CZ:Ref:DOI:10.1142/S0219635209002186: Difference between revisions

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{{cite journal| author=Bandettini PA| title=Seven topics in functional magnetic resonance imaging | journal=J Integr Neurosci | year= 2009 | volume= 8 | issue= 3 | pages= 371-403 | pmid=19938211  
{{cite journal| author=Bandettini PA| title=Seven topics in functional magnetic resonance imaging | journal=J Integr Neurosci | year= 2009 | volume= 8 | issue= 3 | pages= 371-403 | pmid=19938211  
| url=http://www.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pubmed&retmode=ref&cmd=prlinks&id=19938211  / doi=10.1142/S0219635209002186}}
| url=http://www.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pubmed&retmode=ref&cmd=prlinks&id=19938211  | doi=10.1142/S0219635209002186}}
:Provides an overview on the state of the art in [[functional Magnetic Resonance Imaging]] as of mid-2009, focusing on the following seven interrelated topics:
:Provides an overview on the state of the art in [[functional Magnetic Resonance Imaging]] as of mid-2009, focusing on the following seven interrelated topics:
:"(1) Clinical impact, (2) Utilization of individual functional maps, (3) fMRI signal interpretation, (4) Pattern effect mapping and decoding, (5) Endogenous oscillations, (6) MRI technology, and (7) Alternative functional contrast mechanisms."
:"(1) Clinical impact, (2) Utilization of individual functional maps, (3) fMRI signal interpretation, (4) Pattern effect mapping and decoding, (5) Endogenous oscillations, (6) MRI technology, and (7) Alternative functional contrast mechanisms."

Revision as of 11:17, 1 December 2009

Bandettini PA (2009). "Seven topics in functional magnetic resonance imaging". J Integr Neurosci 8 (3): 371-403. DOI:10.1142/S0219635209002186. PMID 19938211. Research Blogging[e]

Provides an overview on the state of the art in functional Magnetic Resonance Imaging as of mid-2009, focusing on the following seven interrelated topics:
"(1) Clinical impact, (2) Utilization of individual functional maps, (3) fMRI signal interpretation, (4) Pattern effect mapping and decoding, (5) Endogenous oscillations, (6) MRI technology, and (7) Alternative functional contrast mechanisms."