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MeSH Review

Tomography, Emission-Computed

 
 
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Disease relevance of Tomography, Emission-Computed

 

High impact information on Tomography, Emission-Computed

  • To determine whether this represents a dynamic process that may be modified favorably by medical therapy, we studied 29 asymptomatic or minimally symptomatic patients with HCM, aged 12-55 years (mean, 28), with exercise 201Tl emission computed tomography under control conditions and again after 1 week of oral verapamil (mean dosage, 453 mg/day) [6].
  • To assess the relative prevalence and functional significance of myocardial perfusion abnormalities in patients comprising the broad clinical spectrum of HCM, we studied 72 patients (ages 12 to 69 years, mean 40) using thallium-201 emission computed tomography [7].
  • With further development, emission computed tomography may help in better categorizing the various forms of the disorder and in elucidating the basic mechanisms of epilepsy in humans [8].
  • Effects of stroke on local cerebral metabolism and perfusion: mapping by emission computed tomography of 18FDG and 13NH3 [9].
  • METHODS: We identified 3,369 patients without previous myocardial infarction or revascularization who underwent exercise or adenosine stress MPS and who were followed-up (97% complete) for occurrence of early (<60 days) post-single-photon emission computed tomography (SPECT) revascularization [10].
 

Chemical compound and disease context of Tomography, Emission-Computed

 

Biological context of Tomography, Emission-Computed

 

Anatomical context of Tomography, Emission-Computed

 

Associations of Tomography, Emission-Computed with chemical compounds

 

Gene context of Tomography, Emission-Computed

 

Analytical, diagnostic and therapeutic context of Tomography, Emission-Computed

References

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