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Shielding - Spine MRI - Lung Imaging - Brain MRI - Spectroscopy - IR
 
Filling Factor
 
A measure of the geometrical relationship of the RF coil and the object being studied. It affects the efficiency of exciting the object and detecting MR signals, thereby affecting the signal to noise ratio and image quality. Achieving a high filling factor requires fitting the coil closely to the object, thus potentially decreasing patient comfort.
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Magnetic resonance-guided motorized transcranial ultrasound system for blood-brain barrier permeabilization along arbitrary trajectories in rodents
Thursday, 24 December 2015   by www.ncbi.nlm.nih.gov    
FilterForum -
there are related threads
 
Filtering is any process that alters the relative frequency content. This can be done with an analog (conventional electrical) filter, e.g. to remove higher frequency components so as to avoid aliasing in digitizing. Filtering can be carried out numerically on the digitized data. Raw data can be filtered prior to the image calculation. The Hanning filter is provided with various weightings, e.g. for the reduction of edge oscillation.
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Further Reading:
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LCR Electronics Offers Quick Delivery on New EMI Filters That Eliminate RF Interference
Wednesday, 11 May 2011   by www.prnewswire.com    
Vascular Filters of Functional MRI: Spatial Localization Using BOLD and CBV Contrast
MRI Resources 
Implant and Prosthesis pool - Absorption and Emission - Musculoskeletal and Joint MRI - Stent - Homepages - Veterinary MRI
 
Filtered Back Projection
 
Mathematical technique used in projection-reconstruction imaging to create images from a set of multiple projection profiles. The projection profiles are back projected to produce a two (or three) dimensional image. The projection profiles are processed by convolving them with a suitable mathematical function (filtered) prior to back projecting them, in order to improve the image. Widely used in conventional computed tomography (CT).
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Further Reading:
  Basics:
Tomographic Image Reconstruction
   by www.aapm.org    
Filtering
 
Filtering deletes components of the signal, high or low frequencies, band-pass, analog or digital. Whatever pattern or algorithms can be defined for data decimation.
Low pass filtering attenuates high frequency data and passes low frequency data. The reconstructed image will look a little blurrier, but nearly similar to the original image. The blurring is caused by the fact that the high spatial frequencies are lost, which contain information about edges in the image.
High pass filtering attenuates low frequencies and passes high frequencies. Most of the objects and contrast of the original image are lost in the reconstructed image, but the edges are clearly visible because high frequency data has been preserved.
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Further Reading:
  Basics:
MR Image Reconstruction from Raw Data
   by dukemil.egr.duke.edu    
  News & More:
The Scientist and Engineer's Guide to Digital Signal Processing
   by www.dspguide.com    
Flat TopForum -
there are related threads
 
The flat top is the area at the top of the frequency encoding gradient where the data sampling occurs. By increasing the BW the amount of time the flat top is on is reduced. Shortening the duration of the flat top shortens the echo spacing and also geometric distortions. The area under the frequency gradient determines the FOV, while the flat top determines the number of samples to be collected.
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MRI Resources 
Shoulder MRI - Bioinformatics - Image Quality - Databases - MRI Accidents - Mobile MRI
 
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MRI is trending to low field magnets :
reduced costs will lead to this change 
AI will close the gap to high field 
only in remote areas 
is only temporary 
never 

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