Monday, May 13, 2019
RF Burns - causes and prevention Assignment Example | Topics and Well Written Essays - 2000 words
RF Burns - causes and legal community - Assignment ExampleThis study is being carried out in order to establish guidelines in the use and application of radiofrequency, mostly in terms of its safety and prevention of injuries. Body Causes 1. Heating of implants An RF pulse would often be transmitted by the magnetic resonance imaging to raise up protons through energy exchange. The pulse is an electromagnetic wave coming from the RF coils (Lin, 2008). RF power during MR scans atomic number 18 changed into heat within the tissue of the patient due to resistive losses (Eising et.al., 2010). This absorption of energy is specifically considered the SAR (Specific Absorption Rate). The specific effects of heat during MR scanning and burns usually refer to conductive implants and regulation tissue. Most studies discuss the impact of conductive wires, including pacemaker cables, ECG cables, and metallic stents (Eising et.al., 2010). Issues in the use of aneurysm clips in the brain, cochl ear implants, implanted spinal cord stimulator, metallic implants, and metal fragments in one or both eyes can also cause burns (Premier Diagnostic Center, n.d). Based on an experimental study by Nakamura et al. (2001), 55-235 volts could be induced with the RF irradiation in a metallic grommet placed inside the bore of a 0.5-T scanner. A resistor which was inserted sparked and then burned out (Nakamura et al., 2001). This was seen only when with the axis of loops being parallel to the linearly polarized transmitting field. For cables, heatings at 20 degrees Celsius, 26 Celsius, and 63.5 Celsius have been assessed. Assessments render that the heating of the ECG cable is known to cause fire. Small implants can lead to issues with the heating of fell seen in tattooed patients caused by the heating of metallic elements of the ink used for the tattoo (Klitscher et al., 2010). Implants (Wills.com, n.d.) Some reports on immoderate heating or burns have also been seen for iron- base oxide tattoos and transdermal patches added with metal elements these patches may include testosterone, nicotine, and clonidine patches (Tope and Shellock, 2002). Tattoos using ferromagnetic compounds can cause react to the MRI machine (Ross and Metava, 2011). In general, the image would in some way appear distorted following the MRI however, the injuries usually represent burns on the patients skin. As such, any red ink or apparent injury on the skin has to be managed medically (Ross and Matava, 2011). As seen in the image below, the ferromagnetic compounds of the tattoo caused the RF burns, mostly manifesting as burns and redness on the patients skin on the site of the tattoo. Tattoo with ferromagnetic compounds following MRI (Melina, 2010) Currents may be triggered by two field. The first is the pulsed magnetic-gradient field, and the second being the pulsed radiofrequency field (Jacob et al., 2010). These two fields increase their intensity over time and may eventually cause a n electromotive force through a conductive loop. Heating will then come about from the current originating from the loop with the amount of heating based on the resistance in the conductive processes (Dempsey and Condon, 2001). The pulsed magnetic field is triggered by a too large coil which encompasses the coils and is often found near the patient to be scanned. The issue of excessive heating is based on the distance of the RF coil to the patient,
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