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[Alteration of flux density of highly coercive SmCo magnets used in prosthodontics and epithetics in 1.5 T and 3 T MRI].

作者信息

Truong Buu-Tai, Blankenstein Felix H

机构信息

Zahnarztpraxis, Ahornstr. 20, 12163, Berlin, Deutschland.

CharitéCentrum 03, Zahn-, Mund- und Kieferheilkunde, Charité-Universitätsmedizin Berlin, Aßmannshauser Straße 4-6, 14197, Berlin, Deutschland.

出版信息

Radiologe. 2019 Oct;59(10):912-919. doi: 10.1007/s00117-019-0563-0.

DOI:10.1007/s00117-019-0563-0
PMID:31214744
Abstract

PURPOSE

The opposing field stability of highly coercive dental magnets in external magnetic fields of 1.5 and 3 T magnetic resonance imaging (MRI) was investigated. It was further assessed if remagnetizing can reverse the flux density in the magnets.

MATERIAL AND METHODS

Using an adjustable fixture, 20 SmCo magnets were exposed and 6 positions of prosthodontics and epithetics were simulated: P : in the lower jaw parallel to the main field B, A: in the upper jaw antiparallel to B in a straight position, Ad: antiparallel, reclined by 45°, Av: antiparallel, inclined by 45°, G: glabellar region 90° to B and M: mastoid region 90° to B. The effects of exposure in the exterior field directly at the opening for the parallel (P), antiparallel (A), glabellar (G) and mastoid (M) positions were also investigated. After each exposure the magnets were remagnetized. The flux density was determined as an equivalent of the adhesive force.

RESULTS

With 1.5 T clinically relevant loss of flux density between 7% and 10% occurred only in the angled positions Ad and Av and the external position A. In the antiparallel positions A and A the strong external field of 3 T caused very high losses of 72% and 33%, respectively. In the inclined and reclined antiparallel positions Ad and Av the magnets lost 96% of their flux density and were almost fully demagnetized. All of the magnets could be fully remagnetized regardless of the degree of damage.

CONCLUSION

Highly coercive SmCo magnets can remain in situ during a 1.5 T MRI scan unless the resulting artifacts are diagnostically relevant. Exposure to the 3 T main field in antiparallel position may result in a complete loss of the adhesive force. In this case the magnets should be remagnetized by the manufacturer. Inclination or reclination of the head reinforces the effect of the main field.

摘要

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本文引用的文献

1
Magnetic displacement force and torque on dental keepers in the static magnetic field of an MR scanner.磁共振成像扫描仪静磁场中牙保持器上的磁位移力和转矩
J Magn Reson Imaging. 2014 Dec;40(6):1481-6. doi: 10.1002/jmri.24500. Epub 2013 Nov 20.
2
[Influence on flux density of intraoral dental magnets during 1.5 and 3.0 tesla MRI].[1.5和3.0特斯拉磁共振成像期间口腔内牙科磁体对通量密度的影响]
Rofo. 2011 Aug;183(8):727-34. doi: 10.1055/s-0031-1273424. Epub 2011 May 30.
3
Radiofrequency-induced heating near fixed orthodontic appliances in high field MRI systems at 3.0 Tesla.
3.0特斯拉高场强磁共振成像系统中固定正畸矫治器附近的射频感应加热
J Orofac Orthop. 2009 Nov;70(6):485-94. doi: 10.1007/s00056-009-9923-0. Epub 2009 Dec 4.
4
Demagnetization of cochlear implants and temperature changes in 3.0T MRI environment.人工耳蜗在3.0T磁共振成像环境中的去磁作用及温度变化
Otolaryngol Head Neck Surg. 2008 Dec;139(6):833-9. doi: 10.1016/j.otohns.2008.07.026.
5
Breakaway forces of flat and domed surfaced Magfit implant magnet attachments.扁平及圆顶表面Magfit种植体磁附着体的分离力
Eur J Prosthodont Restor Dent. 2007 Mar;15(1):7-12.
6
[Signal loss in magnetic resonance imaging caused by intraoral anchored dental magnetic materials].[口腔内固定牙科磁性材料导致的磁共振成像信号丢失]
Rofo. 2006 Aug;178(8):787-93. doi: 10.1055/s-2006-926817.
7
Effect of magnetic resonance imaging on internal magnet strength in Med-El Combi 40+ cochlear implants.磁共振成像对美迪乐Combi 40+型人工耳蜗内部磁体强度的影响。
Laryngoscope. 2004 Aug;114(8):1355-61. doi: 10.1097/00005537-200408000-00007.
8
In vitro effect of microwave irradiation on the retentive force of magnets.
J Prosthet Dent. 2004 Apr;91(4):368-73. doi: 10.1016/j.prosdent.2004.02.011.
9
[Clinical utilization of magnetic resonance imaging for patients with cochlear implants].
Wien Klin Wochenschr. 2000 Jun 2;112(11):512-4.