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[[w:Single-Photon Emission Computed Tomography|Single-Photon Emission Computed Tomography]] (SPECT) and [[w:Positron Emission Tomography|Positron Emission Tomography]] (PET) use radioactive tracers which are taken up where blood flow is greater. SPECT and PET therefore provide images of blood flow (again, considered by most scientists as a sign of greater brain activity) in different parts of the brain. However, they do not provide as much anatomical detail as MRI or CT scans.
[[w:Single-Photon Emission Computed Tomography|Single-Photon Emission Computed Tomography]] (SPECT) and [[w:Positron Emission Tomography|Positron Emission Tomography]] (PET) use radioactive tracers which are taken up where blood flow is greater. SPECT and PET therefore provide images of blood flow (again, considered by most scientists as a sign of greater brain activity) in different parts of the brain. However, they do not provide as much anatomical detail as MRI or CT scans.


==External links==
 
===Journals===
*[http://www.springer.com/public+health/journal/11682 Brain imaging and behavior]
*[http://www.elsevier.com/wps/find/journaldescription.cws_home/622925/description#description Neuroimage]
*[http://www.nature.com/neuro/ Nature Neuroscience]
*[http://nro.sagepub.com/ The Neuroscientist]




[[Category:Medicine]]
[[Category:Medicine]]

Revision as of 13:11, 23 June 2008

>Brain Imaging>Neurosociety Media Centre

Single-Photon Emission Computed Tomography (SPECT) and Positron Emission Tomography (PET) use radioactive tracers which are taken up where blood flow is greater. SPECT and PET therefore provide images of blood flow (again, considered by most scientists as a sign of greater brain activity) in different parts of the brain. However, they do not provide as much anatomical detail as MRI or CT scans.