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Detection and retrieval of ferromagnetic foreign particles in cosmetically sophisticated regions

Published online by Cambridge University Press:  04 March 2015

Tobias Helfen*
Affiliation:
Munich University Hospital, Deptartment of General, Trauma, Hand and Plastic Surgery, Ludwig-Maximilians-University, Munich, Germany
Lorenz Wanke-Jellinek
Affiliation:
Munich University Hospital, Deptartment of General, Trauma, Hand and Plastic Surgery, Ludwig-Maximilians-University, Munich, Germany
Viktoria Bogner
Affiliation:
Munich University Hospital, Deptartment of General, Trauma, Hand and Plastic Surgery, Ludwig-Maximilians-University, Munich, Germany
Karl Georg Kanz
Affiliation:
Munich University Hospital, Deptartment of General, Trauma, Hand and Plastic Surgery, Ludwig-Maximilians-University, Munich, Germany
Wolf Mutschler
Affiliation:
Munich University Hospital, Deptartment of General, Trauma, Hand and Plastic Surgery, Ludwig-Maximilians-University, Munich, Germany
Florian Haasters
Affiliation:
Munich University Hospital, Deptartment of General, Trauma, Hand and Plastic Surgery, Ludwig-Maximilians-University, Munich, Germany
*
Correspondence to: Dr. Tobias Helfen, Munich University Hospital, Nussbaumstr. 20, Munich 80336, Germany, Tobias.Helfen@med.uni-muenchen.de

Abstract

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Type
Knowledge to Practice • Des connaissances à la pratique
Copyright
Copyright © Copyright © Canadian Association of Emergency Physicians 2014

References

REFERENCES

1.Ginsburg, MJ, Ellis, GL, Flom, LL. Detection of soft-tissue foreign bodies by plain radiography xerography, computed tomography, and ultrasonography. Ann Emerg Med 1990;19: 701-3, doi:10.1016/S0196-0644(05)82483-7.Google Scholar
2.Abe, K, Nakamatsu, K, Beppu, K, et al. Use of intra-operative ultrasonography to detect a small foreign body in the soft tissue of the upper lip. Br Dent J 1994;177:292-4, doi:10.1038/sj.bdj.4808589.Google Scholar
3.Chin, JT, Davies, SJ, Sandler, JP. Retrieval of a metallic foreign body in the neck with a rare earth magnet. J Accid Emerg Med 2000;17:383-4, doi:10.1136/emj.17.5.383.Google Scholar
4.Owen-Shmith, MS. High velocity missile wounds. London: Edward Arnold; 1981.CrossRefGoogle Scholar
5.Janzen, DL, Tirman, PF, Rabassa, AE, et al. Lead ‘bursogram’ and focal synovitis secondary to a retained intraarticular bullet fragment. Skel Radiol 1995;24:142-4, doi:10.1007/BF00198079.CrossRefGoogle ScholarPubMed
6.Peh, WC, Reinus, WR. Lead arthropathy: a cause of delayed onset lead poisoning. Skel Radiol 1995;24:357-60.Google Scholar
>7.Tekavcic, I, Smrkolj, VA. The path of a wounding missile along the spinal canal: a case report. Spine (Phila Pa 1976) 1996;21:63941, doi:10.1097/00007632-199603010-00020.Google Scholar
8.Shellock, FG, Crues JV, III. Safety of MRI in patients with metallic implants or foreign bodies. Appl Radiol 1992;11:44.Google Scholar
9.Cakir, B, Akan, M, Yildirim, S, et al. Localization and removal of ferromagnetic foreign bodies by magnet. Ann Plast Surg 2002;49:541-4, doi:10.1097/00000637-200211000-00016.Google Scholar
10.Ryf, S, Wolber, T, Duru, F, et al. Interference of neodymuim magnets with cardiac pacemakers and implantable cardioverter defibrillators: an in vitro study. Technol Health Care 2008;16:138.Google Scholar
11.Kuhn, F, Heinemann, K. A new permanent magnet for removal of intraocular ferromagnetic foreign bodies. Klin Monbl Augenheilkd 1991;198:301-3, doi:10.1055/s-2008-1045969.Google Scholar
12.Kalmbach, T, Lajos, TZ. Retrieval of metallic objects from the pericardial cavity. Ann Thorac Surg 1988;46:484, doi:10.1016/S0003-4975(10)64677-2.Google Scholar