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Result : Searchterm 'MRI Safety' found in 2 terms [] and 40 definitions []
| previous 36 - 40 (of 42) nextResult Pages : [1] [2 3 4 5 6 7 8 9] | | | | Searchterm 'MRI Safety' was also found in the following services: | | | | |
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Image Guidance
The higher the frequency, the larger will be the amount of heat developed. The more ionic the biochemical environment in the tissue, the more energy that will be deposited as heat.
This effect is well known for homogeneous model systems, but the complex structure of various human tissues makes detailed theoretical calculations very difficult, if not impossible.
By scanning problems, it is important to verify the transmission frequency. If the RF transmitted into the patient was, e.g. 5000 Hz lower than the resonance frequency of the protons, no protons was excited, and no signal returns. | | | | | | | | | Further Reading: | | Basics:
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Radio frequency shielding includes the construction of enclosures for the purpose of reducing the transmission of electric or magnetic fields from one space to another ( Faraday cage, Faraday shield). Electrically conducted shielding is designed to isolate MRI systems from its environment at the resonant frequencies.
All electronic and computer systems radiate certain frequencies of radio and magnetic waves. They can interfere with other equipment in the vicinity. Magnetic shielding enclosures are used to reduce the levels of RF radiation that enters or leaves the shielded room.
Copper shielding enclosures are designed to filter a range of frequencies under specified conditions. One of the characteristics of copper is its high electrical conductivity. Also its other physical properties like ductility, malleability, and ease of soldering, make it an ideal material for radio frequency shielding. Sheet copper can be formed into any shape and size, and electrically connected to a grounding system to provide an effective RF shielding.
See also MRI Safety | | | | • View the DATABASE results for 'Radio Frequency Shielding' (3).
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Time-dependent electromagnetic fields are significantly attenuated by conducting media (including the human body); the skin depth gives a measure of the average depth of penetration of the RF field.
A high power frequency tunable RF source can be rapidly switched on and off. This produces a large RF field perpendicular to the magnetic field. This RF field is focused by the body coil. The RF source and coils must be tunable in both frequency and impedance to
'match the impedance' of the patient's body.
The skin depth may be a limiting factor in MR imaging at very high frequencies (high magnetic fields). The skin depth also affects the Q of the coils.
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| | | Searchterm 'MRI Safety' was also found in the following services: | | | | |
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Pharmaceutical products in transdermal skin patches may cause burns due to the absorption of RF energy.
Such patches must be removed prior to MR examinations. | | | | | |
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Tattoos with metallic or ferromagnetic color ingredients can distort MR images. Skin irritations or burns caused by heating of the metallic particles due to the radio frequency pulse are also possible, but rare.
Patients should be informed about the possible risk, and scanning should be
stopped immediately if they feel heat. Metallic make-up can even be pulled into the eye by magnetic forces and should be removed previous to the MRI scan. | | | | • View the DATABASE results for 'Tattoos' (2).
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