RESPONSES TO RAPID-RATE TRANSCRANIAL MAGNETIC STIMULATION OF THE HUMAN MOTOR CORTEX

被引:1073
作者
PASCUALLEONE, A [1 ]
VALLSSOLE, J [1 ]
WASSERMANN, EM [1 ]
HALLETT, M [1 ]
机构
[1] NINCDS, MED NEUROL BRANCH, HUMAN MOTOR CONTROL SECT, HUMAN CORT PHYSIOL UNIT, BETHESDA, MD 20892 USA
关键词
RAPID-RATE TRANSCRANIAL MAGNETIC STIMULATION; MOTOR CORTEX; EPILEPSY; PHYSIOLOGY; ELECTROMYOGRAPHY (EMG);
D O I
10.1093/brain/117.4.847
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
We applied trains of focal, rapid-rate transcranial magnetic stimulation (rTMS) to the motor cortex of 14 healthy volunteers with recording of the EMG from the contralateral abductor pollicis brevis, extensor carpi radialis, biceps brachii and deltoid muscles. Modulation of the amplitude of motor evoked potentials (MEPs) produced in the target muscle during rTMS showed a pattern of inhibitory and excitatory effects which depended on the rTMS frequency and intensity. With the magnetic coil situated over the optimal scalp position for activating the abductor pollicis brevis, rTMS led to spread of excitation, as evident from the induction of progressively larger MEPs in the other muscles. The number of pulses inducing this spread of excitation decreased with increasing rTMS frequency and intensity. Latency of the MEPs produced in the other muscles during the spread of excitation was significantly longer than that produced by single-pulse TMS applied to the optimal scalp positions for their activation. The difference in MEP latency could be explained by a delay in intracortical conduction along myelinated cortico-cortical pathways. Following rTMS, a 3-4 min period of increased excitability was demonstrated by an increase in the amplitude of MEPs produced in the target muscles by single-pulse TMS. Nevertheless, repeated rTMS trains applied 1 min apart led to similar modulation of the responses and to spread of excitation after approximately the same number of pulses. This suggests that the spread might be due to the breakdown of inhibitory connections or the recruitment of excitatory pathways, whereas the post-stimulation facilitation may be due to a transient increase in the efficacy of excitatory synapses.
引用
收藏
页码:847 / 858
页数:12
相关论文
共 48 条
[1]   SPREAD OF MONO-SYNAPTIC AND POLYSYNAPTIC CONNECTIONS WITHIN CATS MOTOR CORTEX [J].
ASANUMA, H ;
ROSEN, I .
EXPERIMENTAL BRAIN RESEARCH, 1973, 16 (05) :507-520
[2]   NEURONAL MECHANISMS OF MOTOR LEARNING IN MAMMALS [J].
ASANUMA, H ;
KELLER, A .
NEUROREPORT, 1991, 2 (05) :217-224
[3]   INTRAHEMISPHERIC AND INTERHEMISPHERIC SPREAD OF CEREBRAL CORTICAL MYOCLONIC ACTIVITY AND ITS RELEVANCE TO EPILEPSY [J].
BROWN, P ;
DAY, BL ;
ROTHWELL, JC ;
THOMPSON, PD ;
MARSDEN, CD .
BRAIN, 1991, 114 :2333-2351
[4]  
Brown TG, 1916, Q J EXP PHYSIOL, V9, P117
[5]  
Brown TG, 1916, Q J EXP PHYSIOL, V9, P131
[6]  
Brown TG, 1916, Q J EXP PHYSIOL, V9, P81
[7]  
Brown TG, 1916, Q J EXP PHYSIOL, V9, P101
[8]   MOTOR-UNIT RESPONSES IN HUMAN WRIST FLEXOR AND EXTENSOR MUSCLES TO TRANSCRANIAL CORTICAL STIMULI [J].
CALANCIE, B ;
NORDIN, M ;
WALLIN, U ;
HAGBARTH, KE .
JOURNAL OF NEUROPHYSIOLOGY, 1987, 58 (05) :1168-1185
[9]   HORIZONTAL SPREAD OF SYNCHRONIZED ACTIVITY IN NEOCORTEX AND ITS CONTROL BY GABA-MEDIATED INHIBITION [J].
CHAGNACAMITAI, Y ;
CONNORS, BW .
JOURNAL OF NEUROPHYSIOLOGY, 1989, 61 (04) :747-758
[10]   MAGNETIC STIMULATION OF THE HUMAN CEREBRAL-CORTEX, AN INDICATOR OF REORGANIZATION IN MOTOR PATHWAYS IN CERTAIN PATHOLOGICAL CONDITIONS [J].
COHEN, LG ;
ROTH, BJ ;
WASSERMANN, EM ;
TOPKA, H ;
FUHR, P ;
SCHULTZ, J ;
HALLETT, M .
JOURNAL OF CLINICAL NEUROPHYSIOLOGY, 1991, 8 (01) :56-65