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MeSH Review

Radionuclide Imaging

 
 
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Disease relevance of Radionuclide Imaging

 

Psychiatry related information on Radionuclide Imaging

 

High impact information on Radionuclide Imaging

 

Chemical compound and disease context of Radionuclide Imaging

 

Biological context of Radionuclide Imaging

 

Anatomical context of Radionuclide Imaging

 

Associations of Radionuclide Imaging with chemical compounds

  • The presence of restenosis was assessed by exercise thallium scintigraphy in the other four patients [27].
  • Conversely, patients with discordant patterns of NP-59 scintigraphy have lesions that carry a significant risk for malignancy, and the pursuit of a tissue diagnosis is indicated, usually by means of FNA [2].
  • Myocardial scintigraphy with technetium Tc 99m pyrophosphate was performed after competition in 12 randomly selected runners with a mean postrace serum CK-MB level of 160 IU/L or 13% [28].
  • The results of total skeletal scintigraphy with technetium 99m-labeled diphosphonate in 200 patients with biopsy-proven primary cancer demonstrated abnormalities in 114; 57 had normal roentgenograms [29].
  • This review puts into context the use of newer imaging modalities, including octreotide scintigraphy [30].
 

Gene context of Radionuclide Imaging

 

Analytical, diagnostic and therapeutic context of Radionuclide Imaging

References

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