Sequential effects of propofol on functional brain activation induced by auditory language processing: an event-related functional magnetic resonance imaging study

被引:64
作者
Heinke, W [1 ]
Fiebach, CJ
Schwarzbauer, C
Meyer, M
Olthoff, D
Alter, K
机构
[1] Univ Leipzig, Dept Anaesthesiol & Intens Care Therapy, Leipzig, Germany
[2] Max Planck Inst Cognit Neurosci, Leipzig, Germany
[3] MRC, Cognit & Brain Sci Unit, Cambridge, England
[4] Univ Zurich, Inst Psychol, Dept Neuropsychol, CH-8006 Zurich, Switzerland
关键词
anaesthesia; anaesthetic action; anaesthetics i.v; propofol; brain; auditory language processing; functional magnetic resonance imaging;
D O I
10.1093/bja/aeh133
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
Background. We have investigated the effect of propofol on language processing using event-related functional magnetic resonance imaging (MRI). Methods. Twelve healthy male volunteers underwent MRI scanning at a magnetic field strength of 3 Tesla while performing an auditory language processing task. Functional images were acquired from the perisylvian cortical regions that are associated with auditory and language processing. The experiment consisted of three blocks: awake state (block 1), induction of anaesthesia with 3 mg kg(-1) propofol (block 2), and maintenance of anaesthesia with 3 mg kg(-1) h(-1) propofol (block 3). During each block normal sentences and pseudo-word sentences were presented in random order. The subjects were instructed to press a button to indicate whether a sentence was made up of pseudo-words or not. All subjects stopped responding during block two. The data collected before and after the subjects stopped responding during this block were analyzed separately. In addition, propofol plasma concentrations were measured and the effect-site concentrations of propofol were calculated. Results. During wakefulness, language processing induced brain activation in a widely distributed temporofrontal network. Immediately after unresponsiveness, activation disappeared in frontal areas but persisted in both temporal lobes (block 2 second half, propofol effect-site concentration: 1.51 mug ml(-1)). No activation differences related to the task were observed during block 3 (propofol effect-site concentration: 4.35 mug ml(-1)). Conclusion. Our findings suggest sequential effects of propofol on auditory language processing networks. Brain activation firstly declines in the frontal lobe before it disappears in the temporal lobe.
引用
收藏
页码:641 / 650
页数:10
相关论文
共 33 条
[1]  
[Anonymous], 1998, Echo-Planar Imaging: Theory, Technique and Application, DOI DOI 10.1177/004057368303900411
[2]   The neural basis of functional brain imaging signals [J].
Attwell, D ;
Iadecola, C .
TRENDS IN NEUROSCIENCES, 2002, 25 (12) :621-625
[3]  
Bandettini PA, 1997, NEUROSURG CLIN N AM, V8, P345
[4]   A comparison of spectral edge, delta power, and bispectral index as EEG measures of alfentanil, propofol, and midazolam drug effect [J].
Billard, V ;
Gambus, PL ;
Chamoun, N ;
Stanski, DR ;
Shafer, SL .
CLINICAL PHARMACOLOGY & THERAPEUTICS, 1997, 61 (01) :45-58
[5]  
Bosch V, 2000, J MAGN RESON IMAGING, V11, P61, DOI 10.1002/(SICI)1522-2586(200001)11:1<61::AID-JMRI9>3.0.CO
[6]  
2-C
[7]   Randomized event-related experimental designs allow for extremely rapid presentation rates using functional MRI [J].
Burock, MA ;
Buckner, RL ;
Woldorff, MG ;
Rosen, BR ;
Dale, AM .
NEUROREPORT, 1998, 9 (16) :3735-3739
[8]   Effect of basal conditions on the magnitude and dynamics of the blood oxygenation level-dependent fMRI response [J].
Cohen, ER ;
Ugurbil, K ;
Kim, SG .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2002, 22 (09) :1042-1053
[9]   Cerebral normoxia in the rhesus monkey during isoflurane- or propofol-induced hypotension and hypocapnia, despite disparate blood-flow patterns - A positron emission tomography study [J].
Enlund, M ;
Andersson, J ;
Hartvig, P ;
Valtysson, J ;
Wiklund, L .
ACTA ANAESTHESIOLOGICA SCANDINAVICA, 1997, 41 (08) :1002-1010
[10]  
Fiset P, 1999, J NEUROSCI, V19, P5506