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Volume 17, Number 1,
Issue of January 1, 1997
pp. 353-362
Copyright ©1997 Society for Neuroscience
Human Brain Language Areas Identified by Functional Magnetic
Resonance Imaging
Received Aug. 1, 1996; revised Oct. 7, 1996; accepted Oct. 11, 1996.
Jeffrey R. Binder1, 2,
Julie A. Frost1,
Thomas A. Hammeke1,
Robert W. Cox3,
Stephen M. Rao1, 2, and
Thomas Prieto1
Departments of 1 Neurology and 2 Cellular
Biology and Anatomy, and 3 Biophysics Research Institute,
Medical College of Wisconsin, Milwaukee, Wisconsin 53226
Functional magnetic resonance imaging (FMRI) was used to identify
candidate language processing areas in the intact human brain. Language
was defined broadly to include both phonological and lexical-semantic
functions and to exclude sensory, motor, and general executive
functions. The language activation task required phonetic and semantic
analysis of aurally presented words and was compared with a control
task involving perceptual analysis of nonlinguistic sounds. Functional
maps of the entire brain were obtained from 30 right-handed subjects.
These maps were averaged in standard stereotaxic space to produce a
robust "average activation map" that proved reliable in a
split-half analysis. As predicted from classical models of language
organization based on lesion data, cortical activation associated with
language processing was strongly lateralized to the left cerebral
hemisphere and involved a network of regions in the frontal, temporal,
and parietal lobes. Less consistent with classical models were (1) the
existence of left hemisphere temporoparietal language areas outside the
traditional "Wernicke area," namely, in the middle temporal,
inferior temporal, fusiform, and angular gyri; (2) extensive left
prefrontal language areas outside the classical "Broca area"; and
(3) clear participation of these left frontal areas in a task
emphasizing "receptive" language functions. Although partly in
conflict with the classical model of language localization, these
findings are generally compatible with reported lesion data and provide
additional support for ongoing efforts to refine and extend the
classical model.
Key words:
language;
functional magnetic resonance imaging;
brain
mapping;
semantic;
phonological;
auditory cortex
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R. L. Buckner, W. Koutstaal, D. L. Schacter, and B. R. Rosen
Functional MRI evidence for a role of frontal and inferior temporal cortex in amodal components of priming
Brain,
March 1, 2000;
123(3):
620 - 640.
[Abstract]
[Full Text]
[PDF]
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S. Knecht, M. Deppe, B. Drager, L. Bobe, H. Lohmann, E.-B. Ringelstein, and H. Henningsen
Language lateralization in healthy right-handers
Brain,
January 1, 2000;
123(1):
74 - 81.
[Abstract]
[Full Text]
[PDF]
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I. S. Johnsrude, V. B. Penhune, and R. J. Zatorre
Functional specificity in the right human auditory cortex for perceiving pitch direction
Brain,
January 1, 2000;
123(1):
155 - 163.
[Abstract]
[Full Text]
[PDF]
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R. S. Herz, C. McCall, and L. Cahill
Hemispheric Lateralization in the Processing of Odor Pleasantness versus Odor Names
Chem Senses,
December 1, 1999;
24(6):
691 - 695.
[Abstract]
[Full Text]
[PDF]
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M. Steinschneider, I. O. Volkov, M. D. Noh, P. C. Garell, and M. A. Howard III
Temporal Encoding of the Voice Onset Time Phonetic Parameter by Field Potentials Recorded Directly From Human Auditory Cortex
J Neurophysiol,
November 1, 1999;
82(5):
2346 - 2357.
[Abstract]
[Full Text]
[PDF]
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J. A. Springer, J. R. Binder, T. A. Hammeke, S. J. Swanson, J. A. Frost, P. S. F. Bellgowan, C. C. Brewer, H. M. Perry, G. L. Morris, and W. M. Mueller
Language dominance in neurologically normal and epilepsy subjects: A functional MRI study
Brain,
November 1, 1999;
122(11):
2033 - 2046.
[Abstract]
[Full Text]
[PDF]
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Y. Cao, E. M. Vikingstad, K. P. George, A. F. Johnson, and K. M. A. Welch
Cortical Language Activation in Stroke Patients Recovering From Aphasia With Functional MRI
Stroke,
November 1, 1999;
30(11):
2331 - 2340.
[Abstract]
[Full Text]
[PDF]
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A. R. Halpern and R. J. Zatorre
When That Tune Runs Through Your Head: A PET Investigation of Auditory Imagery for Familiar Melodies
Cereb Cortex,
October 1, 1999;
9(7):
697 - 704.
[Abstract]
[Full Text]
[PDF]
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T. L. Richards, S. R. Dager, D. Corina, S. Serafini, A. C. Heide, K. Steury, W. Strauss, C. E. Hayes, R. D. Abbott, S. Craft, et al.
Dyslexic Children Have Abnormal Brain Lactate Response to Reading-Related Language Tasks
AJNR Am. J. Neuroradiol.,
September 1, 1999;
20(8):
1393 - 1398.
[Abstract]
[Full Text]
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J. I. Breier, P. G. Simos, G. Zouridakis, J. W. Wheless, L. J. Willmore, J. E. C. Constantinou, W. W. Maggio, and A. C. Papanicolaou
Language dominance determined by magnetic source imaging: A comparison with the Wada procedure
Neurology,
September 1, 1999;
53(5):
938 - 938.
[Abstract]
[Full Text]
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R. Green, A. Clark, W. Hickey, J. Hutsler, and M. Gazzaniga
Braincutting for Psychiatrists: The Time Is Ripe
J Neuropsychiatry Clin Neurosci,
August 1, 1999;
11(3):
301 - 306.
[Abstract]
[Full Text]
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M. St George, M. Kutas, A. Martinez, and M. I. Sereno
Semantic integration in reading: engagement of the right hemisphere during discourse processing
Brain,
July 1, 1999;
122(7):
1317 - 1325.
[Abstract]
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R. R. Benson, D. B. FitzGerald, L. L. LeSueur, D. N. Kennedy, K. K. Kwong, B. R. Buchbinder, T. L. Davis, R. M. Weisskoff, T. M. Talavage, W. J. Logan, et al.
Language dominance determined by whole brain functional MRI in patients with brain lesions
Neurology,
March 1, 1999;
52(4):
798 - 798.
[Abstract]
[Full Text]
[PDF]
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J. Pujol, J. Deus, J. M. Losilla, and A. Capdevila
Cerebral lateralization of language in normal left-handed people studied by functional MRI
Neurology,
March 1, 1999;
52(5):
1038 - 1038.
[Abstract]
[Full Text]
[PDF]
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J. A. Frost, J. R. Binder, J. A. Springer, T. A. Hammeke, P. S.F. Bellgowan, S. M. Rao, and R. W. Cox
Language processing is strongly left lateralized in both sexes: Evidence from functional MRI
Brain,
February 1, 1999;
122(2):
199 - 208.
[Abstract]
[Full Text]
[PDF]
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K. Sakatani, Y. Xie, W. Lichty, S. Li, and H. Zuo
Language-Activated Cerebral Blood Oxygenation and Hemodynamic Changes of the Left Prefrontal Cortex in Poststroke Aphasic Patients : A Near-Infrared Spectroscopy Study
Stroke,
July 1, 1998;
29(7):
1299 - 1304.
[Abstract]
[Full Text]
[PDF]
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S. A. Bunge, T. Klingberg, R. B. Jacobsen, and J. D. E. Gabrieli
A resource model of the neural basis of executive working memory
PNAS,
March 28, 2000;
97(7):
3573 - 3578.
[Abstract]
[Full Text]
[PDF]
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