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高场强磁共振成像与金属生物医学植入物:偏转力的离体评估

High-field-strength MR imaging and metallic biomedical implants: an ex vivo evaluation of deflection forces.

作者信息

Shellock F G, Crues J V

机构信息

Department of Medicine, Cedars-Sinai Medical Center, Los Angeles, CA 90048.

出版信息

AJR Am J Roentgenol. 1988 Aug;151(2):389-92. doi: 10.2214/ajr.151.2.389.

Abstract

Ferromagnetic biomedical implants are considered a contraindication for MR imaging primarily because of the potential hazards associated with their movement or dislodgment. Many metallic biomedical implants are composed of nonferromagnetic materials and do not present a danger to patients during MR imaging. Therefore, to evaluate the ferromagnetic qualities of 36 different metallic biomedical implants (four aneurysm clips, six hemostatic clips, four dental implants, seven prosthetic heart valves, eight orthopedic prostheses, one artificial urinary sphincter, three contraceptive diaphragms, and three cerebral ventricular shunt tube connectors) not previously evaluated with a high-field-strength MR system, we measured deflection forces at the portal of the magnet of a 1.5-T MR system. Fourteen of the 36 metallic biomedical implants were determined to be ferromagnetic as indicated by their deflection in the static magnetic field. However, only the four aneurysm clips (Drake, Mayfield, McFadden, and Sundt-Kees) had sufficient ferromagnetism to warrant exclusion of patients with these implants from imaging with a 1.5-T MR system because of the possibility of movement or displacement. The calculated deflection forces for these aneurysm clips were comparable with previously reported values of certain aneurysm clips that have been designated to present a risk for patients undergoing MR imaging. Patients with 32 of 36 metallic biomedical implants tested can be safely imaged with high-field-strength MR systems.

摘要

铁磁性生物医学植入物被视为磁共振成像的禁忌症,主要是因为其移动或移位可能带来潜在危害。许多金属生物医学植入物由非铁磁性材料制成,在磁共振成像过程中不会对患者构成危险。因此,为了评估36种不同的金属生物医学植入物(4个动脉瘤夹、6个止血夹、4个牙种植体、7个人工心脏瓣膜、8个骨科假体、1个人造尿道括约肌、3个避孕隔膜和3个脑室分流管连接器)的铁磁性,这些植入物此前未用高场强磁共振系统进行评估,我们在一台1.5-T磁共振系统的磁体入口处测量了偏转力。36种金属生物医学植入物中有14种在静磁场中发生偏转,被确定为铁磁性。然而,只有4个动脉瘤夹(德雷克、梅菲尔德、麦克法登和森特-基斯)具有足够的铁磁性,由于存在移动或移位的可能性,需要禁止植入这些夹子的患者接受1.5-T磁共振系统成像。这些动脉瘤夹的计算偏转力与先前报道的某些被指定为对接受磁共振成像患者有风险的动脉瘤夹的值相当。接受测试的36种金属生物医学植入物中有32种的患者可以安全地接受高场强磁共振系统成像。

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