426

[BibTex] [pmid]

Note: article

Abstract: Magnetic particle imaging, uses magnetic fields of frequencies in the kilo-hertz range. Little research has been carried out upon effects on excitable tissue caused by time-varying magnetic fields in that frequency range. To learn about magnetic stimulation thresholds, a system that is capable of generating a very focused magnetic field strong enough to induce a muscular reaction was built. Stimulation thresholds at 7.38, 12.04, 16.5, and 25.27 {kHz} have been recorded in 31 trial participants. It has been proved that magnetic stimulation is possible up to even 25 {kHz}, and respective thresholds have been determined. This article presents the trial setup, procedure, and evaluation of field quantities.

Conference Abstracts and Proceedings
since 2014

Conference Abstracts and Proceedings

[76881]
Title: Experimental thresholds of magnetically induced currents via a figure-of-eight coil up to 25 {kHz}.
Written by: J. Bohnert, M. Graeser, B. Gleich and O. Dössel
in: <em>Biomedizinische Technik. Biomedical Engineering</em>. (2012).
Volume: <strong>57</strong>. Number: (3),
on pages: 185--191
Chapter:
Editor:
Publisher:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1515/bmt-2012-0007
URL:
ARXIVID:
PMID: 22691426

[pmid]

Note: article

Abstract: Magnetic particle imaging, uses magnetic fields of frequencies in the kilo-hertz range. Little research has been carried out upon effects on excitable tissue caused by time-varying magnetic fields in that frequency range. To learn about magnetic stimulation thresholds, a system that is capable of generating a very focused magnetic field strong enough to induce a muscular reaction was built. Stimulation thresholds at 7.38, 12.04, 16.5, and 25.27 {kHz} have been recorded in 31 trial participants. It has been proved that magnetic stimulation is possible up to even 25 {kHz}, and respective thresholds have been determined. This article presents the trial setup, procedure, and evaluation of field quantities.

Publications Pre-dating the Institute

Publications
2007-2013

Old Publications

[76881]
Title: Experimental thresholds of magnetically induced currents via a figure-of-eight coil up to 25 {kHz}.
Written by: J. Bohnert, M. Graeser, B. Gleich and O. Dössel
in: <em>Biomedizinische Technik. Biomedical Engineering</em>. (2012).
Volume: <strong>57</strong>. Number: (3),
on pages: 185--191
Chapter:
Editor:
Publisher:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1515/bmt-2012-0007
URL:
ARXIVID:
PMID: 22691426

[pmid]

Note: article

Abstract: Magnetic particle imaging, uses magnetic fields of frequencies in the kilo-hertz range. Little research has been carried out upon effects on excitable tissue caused by time-varying magnetic fields in that frequency range. To learn about magnetic stimulation thresholds, a system that is capable of generating a very focused magnetic field strong enough to induce a muscular reaction was built. Stimulation thresholds at 7.38, 12.04, 16.5, and 25.27 {kHz} have been recorded in 31 trial participants. It has been proved that magnetic stimulation is possible up to even 25 {kHz}, and respective thresholds have been determined. This article presents the trial setup, procedure, and evaluation of field quantities.

Open Access Publications

Journal Publications
since 2014

Open Access Publications

[76881]
Title: Experimental thresholds of magnetically induced currents via a figure-of-eight coil up to 25 {kHz}.
Written by: J. Bohnert, M. Graeser, B. Gleich and O. Dössel
in: <em>Biomedizinische Technik. Biomedical Engineering</em>. (2012).
Volume: <strong>57</strong>. Number: (3),
on pages: 185--191
Chapter:
Editor:
Publisher:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1515/bmt-2012-0007
URL:
ARXIVID:
PMID: 22691426

[BibTex] [pmid]

Note: article

Abstract: Magnetic particle imaging, uses magnetic fields of frequencies in the kilo-hertz range. Little research has been carried out upon effects on excitable tissue caused by time-varying magnetic fields in that frequency range. To learn about magnetic stimulation thresholds, a system that is capable of generating a very focused magnetic field strong enough to induce a muscular reaction was built. Stimulation thresholds at 7.38, 12.04, 16.5, and 25.27 {kHz} have been recorded in 31 trial participants. It has been proved that magnetic stimulation is possible up to even 25 {kHz}, and respective thresholds have been determined. This article presents the trial setup, procedure, and evaluation of field quantities.