fMRI signal increases and decreases in cortical areas during small-field optokinetic stimulation and central fixation

被引:106
作者
Dieterich, M
Bense, S
Stephan, T
Yousry, TA
Brandt, T
机构
[1] Univ Mainz, Dept Neurol, D-55131 Mainz, Germany
[2] Univ Munich, Klinikum Grosshadern, Dept Neurol, Munich, Germany
[3] Univ Munich, Klinikum Grosshadern, Dept Neuroradiol, D-8000 Munich, Germany
关键词
optokinetic nystagmus; visual cortex; vestibular cortex; precentral gyrus; functional MRI;
D O I
10.1007/s00221-002-1267-6
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Small-field optokinetic nystagmus (OKN) was performed in seven healthy volunteers in order to analyze the activation and deactivation patterns of visual motion, ocular motor, and multisensory vestibular cortex areas by means of fMRI during coherent visual motion stimulation. BOLD signal decreases (deactivations) were found in the first and second long insular gyri and retroinsular areas (the human homologue of the parietoinsular vestibular cortex and the visual posterior sylvian area in the monkey) of both hemispheres, extending into the transverse temporal gyrus and inferior-anterior parts of the superior temporal gyrus (BA 22), and the precentral gyri at two separate sites (BA 4 and 6). Further deactivations were found in cranioposterior parts of the superior temporal gyrus (BA 22) and the adjacent inferior parietal lobule (BA 40), anterior cingulate gyrus, hippocampus, and corpus callosum. Most of these BOLD signal decreases involved parts of the "multisensory vestibular cortical circuit". These findings support the concept of a reciprocally, inhibitory visual-vestibular interaction that has now been demonstrated not only for large-field visual motion stimulation that induces vection (without eye movements) but also for optokinetically induced eye movements (without vection). The functional significance of this concept may be related to the perception of self-motion, since both large-field visual motion stimulation and optokinetic nystagmus are linked to the visual control of self-motion. With respect to activation of the cortical ocular motor system two separate and distinct areas of activations were delineated in the precentral sulcus of both hemispheres, one ventrolaterally (in BA 9) and the other dorsomedially at the junction of the superior frontal sulcus with the precentral sulcus (in BA 6). Both probably correspond to different subregions of the frontal eye field and the premotor cortex for the ocular motor performance of OKN.
引用
收藏
页码:117 / 127
页数:11
相关论文
共 59 条
[1]  
Andersen R. A., 2011, HDB PHYSL 1, P483, DOI 10.1002/cphy.cp010512
[2]  
[Anonymous], 1999, The Neurology of Eye Movements
[3]   Functional MRI of lateral occipitotemporal cortex during pursuit and motion perception [J].
Barton, JJS ;
Simpson, T ;
Kiriakopoulos, E ;
Stewart, C ;
Crawley, A ;
Guthrie, B ;
Wood, M ;
Mikulis, D .
ANNALS OF NEUROLOGY, 1996, 40 (03) :387-398
[4]   Multisensory cortical signal increases and decreases during vestibular galvanic stimulation (fMRI) [J].
Bense, S ;
Stephan, T ;
Yousry, TA ;
Brandt, T ;
Dieterich, M .
JOURNAL OF NEUROPHYSIOLOGY, 2001, 85 (02) :886-899
[5]  
BENSE S, 2002, J NEUROL S1, V249, P25
[6]  
BOTTINI G, 1994, EXP BRAIN RES, V99, P164
[7]  
BOYLE R, 1985, EXP BRAIN RES, V57, P362
[8]   Reciprocal inhibitory visual-vestibular interaction - Visual motion stimulation deactivates the parieto-insular vestibular cortex [J].
Brandt, T ;
Bartenstein, P ;
Janek, A ;
Dieterich, M .
BRAIN, 1998, 121 :1749-1758
[9]   CIRCULAR VECTION, VISUALLY INDUCED PSEUDOCORIOLIS EFFECTS, OPTOKINETIC AFTERNYSTAGMUS - COMPARATIVE STUDY OF SUBJECTIVE AND OBJECTIVE OPTOKINETIC AFTEREFFECTS [J].
BRANDT, T ;
DICHGANS, J .
ALBRECHT VON GRAEFES ARCHIV FUR KLINISCHE UND EXPERIMENTELLE OPHTHALMOLOGIE, 1972, 184 (01) :42-&
[10]   Cerebral functional magnetic resonance imaging of vestibular, auditory, and nociceptive areas during galvanic stimulation [J].
Bucher, SF ;
Dieterich, M ;
Wiesmann, M ;
Weiss, A ;
Zink, R ;
Yousry, TA ;
Brandt, T .
ANNALS OF NEUROLOGY, 1998, 44 (01) :120-125