Significance of the second somatosensory cortex in sensorimotor integration: Enhancement of sensory responses during finger movements

被引:98
作者
Huttunen, J
Wikstrom, H
Korvenoja, A
Seppalainen, AM
Aronen, H
Ilmoniemi, RJ
机构
[1] UNIV HELSINKI, CENT HOSP, DEPT NEUROL, HELSINKI, FINLAND
[2] UNIV HELSINKI, CENT HOSP, DEPT RADIOL, HELSINKI, FINLAND
[3] UNIV HELSINKI, CENT HOSP, DEPT CLIN NEUROPHYSIOL, HELSINKI, FINLAND
[4] JORVI HOSP, DEPT CLIN NEUROPHYSIOL, ESPOO, FINLAND
关键词
somatosensory cortex; magnetoencephalography; movement; motor cortex;
D O I
10.1097/00001756-199604100-00011
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
THE functional significance of the second somatosensory cortex (SII) is poorly understood. However, lesion and cortical stimulation studies indicate that SII may be involved in sensory aspects of tactile learning and in movement control. In the present study, we explored a possible role of SII in sensorimotor integration in humans using a multichannel magnetometer. Somatosensory evoked fields (SEFs) from SII to electrical stimulation of left and right median nerves were recorded in six healthy volunteers during rest and in different test conditions. Continuous cutaneous stimulation of the right hand or face reduced the SEFs to both left and right median nerve stimulation. Right-sided finger movements increased the SEFs to right, but not left, median nerve stimulation. The responses were simple finger flexion movement sequence. The suppression of SEFs by competing cutaneous inputs from different areas of the body indicates that the neurones underlying the responses receive inputs from large, bilateral receptive fields. The enhancement of sensory reactions to signals from the actively moving limb but not to those from the opposite limb indicates a spatial tuning of the SII neurones to behaviourally relevant input channels, also suggesting that SII is important for the integration of sensory information to motor programmes.
引用
收藏
页码:1009 / 1012
页数:4
相关论文
共 17 条
[1]  
Ahlfors S., 1989, ADV BIOMAGNETISM, P693
[2]   122-CHANNEL SQUID INSTRUMENT FOR INVESTIGATING THE MAGNETIC SIGNALS FROM THE HUMAN BRAIN [J].
AHONEN, AI ;
HAMALAINEN, MS ;
KAJOLA, MJ ;
KNUUTILA, JET ;
LAINE, PP ;
LOUNASMAA, OV ;
PARKKONEN, LT ;
SIMOLA, JT ;
TESCHE, CD .
PHYSICA SCRIPTA, 1993, T49A :198-205
[3]  
[Anonymous], 1954, JAMA-J AM MED ASSOC
[4]  
BURTON H, 1981, CORTICAL SENSORY ORG, V1, P67
[6]   ACTIVE VERSUS PASSIVE TOUCH - FACTORS INFLUENCING THE TRANSMISSION OF SOMATOSENSORY SIGNALS TO PRIMARY SOMATOSENSORY CORTEX [J].
CHAPMAN, CE .
CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY, 1994, 72 (05) :558-570
[7]   COMPARISON OF SOMATOSENSORY-EVOKED FIELDS TO AIRPUFF AND ELECTRIC STIMULI [J].
FORSS, N ;
SALMELIN, R ;
HARI, R .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1994, 92 (06) :510-517
[8]   FUNCTIONAL-ORGANIZATION OF THE HUMAN 1ST AND 2ND SOMATOSENSORY CORTICES - A NEUROMAGNETIC STUDY [J].
HARI, R ;
KARHU, J ;
HAMALAINEN, M ;
KNUUTILA, J ;
SALONEN, O ;
SAMS, M ;
VILKMAN, V .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1993, 5 (06) :724-734
[9]  
HARI R, 1984, ELECTROENCEPHALOGR C, V68, P1
[10]   MODIFICATION OF CORTICAL SOMATOSENSORY EVOKED-POTENTIALS DURING TACTILE EXPLORATION AND SIMPLE ACTIVE AND PASSIVE MOVEMENTS [J].
HUTTUNEN, J ;
HOMBERG, V .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1991, 81 (03) :216-223