Multiple nonprimary motor areas in the human cortex

被引:395
作者
Fink, GR
Frackowiak, RSJ
Pietrzyk, U
Passingham, RE
机构
[1] MRC, CTR CLIN SCI, LONDON W12 0HS, ENGLAND
[2] MAX PLANCK INST NEUROL RES, D-50931 COLOGNE, GERMANY
[3] UNIV OXFORD, DEPT EXPT PSYCHOL, OXFORD OX1 3UD, ENGLAND
基金
英国惠康基金;
关键词
D O I
10.1152/jn.1997.77.4.2164
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We measured the distribution of regional cerebral blood flow with positron emission tomography while three subjects moved their hand, shoulder, or leg. The images were coregistered with each individual's anatomic magnetic resonance scans. The data were analyzed for each individual to avoid intersubject averaging and so to preserve individual gyral anatomy. Instead of inspecting all pixels, we prospectively restricted the data analysis to particular areas of interest. These were defined on basis of the anatomic and physiological literature on nonhuman primates. By examining only a subset of areas, we strengthened the power of the statistical analysis and thereby increased the confidence in reporting single subject data. On the lateral convexity, motor related activity was found for all three subjects in the primary motor cortex, lateral premotor cortex, and an opercular area within the premotor cortex. In addition, there was activation of somatosensory cortex (SI), the supplementary somatosensory area (SII) in the Sylvian fissure, and parietal association areas (Brodmann areas 5 and 40). There was also activation in the insula. We suggest that the activation in the dorsal premotor cortex may correspond with dorsal premotor area (PMd) as described in the macaque brain. We propose three hypotheses as to the probable location of vental premotor area (PMv) in the human brain. On the medial surface, motor-related activity was found for all three subjects in the leg areas of the primary motor cortex and somatosensory cortex and also activity for the hand, shoulder, and leg is the supplementary motor area (SMA) on the dorsal medial convexity and in three areas in the cingulate sulcus. We suggest that the three cingulate areas may correspond with rostral cingulate premotor area, dorsal cingulate motor area (CMAd), and ventral cingulate motor area (CMAv) as identified in the macaque brain. Somatotopic mapping was demonstrated in the primary motor and primary somatosensory cortex. In all three subjects, the arm region lay anterior to the leg region in parietal area 5. Also in all three subjects, the arm region lay anterior to the leg region in the supplementary motor cortex.
引用
收藏
页码:2164 / 2174
页数:11
相关论文
共 95 条
[1]   CORTICAL CONTROL OF SACCADES AND FIXATION IN MAN - A PET STUDY [J].
ANDERSON, TJ ;
JENKINS, IH ;
BROOKS, DJ ;
HAWKEN, MB ;
FRACKOWIAK, RSJ ;
KENNARD, C .
BRAIN, 1994, 117 :1073-1084
[2]   FUNCTIONAL COOPERATIVITY OF HUMAN CORTICAL MOTOR AREAS DURING SELF-PACED SIMPLE FINGER MOVEMENTS - A HIGH-RESOLUTION MRI STUDY [J].
BOECKER, H ;
KLEINSCHMIDT, A ;
REQUARDT, M ;
HANICKE, W ;
MERBOLDT, KD ;
FRAHM, J .
BRAIN, 1994, 117 :1231-1239
[3]   PRIMATE FRONTAL EYE FIELDS .2. PHYSIOLOGICAL AND ANATOMICAL CORRELATES OF ELECTRICALLY EVOKED EYE-MOVEMENTS [J].
BRUCE, CJ ;
GOLDBERG, ME ;
BUSHNELL, MC ;
STANTON, GB .
JOURNAL OF NEUROPHYSIOLOGY, 1985, 54 (03) :714-734
[4]   THE FUNCTIONAL-ANATOMY OF MOTOR RECOVERY AFTER STROKE IN HUMANS - A STUDY WITH POSITRON EMISSION TOMOGRAPHY [J].
CHOLLET, F ;
DIPIERO, V ;
WISE, RJS ;
BROOKS, DJ ;
DOLAN, RJ ;
FRACKOWIAK, RSJ .
ANNALS OF NEUROLOGY, 1991, 29 (01) :63-71
[5]   REGIONAL CEREBRAL BLOOD-FLOW DURING VOLUNTARY ARM AND HAND MOVEMENTS IN HUMAN-SUBJECTS [J].
COLEBATCH, JG ;
DEIBER, MP ;
PASSINGHAM, RE ;
FRISTON, KJ ;
FRACKOWIAK, RSJ .
JOURNAL OF NEUROPHYSIOLOGY, 1991, 65 (06) :1392-1401
[6]   Cerebral structures participating in motor preparation in humans: A positron emission tomography study [J].
Deiber, MP ;
Ibanez, V ;
Sadato, N ;
Hallett, M .
JOURNAL OF NEUROPHYSIOLOGY, 1996, 75 (01) :233-247
[7]  
DEIBER MP, 1991, EXP BRAIN RES, V84, P393
[8]   RELATION BETWEEN CEREBRAL-ACTIVITY AND FORCE IN THE MOTOR AREAS OF THE HUMAN BRAIN [J].
DETTMERS, C ;
FINK, GR ;
LEMON, RN ;
STEPHAN, KM ;
PASSINGHAM, RE ;
SILBERSWEIG, D ;
HOLMES, A ;
RIDDING, MC ;
BROOKS, DJ ;
FRACKOWIAK, RSJ .
JOURNAL OF NEUROPHYSIOLOGY, 1995, 74 (02) :802-815
[9]  
DIPELLEGRINO G, 1993, SOMATOSENS MOT RES, V10, P245
[10]  
DIPELLEGRINO G, 1993, J NEUROSCI, V13, P1227