Avoiding MRI-Related Accidents: A Practical Approach to Implementing MR Safety

Journal of the American College of Radiology : JACR
Nathan M CrossKalpana M Kanal

Abstract

MRI is a ubiquitous medical imaging technology typically using superconductivity to generate a strong, homogeneous, and generally ceaseless magnetic field. MRI and its magnetic field pose many safety hazards, including magnetic forces on metals, tissue heating and burns, nerve stimulation, bioeffects, acoustic noise, and contrast agent complications. The primary concern is that a wide variety of patients, staff members, technologists, and physicians can approach the incessant magnetic field, creating great potential for accidents that could occur if metals from the environment, adornments, implants, and other unintended sources are also present in or near the field. Many accidents have occurred and are occasionally reported in the United States and countries all over the world. Through carefully structured oversight and the establishment of strict guidelines regarding access, responsibilities, and training, these risks can be mitigated, and accidents can be prevented. Fortunately, there is currently a wide variety of resources available to facilitate the successful implementation of an effective MRI safety program. This article presents a general overview of and the authors' experience with an MRI safety program in terms of ris...Continue Reading

Citations

May 5, 2020·Journal of Clinical Imaging Science·Christine LeeJeffrey Brunette
Mar 8, 2021·The Lancet Oncology·Hedvig HricakAndrew M Scott
Aug 15, 2020·Anesthesiology Clinics·Mary Landrigan-Ossar, Christopher Tan Setiawan
Jun 2, 2021·Critical Care Nurse·Ileen F CroninRussell R Cross
Jul 3, 2021·Current Problems in Diagnostic Radiology·Julie JohnsonNadja Kadom

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