PET STUDY OF VOLUNTARY SACCADIC EYE-MOVEMENTS IN HUMANS - BASAL GANGLIA-THALAMOCORTICAL SYSTEM AND CINGULATE CORTEX INVOLVEMENT

被引:204
作者
PETIT, L
ORSSAUD, C
TZOURIO, N
SALAMON, G
MAZOYER, B
BERTHOZ, A
机构
[1] SERV HOSP FREDERIC JOLIOT,CEA,DRIPP,IMAGERIE NEUROFONCT GRP,4 PL GEN LECLERC,F-91406 ORSAY,FRANCE
[2] CHU TIMONE,SERV NEURORADIOL,F-13000 MARSEILLE,FRANCE
[3] HOP ROBERT DEBRE,F-75935 PARIS,FRANCE
[4] LAB PHYSIOL NEUROSENSORIELLE,CNRS,F-75270 PARIS 06,FRANCE
关键词
D O I
10.1152/jn.1993.69.4.1009
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. The purpose of this work was to explore the cortical and subcortical mechanisms underlying the execution of voluntary saccadic eye movements in humans. 2. Normalized regional cerebral blood flow (NrCBF) was measured using positron emission tomography (PET) and (H2O)-O-15 bolus intravenous injections in four right-handed healthy volunteers at rest and while performing self-paced voluntary horizontal saccadic eye movements in total darkness. 3. Magnetic resonance imaging of each subject's brain was matched to PET images, allowing the detection of activation in individually defined anatomic regions of interest. Cortical regions were drawn according to gyri limits; subcortical structures were also defined. 4. Self-paced saccadic eye movements elicited bilateral NrCBF increases in the lenticular nuclei, including putamen and globus pallidus, and in the thalamus. At the cortical level, we found bilateral NrCBF increases in the precentral gyrus, the superior part of the median frontal gyrus that corresponds to the supplementary motor area. There was also a significant NrCBF increase in the cerebellar vermis. 5. Right fusiform and lingual gyri, right insula, and left cingulate gyrus were also activated during the execution of saccades. 6. These results indicate that the classical basal ganglia-thalamocortical motor loop previously described for skeletal movements may also be involved in simple saccadic eye movements in humans.
引用
收藏
页码:1009 / 1016
页数:8
相关论文
共 60 条
  • [1] THE FUNCTIONAL-ANATOMY OF BASAL GANGLIA DISORDERS
    ALBIN, RL
    YOUNG, AB
    PENNEY, JB
    [J]. TRENDS IN NEUROSCIENCES, 1989, 12 (10) : 366 - 375
  • [2] PARALLEL ORGANIZATION OF FUNCTIONALLY SEGREGATED CIRCUITS LINKING BASAL GANGLIA AND CORTEX
    ALEXANDER, GE
    DELONG, MR
    STRICK, PL
    [J]. ANNUAL REVIEW OF NEUROSCIENCE, 1986, 9 : 357 - 381
  • [3] BAHILL AT, 1975, INVEST OPHTH VISUAL, V14, P317
  • [4] BIZZI E, 1968, EXP BRAIN RES, V6, P69
  • [5] PRIMATE FRONTAL EYE FIELDS .2. PHYSIOLOGICAL AND ANATOMICAL CORRELATES OF ELECTRICALLY EVOKED EYE-MOVEMENTS
    BRUCE, CJ
    GOLDBERG, ME
    BUSHNELL, MC
    STANTON, GB
    [J]. JOURNAL OF NEUROPHYSIOLOGY, 1985, 54 (03) : 714 - 734
  • [6] PRIMATE FRONTAL EYE FIELDS .1. SINGLE NEURONS DISCHARGING BEFORE SACCADES
    BRUCE, CJ
    GOLDBERG, ME
    [J]. JOURNAL OF NEUROPHYSIOLOGY, 1985, 53 (03) : 603 - 635
  • [7] THE FUNCTIONAL-ANATOMY OF MOTOR RECOVERY AFTER STROKE IN HUMANS - A STUDY WITH POSITRON EMISSION TOMOGRAPHY
    CHOLLET, F
    DIPIERO, V
    WISE, RJS
    BROOKS, DJ
    DOLAN, RJ
    FRACKOWIAK, RSJ
    [J]. ANNALS OF NEUROLOGY, 1991, 29 (01) : 63 - 71
  • [8] REGIONAL CEREBRAL BLOOD-FLOW DURING VOLITIONAL BREATHING IN MAN
    COLEBATCH, JG
    ADAMS, L
    MURPHY, K
    MARTIN, AJ
    LAMMERTSMA, AA
    TOCHONDANGUY, HJ
    CLARK, JC
    FRISTON, KJ
    GUZ, A
    [J]. JOURNAL OF PHYSIOLOGY-LONDON, 1991, 443 : 91 - 103
  • [9] COLEBATCH JG, 1991, N EUROPHYSIOL, V65, P1392
  • [10] CORBETTA M, 1991, J NEUROSCI, V11, P2383